---
_id: 01KMFZPAJRCBT6C4PPHQC68C4J
abstract:
- This study explores the use of Spanish broom (Spartium junceum) to develop electrospun
  composite membranes, showcasing the potential of renewable plant waste for producing
  eco‐friendly, high‐value materials for innovative gravity‐driven water purification.
  In this sustainable approach, first of all, microcrystalline cellulose and biochar
  were successfully obtained from this natural source and functionalized using an
  easy, eco‐friendly, and one‐step synthesis by employing proper precursors and nanomaterials,
  that is, (3‐mercaptopropyl)trimethoxysilane, (3‐glycidyloxypropyl)trimethoxysilane,
  citric acid, β‐Cyclodextrins, and halloysite nanotubes, to prepare green, hybrid,
  and cross‐linked systems featuring tailored properties. The obtained derivatives
  were characterized and employed for the further development of eco‐friendly and
  sustainable poly(vinyl alcohol) nanofiber composites through the electrospinning
  technique on nonwoven glass microfiber support. After thermal treatment, the membranes
  displayed enhanced mechanical tensile properties and were tested in a dead‐end filtration
  cell for the removal of a methylene blue and methyl orange mixed solution, in particular
  demonstrating high retention and separation performances toward the cationic methylene
  blue dye. Among all, the PVA@MCC_GPTMS_HNT and PVA@MCC membranes achieved methylene
  blue retention rates of 93.4% and 79.9%, methylene blue/methyl orange separation
  efficiencies of 93.5% and 82.1%, and fluxes of 133.7 and 501.7 L m^−2  h^−1, respectively.
  Moreover, a biochar‐supported nano zero‐valent iron composite was obtained and tested
  for the removal of MB in batch experiments. The Langmuir adsorption isotherm model
  better describes its sorption behavior with a maximum sorption capacity of 305.65 mg g^1.
abstract_full:
- lang: eng
  text: This study explores the use of Spanish broom (Spartium junceum) to develop
    electrospun composite membranes, showcasing the potential of renewable plant waste
    for producing eco‐friendly, high‐value materials for innovative gravity‐driven
    water purification. In this sustainable approach, first of all, microcrystalline
    cellulose and biochar were successfully obtained from this natural source and
    functionalized using an easy, eco‐friendly, and one‐step synthesis by employing
    proper precursors and nanomaterials, that is, (3‐mercaptopropyl)trimethoxysilane,
    (3‐glycidyloxypropyl)trimethoxysilane, citric acid, β‐Cyclodextrins, and halloysite
    nanotubes, to prepare green, hybrid, and cross‐linked systems featuring tailored
    properties. The obtained derivatives were characterized and employed for the further
    development of eco‐friendly and sustainable poly(vinyl alcohol) nanofiber composites
    through the electrospinning technique on nonwoven glass microfiber support. After
    thermal treatment, the membranes displayed enhanced mechanical tensile properties
    and were tested in a dead‐end filtration cell for the removal of a methylene blue
    and methyl orange mixed solution, in particular demonstrating high retention and
    separation performances toward the cationic methylene blue dye. Among all, the
    PVA@MCC_GPTMS_HNT and PVA@MCC membranes achieved methylene blue retention rates
    of 93.4% and 79.9%, methylene blue/methyl orange separation efficiencies of 93.5%
    and 82.1%, and fluxes of 133.7 and 501.7 L m^−2  h^−1, respectively. Moreover,
    a biochar‐supported nano zero‐valent iron composite was obtained and tested for
    the removal of MB in batch experiments. The Langmuir adsorption isotherm model
    better describes its sorption behavior with a maximum sorption capacity of 305.65 mg g^1.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: e70321
article_type: original
author:
- _id: 120a2cc1-4668-11ec-92d2-8b93ed952e80
  biblio_id: 120a2cc1-4668-11ec-92d2-8b93ed952e80
  first_name: Giulia
  last_name: Rando
  name: Giulia Rando
  name_last_first: Rando, Giulia
  ugent_id:
  - '979609074826'
- first_name: Silvia
  last_name: Sfameni
  name: Silvia Sfameni
  name_last_first: Sfameni, Silvia
- _id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
  orcid_id: 0000-0002-1281-2968
  ugent_id:
  - '000070582957'
  - '975000449525'
- first_name: Alessandra
  last_name: Palella
  name: Alessandra Palella
  name_last_first: Palella, Alessandra
- first_name: Lorenzo
  last_name: Spadaro
  name: Lorenzo Spadaro
  name_last_first: Spadaro, Lorenzo
- first_name: Alberto
  last_name: Riminucci
  name: Alberto Riminucci
  name_last_first: Riminucci, Alberto
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- first_name: Maria Rosaria
  last_name: Plutino
  name: Maria Rosaria Plutino
  name_last_first: Plutino, Maria Rosaria
biblio_id: 01KMFZPAJRCBT6C4PPHQC68C4J
cite:
  apa: |2
      <div class="csl-entry">Rando, G., Sfameni, S., Geltmeyer, J., Palella, A., Spadaro, L., Riminucci, A., … Plutino, M. R. (2026). Nanofiber PVA-based membranes incorporating functionalized Spanish broom derivatives for sustainable water purification. <i>ENERGY &#38; ENVIRONMENTAL MATERIALS</i>. https://doi.org/10.1002/eem2.70321</div>
  bof: |2-
      <div class="csl-entry">Rando, Giulia, Silvia Sfameni, Jozefien Geltmeyer, Alessandra Palella, Lorenzo Spadaro, Alberto Riminucci, Karen De Clerck, and Maria Rosaria Plutino. 2026. “Nanofiber PVA-Based Membranes Incorporating Functionalized Spanish Broom Derivatives for Sustainable Water Purification.” <i>ENERGY &#38; ENVIRONMENTAL MATERIALS</i>. doi:10.1002/eem2.70321.</div>
     In press.
  chicago-author-date: |2
      <div class="csl-entry">Rando, Giulia, Silvia Sfameni, Jozefien Geltmeyer, Alessandra Palella, Lorenzo Spadaro, Alberto Riminucci, Karen De Clerck, and Maria Rosaria Plutino. 2026. “Nanofiber PVA-Based Membranes Incorporating Functionalized Spanish Broom Derivatives for Sustainable Water Purification.” <i>ENERGY &#38; ENVIRONMENTAL MATERIALS</i>. https://doi.org/10.1002/eem2.70321.</div>
  fwo: |2
      <div class="csl-entry">Rando, Giulia, Silvia Sfameni, Jozefien Geltmeyer, Alessandra Palella, Lorenzo Spadaro, Alberto Riminucci, Karen De Clerck, and Maria Rosaria Plutino. 2026. “Nanofiber PVA-Based Membranes Incorporating Functionalized Spanish Broom Derivatives for Sustainable Water Purification.” <i>ENERGY &#38; ENVIRONMENTAL MATERIALS</i>. doi:10.1002/eem2.70321.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">G. Rando <i>et al.</i>, “Nanofiber PVA-based membranes incorporating functionalized Spanish broom derivatives for sustainable water purification,” <i>ENERGY &#38; ENVIRONMENTAL MATERIALS</i>, 2026.</div>
      </div>
  mla: |2
      <div class="csl-entry">Rando, Giulia, et al. “Nanofiber PVA-Based Membranes Incorporating Functionalized Spanish Broom Derivatives for Sustainable Water Purification.” <i>ENERGY &#38; ENVIRONMENTAL MATERIALS</i>, 2026, doi:10.1002/eem2.70321.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Rando G, Sfameni S, Geltmeyer J, Palella A, Spadaro L, Riminucci A, et al. Nanofiber PVA-based membranes incorporating functionalized Spanish broom derivatives for sustainable water purification. ENERGY &#38; ENVIRONMENTAL MATERIALS. 2026;</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution 4.0 International Public License
  (CC-BY 4.0)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2026-03-24 13:14:07
date_updated: 2026-03-31 05:35:24
doi:
- 10.1002/eem2.70321
external: 0
file:
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  access: open
  content_type: application/pdf
  kind: fullText
  name: Energy   Environ Materials - 2026 - Rando - Nanofiber PVA‐Based Membranes
    Incorporating Functionalized Spanish Broom.pdf
  publication_version: publishedVersion
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handle: http://hdl.handle.net/1854/LU-01KMFZPAJRCBT6C4PPHQC68C4J
issn:
- 2575-0356
jcr: {}
keyword:
- biochar
- cyclodextrins
- electrospun nanofiber
- halloysite
- microcrystalline cellulose
- water filtration
- POLY(VINYL ALCOHOL) PVA
- METHYLENE-BLUE
- MICROCRYSTALLINE CELLULOSE
- REMOVAL
- ADSORPTION
- BIOCHAR
- NANOCRYSTALS
- KINETICS
- DYES
- NANOPARTICLES
language:
- eng
page:
  count: '20'
parent:
  short_title: Energy Environ. Mater.
  title: ENERGY & ENVIRONMENTAL MATERIALS
project:
- _id: 01B03115
  abstract: <p>The research group played a key role in establishing the importance
    of humidity and temperature during electrospinning. As to further exploit this
    expertise and moreover make it available to many innovative endapplications of
    nanofibres investment is needed in novel up-to-date technology.</p>
  end_date: 2018-05-31
  gismo_id: 86318f8f-a91a-4be9-a7d9-5ced53ff78bf
  iweto_id: 01B03115
  start_date: 2015-06-01
  title: Climate-controllable Multi-nozzle Electrospinning Equipment
- _id: 05V01710
  abstract: <p>The production of functionalised nanofibre membranes for water filtration
    will be investigated during this PhD research. Specific attention will be given
    towards pathogen removal, biofouling reduction and membrane flux increase.</p>
  end_date: 2015-08-31
  gismo_id: 31bd61c9-f74f-4eed-a08e-1075e52e9b15
  iweto_id: 05V01710
  start_date: 2010-01-01
  title: Electrospun functionalised nanofibre membranes for water filtration
publication_status: inpress
publication_status_sort: 1
status: public
subject:
- Technology and Engineering
title: Nanofiber PVA-based membranes incorporating functionalized Spanish broom derivatives
  for sustainable water purification
type: journalArticle
wos_id: '001718555100001'
wos_type: Article
year: '2026'
...
---
_id: 01KG1VVEYGZMCCKJN5MG894RH4
abstract:
- Smart textiles that passively regulate thermal comfort provide a sustainable alternative
  to energy-intensive climate control. A promising strategy involves modulating radiative
  heat transfer by dynamically adjusting surface emissivity, thereby facilitating
  reversible switching between heat-retentive and heat-dissipative states. Existing
  systems enable emissivity switching but often need external energy or lack dimensional
  stability when deformed, which limits wearable applications. Here, a fully passive,
  autonomously adaptive dynamic emissivity switch textile (DEST) based on a thermo-
  and humidity-responsive electrospun poly(N-isopropyl acrylamide) (PNIPAM) copolymer
  is introduced. To ensure robust functionality in humid or aqueous environments,
  a crosslinkable allyl-functionalized PNIPAM copolymer is synthesized via post-polymerization
  amidation of a P(NIPAM-co-methyl acrylate) copolymer and processed using a green
  water-ethanol-based electrospinning technique. Thiol-ene crosslinking produced water-stable,
  thermoresponsive nanofibers with a transition near skin temperature. For reversible
  macropore actuation, a dimensionally stable architecture is employed that avoids
  out-of-plane distortion, achieved through a honeycomb-shaped electrospinning collector
  and a tailored mechanical cutting pattern. A silver coating imparts the overall
  infrared (IR) reflectivity, facilitating radiative heat retention when the macropores
  are closed. The resulting DEST exhibits dual responsiveness to temperature and ambient
  humidity, enabling passive switching between emissive and reflective states without
  external energy input, with a approximate to 6 degrees C reversible thermal comfort
  window.
abstract_full:
- lang: eng
  text: Smart textiles that passively regulate thermal comfort provide a sustainable
    alternative to energy-intensive climate control. A promising strategy involves
    modulating radiative heat transfer by dynamically adjusting surface emissivity,
    thereby facilitating reversible switching between heat-retentive and heat-dissipative
    states. Existing systems enable emissivity switching but often need external energy
    or lack dimensional stability when deformed, which limits wearable applications.
    Here, a fully passive, autonomously adaptive dynamic emissivity switch textile
    (DEST) based on a thermo- and humidity-responsive electrospun poly(N-isopropyl
    acrylamide) (PNIPAM) copolymer is introduced. To ensure robust functionality in
    humid or aqueous environments, a crosslinkable allyl-functionalized PNIPAM copolymer
    is synthesized via post-polymerization amidation of a P(NIPAM-co-methyl acrylate)
    copolymer and processed using a green water-ethanol-based electrospinning technique.
    Thiol-ene crosslinking produced water-stable, thermoresponsive nanofibers with
    a transition near skin temperature. For reversible macropore actuation, a dimensionally
    stable architecture is employed that avoids out-of-plane distortion, achieved
    through a honeycomb-shaped electrospinning collector and a tailored mechanical
    cutting pattern. A silver coating imparts the overall infrared (IR) reflectivity,
    facilitating radiative heat retention when the macropores are closed. The resulting
    DEST exhibits dual responsiveness to temperature and ambient humidity, enabling
    passive switching between emissive and reflective states without external energy
    input, with a approximate to 6 degrees C reversible thermal comfort window.
affiliation:
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: e17161
article_type: original
author:
- _id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  first_name: Eva
  last_name: Loccufier
  name: Eva Loccufier
  name_last_first: Loccufier, Eva
  orcid_id: 0000-0001-7045-2721
  ugent_id:
  - '802002671374'
  - '974161061035'
- first_name: Muluneh G.
  last_name: Abebe
  name: Muluneh G. Abebe
  name_last_first: Abebe, Muluneh G.
- _id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
  orcid_id: 0000-0002-1281-2968
  ugent_id:
  - '000070582957'
  - '975000449525'
- _id: 3f7e2f41-f58b-11f0-bc91-89b9e6603970
  biblio_id: 3f7e2f41-f58b-11f0-bc91-89b9e6603970
  first_name: Timo
  last_name: Meireman
  name: Timo Meireman
  name_last_first: Meireman, Timo
  ugent_id:
  - '972580996713'
- first_name: Özlem İpek
  last_name: Kalaoglu Altan
  name: Özlem İpek Kalaoglu Altan
  name_last_first: Kalaoglu Altan, Özlem İpek
- _id: 0FBA8502-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 0FBA8502-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Joachim
  last_name: Van Guyse
  name: Joachim Van Guyse
  name_last_first: Van Guyse, Joachim
  ugent_id:
  - '000080062786'
  - '802001924676'
  - '979806612797'
- first_name: Eric
  last_name: Khousakoun
  name: Eric Khousakoun
  name_last_first: Khousakoun, Eric
- first_name: Hayriye
  last_name: Gidik
  name: Hayriye Gidik
  name_last_first: Gidik, Hayriye
- first_name: Elham
  last_name: Mohsenzadeh
  name: Elham Mohsenzadeh
  name_last_first: Mohsenzadeh, Elham
- first_name: Driss
  last_name: Lahem
  name: Driss Lahem
  name_last_first: Lahem, Driss
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- first_name: Björn
  last_name: Maes
  name: Björn Maes
  name_last_first: Maes, Björn
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01KG1VVEYGZMCCKJN5MG894RH4
cite:
  apa: |2
      <div class="csl-entry">Loccufier, E., Abebe, M. G., Geltmeyer, J., Meireman, T., Kalaoglu Altan, Ö. İ., Van Guyse, J., … De Clerck, K. (2026). Dimensionally stable nanofibrous nonwoven as a flexible dynamic emissivity switching temperature-regulating material. <i>ADVANCED MATERIALS</i>, <i>38</i>(22). https://doi.org/10.1002/adma.202517161</div>
  bof: |2
      <div class="csl-entry">Loccufier, Eva, Muluneh G. Abebe, Jozefien Geltmeyer, Timo Meireman, Özlem İpek Kalaoglu Altan, Joachim Van Guyse, Eric Khousakoun, Hayriye Gidik, Elham Mohsenzadeh, Driss Lahem, Richard Hoogenboom, Björn Maes, and Karen De Clerck. 2026. “Dimensionally Stable Nanofibrous Nonwoven as a Flexible Dynamic Emissivity Switching Temperature-Regulating Material.” <i>ADVANCED MATERIALS</i> 38 (22). doi:10.1002/adma.202517161.</div>
  chicago-author-date: |2
      <div class="csl-entry">Loccufier, Eva, Muluneh G. Abebe, Jozefien Geltmeyer, Timo Meireman, Özlem İpek Kalaoglu Altan, Joachim Van Guyse, Eric Khousakoun, et al. 2026. “Dimensionally Stable Nanofibrous Nonwoven as a Flexible Dynamic Emissivity Switching Temperature-Regulating Material.” <i>ADVANCED MATERIALS</i> 38 (22). https://doi.org/10.1002/adma.202517161.</div>
  fwo: |2
      <div class="csl-entry">Loccufier, Eva, Muluneh G. Abebe, Jozefien Geltmeyer, Timo Meireman, Özlem İpek Kalaoglu Altan, Joachim Van Guyse, Eric Khousakoun, Hayriye Gidik, Elham Mohsenzadeh, Driss Lahem, Richard Hoogenboom, Björn Maes, and Karen De Clerck. 2026. “Dimensionally Stable Nanofibrous Nonwoven as a Flexible Dynamic Emissivity Switching Temperature-Regulating Material.” <i>ADVANCED MATERIALS</i> 38 (22). doi:10.1002/adma.202517161.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Loccufier <i>et al.</i>, “Dimensionally stable nanofibrous nonwoven as a flexible dynamic emissivity switching temperature-regulating material,” <i>ADVANCED MATERIALS</i>, vol. 38, no. 22, 2026.</div>
      </div>
  mla: |2
      <div class="csl-entry">Loccufier, Eva, et al. “Dimensionally Stable Nanofibrous Nonwoven as a Flexible Dynamic Emissivity Switching Temperature-Regulating Material.” <i>ADVANCED MATERIALS</i>, vol. 38, no. 22, 2026, doi:10.1002/adma.202517161.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Loccufier E, Abebe MG, Geltmeyer J, Meireman T, Kalaoglu Altan Öİ, Van Guyse J, et al. Dimensionally stable nanofibrous nonwoven as a flexible dynamic emissivity switching temperature-regulating material. ADVANCED MATERIALS. 2026;38(22).</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
date_created: 2026-01-28 08:34:51
date_updated: 2026-04-22 00:00:14
doi:
- 10.1002/adma.202517161
external: 0
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  url: https://biblio.ugent.be/publication/01KG1VVEYGZMCCKJN5MG894RH4/file/01KHBS1P6DT04DH3CTV4NR7X4A.pdf
- _id: 01KPQMCFECWSC1M9NZQ1GDMBDV
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  url: https://biblio.ugent.be/publication/01KG1VVEYGZMCCKJN5MG894RH4/file/01KPQMCFECWSC1M9NZQ1GDMBDV.pdf
handle: http://hdl.handle.net/1854/LU-01KG1VVEYGZMCCKJN5MG894RH4
issn:
- 0935-9648
- 1521-4095
issue: '22'
jcr: {}
keyword:
- COATINGS
- RESISTANCE
- MEMBRANES
- IMPACT
- electrospinning
- emissivity
- metamaterial design
- shape-memory polymer
- thermoregulation
language:
- eng
page:
  count: '15'
parent:
  short_title: Adv. Mater.
  title: ADVANCED MATERIALS
project:
- _id: 41I03418W
  abstract: "<p> Het ontwerp en de implementatie van dit nieuwe textiel met aanpasbare
    stralingseigenschappen vereist een benadering waarbij de kennis en knowhow in
    gevarieerde domeinen moet worden gecombineerd. Daarom moet een multidisciplinair
    consortium worden gevormd met deelname van meerdere teams aan beide zijden van
    de grens. </p> \n<p> In Wallonië brengen de betrokken partners hun competenties
    betreffende de materialen die de bouwstenen vormen van de eindproducten in: de
    zelfstructurering van de membranen, de vormgeving van de geladen polymeren, synthese
    van polymeren met vormgeheugen om de thermische regeling mogelijk te maken in
    functie van de omgevingsomstandigheden. </p> \n<p> De Vlaamse partner verrijkt
    het consortium door een originele benadering voor de structurering van membranen
    gebaseerd op elektrovezels. Van Franse kant biedt de regio Hauts de France een
    uitgebreid R&amp;D-platform betreffende textielprocessen. Hier worden enkele bijzondere
    onderzoeksstructuren verzameld om de procedés van zelfgeïnduceerde structurering
    (elastische instabiliteit, migratie van de belasting in de bifasige mengsels of
    elektrovezels) met elkaar in overeenstemming te brengen met het spinproces dat
    op industriële schaal wordt gebruikt. </p> \n<p> &#160;In het kader van de grensoverschrijdende
    initiatieven zullen de teams met theoretici deze werkzaamheden richting geven
    door hun voorspellende berekeningen over de stralingsprestaties van de beoogde
    oplossingen. Algemeen hebben de structureringseffecten in een eerder beperkt spectraal
    domein een optisch effect dat overeenstemt met de schaalgrootte van de motieven.
    In PHOTOTEX zullen meerdere benaderingen parallel worden onderzocht en uitgewerkt
    om te komen tot een structurering op vezelschaal naar een structurering op membraanschaal.
    Deze benaderingen zullen uiteindelijk worden gecombineerd om efficiënte oplossingen
    voor te stellen over een breed spectraal infraroodgamma. De realisatie van het
    project zal een stijging van de competenties van de betrokken partners in deze
    domeinen voor gevolg hebben. </p> \n<p> Daarnaast biedt het INTERREG-programma
    de mogelijkheid om de promotie van innovaties naar de regionale bedrijven te financieren
    die deze innovaties zullen kunnen integreren in hun productieproces. Hiervoor
    vormen de regio's Hauts de France en België de ideale kweekvijver met een sterk
    ontwikkelingspotentieel in het domein van het technische textiel (270 bedrijven
    zijn betrokken). De deelname van CETI en UPTEX aan het project zullen dit initiatief
    nog verder vergemakkelijken. </p>"
  end_date: 2022-03-31
  gismo_id: 0a55dea9-a722-46b4-af0e-6863cedb580b
  iweto_id: 41I03418W
  publication_count: 2
  start_date: 2018-04-01
  title: 'Phototex: Ontwikkeling van microgestructureerde TEXtiles voor stimuli-dynamische
    FOTOnische filters'
- _id: F2019/IOF-ConcepTT/049
  abstract: |-
    <p>
    The goal of this ConcepTT is to develop and benchmark a versatile hydrogel platform for emerging biomedical fields via co-amidation, a recently developed proprietary technology at Ghent University.

    </p>
  end_date: 2020-05-31
  gismo_id: 62714198-4fa7-4d11-a709-5e41fe47bb65
  iweto_id: F2019/IOF-ConcepTT/049
  publication_count: 1
  start_date: 2019-04-01
  title: Hydrogels by co-amidation
- _id: 01B03518
  abstract: <p>The requested table top SEM with integrated micromechanical testing,
    combines a large sample chamber to accommodate a sensitive micromechanical set-up
    with a high magnification and easy sampling. This is highly novel and only recently
    available at moderate costs. The in-situ visualization of material performance
    under load at high magnification will boost the academic research of the applicants
    and their collaborators.</p>
  end_date: 2020-05-31
  gismo_id: 320e7057-5b7c-11e9-ac93-1bffacd2a7e2
  iweto_id: 01B03518
  publication_count: 14
  start_date: 2018-06-01
  title: Table top SEM with integrated in-situ micromechanical testing for fiber,
    polymer and composite materials
publication_status: published
publication_status_sort: 2
pubmed_id: '41273143'
status: public
subject:
- Chemistry
title: Dimensionally stable nanofibrous nonwoven as a flexible dynamic emissivity
  switching temperature-regulating material
type: journalArticle
volume: '38'
wos_id: '001619946100001'
wos_type: Article
year: '2026'
...
---
_id: 01KMZG561X37GQ17AX82D5SX3H
abstract:
- 'Melanin pigments are ubiquitous and serve diverse functions, including UV protection
  and colour production. In vertebrates, they are housed in organelles called melanosomes
  that typically vary in shape from spherical to rod-like, but can also adopt unusual
  morphologies, such as flatness or hollowness. For over 50 years, it was thought
  that melanosome hollowness occurred only in birds and always alongside elongation,
  where hollow rods or platelets form organized nanostructures that produce brilliant
  iridescent colours. Here, we present the first description of hollow, spherical
  melanosomes in mammals, from the hairs of the platypus (Monotremata: Ornithorhynchus
  anatinus). By contrast, we found no evidence of hollow melanosomes in the other
  two monotreme genera or in any other mammal so far examined (from a combined dataset
  of 126 species encompassing 103 genera). These spherical, hollow platypus melanosomes
  are unique among vertebrates and, surprisingly, only produce brown coloration, suggesting
  a potential function unrelated to colour or a non-adaptive origin. This finding
  provides exciting new avenues of research into mammal melanogenesis and the evolution
  of melanosomes.'
abstract_full:
- lang: eng
  text: 'Melanin pigments are ubiquitous and serve diverse functions, including UV
    protection and colour production. In vertebrates, they are housed in organelles
    called melanosomes that typically vary in shape from spherical to rod-like, but
    can also adopt unusual morphologies, such as flatness or hollowness. For over
    50 years, it was thought that melanosome hollowness occurred only in birds and
    always alongside elongation, where hollow rods or platelets form organized nanostructures
    that produce brilliant iridescent colours. Here, we present the first description
    of hollow, spherical melanosomes in mammals, from the hairs of the platypus (Monotremata:
    Ornithorhynchus anatinus). By contrast, we found no evidence of hollow melanosomes
    in the other two monotreme genera or in any other mammal so far examined (from
    a combined dataset of 126 species encompassing 103 genera). These spherical, hollow
    platypus melanosomes are unique among vertebrates and, surprisingly, only produce
    brown coloration, suggesting a potential function unrelated to colour or a non-adaptive
    origin. This finding provides exciting new avenues of research into mammal melanogenesis
    and the evolution of melanosomes.'
affiliation:
- name: Department of Biology
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE11
  ugent_id: WE11
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: '20250721'
article_type: original
author:
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  affiliation:
  - path:
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    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: ac052746-e2bf-11ec-bec5-b2837359c7ca
  credit_role:
  - first_author
  first_name: Jessica Leigh
  last_name: Dobson
  name: Jessica Leigh Dobson
  name_last_first: Dobson, Jessica Leigh
  ugent_id:
  - '000211829610'
  - '802004043825'
  - '979522896891'
- _id: c9396720-d8b4-11ed-a3df-cd2431001028
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: c9396720-d8b4-11ed-a3df-cd2431001028
  first_name: Frane
  last_name: Babarović
  name: Frane Babarović
  name_last_first: Babarović, Frane
  ugent_id:
  - '802004343111'
  - '977776651866'
- _id: 206f8610-8dea-11ec-9462-83f6fd8e2d34
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: 206f8610-8dea-11ec-9462-83f6fd8e2d34
  first_name: Wanjie
  last_name: Xie
  name: Wanjie Xie
  name_last_first: Xie, Wanjie
  ugent_id:
  - '802003945411'
- _id: 9FCE3F38-36AE-11E3-8C57-182C11BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: 9FCE3F38-36AE-11E3-8C57-182C11BDE39D
  first_name: Michaël
  last_name: Nicolaï
  name: Michaël Nicolaï
  name_last_first: Nicolaï, Michaël
  orcid_id: 0000-0002-9570-0311
  ugent_id:
  - '802002891545'
  - '974799314567'
- _id: 703A0548-BAC7-11E8-A22B-3DF65607D3EF
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: 703A0548-BAC7-11E8-A22B-3DF65607D3EF
  first_name: Gerben
  last_name: Debruyn
  name: Gerben Debruyn
  name_last_first: Debruyn, Gerben
  ugent_id:
  - '802003560037'
  - '976557705309'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: 25D6054A-6888-11E5-AD70-3415B5D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: 25D6054A-6888-11E5-AD70-3415B5D1D7B1
  first_name: Matthew
  last_name: Shawkey
  name: Matthew Shawkey
  name_last_first: Shawkey, Matthew
  orcid_id: 0000-0002-5131-8209
  ugent_id:
  - '802002093216'
  - '979048085026'
- _id: F89F3E88-A37F-11E5-95B9-D7FEB4D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: F89F3E88-A37F-11E5-95B9-D7FEB4D1D7B1
  credit_role:
  - last_author
  - conceptualization
  - funding_acquisition
  first_name: Liliana
  last_name: D'Alba Altamirano
  name: Liliana D'Alba Altamirano
  name_last_first: D'Alba Altamirano, Liliana
  orcid_id: 0000-0002-2478-3455
  ugent_id:
  - '802002269634'
biblio_id: 01KMZG561X37GQ17AX82D5SX3H
cite:
  apa: |2
      <div class="csl-entry">Dobson, J. L., Babarović, F., Xie, W., Nicolaï, M., Debruyn, G., De Clerck, K., … D’Alba Altamirano, L. (2026). A unique hollow melanosome morphology in the hairs of the platypus Ornithorhynchus anatinus. <i>BIOLOGY LETTERS</i>, <i>22</i>(3). https://doi.org/10.1098/rsbl.2025.0721</div>
  bof: |2
      <div class="csl-entry">Dobson, Jessica Leigh, Frane Babarović, Wanjie Xie, Michaël Nicolaï, Gerben Debruyn, Karen De Clerck, Matthew Shawkey, and Liliana D’Alba Altamirano. 2026. “A Unique Hollow Melanosome Morphology in the Hairs of the Platypus Ornithorhynchus Anatinus.” <i>BIOLOGY LETTERS</i> 22 (3). doi:10.1098/rsbl.2025.0721.</div>
  chicago-author-date: |2
      <div class="csl-entry">Dobson, Jessica Leigh, Frane Babarović, Wanjie Xie, Michaël Nicolaï, Gerben Debruyn, Karen De Clerck, Matthew Shawkey, and Liliana D’Alba Altamirano. 2026. “A Unique Hollow Melanosome Morphology in the Hairs of the Platypus Ornithorhynchus Anatinus.” <i>BIOLOGY LETTERS</i> 22 (3). https://doi.org/10.1098/rsbl.2025.0721.</div>
  fwo: |2
      <div class="csl-entry">Dobson, Jessica Leigh, Frane Babarović, Wanjie Xie, Michaël Nicolaï, Gerben Debruyn, Karen De Clerck, Matthew Shawkey, and Liliana D’Alba Altamirano. 2026. “A Unique Hollow Melanosome Morphology in the Hairs of the Platypus Ornithorhynchus Anatinus.” <i>BIOLOGY LETTERS</i> 22 (3). doi:10.1098/rsbl.2025.0721.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">J. L. Dobson <i>et al.</i>, “A unique hollow melanosome morphology in the hairs of the platypus Ornithorhynchus anatinus,” <i>BIOLOGY LETTERS</i>, vol. 22, no. 3, 2026.</div>
      </div>
  mla: |2
      <div class="csl-entry">Dobson, Jessica Leigh, et al. “A Unique Hollow Melanosome Morphology in the Hairs of the Platypus Ornithorhynchus Anatinus.” <i>BIOLOGY LETTERS</i>, vol. 22, no. 3, 2026, doi:10.1098/rsbl.2025.0721.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Dobson JL, Babarović F, Xie W, Nicolaï M, Debruyn G, De Clerck K, et al. A unique hollow melanosome morphology in the hairs of the platypus Ornithorhynchus anatinus. BIOLOGY LETTERS. 2026;22(3).</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution 4.0 International Public License
  (CC-BY 4.0)
created_by:
  _id: F89F3E88-A37F-11E5-95B9-D7FEB4D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: F89F3E88-A37F-11E5-95B9-D7FEB4D1D7B1
  first_name: Liliana
  last_name: D'Alba Altamirano
  name: Liliana D'Alba Altamirano
  name_last_first: D'Alba Altamirano, Liliana
  orcid_id: 0000-0002-2478-3455
  ugent_id:
  - '802002269634'
date_created: 2026-03-30 13:50:27
date_updated: 2026-04-03 07:58:16
doi:
- 10.1098/rsbl.2025.0721
external: 0
file:
- _id: 01KMZG8CQ34M8W2ZC27TTQWPVM
  access: open
  content_type: application/pdf
  kind: fullText
  name: rsbl.2025.0721.pdf
  publication_version: publishedVersion
  sha256: 8e9817a0701f9bdf9d18274900dbe90ff703fa2432954ce96a4cad2b77e01c5b
  size: '3395965'
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  url: https://biblio.ugent.be/publication/01KMZG561X37GQ17AX82D5SX3H/file/01KMZG8CQ34M8W2ZC27TTQWPVM.pdf
handle: http://hdl.handle.net/1854/LU-01KMZG561X37GQ17AX82D5SX3H
issn:
- 1744-9561
- 1744-957X
issue: '3'
jcr: {}
keyword:
- melanin
- hollow melanosomes
- mammal coloration
- platypus
- hair nanostructure
- EVOLUTION
- MELANIN
- PATTERNS
language:
- eng
page:
  count: '7'
parent:
  short_title: Biol. Lett.
  title: BIOLOGY LETTERS
project:
- _id: 41K07823
  abstract: <p>Defense against predators is critical, and moths have evolved an impressive
    array of anti-predator strategies to defend themselves. Camouflage in particular
    is a cost-effective way to escape a predator’s attention and has been widely studied,
    albeit mainly in the visual domain. Most moths are, however, night-active and
    therefore mainly need to defend themselves against bats hunting by sound, specifically
    through echolocation. To escape detection, moths may consequently have evolved
    scales on body and wings for acoustic camouflage, as these microstructures can
    in some species absorb ultrasound. <br />Here, our central aim is to identify
    form-function relationships of scales and scale assemblages producing acoustic
    camouflage. <br />To achieve our aim, we will first carry out a survey of the
    diversity in acoustic camouflage properties of a large set of species. Focusing
    on a subset of interesting species, we will then measure morphological properties
    of different classes of body and wing scales and model their sound absorptive
    or scattering capacities. Furthermore, we will determine how acoustic properties
    of these scale classes may trade off with other functions, in particular thermal
    regulation. Finally, we will test our form-function hypotheses via biomimicry,
    producing both analogues that directly mimic and extend the variation in scale
    morphology. <br />Our research plan will provide critical insight into the evolution
    and application of moth scales as a specialized antipredator strategy and its
    outcome may enable us to extend acoustic camouflage beyond what is found in nature,thereby
    improve functional performances. This will not only allow us to rigorously test
    our proposed form-function relationships but also potentially enable development
    of new thin sound-dampening materials with Air Force applications.</p>
  end_date: 2026-03-14
  gismo_id: 3d62d395-b5d6-4a31-8a48-1cbb69868e8d
  iweto_id: 41K07823
  publication_count: 2
  start_date: 2023-08-15
  title: Optimising Acoustic Camouflage through Characterisation and Biomimicry of
    Moth Scales
- _id: 3G0E8322
  abstract: <p> Color serves diverse functions in mammalian hairs, including crypsis,
    sexual display, and resistance to wear. Our understanding of the roles that these
    colors have played in mammalian evolution has been hindered by both a limited
    understanding of their mechanistic bases and a complete inability to know the
    colors of mammals known only from fossils. We therefore propose to collect data
    on melanin (and potentially other pigments) in extant mammals and then use them
    to reconstruct colors of fossil mammals from China and thereby test hypotheses
    on melanin-based color evolution. First, we propose to enhance our understanding
    of the form-function relationships in melanin-based colors in extant mammals through
    collection of extensive data on melanosome morphology, chemistry, and hair color.
    We will then use these data to address hypotheses about the relationships between
    morphology and color while laying the groundwork for analysis of fossil data.
    Second, we bring the methods from the first section together to reconstruct colors
    and color patterns of fossil mammals and address hypotheses about the diversification
    of melanosome morphology. This novel research proposal thus flows from proximate
    to ultimate, and has the potential to transform our understanding of a critical
    part of the structure and physiology of organisms, the integument. Our extensive
    preliminary data and proven record of collaborative success show that the project
    is feasible and has a high probability of success. </p>
  end_date: 2024-12-31
  gismo_id: 5b87ab1d-40ba-4a79-8a95-e3bba2da8200
  iweto_id: 3G0E8322
  publication_count: 11
  start_date: 2022-01-01
  title: Mechanisms and evolution of mammalian hair color
- _id: 1219525N
  abstract: <p>Iridescent colours are responsible for some of the most brilliant and
    diverse colours in the animal kingdom. Paradoxically, it remains one of the least
    understood mechanisms responsible for bird colouration. Unlike pigment-based colouration,
    where colour is produced by absorption of light, iridescent colouration is created
    by scattering of light by photonic structures where pigment organelles called
    melanosomes are the building blocks. Up to now, research has focussed on how differences
    in melanosome properties (e.g. dimensions, shapes, etc.) influence colour production.
    However, the genetic basis of iridescent colouration, its function, and the evolution
    of these brilliant colours remain largely unknown. Here, I propose an integrative
    approach linking genotype, phenotype and the evolution of iridescent colours.
    To do so, I first propose to identify in which taxa iridescence evolved and characterize
    their melanosomes. Using this data, I will reconstruct the evolution of iridescence
    and its functional basis (i.e. melanosome morphology) and combine it with behavioural,
    biological and ecological data to identify a potential function. Next, I will
    use state-of-the-art genomic and transcriptomic analyses to identify candidate
    genes responsible for iridescent colouration. Finally, I will reconstruct the
    evolutionary trajectories of genes responsible for iridescent colouration, identifying
    signatures of selection and expression shifts, as well as convergent mutations.</p>
  end_date: 2027-10-31
  gismo_id: c8a6e6db-45ab-11ef-b6a0-49d99dda6551
  iweto_id: 1219525N
  publication_count: 2
  start_date: 2024-11-01
  title: 'Genesis: GENomics and Evolution of Structural Iridescent Signals.'
- _id: 01P10922
  abstract: <p>Textiles for cold-weather activities can be designed by integrating
    photothermal agents into the fabrics to harness solar light for textile heating.
    However, traditional photothermal agents (e.g., graphene) require tedious synthesis
    procedures and the use of harsh chemicals while still producing a low yield, unknown
    toxicity, and primarily black colour. By contrast, melanin has excellent photothermal
    properties, simple and cost-effective synthesis, biocompatibility, and is environmentally
    benign. Melanin also potentially renders textiles with pigmentary colours (black
    or brown) or structural colours (red, blue, yellow etc.), anti-UV, and anti-bacterial
    properties, and photo- and thermal-stability. All of these are essential for outdoor-use
    textiles but remain underexplored. This project proposes to unify melanin's unique
    mixture of properties to develop multifunctional melanised textiles. It will first
    establish structure-function relationships to understand the influences of melanin’s
    chemical compositions, morphologies, and structural colours on its photothermal
    properties. The established relationship will inform the synthesis of high-performance
    melanin and guide the design of melanin-based thermal management textiles with
    varying structural colours. The concepts demonstrated in this project will test
    fundamental hypotheses while producing and guiding future production of bioinspired
    materials based on melanin.</p>
  end_date: 2025-04-30
  gismo_id: bc94ffbb-34cb-11ed-8ff4-732a3d2b012f
  iweto_id: 01P10922
  publication_count: 3
  start_date: 2023-02-14
  title: Structurally coloured melanin-based thermal management textiles
- _id: 41D02319
  abstract: |-
    <p> Optical nanostructures are highly organized composites of materials with varying refractive indices (e.g. keratin, melanin and air) that produce some of the brightest colors found in nature through coherent light scattering. How these tissues organise themselves at the nanometer scale to produce colors is poorly understood, despite its fundamental significance to developmental and evolutionary biology and potential to spark advances in the biomimetic design and "green" commercial manufacture of self-assembling optical materials. </p>
    <p> We thus propose to use both transcriptomic, x-ray scattering and microscopy-based tools of developmental biology to elucidate the mechanisms by which these nanostructures self-assemble in a subsample of birds (Class Aves), a group with incredibly diverse structural colors and mechanisms. Our working hypothesis is that iridescent colors form through depletion-attraction, phase separation and other self-assembly mechanisms. Because most developmental biology is done at larger size scales, testing these hypotheses will require the use and development of methods such as wet cell TEM and in situ laser diffraction analysis to adequately resolve nanometer-scale changes in developing tissue. We will then test these proposed mechanisms using biomimetic approaches that replicate natural conditions as closely as possible (e.g. at room temperature,at biological pH) using natural or semi-natural materials. Use of optical techniques including angle-resolved spectrophotometry and microspectrophotometry will enable us to compare these properties between the natural and synthetic versions. This approach will enable us to not only experimentally test modes of development but also generate and test new materials and/or processes to produce them. </p>
    <p> There are three highly innovative aspects to this proposal. First, it attempts to unlock the developmental pathways producing nanostructured tissues. This is a long-standing question with few answers thus far. Second, it uses biomimicry in novel ways to test developmental hypotheses and pushes the technical boundaries of developmental biology by focusing on nanometer-scale organisation of tissues. Finally, the use of biologically realistic chemistry in our biomimetic approaches is a huge leap forward in this field where most work is done at high temperature or with non-biocompatible materials. This work will therefore significantly advance both our fundamental understanding of these materials and the tools to study them and other nanoscale materials. </p>
  end_date: 2023-05-31
  gismo_id: e4b73a54-e13d-46ea-8057-2cea52799ca2
  iweto_id: 41D02319
  publication_count: 6
  start_date: 2019-06-01
  title: Elucidating the development of biological optical nanostructures
- _id: 41U06724
  abstract: '<p>Iridescent structural colors produce some of the most vibrant colors
    in nature, particularly in birds – such as throats of many hummingbirds. These
    colors are produced by interactions between light and organic structures, such
    that optical effects from the nanoscale arrangement of melanin-containing organelles
    called melanosomes within bird feather barbules produces color variation. Uniquely
    to birds, these melanosomes can take four distinct forms: (i) rods (rod-shaped
    and solid); (ii) hollow rods (rod-shaped and hollow); (iii) platelets (flat and
    solid); and (iv) hollow platelets (flat and hollow). While their importance for
    production of colour variation is well explored, how these unusual melanosomes
    form during feather development in nearly unknown. In the MOlecular and DEvelopmental
    bases of Iridescent Feathers project (MoDeIF project) I propose a developmental
    genetics approach to identify developmental and molecular pathways by which melanosomes
    achieve hollowness and flatness. To explore hollowness, I will test two hypotheses:
    the phaeomelanin-core hypothesis and the air-filled-core hypothesis. To explore
    flatness, I will test the hypothesis that the pre-melanosome structural organizational
    gene Pmel enables the development of flat melanosomes by providing scaffolding
    for pigment deposition. Comparative transcriptomics and concurrent elucidation
    of the physical processes via electron microscopy will greatly improve our understanding
    of the mechanisms of development of these unusual melanosomes. Finally, I will
    focus on whether melanosome shape and nanostructuring are developmentally constrained
    for other colors once a species evolves iridescent coloration. Understanding the
    molecular basis of iridescent feather development is vital for comprehending its
    evolution. Furthermore, insights into melanosomes'' optical packing could inspire
    innovative synthetic color production techniques.</p>'
  end_date: 2027-04-09
  gismo_id: 371fd6e9-0b57-449e-bcbf-4794fea6ba00
  iweto_id: 41U06724
  start_date: 2024-04-10
  title: The molecular and developmental bases of iridescent feathers
publication_status: published
publication_status_sort: 2
status: public
subject:
- Biology and Life Sciences
title: A unique hollow melanosome morphology in the hairs of the platypus Ornithorhynchus
  anatinus
type: journalArticle
volume: '22'
wos_id: '001716645900001'
wos_type: Article
year: '2026'
...
---
_id: 01KAK0QTRC86HRW240M0K5SZN2
abstract:
- Efficient alcohol/water separation is crucial for industrial processes such as process
  intensification in CO2 hydrogenation but remains challenging due to the strong intermolecular
  interactions and miscibility between both components. Here, we show that temperature-resistant,
  stable hydrophobic organosilica nanofiber membranes combined with salting-out enable
  gravity-driven liquid-liquid separation without external pressure or energy input.
  We develop a fast pre-functionalization method by sol-gel synthesis of tetraethoxy
  silane (TEOS) with dimethyldiethoxy silane (DMDES), and compare the performance
  with a TEOS-based membrane post-functionalized with chloro-octyldimethylsilane (Cl-OdMS).
  Both membranes show long-term hydrophobic stability (water contact angle >110° for
  over three months when submerged in water) and robustness against high temperature
  and alkaline conditions. The membranes act as phase separators that reproduce equilibrium
  binodal compositions, rather than selective barriers. By exploiting the salting-out
  effect, the immiscibility window of alcohol/water mixtures was expanded, enabling
  separation even for fully miscible ethanol/water systems, with K2CO3 the most effective
  salt. Approximately 97% of added salt remained in the water-rich phase. Separation
  is also successful for ternary water/ethanol/alcohol mixtures, allowing construction
  of binodal solubility curves. This work demonstrates an energy-efficient, chemically
  and thermally robust membrane-based approach for alcohol/water separation in chemical
  processes.
abstract_full:
- lang: eng
  text: Efficient alcohol/water separation is crucial for industrial processes such
    as process intensification in CO2 hydrogenation but remains challenging due to
    the strong intermolecular interactions and miscibility between both components.
    Here, we show that temperature-resistant, stable hydrophobic organosilica nanofiber
    membranes combined with salting-out enable gravity-driven liquid-liquid separation
    without external pressure or energy input. We develop a fast pre-functionalization
    method by sol-gel synthesis of tetraethoxy silane (TEOS) with dimethyldiethoxy
    silane (DMDES), and compare the performance with a TEOS-based membrane post-functionalized
    with chloro-octyldimethylsilane (Cl-OdMS). Both membranes show long-term hydrophobic
    stability (water contact angle >110° for over three months when submerged in water)
    and robustness against high temperature and alkaline conditions. The membranes
    act as phase separators that reproduce equilibrium binodal compositions, rather
    than selective barriers. By exploiting the salting-out effect, the immiscibility
    window of alcohol/water mixtures was expanded, enabling separation even for fully
    miscible ethanol/water systems, with K2CO3 the most effective salt. Approximately
    97% of added salt remained in the water-rich phase. Separation is also successful
    for ternary water/ethanol/alcohol mixtures, allowing construction of binodal solubility
    curves. This work demonstrates an energy-efficient, chemically and thermally robust
    membrane-based approach for alcohol/water separation in chemical processes.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE06
  ugent_id: WE06
article_number: '136093'
article_type: original
author:
- _id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  first_name: Sofie
  last_name: Verschraegen
  name: Sofie Verschraegen
  name_last_first: Verschraegen, Sofie
  orcid_id: 0000-0002-6164-3662
  ugent_id:
  - '000150868746'
  - '802003501534'
  - '919029486586'
- _id: 9DBE7436-0234-11E4-8A54-7BF54B2F559A
  biblio_id: 9DBE7436-0234-11E4-8A54-7BF54B2F559A
  first_name: Bianca
  last_name: Swanckaert
  name: Bianca Swanckaert
  name_last_first: Swanckaert, Bianca
  orcid_id: 0000-0001-6036-6512
  ugent_id:
  - '978889457589'
- _id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  first_name: Eva
  last_name: Loccufier
  name: Eva Loccufier
  name_last_first: Loccufier, Eva
  orcid_id: 0000-0001-7045-2721
  ugent_id:
  - '802002671374'
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
biblio_id: 01KAK0QTRC86HRW240M0K5SZN2
cite:
  apa: |2
      <div class="csl-entry">Verschraegen, S., Swanckaert, B., Loccufier, E., D’hooge, D., De Buysser, K., &#38; De Clerck, K. (2026). Long-term hydrophobic organosilica nanofiber membranes for gravity-driven alcohol/water separation. <i>SEPARATION AND PURIFICATION TECHNOLOGY</i>, <i>382</i>(5). https://doi.org/10.1016/j.seppur.2025.136093</div>
  bof: |2
      <div class="csl-entry">Verschraegen, Sofie, Bianca Swanckaert, Eva Loccufier, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2026. “Long-Term Hydrophobic Organosilica Nanofiber Membranes for Gravity-Driven Alcohol/Water Separation.” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i> 382 (5). doi:10.1016/j.seppur.2025.136093.</div>
  chicago-author-date: |2
      <div class="csl-entry">Verschraegen, Sofie, Bianca Swanckaert, Eva Loccufier, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2026. “Long-Term Hydrophobic Organosilica Nanofiber Membranes for Gravity-Driven Alcohol/Water Separation.” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i> 382 (5). https://doi.org/10.1016/j.seppur.2025.136093.</div>
  fwo: |2
      <div class="csl-entry">Verschraegen, Sofie, Bianca Swanckaert, Eva Loccufier, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2026. “Long-Term Hydrophobic Organosilica Nanofiber Membranes for Gravity-Driven Alcohol/Water Separation.” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i> 382 (5). doi:10.1016/j.seppur.2025.136093.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. Verschraegen, B. Swanckaert, E. Loccufier, D. D’hooge, K. De Buysser, and K. De Clerck, “Long-term hydrophobic organosilica nanofiber membranes for gravity-driven alcohol/water separation,” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i>, vol. 382, no. 5, 2026.</div>
      </div>
  mla: |2
      <div class="csl-entry">Verschraegen, Sofie, et al. “Long-Term Hydrophobic Organosilica Nanofiber Membranes for Gravity-Driven Alcohol/Water Separation.” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i>, vol. 382, no. 5, 2026, doi:10.1016/j.seppur.2025.136093.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Verschraegen S, Swanckaert B, Loccufier E, D’hooge D, De Buysser K, De Clerck K. Long-term hydrophobic organosilica nanofiber membranes for gravity-driven alcohol/water separation. SEPARATION AND PURIFICATION TECHNOLOGY. 2026;382(5).</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  first_name: Sofie
  last_name: Verschraegen
  name: Sofie Verschraegen
  name_last_first: Verschraegen, Sofie
  orcid_id: 0000-0002-6164-3662
  ugent_id:
  - '000150868746'
  - '802003501534'
  - '919029486586'
date_created: 2025-11-21 10:53:10
date_updated: 2026-05-18 00:00:37
doi:
- 10.1016/j.seppur.2025.136093
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-01KAK0QTRC86HRW240M0K5SZN2
issn:
- 1383-5866
- 1873-3794
issue: '5'
jcr: {}
keyword:
- Organosilica nanofiber membranes
- Functionalized membranes
- (ternary) alcohol/water separation
- Wettability
- Salting-out
- SALTING-OUT
- WATER
- OIL/WATER
- SILICA
- WETTABILITY
- POLYMERIZATION
- EXTRACTION
- MECHANISM
- SOLVENTS
- RECOVERY
language:
- eng
page:
  count: '12'
parent:
  short_title: Sep. Purif. Technol.
  title: SEPARATION AND PURIFICATION TECHNOLOGY
project:
- _id: 3F006621
  abstract: '<p>Today the high potential of (organo)silica branched/crosslinked/network
    polymers in nanofibrous membranes cannot be exploited to the fullest due to the
    lack of a straightforward way to produce them. To solve this, a fundamental understanding
    of how sol-gel synthesis and electrospinning are related via rheology is required.
    The main bottleneck remains that the viscosity evolution, as the network develops
    during synthesis, cannot be fully interpreted at the molecular level. For this,
    it is essential to fundamentally link the different steps in the electrospinning
    production process: from network formation of (organo)silica precursor molecules
    over electrospinning toward nanofibrous membranes. Both experimental (e.g. 29Si
    NMR, rheology) and kinetic modelling techniques will be used for this purpose.
    The morphology of the resulting nanofibrous membranes will be determined and linked
    back to the chemical building blocks, sol-gel synthesis and the electrospinning
    process as to enable the tuning of these (organo)silica nanofibers for advanced
    applications. The fiber diameter and the wettability will be studied as key model
    properties at respectively the fiber and material membrane level. This generic
    methodology can in the future be expanded toward other material properties to
    allow for molecular scale-driven material property tuning.</p>'
  end_date: 2025-10-31
  gismo_id: 190fbf11-2a82-11ec-95aa-05ef7abe0c3c
  iweto_id: 3F006621
  publication_count: 14
  start_date: 2021-11-01
  title: 'Connecting (organo)silica sol-gel synthesis and membrane electrospinning:
    pushing toward molecular scale-driven property tuning'
- _id: 3S039119
  abstract: <p>Challenges in clean water availability have risen over the years, and
    especially third world countries are in great need of low-cost water purification
    techniques, such as separation membranes. By implementing functionalised organosilica
    nanofibrous membranes, an affinity-based separation mechanism at low energy-cost
    can be developed that withstands harsh environmental conditions. These membranes
    should have a desirable hydrophobicity to tune the affinity of different solvents
    towards the membrane. Additionally, their mechanical endurance should be optimised
    as to increase their life time. These goals are systematically addressed in this
    project. Organosilica nanofibrous membranes will be produced via electrospinning
    starting from a variety of bis-silane precursors. By implementing different functionalities,
    the wettability towards different solvents can be altered in view of separation
    applications. A thorough study on the behaviour of sol-gel systems will be conducted
    to create a comprehensive understanding of the influence of functionalities on
    the electrospinning process. Additionally, a mechanical study will reveal the
    link between the 3D-structure of the organosilica network and the mechanical behaviour.
    With this fundamental knowledge, it will be possible to develop affinity-based
    separation membranes for water purification. This application will even be extended
    towards solvent separation in view of process intensification of liquid-phase
    CO2 conversion to alcohols.</p>
  end_date: 2023-10-31
  gismo_id: 9cfd7b5f-f96d-11e9-b85e-e128f57a36f9
  iweto_id: 3S039119
  publication_count: 9
  start_date: 2019-11-01
  title: Functionalised nanofibrous organosilica membranes for advanced affinity-based
    separation applications
- _id: 01J10219
  abstract: <p>Membrane technology can offer an answer for today’s research challenges
    to solve environmental problems. These membranes are in need of an improved resistance
    to harsh environments. This will further broaden applications such as water recycling
    but will also open up very novel applications in a process intensification of
    CO2 conversion units. Within this project nanofibers are developed for these applications.</p>
  end_date: 2024-07-30
  gismo_id: 1e0c3a2d-9d90-11e9-83f9-d13d95d2d7be
  iweto_id: 01J10219
  publication_count: 14
  start_date: 2019-10-01
  title: Nanofibrous membranes for today’s environmental research questions.
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
- Chemistry
title: Long-term hydrophobic organosilica nanofiber membranes for gravity-driven alcohol/water
  separation
type: journalArticle
volume: '382'
wos_id: '001622964500001'
wos_type: Article
year: '2026'
...
---
_id: 01HZEYNB2HRCKDYC2R1AR7QSJP
abstract:
- This study investigates the synthesis and performance of polymeric membranes for
  their potential application in supported liquid membranes (SLM), using the extraction
  of  -methylbenzylamine (MBA), 1-methyl-3-phenylpropylamine (MPPA), and isopropyl
  amine (IPA) as a reference. Three synthesis methods — phase inversion, electrospinning,
  and stretching — were evaluated, each impacting the membrane morphology differently.
  The polymer selection influenced porosity, wettability, and surface free energy
  with PTFE exhibiting the highest hydrophobicity. Membrane wettability was assessed
  using the ionic liquid [P6,6,6,14][N(Tf)2] as the selective extractant, revealing
  that larger pore sizes enhanced the impregnation efficiency, while reducing the
  final SLM stability. Solute fluxes and selectivity were quantified; electrospun
  membranes exhibited higher fluxes, ranging from 1.0 to 1.2 g/(m2h) for MBA, 2.1
  to 2.2 g/(m2h) for MPPA, and 0.8 to 1.2 g/(m2h) for IPA, along with a higher selectivity
  compared to phase inversion membranes, with fluxes ranging from 0.2 to 0.3 g/(m2h)
  for MBA, 0.2 g/(m2h) for MPPA, and 0.3 to 0.4 g/(m2h) for IPA. Stretched membranes
  demonstrated a comparable selectivity (MBA/IPA = 2.2, MPPA/IPA = 3.9), but reduced
  fluxes with increasing pore size, decreasing from 2.7 to 0.5 g/(m2h) for MBA, 4.9
  to 0.9 g/(m2h) for MPPA, and 1.2 to 0.3 g/(m2h) for IPA, as the nominal pore size
  increased from 50 to 450 nm. This phenomenon likely resulted from the improved impregnation
  efficiency, coupled with a lower porosity and larger thickness in the membranes
  with larger pores. Overall, the membrane morphology significantly influenced the
  SLM performance and stability, with homogeneous, porous membranes possessing smaller
  pore sizes and high hydrophobicity exhibiting optimal characteristics. These findings
  underscore the critical role of membrane structure and properties in SLM applications.
abstract_full:
- lang: eng
  text: This study investigates the synthesis and performance of polymeric membranes
    for their potential application in supported liquid membranes (SLM), using the
    extraction of  -methylbenzylamine (MBA), 1-methyl-3-phenylpropylamine (MPPA),
    and isopropyl amine (IPA) as a reference. Three synthesis methods — phase inversion,
    electrospinning, and stretching — were evaluated, each impacting the membrane
    morphology differently. The polymer selection influenced porosity, wettability,
    and surface free energy with PTFE exhibiting the highest hydrophobicity. Membrane
    wettability was assessed using the ionic liquid [P6,6,6,14][N(Tf)2] as the selective
    extractant, revealing that larger pore sizes enhanced the impregnation efficiency,
    while reducing the final SLM stability. Solute fluxes and selectivity were quantified;
    electrospun membranes exhibited higher fluxes, ranging from 1.0 to 1.2 g/(m2h)
    for MBA, 2.1 to 2.2 g/(m2h) for MPPA, and 0.8 to 1.2 g/(m2h) for IPA, along with
    a higher selectivity compared to phase inversion membranes, with fluxes ranging
    from 0.2 to 0.3 g/(m2h) for MBA, 0.2 g/(m2h) for MPPA, and 0.3 to 0.4 g/(m2h)
    for IPA. Stretched membranes demonstrated a comparable selectivity (MBA/IPA =
    2.2, MPPA/IPA = 3.9), but reduced fluxes with increasing pore size, decreasing
    from 2.7 to 0.5 g/(m2h) for MBA, 4.9 to 0.9 g/(m2h) for MPPA, and 1.2 to 0.3 g/(m2h)
    for IPA, as the nominal pore size increased from 50 to 450 nm. This phenomenon
    likely resulted from the improved impregnation efficiency, coupled with a lower
    porosity and larger thickness in the membranes with larger pores. Overall, the
    membrane morphology significantly influenced the SLM performance and stability,
    with homogeneous, porous membranes possessing smaller pore sizes and high hydrophobicity
    exhibiting optimal characteristics. These findings underscore the critical role
    of membrane structure and properties in SLM applications.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE06
  ugent_id: WE06
article_number: '128192'
article_type: original
author:
- credit_role:
  - writing_review_editing
  - writing_original_draft
  - methodology
  - investigation
  - conceptualization
  - software
  first_name: Gilles
  last_name: Van Eygen
  name: Gilles Van Eygen
  name_last_first: Van Eygen, Gilles
- credit_role:
  - investigation
  first_name: Stijn
  last_name: Keuppens
  name: Stijn Keuppens
  name_last_first: Keuppens, Stijn
- credit_role:
  - investigation
  first_name: Xander
  last_name: De Breuck
  name: Xander De Breuck
  name_last_first: De Breuck, Xander
- _id: 9DBE7436-0234-11E4-8A54-7BF54B2F559A
  biblio_id: 9DBE7436-0234-11E4-8A54-7BF54B2F559A
  credit_role:
  - investigation
  first_name: Bianca
  last_name: Swanckaert
  name: Bianca Swanckaert
  name_last_first: Swanckaert, Bianca
  orcid_id: 0000-0001-6036-6512
  ugent_id:
  - '978889457589'
- credit_role:
  - investigation
  - writing_review_editing
  first_name: Patrik
  last_name: Boura
  name: Patrik Boura
  name_last_first: Boura, Patrik
- _id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  credit_role:
  - writing_review_editing
  - investigation
  first_name: Eva
  last_name: Loccufier
  name: Eva Loccufier
  name_last_first: Loccufier, Eva
  orcid_id: 0000-0001-7045-2721
  ugent_id:
  - '802002671374'
  - '974161061035'
- credit_role:
  - writing_review_editing
  - supervision
  - resources
  first_name: Juraj
  last_name: Kosek
  name: Juraj Kosek
  name_last_first: Kosek, Juraj
- credit_role:
  - investigation
  first_name: Deepika
  last_name: Ramasamy
  name: Deepika Ramasamy
  name_last_first: Ramasamy, Deepika
- _id: AE5B406E-C937-11E5-A139-C70DB5D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: AE5B406E-C937-11E5-A139-C70DB5D1D7B1
  credit_role:
  - supervision
  - resources
  - writing_review_editing
  first_name: Fady
  last_name: Nahra
  name: Fady Nahra
  name_last_first: Nahra, Fady
  orcid_id: 0000-0002-1115-9725
  ugent_id:
  - '802002268220'
- credit_role:
  - supervision
  - funding_acquisition
  first_name: Anita
  last_name: Buekenhoudt
  name: Anita Buekenhoudt
  name_last_first: Buekenhoudt, Anita
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - supervision
  - resources
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- credit_role:
  - writing_review_editing
  - supervision
  - resources
  - funding_acquisition
  first_name: Bart
  last_name: Van der Bruggen
  name: Bart Van der Bruggen
  name_last_first: Van der Bruggen, Bart
- credit_role:
  - supervision
  - resources
  - funding_acquisition
  first_name: Patricia
  last_name: Luis
  name: Patricia Luis
  name_last_first: Luis, Patricia
biblio_id: 01HZEYNB2HRCKDYC2R1AR7QSJP
cite:
  apa: |2
      <div class="csl-entry">Van Eygen, G., Keuppens, S., De Breuck, X., Swanckaert, B., Boura, P., Loccufier, E., … Luis, P. (2025). Comparison of distinctive polymeric membrane structures as support materials for membrane extraction of chiral amines. <i>SEPARATION AND PURIFICATION TECHNOLOGY</i>, <i>352</i>. https://doi.org/10.1016/j.seppur.2024.128192</div>
  bof: |2
      <div class="csl-entry">Van Eygen, Gilles, Stijn Keuppens, Xander De Breuck, Bianca Swanckaert, Patrik Boura, Eva Loccufier, Juraj Kosek, Deepika Ramasamy, Fady Nahra, Anita Buekenhoudt, Karen De Clerck, Bart Van der Bruggen, and Patricia Luis. 2025. “Comparison of Distinctive Polymeric Membrane Structures as Support Materials for Membrane Extraction of Chiral Amines.” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i> 352. doi:10.1016/j.seppur.2024.128192.</div>
  chicago-author-date: |2
      <div class="csl-entry">Van Eygen, Gilles, Stijn Keuppens, Xander De Breuck, Bianca Swanckaert, Patrik Boura, Eva Loccufier, Juraj Kosek, et al. 2025. “Comparison of Distinctive Polymeric Membrane Structures as Support Materials for Membrane Extraction of Chiral Amines.” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i> 352. https://doi.org/10.1016/j.seppur.2024.128192.</div>
  fwo: |2
      <div class="csl-entry">Van Eygen, Gilles, Stijn Keuppens, Xander De Breuck, Bianca Swanckaert, Patrik Boura, Eva Loccufier, Juraj Kosek, Deepika Ramasamy, Fady Nahra, Anita Buekenhoudt, Karen De Clerck, Bart Van der Bruggen, and Patricia Luis. 2025. “Comparison of Distinctive Polymeric Membrane Structures as Support Materials for Membrane Extraction of Chiral Amines.” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i> 352. doi:10.1016/j.seppur.2024.128192.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">G. Van Eygen <i>et al.</i>, “Comparison of distinctive polymeric membrane structures as support materials for membrane extraction of chiral amines,” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i>, vol. 352, 2025.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van Eygen, Gilles, et al. “Comparison of Distinctive Polymeric Membrane Structures as Support Materials for Membrane Extraction of Chiral Amines.” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i>, vol. 352, 2025, doi:10.1016/j.seppur.2024.128192.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van Eygen G, Keuppens S, De Breuck X, Swanckaert B, Boura P, Loccufier E, et al. Comparison of distinctive polymeric membrane structures as support materials for membrane extraction of chiral amines. SEPARATION AND PURIFICATION TECHNOLOGY. 2025;352.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2024-06-03 11:44:55
date_updated: 2026-03-31 14:48:31
doi:
- 10.1016/j.seppur.2024.128192
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-01HZEYNB2HRCKDYC2R1AR7QSJP
issn:
- 1383-5866
- 1873-3794
jcr:
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 2
  prev_impact_factor: 9
keyword:
- Polymers
- Supported liquid membranes
- Extraction technology
- IONIC LIQUID
- SEPARATION
- STABILITY
language:
- eng
page:
  count: '10'
parent:
  short_title: Sep. Purif. Technol.
  title: SEPARATION AND PURIFICATION TECHNOLOGY
project:
- _id: 3S039119
  abstract: <p>Challenges in clean water availability have risen over the years, and
    especially third world countries are in great need of low-cost water purification
    techniques, such as separation membranes. By implementing functionalised organosilica
    nanofibrous membranes, an affinity-based separation mechanism at low energy-cost
    can be developed that withstands harsh environmental conditions. These membranes
    should have a desirable hydrophobicity to tune the affinity of different solvents
    towards the membrane. Additionally, their mechanical endurance should be optimised
    as to increase their life time. These goals are systematically addressed in this
    project. Organosilica nanofibrous membranes will be produced via electrospinning
    starting from a variety of bis-silane precursors. By implementing different functionalities,
    the wettability towards different solvents can be altered in view of separation
    applications. A thorough study on the behaviour of sol-gel systems will be conducted
    to create a comprehensive understanding of the influence of functionalities on
    the electrospinning process. Additionally, a mechanical study will reveal the
    link between the 3D-structure of the organosilica network and the mechanical behaviour.
    With this fundamental knowledge, it will be possible to develop affinity-based
    separation membranes for water purification. This application will even be extended
    towards solvent separation in view of process intensification of liquid-phase
    CO2 conversion to alcohols.</p>
  end_date: 2023-10-31
  gismo_id: 9cfd7b5f-f96d-11e9-b85e-e128f57a36f9
  iweto_id: 3S039119
  start_date: 2019-11-01
  title: Functionalised nanofibrous organosilica membranes for advanced affinity-based
    separation applications
- _id: 01J10219
  abstract: <p>Membrane technology can offer an answer for today’s research challenges
    to solve environmental problems. These membranes are in need of an improved resistance
    to harsh environments. This will further broaden applications such as water recycling
    but will also open up very novel applications in a process intensification of
    CO2 conversion units. Within this project nanofibers are developed for these applications.</p>
  end_date: 2024-07-30
  gismo_id: 1e0c3a2d-9d90-11e9-83f9-d13d95d2d7be
  iweto_id: 01J10219
  start_date: 2019-10-01
  title: Nanofibrous membranes for today’s environmental research questions.
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Comparison of distinctive polymeric membrane structures as support materials
  for membrane extraction of chiral amines
type: journalArticle
volume: '352'
wos_id: '001263491200001'
wos_type: Article
year: '2025'
...
---
_id: 01JSXVZBNGDM4GJ5XANRJESTKK
abstract:
- Membrane-based approaches are an exciting alternative for the filtration and remediation
  of polluted water and for the removal of different traditional and emerging contaminants.
  This work focuses on the design and development of sustainable bio-polymeric blends
  based on polyamide 11 (PA11) employed to produce different Electrospun Nanofiber
  Membranes (ENMs) through the electrospinning process. Moreover, different eco-friendly
  functional nanofillers based on hybrid halloysite (HNT) derivatives were employed
  as dopant agents of the starting polymeric blends in a ratio of 1, 2 and 5 wt% of
  PA11 to achieve better mechanical and thermal features as well as retention performances
  of specific wastewater organic contaminants. Chemical-physical and structural-morphological
  characterizations, concerning all the nanofillers and the obtained sustainable membranes,
  are reported as well as the removal and separation studies of two selected anionic
  and cationic dyes, methyl orange (MO) and methylene blue (MB) in a dead-end filtration
  apparatus. The newly developed composite ENMs, compared to pristine PA11 ones, show
  good tensile mechanical and thermal properties, and increased MO and MB removal
  rates, modulated by the different HNT derivatives employed. Dead-end filtration
  experiments were performed using 1 and 3 layers of each type of ENM revealing, for
  1-layer PA11 ENMs containing HNT modified with octadecylphosphonic acid and (3-aminopropyl)triethoxysilane
  (PA11@C18_HNT_NH2) and dimethyloctadecyl[3(trimethoxysilyl)propyl]ammoniumchloride
  (PA11@HNT_N + C18), a selectivity towards the removal of the cationic dye MB with
  a separation efficiency of 69.8 and 73.3 % respectively. Hence, 3-layer PA11 ENMs
  doped with HNT functionalized with (3-aminopropyl)triethoxysilane (PA11@HNT_NH2)
  display the highest retention rate for MO and MB respectively of 100 and 89.8 %.
abstract_full:
- lang: eng
  text: Membrane-based approaches are an exciting alternative for the filtration and
    remediation of polluted water and for the removal of different traditional and
    emerging contaminants. This work focuses on the design and development of sustainable
    bio-polymeric blends based on polyamide 11 (PA11) employed to produce different
    Electrospun Nanofiber Membranes (ENMs) through the electrospinning process. Moreover,
    different eco-friendly functional nanofillers based on hybrid halloysite (HNT)
    derivatives were employed as dopant agents of the starting polymeric blends in
    a ratio of 1, 2 and 5 wt% of PA11 to achieve better mechanical and thermal features
    as well as retention performances of specific wastewater organic contaminants.
    Chemical-physical and structural-morphological characterizations, concerning all
    the nanofillers and the obtained sustainable membranes, are reported as well as
    the removal and separation studies of two selected anionic and cationic dyes,
    methyl orange (MO) and methylene blue (MB) in a dead-end filtration apparatus.
    The newly developed composite ENMs, compared to pristine PA11 ones, show good
    tensile mechanical and thermal properties, and increased MO and MB removal rates,
    modulated by the different HNT derivatives employed. Dead-end filtration experiments
    were performed using 1 and 3 layers of each type of ENM revealing, for 1-layer
    PA11 ENMs containing HNT modified with octadecylphosphonic acid and (3-aminopropyl)triethoxysilane
    (PA11@C18_HNT_NH2) and dimethyloctadecyl[3(trimethoxysilyl)propyl]ammoniumchloride
    (PA11@HNT_N + C18), a selectivity towards the removal of the cationic dye MB with
    a separation efficiency of 69.8 and 73.3 % respectively. Hence, 3-layer PA11 ENMs
    doped with HNT functionalized with (3-aminopropyl)triethoxysilane (PA11@HNT_NH2)
    display the highest retention rate for MO and MB respectively of 100 and 89.8
    %.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: e01402
article_type: original
author:
- _id: 120a2cc1-4668-11ec-92d2-8b93ed952e80
  biblio_id: 120a2cc1-4668-11ec-92d2-8b93ed952e80
  credit_role:
  - writing_review_editing
  - writing_original_draft
  - investigation
  - formal_analysis
  - data_curation
  - conceptualization
  first_name: Giulia
  last_name: Rando
  name: Giulia Rando
  name_last_first: Rando, Giulia
  ugent_id:
  - '979609074826'
- _id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  credit_role:
  - writing_original_draft
  - supervision
  - methodology
  - investigation
  - data_curation
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
  orcid_id: 0000-0002-1281-2968
  ugent_id:
  - '000070582957'
  - '975000449525'
- credit_role:
  - writing_original_draft
  - software
  - formal_analysis
  - data_curation
  first_name: Silvia
  last_name: Sfameni
  name: Silvia Sfameni
  name_last_first: Sfameni, Silvia
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - writing_review_editing
  - writing_original_draft
  - supervision
  - methodology
  - funding_acquisition
  - formal_analysis
  - conceptualization
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- credit_role:
  - writing_review_editing
  - writing_original_draft
  - supervision
  - resources
  - investigation
  - funding_acquisition
  - data_curation
  - conceptualization
  first_name: Maria Rosaria
  last_name: Plutino
  name: Maria Rosaria Plutino
  name_last_first: Plutino, Maria Rosaria
biblio_id: 01JSXVZBNGDM4GJ5XANRJESTKK
cite:
  apa: |2
      <div class="csl-entry">Rando, G., Geltmeyer, J., Sfameni, S., De Clerck, K., &#38; Plutino, M. R. (2025). Sustainable functional electrospun polyamide 11/halloysite derivatives nanofibrous membranes for water treatment applications. <i>SUSTAINABLE MATERIALS AND TECHNOLOGIES</i>, <i>44</i>. https://doi.org/10.1016/j.susmat.2025.e01402</div>
  bof: |2
      <div class="csl-entry">Rando, Giulia, Jozefien Geltmeyer, Silvia Sfameni, Karen De Clerck, and Maria Rosaria Plutino. 2025. “Sustainable Functional Electrospun Polyamide 11/Halloysite Derivatives Nanofibrous Membranes for Water Treatment Applications.” <i>SUSTAINABLE MATERIALS AND TECHNOLOGIES</i> 44. doi:10.1016/j.susmat.2025.e01402.</div>
  chicago-author-date: |2
      <div class="csl-entry">Rando, Giulia, Jozefien Geltmeyer, Silvia Sfameni, Karen De Clerck, and Maria Rosaria Plutino. 2025. “Sustainable Functional Electrospun Polyamide 11/Halloysite Derivatives Nanofibrous Membranes for Water Treatment Applications.” <i>SUSTAINABLE MATERIALS AND TECHNOLOGIES</i> 44. https://doi.org/10.1016/j.susmat.2025.e01402.</div>
  fwo: |2
      <div class="csl-entry">Rando, Giulia, Jozefien Geltmeyer, Silvia Sfameni, Karen De Clerck, and Maria Rosaria Plutino. 2025. “Sustainable Functional Electrospun Polyamide 11/Halloysite Derivatives Nanofibrous Membranes for Water Treatment Applications.” <i>SUSTAINABLE MATERIALS AND TECHNOLOGIES</i> 44. doi:10.1016/j.susmat.2025.e01402.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">G. Rando, J. Geltmeyer, S. Sfameni, K. De Clerck, and M. R. Plutino, “Sustainable functional electrospun polyamide 11/halloysite derivatives nanofibrous membranes for water treatment applications,” <i>SUSTAINABLE MATERIALS AND TECHNOLOGIES</i>, vol. 44, 2025.</div>
      </div>
  mla: |2
      <div class="csl-entry">Rando, Giulia, et al. “Sustainable Functional Electrospun Polyamide 11/Halloysite Derivatives Nanofibrous Membranes for Water Treatment Applications.” <i>SUSTAINABLE MATERIALS AND TECHNOLOGIES</i>, vol. 44, 2025, doi:10.1016/j.susmat.2025.e01402.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Rando G, Geltmeyer J, Sfameni S, De Clerck K, Plutino MR. Sustainable functional electrospun polyamide 11/halloysite derivatives nanofibrous membranes for water treatment applications. SUSTAINABLE MATERIALS AND TECHNOLOGIES. 2025;44.</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution-NonCommercial-NoDerivatives 4.0
  International Public License (CC BY-NC-ND 4.0)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2025-04-28 09:34:41
date_updated: 2026-03-31 05:15:46
doi:
- 10.1016/j.susmat.2025.e01402
external: 0
file:
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  access: open
  content_type: application/pdf
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  name: 1-s2.0-S2214993725001708-main.pdf
  publication_version: publishedVersion
  sha256: 60356f25421567706d1dad43041a4861541859f076e523d2462278e303ce311a
  size: '18077334'
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handle: http://hdl.handle.net/1854/LU-01JSXVZBNGDM4GJ5XANRJESTKK
issn:
- 2214-9937
jcr:
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 3
  prev_impact_factor: 9.2
keyword:
- Hybrid nanomaterials
- Halloysite
- Sol-gel
- polyamide11
- Electrospinning
- Filtration membranes
- Environmental remediation
- HALLOYSITE NANOTUBES
- NANOCOMPOSITES
- PROGRESS
- REMOVAL
- SOLVENT
language:
- eng
page:
  count: '14'
parent:
  short_title: Sustain. Mater. Technol.
  title: SUSTAINABLE MATERIALS AND TECHNOLOGIES
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Sustainable functional electrospun polyamide 11/halloysite derivatives nanofibrous
  membranes for water treatment applications
type: journalArticle
volume: '44'
wos_id: '001482153600001'
wos_type: Article
year: '2025'
...
---
_id: 01JYJZAKHK63JM8GSSH1WYG37F
abstract:
- The growing environmental impact of textile waste, fueled by the rapid rise in global
  fiber production, underscores the urgent need for sustainable end-of-life solutions.
  This review explores cutting-edge pathways for textile waste management, spotlighting
  innovations that reduce reliance on incineration and landfilling while driving material
  circularity. It highlights advancements in collection, sorting, and pretreatment
  technologies, as well as both established and emerging recycling methods. Smart
  collection systems utilizing tags and sensors show great promise in streamlining
  logistics by automating pick-up routes and transactions. For sorting, automated
  technologies like near-infrared and hyperspectral imaging lead the way in accurate
  and scalable fiber separation. Automated disassembly techniques are effective at
  removing problematic elements, though other pretreatments, such as color and finish
  removal, still need to be customized for specific waste streams. Mechanical fiber
  recycling is ideal for textiles with strong mechanical properties but has limitations,
  particularly with blended fabrics, and cannot be repeated endlessly. Polymer recycling—through
  melting or dissolving waste polymers—produces higher-quality recycled materials
  but comes with high energy and solvent demands. Chemical recycling, especially solvolysis
  and pyrolysis, excels at breaking down synthetic polymers like polyester, with the
  potential to yield virgin-quality monomers. Meanwhile, biological methods, though
  still in their infancy, show promise for recycling natural fibers like cotton and
  wool. When other methods are not viable, gasification can be used to convert waste
  into synthesis gas. The review concludes that the future of sustainable textile
  recycling hinges on integrating automated sorting systems and advancing solvent-based
  and chemical recycling technologies. These innovations, supported by eco-design
  principles, progressive policies, and industry collaboration, are essential to building
  a resilient, circular textile economy.
abstract_full:
- lang: eng
  text: The growing environmental impact of textile waste, fueled by the rapid rise
    in global fiber production, underscores the urgent need for sustainable end-of-life
    solutions. This review explores cutting-edge pathways for textile waste management,
    spotlighting innovations that reduce reliance on incineration and landfilling
    while driving material circularity. It highlights advancements in collection,
    sorting, and pretreatment technologies, as well as both established and emerging
    recycling methods. Smart collection systems utilizing tags and sensors show great
    promise in streamlining logistics by automating pick-up routes and transactions.
    For sorting, automated technologies like near-infrared and hyperspectral imaging
    lead the way in accurate and scalable fiber separation. Automated disassembly
    techniques are effective at removing problematic elements, though other pretreatments,
    such as color and finish removal, still need to be customized for specific waste
    streams. Mechanical fiber recycling is ideal for textiles with strong mechanical
    properties but has limitations, particularly with blended fabrics, and cannot
    be repeated endlessly. Polymer recycling—through melting or dissolving waste polymers—produces
    higher-quality recycled materials but comes with high energy and solvent demands.
    Chemical recycling, especially solvolysis and pyrolysis, excels at breaking down
    synthetic polymers like polyester, with the potential to yield virgin-quality
    monomers. Meanwhile, biological methods, though still in their infancy, show promise
    for recycling natural fibers like cotton and wool. When other methods are not
    viable, gasification can be used to convert waste into synthesis gas. The review
    concludes that the future of sustainable textile recycling hinges on integrating
    automated sorting systems and advancing solvent-based and chemical recycling technologies.
    These innovations, supported by eco-design principles, progressive policies, and
    industry collaboration, are essential to building a resilient, circular textile
    economy.
additional_info: The first two authors contributed equally to this work.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
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  ugent_id: TW11
- name: Department of Green Chemistry and Technology
  path:
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  - ugent_id: LA
  - ugent_id: LA24
  ugent_id: LA24
article_number: '628'
article_type: review
author:
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  - conceptualization
  - visualization
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  - first_author
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  last_name: Seifali Abbasabadi
  name: Mehrdad Seifali Abbasabadi
  name_last_first: Seifali Abbasabadi, Mehrdad
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  credit_role:
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  first_name: Brecht
  last_name: Tomme
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  first_name: Bahman
  last_name: Goshayeshi
  name: Bahman Goshayeshi
  name_last_first: Goshayeshi, Bahman
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  first_name: Oleksii
  last_name: Mynko
  name: Oleksii Mynko
  name_last_first: Mynko, Oleksii
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  name_last_first: Wang, Yihan
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  ugent_id:
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  affiliation:
  - name: Ghent University
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  name: Rohit Kumar Rohit Kumar
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    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - writing_review_editing
  - supervision
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
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  affiliation:
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    - ugent_id: LA
    - ugent_id: LA24
    ugent_id: LA24
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  - supervision
  first_name: Steven
  last_name: De Meester
  name: Steven De Meester
  name_last_first: De Meester, Steven
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  ugent_id:
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  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
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  biblio_id: F65C46C2-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
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  - funding_acquisition
  first_name: Kevin
  last_name: Van Geem
  name: Kevin Van Geem
  name_last_first: Van Geem, Kevin
  orcid_id: 0000-0003-4191-4960
  ugent_id:
  - '801001595406'
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biblio_id: 01JYJZAKHK63JM8GSSH1WYG37F
cite:
  apa: |2
      <div class="csl-entry">Seifali Abbasabadi, M., Tomme, B., Goshayeshi, B., Mynko, O., Wang, Y., Roy, S., … Van Geem, K. (2025). Advancing textile waste recycling : challenges and opportunities across polymer and non-polymer fiber types. <i>POLYMERS</i>, <i>17</i>(5). https://doi.org/10.3390/polym17050628</div>
  bof: |2
      <div class="csl-entry">Seifali Abbasabadi, Mehrdad, Brecht Tomme, Bahman Goshayeshi, Oleksii Mynko, Yihan Wang, Sangram Roy, Rohit Kumar Rohit Kumar, Bhargav Baruah, Karen De Clerck, Steven De Meester, Dagmar D’hooge, and Kevin Van Geem. 2025. “Advancing Textile Waste Recycling : Challenges and Opportunities across Polymer and Non-Polymer Fiber Types.” <i>POLYMERS</i> 17 (5). doi:10.3390/polym17050628.</div>
  chicago-author-date: |2
      <div class="csl-entry">Seifali Abbasabadi, Mehrdad, Brecht Tomme, Bahman Goshayeshi, Oleksii Mynko, Yihan Wang, Sangram Roy, Rohit Kumar Rohit Kumar, et al. 2025. “Advancing Textile Waste Recycling : Challenges and Opportunities across Polymer and Non-Polymer Fiber Types.” <i>POLYMERS</i> 17 (5). https://doi.org/10.3390/polym17050628.</div>
  fwo: |2
      <div class="csl-entry">Seifali Abbasabadi, Mehrdad, Brecht Tomme, Bahman Goshayeshi, Oleksii Mynko, Yihan Wang, Sangram Roy, Rohit Kumar Rohit Kumar, Bhargav Baruah, Karen De Clerck, Steven De Meester, Dagmar D’hooge, and Kevin Van Geem. 2025. “Advancing Textile Waste Recycling : Challenges and Opportunities across Polymer and Non-Polymer Fiber Types.” <i>POLYMERS</i> 17 (5). doi:10.3390/polym17050628.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">M. Seifali Abbasabadi <i>et al.</i>, “Advancing textile waste recycling : challenges and opportunities across polymer and non-polymer fiber types,” <i>POLYMERS</i>, vol. 17, no. 5, 2025.</div>
      </div>
  mla: |2
      <div class="csl-entry">Seifali Abbasabadi, Mehrdad, et al. “Advancing Textile Waste Recycling : Challenges and Opportunities across Polymer and Non-Polymer Fiber Types.” <i>POLYMERS</i>, vol. 17, no. 5, 2025, doi:10.3390/polym17050628.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Seifali Abbasabadi M, Tomme B, Goshayeshi B, Mynko O, Wang Y, Roy S, et al. Advancing textile waste recycling : challenges and opportunities across polymer and non-polymer fiber types. POLYMERS. 2025;17(5).</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution 4.0 International Public License
  (CC-BY 4.0)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
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  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2025-06-25 07:20:06
date_updated: 2026-03-31 14:54:59
doi:
- 10.3390/polym17050628
external: 0
file:
- _id: 01JYK02ADH0PVZKE6MWM9A0212
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  content_type: application/pdf
  kind: fullText
  name: polymers-17-00628-v2.pdf
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  url: https://biblio.ugent.be/publication/01JYJZAKHK63JM8GSSH1WYG37F/file/01JYK02ADH0PVZKE6MWM9A0212.pdf
handle: http://hdl.handle.net/1854/LU-01JYJZAKHK63JM8GSSH1WYG37F
issn:
- 2073-4360
issue: '5'
jcr:
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 4
  prev_impact_factor: 4.9
keyword:
- textile waste
- end of life
- sustainability
- reuse
- mechanical recycling
- chemical recycling
language:
- eng
page:
  count: '94'
parent:
  short_title: Polymers
  title: POLYMERS
project:
- _id: 179K07820
  abstract: <p> General purpose The objective is to better reuse carbon skeletons
    from the main condensation polymers. Therefore The project is looking for catalysts
    and reaction procedures that allow a larger fraction of the waste polymer mass
    upgrade to high-quality polymers and monomers. The strategy includes lower temperature
    catalyzed depolymerization, efficient, model-assisted repolymerization, one-pot
    polymer-to-polymer conversion, and conversion of less valuable monomers to high
    value components. </p>
  end_date: 2021-11-30
  gismo_id: 0b43d7a4-035a-4c97-b5ba-1ddd11ab3ad9
  iweto_id: 179K07820
  start_date: 2020-03-01
  title: CoRe²_Circular Use of Step-Growth End-of-Life Polymers for Monomer/Oligomer
    Recover and Re-use
- _id: 41G04520
  abstract: |-
    <p>
    Bringing plastics into the circular economy is one of the great challenges of our age. C-PlaNeT lays the foundations

    </p>

    <p>
    for a New Plastics Economy through a European Joint Doctoral Programme that trains 15 Early Stage Researchers

    </p>

    <p>
    (ESRs) to become part of a new generation of scientists, engineers and policy makers for the EU’ circular economy,

    </p>

    <p>
    which must include the design, processing, use and reuse of plastics. C-PlaNeT focuses on excellent international

    </p>

    <p>
    research, training in complementary skills, including entrepreneurship and the translation of research into policy,

    </p>

    <p>
    international as well as cross-organisational and intersectoral mobility, active involvement of the non-academic sector,

    </p>

    <p>
    dissemination, awareness raising and public outreach.

    </p>

    <p>
    As a truly multidisciplinary proposal, C-PlaNeT is well-balanced across different scientific fields of equal importance:

    </p>

    <p>
    chemistry, social sciences, engineering, political sciences, product design and business model development. Moreover,

    </p>

    <p>
    through the 20 non-university partners, C-PlaNeT is anchored across all sectors relevant for the Circularity of Plastics.

    </p>

    <p>
    All ESRs will advance the current state-of-the-art of their respective fields, which together cover the whole life cycle

    </p>

    <p>
    of plastics. To this end, they are supervised by at least 2 promotors from 2 universities and a partner outside university,

    </p>

    <p>
    with whom they will also take an internship. They will participate with each other in a cooperative learning scheme

    </p>

    <p>
    to take their research beyond the borders of their own respective disciplines and gain a holistic appreciation for the

    </p>

    <p>
    complex issue of Plastics in a Circular Economy.

    </p>

    <p>
    As such C-Planet has the ambition to be a game changer for the circularity of plastics as a material resource, based on

    </p>

    <p>
    and excellent and multidisciplinary research and training programme.

    </p>
  end_date: 2024-05-31
  eu_framework_programme: H2020
  eu_id: '859885'
  gismo_id: 527cc4f4-c741-4619-835d-363131255a24
  iweto_id: 41G04520
  start_date: 2020-01-01
  title: Circular Plastics Network for Training
- _id: 41A06719
  abstract: |-
    <p>
    New manufacturing techniques such as 3D printing have the potential to drastically transform the chemical industry.

    </p>

    <p>
    Novel, complex, integrated reactor designs can now be created, that will allow to unlock alternative chemical

    </p>

    <p>
    routes, such as for methane activation. Driven by process intensification and the power of high performance

    </p>

    <p>
    computing, this project will enhance heat and mass transfer in advanced chemical reactors by multiscale modelling

    </p>

    <p>
    and experimentation. OPTIMA aims to:

    </p>

    <p>
    (1) develop in silico novel 3D reactor technologies and concepts with significantly improved selectivity and heat

    </p>

    <p>
    transfer by the use of additive manufacturing;

    </p>

    <p>
    (2) generate new fundamental understanding of kinetics, heat transfer and mass transfer by using advanced measuring

    </p>

    <p>
    techniques for processes of both current and future importance;

    </p>

    <p>
    (3) demonstrate the practical applicability of an open-source multiscale large eddy simulation (LES) platform in

    </p>

    <p>
    combination with finite rate chemistry for turbulent reacting flows;

    </p>

    <p>
    (4) transform the chemical industry by valorising methane and converting it to a platform molecule through oxidative

    </p>

    <p>
    coupling of methane.

    </p>

    <p>
    OPTIMA will focus on two olefin production processes of industrial and social importance in Europe, the exothermal

    </p>

    <p>
    oxidative coupling of methane and the endothermic steam cracking, demonstrating the universality of the proposed

    </p>

    <p>
    new paradigm. Starting from fundamental experiments and kinetic modelling (WP1), detailed chemistry will

    </p>

    <p>
    be implemented in an open-source LES multiscale modelling framework (WP2) generating in silico novel 3D

    </p>

    <p>
    reactor technologies with significantly improved selectivity (WP3). The power of the approach will be ultimately

    </p>

    <p>
    demonstrated in a novel, 3D integrated reactor, in which the studied exothermic and endothermic processes are

    </p>

    <p>
    cleverly combined (WP4).

    </p>

    <p>
    OPTIMA will pave the way for designing the 3D reactors of tomorrow and promote the new techniques and tools that

    </p>

    <p>
    will be driving innovation in the next decades.

    </p>
  end_date: 2025-02-28
  eu_acronym: OPTIMA
  eu_call_id: H20.ERC.2019.0002.01
  eu_framework_programme: H2020
  eu_id: '818607'
  gismo_id: 308c7104-dad2-4160-a94f-2724d65f23ca
  iweto_id: 41A06719
  publication_count: 5
  start_date: 2019-09-01
  title: 'OPTIMA: PrOcess intensification and innovation in olefin ProducTion by Multiscale
    Analysis and design'
- _id: G065324N
  abstract: <p>Mixed plastic waste streams are heavily dominated by polyolefin materials
    and their recycling is a challenge having a large societal significance. Chemical
    recycling via pyrolysis and steam cracking is seen as a promising technology for
    the recycling of mixed polyolefins into new plastics with identical properties
    to virgin grades. However, current technologies are not yet efficient from the
    economic and environmental standpoint. In fact, with only less than 1% of the
    collected plastic being recycled back to monomers, there is a big demand for more
    efficient monomer recovery developments. A lot of challenges are related to uncertainties
    and variations in compositions of waste streams. The current proposal introduces
    a transformational CIRCA concept of a controlled chemical recycling of polyolefin
    waste streams. In its core, the concept is based on the predictive modelling approach,
    where the composition of incoming polyolefinic waste streams is accurately characterized
    and used to steer the chemical recycling process via built-in structure-property
    relationships. To monitor complex polyolefin waste streams, the concept adopts
    an advanced analytical toolset that enables their unambiguous compositional characterization
    in a fast manner. The obtained data is then used to fine-tune the process parameters
    for boosting its efficiency. The CIRCA will be implemented at large-scale recycling
    lines.</p>
  end_date: 2027-12-31
  gismo_id: 56969f61-abeb-11ee-93fb-0db84e20c636
  iweto_id: G065324N
  start_date: 2024-01-01
  title: '(CIRCA) Circular plastics: advanced chemical recycling of plastic waste'
- _id: 41D08919
  abstract: <p>Extremely durable and able to repel water, acrylic fabrics are widely
    used for outdoor awnings and patio furniture. However, to have the required characteristics
    for such use, it is needed to apply chemical finishes to the acrylic fabrics,
    so as to increase the hydro and oil-repellency, the resistance to UV and to fire.
    This makes the management of acrylic textile waste tricky. The EU-funded REACT
    project is developing an eco-friendly process to remove the hazardous chemicals
    from the finishing substances (fluorocarbons, melamine and acrylic resins, anti-mould
    agents), which affect the secondary raw material purity and their management.
    A mechanical recycling process will follow to obtain second life fibre and fabrics.
    The goal is to reduce the amount of landfill and incineration of acrylic textiles
    by at least 30 % for the outdoor sector (awnings and furnishing).</p>
  end_date: 2022-09-30
  eu_acronym: REACT
  eu_framework_programme: H2020
  eu_id: '820869'
  gismo_id: 33e5665e-f621-4479-9128-81922feec34f
  iweto_id: 41D08919
  start_date: 2019-06-01
  title: REcycling of waste ACrylic Textiles
publication_status: published
publication_status_sort: 2
pubmed_id: '40076120'
status: public
subject:
- Technology and Engineering
title: 'Advancing textile waste recycling : challenges and opportunities across polymer
  and non-polymer fiber types'
type: journalArticle
volume: '17'
wos_id: '001442309100001'
wos_type: Review
year: '2025'
...
---
_id: 01JZHTVH49RDCBMYYFDVQK615P
abstract:
- 'Biomimicry, the replication of natural structures, is an emerging strategy in materials
  engineering for developing advanced functional materials. Reptile eggshells serve
  as compelling models for tunable bioinspired material design due to their diversity
  in forms and functions. This study presents a modular approach to designing keratin-based
  composites with customizable vapor sorption behavior. Inspired by reptile eggshells,
  four key biomimetic components were reconstructed: (1) electrospun keratin membranes
  resembling the fibrous shell membrane, (2) an egg protein matrix replicating the
  proteinaceous eggshell matrix, (3) calcium carbonate (CaCO3) particles introducing
  mineralization, and (4) a paraffin coating representing the lipid-rich cuticle layer.
  The modular accuracy of these biomimetic models was validated by comparison with
  representative reptile eggshells through Scanning Electron Microscopy analysis and
  Fourier-Transform Infrared Spectroscopy. Dynamic Vapor Sorption (DVS) analysis confirmed
  that varying the CaCO3 content allows precise control over the absorption profiles,
  ranging from low to high sorption values. Additionally, integrating the organic
  matrix and lipid coating enabled fine-tuning of the sorption properties. The resulting
  biomimetic composites exhibited sorption characteristics comparable to those of
  natural eggshells, including Caiman crocodilus (low absorption) and Pantherophis
  guttatus (high absorption), demonstrating the effectiveness of the modular design
  strategy. These findings establish a foundation for engineering advanced biocompatible
  materials with adaptable sorption behavior, offering potential applications in moisture-regulating
  wound dressings, tissue engineering scaffolds, sustainable packaging, and filtration
  systems.'
abstract_full:
- lang: eng
  text: 'Biomimicry, the replication of natural structures, is an emerging strategy
    in materials engineering for developing advanced functional materials. Reptile
    eggshells serve as compelling models for tunable bioinspired material design due
    to their diversity in forms and functions. This study presents a modular approach
    to designing keratin-based composites with customizable vapor sorption behavior.
    Inspired by reptile eggshells, four key biomimetic components were reconstructed:
    (1) electrospun keratin membranes resembling the fibrous shell membrane, (2) an
    egg protein matrix replicating the proteinaceous eggshell matrix, (3) calcium
    carbonate (CaCO3) particles introducing mineralization, and (4) a paraffin coating
    representing the lipid-rich cuticle layer. The modular accuracy of these biomimetic
    models was validated by comparison with representative reptile eggshells through
    Scanning Electron Microscopy analysis and Fourier-Transform Infrared Spectroscopy.
    Dynamic Vapor Sorption (DVS) analysis confirmed that varying the CaCO3 content
    allows precise control over the absorption profiles, ranging from low to high
    sorption values. Additionally, integrating the organic matrix and lipid coating
    enabled fine-tuning of the sorption properties. The resulting biomimetic composites
    exhibited sorption characteristics comparable to those of natural eggshells, including
    Caiman crocodilus (low absorption) and Pantherophis guttatus (high absorption),
    demonstrating the effectiveness of the modular design strategy. These findings
    establish a foundation for engineering advanced biocompatible materials with adaptable
    sorption behavior, offering potential applications in moisture-regulating wound
    dressings, tissue engineering scaffolds, sustainable packaging, and filtration
    systems.'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Biology
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE11
  ugent_id: WE11
article_number: '102032'
article_type: original
author:
- _id: C275B788-9F44-11E8-B51F-A22C5707D3EF
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: C275B788-9F44-11E8-B51F-A22C5707D3EF
  first_name: Yana
  last_name: Maudens
  name: Yana Maudens
  name_last_first: Maudens, Yana
  orcid_id: 0009-0004-7574-7309
  ugent_id:
  - '000180496485'
  - '802004439404'
  - '973207706538'
- _id: 703A0548-BAC7-11E8-A22B-3DF65607D3EF
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: 703A0548-BAC7-11E8-A22B-3DF65607D3EF
  first_name: Gerben
  last_name: Debruyn
  name: Gerben Debruyn
  name_last_first: Debruyn, Gerben
  ugent_id:
  - '802003560037'
  - '976557705309'
- _id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  first_name: Eva
  last_name: Loccufier
  name: Eva Loccufier
  name_last_first: Loccufier, Eva
  orcid_id: 0000-0001-7045-2721
  ugent_id:
  - '802002671374'
  - '974161061035'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- first_name: Erica
  last_name: Savino
  name: Erica Savino
  name_last_first: Savino, Erica
- first_name: Cinzia
  last_name: Tonetti
  name: Cinzia Tonetti
  name_last_first: Tonetti, Cinzia
- first_name: Claudia
  last_name: Vineis
  name: Claudia Vineis
  name_last_first: Vineis, Claudia
- first_name: Alessio
  last_name: Varesano
  name: Alessio Varesano
  name_last_first: Varesano, Alessio
- _id: 25D6054A-6888-11E5-AD70-3415B5D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: 25D6054A-6888-11E5-AD70-3415B5D1D7B1
  first_name: Matthew
  last_name: Shawkey
  name: Matthew Shawkey
  name_last_first: Shawkey, Matthew
  orcid_id: 0000-0002-5131-8209
  ugent_id:
  - '802002093216'
  - '979048085026'
- _id: F89F3E88-A37F-11E5-95B9-D7FEB4D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: F89F3E88-A37F-11E5-95B9-D7FEB4D1D7B1
  first_name: Liliana
  last_name: D'Alba Altamirano
  name: Liliana D'Alba Altamirano
  name_last_first: D'Alba Altamirano, Liliana
  orcid_id: 0000-0002-2478-3455
  ugent_id:
  - '802002269634'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01JZHTVH49RDCBMYYFDVQK615P
cite:
  apa: |2
      <div class="csl-entry">Maudens, Y., Debruyn, G., Loccufier, E., Daelemans, L., Savino, E., Tonetti, C., … De Clerck, K. (2025). Modular design of biomimetic electrospun keratin composites for tunable gaseous sorption inspired by reptile eggshells. <i>MATERIALS TODAY BIO</i>, <i>33</i>. https://doi.org/10.1016/j.mtbio.2025.102032</div>
  bof: |2
      <div class="csl-entry">Maudens, Yana, Gerben Debruyn, Eva Loccufier, Lode Daelemans, Erica Savino, Cinzia Tonetti, Claudia Vineis, Alessio Varesano, Matthew Shawkey, Liliana D’Alba Altamirano, and Karen De Clerck. 2025. “Modular Design of Biomimetic Electrospun Keratin Composites for Tunable Gaseous Sorption Inspired by Reptile Eggshells.” <i>MATERIALS TODAY BIO</i> 33. doi:10.1016/j.mtbio.2025.102032.</div>
  chicago-author-date: |2
      <div class="csl-entry">Maudens, Yana, Gerben Debruyn, Eva Loccufier, Lode Daelemans, Erica Savino, Cinzia Tonetti, Claudia Vineis, et al. 2025. “Modular Design of Biomimetic Electrospun Keratin Composites for Tunable Gaseous Sorption Inspired by Reptile Eggshells.” <i>MATERIALS TODAY BIO</i> 33. https://doi.org/10.1016/j.mtbio.2025.102032.</div>
  fwo: |2
      <div class="csl-entry">Maudens, Yana, Gerben Debruyn, Eva Loccufier, Lode Daelemans, Erica Savino, Cinzia Tonetti, Claudia Vineis, Alessio Varesano, Matthew Shawkey, Liliana D’Alba Altamirano, and Karen De Clerck. 2025. “Modular Design of Biomimetic Electrospun Keratin Composites for Tunable Gaseous Sorption Inspired by Reptile Eggshells.” <i>MATERIALS TODAY BIO</i> 33. doi:10.1016/j.mtbio.2025.102032.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Y. Maudens <i>et al.</i>, “Modular design of biomimetic electrospun keratin composites for tunable gaseous sorption inspired by reptile eggshells,” <i>MATERIALS TODAY BIO</i>, vol. 33, 2025.</div>
      </div>
  mla: |2
      <div class="csl-entry">Maudens, Yana, et al. “Modular Design of Biomimetic Electrospun Keratin Composites for Tunable Gaseous Sorption Inspired by Reptile Eggshells.” <i>MATERIALS TODAY BIO</i>, vol. 33, 2025, doi:10.1016/j.mtbio.2025.102032.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Maudens Y, Debruyn G, Loccufier E, Daelemans L, Savino E, Tonetti C, et al. Modular design of biomimetic electrospun keratin composites for tunable gaseous sorption inspired by reptile eggshells. MATERIALS TODAY BIO. 2025;33.</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution-NonCommercial-NoDerivatives 4.0
  International Public License (CC BY-NC-ND 4.0)
created_by:
  _id: C275B788-9F44-11E8-B51F-A22C5707D3EF
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: C275B788-9F44-11E8-B51F-A22C5707D3EF
  first_name: Yana
  last_name: Maudens
  name: Yana Maudens
  name_last_first: Maudens, Yana
  orcid_id: 0009-0004-7574-7309
  ugent_id:
  - '000180496485'
  - '802004439404'
  - '973207706538'
date_created: 2025-07-07 06:58:25
date_updated: 2026-03-31 05:21:05
doi:
- 10.1016/j.mtbio.2025.102032
external: 0
file:
- _id: 01JZQ516RSFPM4E5GAASQRRBZ3
  access: open
  content_type: application/pdf
  kind: fullText
  name: 1-s2.0-S2590006425006027-main.pdf
  publication_version: publishedVersion
  sha256: e949d951a05de4fc0a4bb62255ca08a8098ff31b341c82c92207164e2bb6d57d
  size: '9989893'
  thumbnail_url: https://biblio.ugent.be/publication/01JZHTVH49RDCBMYYFDVQK615P/file/01JZQ516RSFPM4E5GAASQRRBZ3/thumbnail.png
  url: https://biblio.ugent.be/publication/01JZHTVH49RDCBMYYFDVQK615P/file/01JZQ516RSFPM4E5GAASQRRBZ3.pdf
handle: http://hdl.handle.net/1854/LU-01JZHTVH49RDCBMYYFDVQK615P
issn:
- 2590-0064
jcr:
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 2
  prev_impact_factor: 10.2
keyword:
- Modular biomimetic composites
- Protein nanofibers
- Keratin electrospinning
- Tunable vapor sorption
- Reptile eggshells
- CALCIUM-CARBONATE
- WATER RELATIONS
- CUTICLE
- NANOFIBERS
- ARAGONITE
- EXCHANGE
- LIZARD
- VAPOR
language:
- eng
page:
  count: '13'
parent:
  short_title: Mater. Today Bio
  title: MATERIALS TODAY BIO
project:
- _id: 3G0A7921
  abstract: "<p>Eggs are multifunctional structures that enabled vertebrates to colonize
    the land millions of years ago. Eggshell morphology is at the core of animal survival
    and has evolved into a massive diversity of forms and functions in modern reptiles.
    These functions may also serve as models for new antimicrobial and/or breathable
    membranes.\nBut we still lack critical data on the chemical composition, ultrastructure,
    and material properties of reptile eggs. These data are critically needed to understand
    their effects on vertebrate evolution and successfully use them as biomimetic
    models.\nIn this project we will use a highly integrative approach including functional
    morphology, evolution, biomechanics and biomimicry to test hypotheses on form-function
    relationships in eggs and their potential as models for biomimetic materials.
    Specifically, we will address the following questions: How does egg morphology
    affect biomechanical function? Do nesting ecology and life history drive the evolution
    of eggshell design? Do bioinspired replicas retain functional properties comparable
    to natural eggs? \nTo answer these questions we will use state-of-the-art μCT,
    electron microscopy, chemical and biomechanical tests, phylogenetic comparative
    methods and materials science techniques to experimentally test form-function
    relationships and produce novel, bioinspired multifunctional membranes.</p>"
  end_date: 2024-12-31
  gismo_id: ae3ff06f-4420-11eb-809b-01df1efbbcb6
  iweto_id: 3G0A7921
  publication_count: 1
  start_date: 2021-01-01
  title: 'Biomechanics and Biomimicry of Reptile Eggs: Insights into their functions
    and evolution'
- _id: 41J09123
  abstract: Bioinspired Materials for Selective Radiation Reflectance
  end_date: 2026-08-14
  gismo_id: 42855afe-0cd7-424d-872c-55a9c8b61592
  iweto_id: 41J09123
  publication_count: 1
  start_date: 2023-08-15
  title: Bioinspired Materials for Selective Radiation Reflectance
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Modular design of biomimetic electrospun keratin composites for tunable gaseous
  sorption inspired by reptile eggshells
type: journalArticle
volume: '33'
wos_id: '001529217800001'
wos_type: Article
year: '2025'
...
---
_id: 01JS1WW95JRMG3FSS5TMFF9R9T
abstract:
- One of the important microscale properties that determine a composite's performance
  is the fiber-matrix interface strength. Research has primarily been focused on the
  interface strength under shear loading, while studies on interface strength under
  normal loading are limited. Nevertheless, normal loading is very relevant, for example
  to understand failure mechanisms in 90 degrees plies. Therefore, in this work, we
  modified a single fiber composite test to a cruciform shape with a thinned middle
  section to test glass fiber matrix interface properties under normal loading conditions.
  These specimens allow testing the interface up till the point of failure of the
  polymer matrix, thus improving over regular cruciform specimens. An in-house designed
  tensile stage enabled the use of in -situ transmission and reflection microscopy.
  Insights into the debonding process were obtained over a large fiber length (+/-
  10 mm) via the use of a step-and-shoot method. The methodology is applied to a glass
  fiber with an epoxy compatible and incompatible sizing. It shows that the debonding
  process can be divided into two partially independent debonding processes (initiation
  and propagation). The obtained data enabled the construction of a descriptive function
  for the total debond length of a fiber-matrix interface. This showed that besides
  a high interface strength, a homogeneous application of the sizing should be aimed
  to decrease the chances of initiating debonding at lower stresses.
abstract_full:
- lang: eng
  text: One of the important microscale properties that determine a composite's performance
    is the fiber-matrix interface strength. Research has primarily been focused on
    the interface strength under shear loading, while studies on interface strength
    under normal loading are limited. Nevertheless, normal loading is very relevant,
    for example to understand failure mechanisms in 90 degrees plies. Therefore, in
    this work, we modified a single fiber composite test to a cruciform shape with
    a thinned middle section to test glass fiber matrix interface properties under
    normal loading conditions. These specimens allow testing the interface up till
    the point of failure of the polymer matrix, thus improving over regular cruciform
    specimens. An in-house designed tensile stage enabled the use of in -situ transmission
    and reflection microscopy. Insights into the debonding process were obtained over
    a large fiber length (+/- 10 mm) via the use of a step-and-shoot method. The methodology
    is applied to a glass fiber with an epoxy compatible and incompatible sizing.
    It shows that the debonding process can be divided into two partially independent
    debonding processes (initiation and propagation). The obtained data enabled the
    construction of a descriptive function for the total debond length of a fiber-matrix
    interface. This showed that besides a high interface strength, a homogeneous application
    of the sizing should be aimed to decrease the chances of initiating debonding
    at lower stresses.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: '111089'
article_type: original
author:
- _id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  biblio_id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  first_name: Olivier
  last_name: Verschatse
  name: Olivier Verschatse
  name_last_first: Verschatse, Olivier
  orcid_id: 0000-0001-7732-6007
  ugent_id:
  - '974442908376'
- _id: d271f551-a15a-11eb-8c83-edeb9b1cd9d7
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: d271f551-a15a-11eb-8c83-edeb9b1cd9d7
  first_name: Mehdi
  last_name: Nikforooz
  name: Mehdi Nikforooz
  name_last_first: Nikforooz, Mehdi
  ugent_id:
  - '976302603389'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
biblio_id: 01JS1WW95JRMG3FSS5TMFF9R9T
cite:
  apa: |2
      <div class="csl-entry">Verschatse, O., Nikforooz, M., De Clerck, K., Van Paepegem, W., &#38; Daelemans, L. (2025). Analysis of fiber-matrix interface debonding under normal loading using in-situ microscopy and cruciform-shaped single glass fiber composite specimens. <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, <i>263</i>. https://doi.org/10.1016/j.compscitech.2025.111089</div>
  bof: |2
      <div class="csl-entry">Verschatse, Olivier, Mehdi Nikforooz, Karen De Clerck, Wim Van Paepegem, and Lode Daelemans. 2025. “Analysis of Fiber-Matrix Interface Debonding under Normal Loading Using in-Situ Microscopy and Cruciform-Shaped Single Glass Fiber Composite Specimens.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i> 263. doi:10.1016/j.compscitech.2025.111089.</div>
  chicago-author-date: |2
      <div class="csl-entry">Verschatse, Olivier, Mehdi Nikforooz, Karen De Clerck, Wim Van Paepegem, and Lode Daelemans. 2025. “Analysis of Fiber-Matrix Interface Debonding under Normal Loading Using in-Situ Microscopy and Cruciform-Shaped Single Glass Fiber Composite Specimens.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i> 263. https://doi.org/10.1016/j.compscitech.2025.111089.</div>
  fwo: |2
      <div class="csl-entry">Verschatse, Olivier, Mehdi Nikforooz, Karen De Clerck, Wim Van Paepegem, and Lode Daelemans. 2025. “Analysis of Fiber-Matrix Interface Debonding under Normal Loading Using in-Situ Microscopy and Cruciform-Shaped Single Glass Fiber Composite Specimens.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i> 263. doi:10.1016/j.compscitech.2025.111089.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">O. Verschatse, M. Nikforooz, K. De Clerck, W. Van Paepegem, and L. Daelemans, “Analysis of fiber-matrix interface debonding under normal loading using in-situ microscopy and cruciform-shaped single glass fiber composite specimens,” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, vol. 263, 2025.</div>
      </div>
  mla: |2
      <div class="csl-entry">Verschatse, Olivier, et al. “Analysis of Fiber-Matrix Interface Debonding under Normal Loading Using in-Situ Microscopy and Cruciform-Shaped Single Glass Fiber Composite Specimens.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, vol. 263, 2025, doi:10.1016/j.compscitech.2025.111089.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Verschatse O, Nikforooz M, De Clerck K, Van Paepegem W, Daelemans L. Analysis of fiber-matrix interface debonding under normal loading using in-situ microscopy and cruciform-shaped single glass fiber composite specimens. COMPOSITES SCIENCE AND TECHNOLOGY. 2025;263.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
date_created: 2025-04-17 12:51:45
date_updated: 2026-03-31 15:04:24
doi:
- 10.1016/j.compscitech.2025.111089
external: 0
file:
- _id: 01JSHKJ973SSBAX2ED0GH44222
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handle: http://hdl.handle.net/1854/LU-01JS1WW95JRMG3FSS5TMFF9R9T
issn:
- 0266-3538
- 1879-1050
jcr:
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 3
  prev_impact_factor: 9.8
keyword:
- Cruciform
- Fiber-matrix interaction
- Debonding
- Glass fiber
- POLYMER MATRIX
- PULL-OUT
- MECHANICAL-PROPERTIES
- EPOXY INTERFACE
- MICROBOND TEST
- STRENGTH
- TENSILE
- FRAGMENTATION
- STRESSES
- BEHAVIOR
language:
- eng
page:
  count: '12'
parent:
  short_title: Compos. Sci. Technol.
  title: COMPOSITES SCIENCE AND TECHNOLOGY
project:
- _id: BOF/24J/2023/006
  abstract: <p>Fibre reinforced polymer (FRP) composites are the go-to material for
    structural applications where weight is crucial. Predictions about bulk components
    are often based on micro-mechanical models, typically through a multi-scale modelling
    framework (bridging the gap from fibre scale (± 10 μm) to ply scale (±100 μm)
    to laminate scale (± 10 – 100 mm and beyond)). Much more fundamental insights
    and measurements at the micro-scale are necessary to enable fully predictive multi-scale
    modelling and faster adaptation of FRP. Therefore, we propose the development
    of advanced micro-mechanical test methods for fibre reinforced polymer composites
    based on in-situ optical and electron microscopy during loading. This includes
    micro-scale Digital Image Correlation (DIC) which gives full-field strain information
    at the sub-micron scale, force measurement and correlation of the damage mechanisms
    at micro- and macro-scale. This also generates accurate input data for multi-scale
    models for composites.</p>
  end_date: 2027-09-30
  gismo_id: 958ee467-1003-11ee-a391-81a6d079669c
  iweto_id: BOF/24J/2023/006
  start_date: 2023-10-01
  title: Development of advanced micro-mechanical test methods for fibre reinforced
    polymer composites based on in-situ optical and electron microscopy
- _id: BOF/STA/202009/046
  abstract: <p>Every textile material, be it for low-end consumer goods or high-end
    technical products, is exploited for the properties resulting from its multi-scale
    nature (fibres -&gt; yarns -&gt; textiles -&gt; derivatives). Understanding this
    multi-scale nature is thus key to improving this materials. Textiles are, for
    example, well suited for technical applications thanks to their unique combination
    of lightness, flexibility and strength. Yet such applications often require a
    thorough understanding of the mechanical performance, which in itself is quite
    challenging due to the complex microstructure. By following a multiscale analysis,
    combining both experimental and numerical techniques, starting with individual
    fibres and building up till complete textile materials and derivatives such as
    composites, we underpin the micro-macro relationships that govern the mechanical
    behaviour of textiles. This project combines both advanced testing methods with
    in-situ measurement of the deformation mechanisms at microscale, and novel finite
    element modelling tools that allow simulations at the microscale.</p>
  deleted: 1
  end_date: 2025-06-30
  gismo_id: 25182d45-ccf4-11eb-9f0b-e5cd0f711fbd
  iweto_id: BOF/STA/202009/046
  publication_count: 1
  start_date: 2021-07-01
  title: Multi-scale analysis of textile and derived materials
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Analysis of fiber-matrix interface debonding under normal loading using in-situ
  microscopy and cruciform-shaped single glass fiber composite specimens
type: journalArticle
volume: '263'
wos_id: '001425738300001'
wos_type: Article
year: '2025'
...
---
_id: 01JNZN61RAM5T1F38ZS3YXH2X6
abstract:
- Physical understanding and determination of different analytes without the need
  for advanced and additional equipment are highly important, which can be achieved
  by using stimuli-induced chromic materials. Physical and chemical incorporation
  of responsive chromophores into different polymers results in the fabrication of
  chromic polymers. Chromic electrospun nanofibers are prepared using the electrospinning
  technique, and their stimuli-responsivity is improved due to their high surface-to-volume
  ratio. This Perspective focuses on recent studies and developments on stimuli-induced
  chromic electrospun nanofibers. Within this Perspective, these nanofibers are divided
  into different classes of photochromic, thermochromic, electrochromic, mechanochromic,
  halochromic, solvatochromic, hydrochromic, and ionochromic according to the stimuli
  to which they respond. In addition, the preparation methods, chromic compounds,
  electrospinning conditions, response mechanisms, and different applications of chromic
  nanofibers will be discussed. The main applications of such chromic nanofibers are
  food packaging sensors, health monitoring sensors, anticounterfeiting materials,
  ink-free rewritable media, and smart clothing. Several new strategies are also proposed
  for different applications in future studies. The preparation of multiresponsive
  nanofibers that combine different chromic properties in a single system and also
  multifunctional nanofibers that merge stimuli-responsive chromic properties with
  other smart functionalities can be considered in the future. This Perspective aims
  to assist researchers and scientists in the preparation and development of new multifunctional
  chromic electrospun nanofibers for advanced applications, including multimode anticounterfeiting
  materials, multiresponsive sensors for food packaging, and shape memory-assisted
  dual-mode encryption of important data.
abstract_full:
- lang: eng
  text: Physical understanding and determination of different analytes without the
    need for advanced and additional equipment are highly important, which can be
    achieved by using stimuli-induced chromic materials. Physical and chemical incorporation
    of responsive chromophores into different polymers results in the fabrication
    of chromic polymers. Chromic electrospun nanofibers are prepared using the electrospinning
    technique, and their stimuli-responsivity is improved due to their high surface-to-volume
    ratio. This Perspective focuses on recent studies and developments on stimuli-induced
    chromic electrospun nanofibers. Within this Perspective, these nanofibers are
    divided into different classes of photochromic, thermochromic, electrochromic,
    mechanochromic, halochromic, solvatochromic, hydrochromic, and ionochromic according
    to the stimuli to which they respond. In addition, the preparation methods, chromic
    compounds, electrospinning conditions, response mechanisms, and different applications
    of chromic nanofibers will be discussed. The main applications of such chromic
    nanofibers are food packaging sensors, health monitoring sensors, anticounterfeiting
    materials, ink-free rewritable media, and smart clothing. Several new strategies
    are also proposed for different applications in future studies. The preparation
    of multiresponsive nanofibers that combine different chromic properties in a single
    system and also multifunctional nanofibers that merge stimuli-responsive chromic
    properties with other smart functionalities can be considered in the future. This
    Perspective aims to assist researchers and scientists in the preparation and development
    of new multifunctional chromic electrospun nanofibers for advanced applications,
    including multimode anticounterfeiting materials, multiresponsive sensors for
    food packaging, and shape memory-assisted dual-mode encryption of important data.
additional_info: D.R. and M.B.-M. contributed equally to this work.
affiliation:
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
article_type: review
author:
- credit_role:
  - first_author
  first_name: Donya
  last_name: Razzaghi
  name: Donya Razzaghi
  name_last_first: Razzaghi, Donya
- credit_role:
  - first_author
  first_name: Milad
  last_name: Babazadeh-Mamaqani
  name: Milad Babazadeh-Mamaqani
  name_last_first: Babazadeh-Mamaqani, Milad
- first_name: Amin
  last_name: Babaie
  name: Amin Babaie
  name_last_first: Babaie, Amin
- first_name: Fatemeh
  last_name: Esmati
  name: Fatemeh Esmati
  name_last_first: Esmati, Fatemeh
- first_name: Hossein
  last_name: Roghani-Mamaqani
  name: Hossein Roghani-Mamaqani
  name_last_first: Roghani-Mamaqani, Hossein
- first_name: Mostafa
  last_name: Rezaei
  name: Mostafa Rezaei
  name_last_first: Rezaei, Mostafa
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
biblio_id: 01JNZN61RAM5T1F38ZS3YXH2X6
cite:
  apa: |2
      <div class="csl-entry">Razzaghi, D., Babazadeh-Mamaqani, M., Babaie, A., Esmati, F., Roghani-Mamaqani, H., Rezaei, M., … Hoogenboom, R. (2025). Chromic electrospun polymer nanofibers : preparation, applications, and the future. <i>ACS APPLIED MATERIALS &#38; INTERFACES</i>, <i>17</i>(3), 4247–4289. https://doi.org/10.1021/acsami.4c17105</div>
  bof: |2
      <div class="csl-entry">Razzaghi, Donya, Milad Babazadeh-Mamaqani, Amin Babaie, Fatemeh Esmati, Hossein Roghani-Mamaqani, Mostafa Rezaei, Karen De Clerck, and Richard Hoogenboom. 2025. “Chromic Electrospun Polymer Nanofibers : Preparation, Applications, and the Future.” <i>ACS APPLIED MATERIALS &#38; INTERFACES</i> 17 (3): 4247–4289. doi:10.1021/acsami.4c17105.</div>
  chicago-author-date: |2
      <div class="csl-entry">Razzaghi, Donya, Milad Babazadeh-Mamaqani, Amin Babaie, Fatemeh Esmati, Hossein Roghani-Mamaqani, Mostafa Rezaei, Karen De Clerck, and Richard Hoogenboom. 2025. “Chromic Electrospun Polymer Nanofibers : Preparation, Applications, and the Future.” <i>ACS APPLIED MATERIALS &#38; INTERFACES</i> 17 (3): 4247–89. https://doi.org/10.1021/acsami.4c17105.</div>
  fwo: |2
      <div class="csl-entry">Razzaghi, Donya, Milad Babazadeh-Mamaqani, Amin Babaie, Fatemeh Esmati, Hossein Roghani-Mamaqani, Mostafa Rezaei, Karen De Clerck, and Richard Hoogenboom. 2025. “Chromic Electrospun Polymer Nanofibers : Preparation, Applications, and the Future.” <i>ACS APPLIED MATERIALS &#38; INTERFACES</i> 17 (3): 4247–4289. doi:10.1021/acsami.4c17105.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">D. Razzaghi <i>et al.</i>, “Chromic electrospun polymer nanofibers : preparation, applications, and the future,” <i>ACS APPLIED MATERIALS &#38; INTERFACES</i>, vol. 17, no. 3, pp. 4247–4289, 2025.</div>
      </div>
  mla: |2
      <div class="csl-entry">Razzaghi, Donya, et al. “Chromic Electrospun Polymer Nanofibers : Preparation, Applications, and the Future.” <i>ACS APPLIED MATERIALS &#38; INTERFACES</i>, vol. 17, no. 3, 2025, pp. 4247–89, doi:10.1021/acsami.4c17105.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Razzaghi D, Babazadeh-Mamaqani M, Babaie A, Esmati F, Roghani-Mamaqani H, Rezaei M, et al. Chromic electrospun polymer nanofibers : preparation, applications, and the future. ACS APPLIED MATERIALS &#38; INTERFACES. 2025;17(3):4247–89.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
date_created: 2025-03-10 09:11:42
date_updated: 2026-03-31 15:04:32
doi:
- 10.1021/acsami.4c17105
external: 0
file:
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  url: https://biblio.ugent.be/publication/01JNZN61RAM5T1F38ZS3YXH2X6/file/01JSKG7TQC1AR8KG05NB8BG6S6.pdf
handle: http://hdl.handle.net/1854/LU-01JNZN61RAM5T1F38ZS3YXH2X6
issn:
- 1944-8244
- 1944-8252
issue: '3'
jcr:
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 4
  prev_impact_factor: 8.2
keyword:
- Smart materials
- Chromic polymers
- Electrospinning
- Chromic nanofibers
- Electrospun nanofibers
- Smart applications
- ELECTROCHROMIC PROPERTIES
- COLORIMETRIC SENSOR
- WO3
- FIBERS
- FILMS
- MEMBRANES
- FABRICATION
- BEHAVIOR
- FACILE
- STRIPS
language:
- eng
page:
  first: '4247'
  last: '4289'
parent:
  short_title: ACS Appl. Mater. Interfaces
  title: ACS APPLIED MATERIALS & INTERFACES
publication_status: published
publication_status_sort: 2
pubmed_id: '39778588'
status: public
subject:
- Chemistry
title: 'Chromic electrospun polymer nanofibers : preparation, applications, and the
  future'
type: journalArticle
volume: '17'
wos_id: '001393335300001'
wos_type: Review
year: '2025'
...
---
_id: 01KDHZGMEZ1DCARCVJ2BPVHZB2
abstract:
- Hydrothermal ageing can have different effects on the integrity of E-glass fibres
  and their sizing. In this study, the effect of hydrothermal ageing for different
  time periods was examined on the tensile strength of E-glass fibres and the interfacial
  properties of E-glass/epoxy in quasi-static and fatigue loading. For this purpose,
  single fibre tensile tests, single fibre fragmentation tests and single short fibre
  composite tests were performed. In particular, quasistatic and fatigue tests were
  conducted on innovative single short fibre composite specimens to capture the initiation
  and propagation of debonding cracks. Consequently, hydrothermal ageing had an insignificant
  effect on the interfacial strength of E-glass/epoxy, whereas it resulted in a detrimental
  impact on the mixed mode debonding propagation. In this regard, as the fibre off-axis
  angle approached 90 degrees, substantially longer debonding cracks were captured
  in aged E-glass/epoxy specimens compared to virgin E-glass/epoxy specimens in both
  quasi-static and fatigue loading.
abstract_full:
- lang: eng
  text: Hydrothermal ageing can have different effects on the integrity of E-glass
    fibres and their sizing. In this study, the effect of hydrothermal ageing for
    different time periods was examined on the tensile strength of E-glass fibres
    and the interfacial properties of E-glass/epoxy in quasi-static and fatigue loading.
    For this purpose, single fibre tensile tests, single fibre fragmentation tests
    and single short fibre composite tests were performed. In particular, quasistatic
    and fatigue tests were conducted on innovative single short fibre composite specimens
    to capture the initiation and propagation of debonding cracks. Consequently, hydrothermal
    ageing had an insignificant effect on the interfacial strength of E-glass/epoxy,
    whereas it resulted in a detrimental impact on the mixed mode debonding propagation.
    In this regard, as the fibre off-axis angle approached 90 degrees, substantially
    longer debonding cracks were captured in aged E-glass/epoxy specimens compared
    to virgin E-glass/epoxy specimens in both quasi-static and fatigue loading.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Flanders Make
  path:
  - ugent_id: ResearchCenter
  - ugent_id: FlandersMake
  ugent_id: FlandersMake
article_number: '112649'
article_type: original
author:
- _id: d271f551-a15a-11eb-8c83-edeb9b1cd9d7
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: d271f551-a15a-11eb-8c83-edeb9b1cd9d7
  first_name: Mehdi
  last_name: Nikforooz
  name: Mehdi Nikforooz
  name_last_first: Nikforooz, Mehdi
  ugent_id:
  - '976302603389'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
biblio_id: 01KDHZGMEZ1DCARCVJ2BPVHZB2
cite:
  apa: |2
      <div class="csl-entry">Nikforooz, M., Daelemans, L., De Clerck, K., &#38; Van Paepegem, W. (2025). The effect of hydrothermal ageing on the interfacial bonding of E-glass fibre/epoxy in quasi-static and fatigue loading. <i>COMPOSITES PART B-ENGINEERING</i>, <i>304</i>. https://doi.org/10.1016/j.compositesb.2025.112649</div>
  bof: |2
      <div class="csl-entry">Nikforooz, Mehdi, Lode Daelemans, Karen De Clerck, and Wim Van Paepegem. 2025. “The Effect of Hydrothermal Ageing on the Interfacial Bonding of E-Glass Fibre/Epoxy in Quasi-Static and Fatigue Loading.” <i>COMPOSITES PART B-ENGINEERING</i> 304. doi:10.1016/j.compositesb.2025.112649.</div>
  chicago-author-date: |2
      <div class="csl-entry">Nikforooz, Mehdi, Lode Daelemans, Karen De Clerck, and Wim Van Paepegem. 2025. “The Effect of Hydrothermal Ageing on the Interfacial Bonding of E-Glass Fibre/Epoxy in Quasi-Static and Fatigue Loading.” <i>COMPOSITES PART B-ENGINEERING</i> 304. https://doi.org/10.1016/j.compositesb.2025.112649.</div>
  fwo: |2
      <div class="csl-entry">Nikforooz, Mehdi, Lode Daelemans, Karen De Clerck, and Wim Van Paepegem. 2025. “The Effect of Hydrothermal Ageing on the Interfacial Bonding of E-Glass Fibre/Epoxy in Quasi-Static and Fatigue Loading.” <i>COMPOSITES PART B-ENGINEERING</i> 304. doi:10.1016/j.compositesb.2025.112649.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">M. Nikforooz, L. Daelemans, K. De Clerck, and W. Van Paepegem, “The effect of hydrothermal ageing on the interfacial bonding of E-glass fibre/epoxy in quasi-static and fatigue loading,” <i>COMPOSITES PART B-ENGINEERING</i>, vol. 304, 2025.</div>
      </div>
  mla: |2
      <div class="csl-entry">Nikforooz, Mehdi, et al. “The Effect of Hydrothermal Ageing on the Interfacial Bonding of E-Glass Fibre/Epoxy in Quasi-Static and Fatigue Loading.” <i>COMPOSITES PART B-ENGINEERING</i>, vol. 304, 2025, doi:10.1016/j.compositesb.2025.112649.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Nikforooz M, Daelemans L, De Clerck K, Van Paepegem W. The effect of hydrothermal ageing on the interfacial bonding of E-glass fibre/epoxy in quasi-static and fatigue loading. COMPOSITES PART B-ENGINEERING. 2025;304.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
date_created: 2025-12-28 07:59:36
date_updated: 2026-03-31 15:22:41
doi:
- 10.1016/j.compositesb.2025.112649
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handle: http://hdl.handle.net/1854/LU-01KDHZGMEZ1DCARCVJ2BPVHZB2
issn:
- 1359-8368
- 1879-1069
jcr:
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 1
  prev_impact_factor: 14.2
keyword:
- Polymer-matrix composites (PMCs)
- Debonding
- Optical microscopy physical methods of analysis
- Fractography
- CARBON-FIBER
- SINGLE-FIBER
- COMPOSITES
- STRENGTH
- DEGRADATION
- ADHESION
- WATER
language:
- eng
page:
  count: '13'
parent:
  short_title: Compos. Pt. B-Eng.
  title: COMPOSITES PART B-ENGINEERING
project:
- _id: BOF/STA/202009/046
  abstract: <p>Every textile material, be it for low-end consumer goods or high-end
    technical products, is exploited for the properties resulting from its multi-scale
    nature (fibres -&gt; yarns -&gt; textiles -&gt; derivatives). Understanding this
    multi-scale nature is thus key to improving this materials. Textiles are, for
    example, well suited for technical applications thanks to their unique combination
    of lightness, flexibility and strength. Yet such applications often require a
    thorough understanding of the mechanical performance, which in itself is quite
    challenging due to the complex microstructure. By following a multiscale analysis,
    combining both experimental and numerical techniques, starting with individual
    fibres and building up till complete textile materials and derivatives such as
    composites, we underpin the micro-macro relationships that govern the mechanical
    behaviour of textiles. This project combines both advanced testing methods with
    in-situ measurement of the deformation mechanisms at microscale, and novel finite
    element modelling tools that allow simulations at the microscale.</p>
  deleted: 1
  end_date: 2025-06-30
  gismo_id: 25182d45-ccf4-11eb-9f0b-e5cd0f711fbd
  iweto_id: BOF/STA/202009/046
  publication_count: 1
  start_date: 2021-07-01
  title: Multi-scale analysis of textile and derived materials
- _id: 01J10219
  abstract: <p>Membrane technology can offer an answer for today’s research challenges
    to solve environmental problems. These membranes are in need of an improved resistance
    to harsh environments. This will further broaden applications such as water recycling
    but will also open up very novel applications in a process intensification of
    CO2 conversion units. Within this project nanofibers are developed for these applications.</p>
  end_date: 2024-07-30
  gismo_id: 1e0c3a2d-9d90-11e9-83f9-d13d95d2d7be
  iweto_id: 01J10219
  start_date: 2019-10-01
  title: Nanofibrous membranes for today’s environmental research questions.
- _id: 01B03518
  abstract: <p>The requested table top SEM with integrated micromechanical testing,
    combines a large sample chamber to accommodate a sensitive micromechanical set-up
    with a high magnification and easy sampling. This is highly novel and only recently
    available at moderate costs. The in-situ visualization of material performance
    under load at high magnification will boost the academic research of the applicants
    and their collaborators.</p>
  end_date: 2020-05-31
  gismo_id: 320e7057-5b7c-11e9-ac93-1bffacd2a7e2
  iweto_id: 01B03518
  publication_count: 1
  start_date: 2018-06-01
  title: Table top SEM with integrated in-situ micromechanical testing for fiber,
    polymer and composite materials
- _id: BOF/24J/2023/006
  abstract: <p>Fibre reinforced polymer (FRP) composites are the go-to material for
    structural applications where weight is crucial. Predictions about bulk components
    are often based on micro-mechanical models, typically through a multi-scale modelling
    framework (bridging the gap from fibre scale (± 10 μm) to ply scale (±100 μm)
    to laminate scale (± 10 – 100 mm and beyond)). Much more fundamental insights
    and measurements at the micro-scale are necessary to enable fully predictive multi-scale
    modelling and faster adaptation of FRP. Therefore, we propose the development
    of advanced micro-mechanical test methods for fibre reinforced polymer composites
    based on in-situ optical and electron microscopy during loading. This includes
    micro-scale Digital Image Correlation (DIC) which gives full-field strain information
    at the sub-micron scale, force measurement and correlation of the damage mechanisms
    at micro- and macro-scale. This also generates accurate input data for multi-scale
    models for composites.</p>
  end_date: 2027-09-30
  gismo_id: 958ee467-1003-11ee-a391-81a6d079669c
  iweto_id: BOF/24J/2023/006
  start_date: 2023-10-01
  title: Development of advanced micro-mechanical test methods for fibre reinforced
    polymer composites based on in-situ optical and electron microscopy
- _id: 160A08923
  abstract: |-
    <p>The North-C-Blade consortium will evaluate the use of gasification technology for the recycling of decommissioned wind turbine blades. This includes proper waste/feed preparation, novel electrified reactor technology, and chlorine removal from the product so that it can be further valorised in novel material applications. A feasibility study will be performed to assess the viability of a gasification plant that can process up to 200 kta of waste including decommissioned wind turbine blades from the North Sea Region.</p>
    <p>&#160;</p>
  end_date: 2026-10-31
  gismo_id: 548bb758-1ab6-4d6d-893a-6f0a6cbbb94a
  iweto_id: 160A08923
  start_date: 2023-11-01
  title: North-C-Blade
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: The effect of hydrothermal ageing on the interfacial bonding of E-glass fibre/epoxy
  in quasi-static and fatigue loading
type: journalArticle
volume: '304'
wos_id: '001502042700001'
wos_type: Article
year: '2025'
...
---
_id: 01K2MMHARC7E2TCM7PQ45W3QXN
abstract:
- Mesoporous silica thin films are candidates for next-generation dielectric materials
  due to their potential for control over their texture, high surface area, and good
  dielectric properties. Further, their dielectric response can potentially be further
  modified by infiltrating a second phase such as a polymer to produce thin film nanocomposite
  dielectrics. Despite their potential, uptake of mesoporous silica thin films has
  been hindered by difficulties in controlling the nanoscale structure and silica
  texture. We employ advanced characterization and kinetic Monte Carlo modeling to
  identify critical synthesis parameters governing the mesoporous silica texture.
  Different degrees of pore ordering can be achieved from quasi-random to highly ordered,
  eliminating the trial-and-error typically associated with achieving a targeted nanostructure.
  We then infiltrate semicrystalline poly(vinylidene fluoride) and polypropylene into
  the sub-10 nm pores to completely suppress the formation of crystalline domains
  in the polymers and produce nanocomposite dielectrics. Polypropylene nanocomposite
  dielectrics exhibit dielectric constants similar to 20% higher than silica and 125%
  greater than those of polypropylene. Poly(vinylidene fluoride) nanocomposites exhibit
  relaxor ferroelectric behavior. These dielectric materials are enabled by controlled,
  hierarchical design that spans the self-assembly of the silica matrix, tuning of
  the pore surface chemistry, and modification of the polymer conformations through
  the resulting quasi-3D nanoconfinement. We believe that these nanocomposites represent
  a powerful platform for the study of polymers under extreme levels of confinement,
  as well as a potential platform for next-generation dielectric materials.
abstract_full:
- lang: eng
  text: Mesoporous silica thin films are candidates for next-generation dielectric
    materials due to their potential for control over their texture, high surface
    area, and good dielectric properties. Further, their dielectric response can potentially
    be further modified by infiltrating a second phase such as a polymer to produce
    thin film nanocomposite dielectrics. Despite their potential, uptake of mesoporous
    silica thin films has been hindered by difficulties in controlling the nanoscale
    structure and silica texture. We employ advanced characterization and kinetic
    Monte Carlo modeling to identify critical synthesis parameters governing the mesoporous
    silica texture. Different degrees of pore ordering can be achieved from quasi-random
    to highly ordered, eliminating the trial-and-error typically associated with achieving
    a targeted nanostructure. We then infiltrate semicrystalline poly(vinylidene fluoride)
    and polypropylene into the sub-10 nm pores to completely suppress the formation
    of crystalline domains in the polymers and produce nanocomposite dielectrics.
    Polypropylene nanocomposite dielectrics exhibit dielectric constants similar to
    20% higher than silica and 125% greater than those of polypropylene. Poly(vinylidene
    fluoride) nanocomposites exhibit relaxor ferroelectric behavior. These dielectric
    materials are enabled by controlled, hierarchical design that spans the self-assembly
    of the silica matrix, tuning of the pore surface chemistry, and modification of
    the polymer conformations through the resulting quasi-3D nanoconfinement. We believe
    that these nanocomposites represent a powerful platform for the study of polymers
    under extreme levels of confinement, as well as a potential platform for next-generation
    dielectric materials.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
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  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Chemistry
  path:
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  - ugent_id: WE
  - ugent_id: WE06
  ugent_id: WE06
article_type: original
author:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  first_name: Sofie
  last_name: Verschraegen
  name: Sofie Verschraegen
  name_last_first: Verschraegen, Sofie
  orcid_id: 0000-0002-6164-3662
  ugent_id:
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  - '802003501534'
  - '919029486586'
  - '975200255882'
- first_name: David W.
  last_name: Collinson
  name: David W. Collinson
  name_last_first: Collinson, David W.
- first_name: Sarah A.
  last_name: Hesse
  name: Sarah A. Hesse
  name_last_first: Hesse, Sarah A.
- first_name: Christopher J.
  last_name: Takacs
  name: Christopher J. Takacs
  name_last_first: Takacs, Christopher J.
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: WE
    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
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  - '973689492909'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- first_name: Reinhold H.
  last_name: Dauskardt
  name: Reinhold H. Dauskardt
  name_last_first: Dauskardt, Reinhold H.
biblio_id: 01K2MMHARC7E2TCM7PQ45W3QXN
cite:
  apa: |2
      <div class="csl-entry">Verschraegen, S., Collinson, D. W., Hesse, S. A., Takacs, C. J., De Buysser, K., D’hooge, D., … Dauskardt, R. H. (2025). Kinetically controlled mesoporous silica films for quasi-3D nanoconfinement of semicrystalline polymers below their lamellae dimensions. <i>ACS NANO</i>, <i>19</i>(27), 25109–25121. https://doi.org/10.1021/acsnano.5c05114</div>
  bof: |2
      <div class="csl-entry">Verschraegen, Sofie, David W. Collinson, Sarah A. Hesse, Christopher J. Takacs, Klaartje De Buysser, Dagmar D’hooge, Karen De Clerck, and Reinhold H. Dauskardt. 2025. “Kinetically Controlled Mesoporous Silica Films for Quasi-3D Nanoconfinement of Semicrystalline Polymers below Their Lamellae Dimensions.” <i>ACS NANO</i> 19 (27): 25109–25121. doi:10.1021/acsnano.5c05114.</div>
  chicago-author-date: |2
      <div class="csl-entry">Verschraegen, Sofie, David W. Collinson, Sarah A. Hesse, Christopher J. Takacs, Klaartje De Buysser, Dagmar D’hooge, Karen De Clerck, and Reinhold H. Dauskardt. 2025. “Kinetically Controlled Mesoporous Silica Films for Quasi-3D Nanoconfinement of Semicrystalline Polymers below Their Lamellae Dimensions.” <i>ACS NANO</i> 19 (27): 25109–21. https://doi.org/10.1021/acsnano.5c05114.</div>
  fwo: |2
      <div class="csl-entry">Verschraegen, Sofie, David W. Collinson, Sarah A. Hesse, Christopher J. Takacs, Klaartje De Buysser, Dagmar D’hooge, Karen De Clerck, and Reinhold H. Dauskardt. 2025. “Kinetically Controlled Mesoporous Silica Films for Quasi-3D Nanoconfinement of Semicrystalline Polymers below Their Lamellae Dimensions.” <i>ACS NANO</i> 19 (27): 25109–25121. doi:10.1021/acsnano.5c05114.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. Verschraegen <i>et al.</i>, “Kinetically controlled mesoporous silica films for quasi-3D nanoconfinement of semicrystalline polymers below their lamellae dimensions,” <i>ACS NANO</i>, vol. 19, no. 27, pp. 25109–25121, 2025.</div>
      </div>
  mla: |2
      <div class="csl-entry">Verschraegen, Sofie, et al. “Kinetically Controlled Mesoporous Silica Films for Quasi-3D Nanoconfinement of Semicrystalline Polymers below Their Lamellae Dimensions.” <i>ACS NANO</i>, vol. 19, no. 27, 2025, pp. 25109–21, doi:10.1021/acsnano.5c05114.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Verschraegen S, Collinson DW, Hesse SA, Takacs CJ, De Buysser K, D’hooge D, et al. Kinetically controlled mesoporous silica films for quasi-3D nanoconfinement of semicrystalline polymers below their lamellae dimensions. ACS NANO. 2025;19(27):25109–21.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
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  first_name: Sofie
  last_name: Verschraegen
  name: Sofie Verschraegen
  name_last_first: Verschraegen, Sofie
  orcid_id: 0000-0002-6164-3662
  ugent_id:
  - '000150868746'
  - '802003501534'
  - '919029486586'
  - '975200255882'
date_created: 2025-08-14 15:52:48
date_updated: 2026-03-31 15:19:14
doi:
- 10.1021/acsnano.5c05114
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issn:
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issue: '27'
jcr:
  prev_category_decile: 1
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  prev_category_vigintile: 2
  prev_impact_factor: 16.1
keyword:
- POLY(VINYLIDENE FLUORIDE)
- CONFINED CRYSTALLIZATION
- ISOTACTIC
- POLYPROPYLENE
- TEMPERATURE
- COPOLYMER
- NANOCOMPOSITES
- BETA
- PVDF
- INFILTRATION
- SPECTROSCOPY
language:
- eng
page:
  first: '25109'
  last: '25121'
parent:
  short_title: ACS Nano
  title: ACS NANO
project:
- _id: 3F006621
  abstract: '<p>Today the high potential of (organo)silica branched/crosslinked/network
    polymers in nanofibrous membranes cannot be exploited to the fullest due to the
    lack of a straightforward way to produce them. To solve this, a fundamental understanding
    of how sol-gel synthesis and electrospinning are related via rheology is required.
    The main bottleneck remains that the viscosity evolution, as the network develops
    during synthesis, cannot be fully interpreted at the molecular level. For this,
    it is essential to fundamentally link the different steps in the electrospinning
    production process: from network formation of (organo)silica precursor molecules
    over electrospinning toward nanofibrous membranes. Both experimental (e.g. 29Si
    NMR, rheology) and kinetic modelling techniques will be used for this purpose.
    The morphology of the resulting nanofibrous membranes will be determined and linked
    back to the chemical building blocks, sol-gel synthesis and the electrospinning
    process as to enable the tuning of these (organo)silica nanofibers for advanced
    applications. The fiber diameter and the wettability will be studied as key model
    properties at respectively the fiber and material membrane level. This generic
    methodology can in the future be expanded toward other material properties to
    allow for molecular scale-driven material property tuning.</p>'
  end_date: 2025-10-31
  gismo_id: 190fbf11-2a82-11ec-95aa-05ef7abe0c3c
  iweto_id: 3F006621
  start_date: 2021-11-01
  title: 'Connecting (organo)silica sol-gel synthesis and membrane electrospinning:
    pushing toward molecular scale-driven property tuning'
publication_status: published
publication_status_sort: 2
pubmed_id: '40605590'
status: public
subject:
- Technology and Engineering
title: Kinetically controlled mesoporous silica films for quasi-3D nanoconfinement
  of semicrystalline polymers below their lamellae dimensions
type: journalArticle
volume: '19'
wos_id: '001523136600001'
wos_type: Article
year: '2025'
...
---
_id: 01K9526C4KF9S3R5YABFB5YNV5
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
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  ugent_id: TW11
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author:
- first_name: Alexis
  last_name: Spalletta
  name: Alexis Spalletta
  name_last_first: Spalletta, Alexis
- first_name: Nicolas
  last_name: Joly
  name: Nicolas Joly
  name_last_first: Joly, Nicolas
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- first_name: Sophie
  last_name: Dropsit
  name: Sophie Dropsit
  name_last_first: Dropsit, Sophie
- first_name: Isabelle
  last_name: Gosselin
  name: Isabelle Gosselin
  name_last_first: Gosselin, Isabelle
- _id: 108E8CA8-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 108E8CA8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jonas
  last_name: Van Rie
  name: Jonas Van Rie
  name_last_first: Van Rie, Jonas
  ugent_id:
  - '000080181109'
- first_name: Patrick
  last_name: Martin
  name: Patrick Martin
  name_last_first: Martin, Patrick
biblio_id: 01K9526C4KF9S3R5YABFB5YNV5
cite:
  apa: |2
      <div class="csl-entry">Spalletta, A., Joly, N., De Clerck, K., Dropsit, S., Gosselin, I., Van Rie, J., &#38; Martin, P. (2025). Interreg F-W-VL valcelmat project : functionalization of cellulose to produce new high-performance materials. <i>XXIII B-MRS Meeting, Abstracts</i>. Presented at the XXIII B-MRS Meeting, Salvador, Bahia, Brazil.</div>
  bof: |2
      <div class="csl-entry">Spalletta, Alexis, Nicolas Joly, Karen De Clerck, Sophie Dropsit, Isabelle Gosselin, Jonas Van Rie, and Patrick Martin. 2025. “Interreg F-W-VL Valcelmat Project : Functionalization of Cellulose to Produce New High-Performance Materials.” In <i>XXIII B-MRS Meeting, Abstracts</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">Spalletta, Alexis, Nicolas Joly, Karen De Clerck, Sophie Dropsit, Isabelle Gosselin, Jonas Van Rie, and Patrick Martin. 2025. “Interreg F-W-VL Valcelmat Project : Functionalization of Cellulose to Produce New High-Performance Materials.” In <i>XXIII B-MRS Meeting, Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">Spalletta, Alexis, Nicolas Joly, Karen De Clerck, Sophie Dropsit, Isabelle Gosselin, Jonas Van Rie, and Patrick Martin. 2025. “Interreg F-W-VL Valcelmat Project : Functionalization of Cellulose to Produce New High-Performance Materials.” In <i>XXIII B-MRS Meeting, Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">A. Spalletta <i>et al.</i>, “Interreg F-W-VL valcelmat project : functionalization of cellulose to produce new high-performance materials,” in <i>XXIII B-MRS Meeting, Abstracts</i>, Salvador, Bahia, Brazil, 2025.</div>
      </div>
  mla: |2
      <div class="csl-entry">Spalletta, Alexis, et al. “Interreg F-W-VL Valcelmat Project : Functionalization of Cellulose to Produce New High-Performance Materials.” <i>XXIII B-MRS Meeting, Abstracts</i>, 2025.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Spalletta A, Joly N, De Clerck K, Dropsit S, Gosselin I, Van Rie J, et al. Interreg F-W-VL valcelmat project : functionalization of cellulose to produce new high-performance materials. In: XXIII B-MRS Meeting, Abstracts. 2025.</div>
       </div>
classification: C3
conference:
  end_date: 2025-10-02
  location: Salvador, Bahia, Brazil
  name: XXIII B-MRS Meeting
  organizer: Brazilian Materials Research Society (B-MRS)
  start_date: 2025-09-28
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2025-11-03 14:33:31
date_updated: 2026-03-31 15:18:38
external: 0
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jcr: {}
language:
- eng
page:
  count: '2'
parent:
  title: XXIII B-MRS Meeting, Abstracts
project:
- _id: 41B06724
  abstract: Door middel van innovatie en toegepast onderzoek wil VALCELMAT bedrijven,
    groei en de heropleving van economische activiteit ondersteunen. Dit project is
    in lijn met de eisen van consumenten en dus economische spelers. Het hoofddoel
    is om op proefschaal nieuwe materialen te ontwerpen die vervolgens kunnen worden
    gebruikt als nieuwe, meer milieuvriendelijke manieren van verpakking, textiel
    en composietmaterialen. Uiteraard gaat deze filosofie hand in hand met een aanpak
    die niet alleen ecologisch maar ook sociaal verantwoord is. Vanuit wetenschappelijk
    oogpunt is het VALCELMAT-project gericht op het toevoegen van waarde aan cellulose,
    een van de meest overvloedige en hernieuwbare polysachariden op aarde, in nieuwe
    toepassingen zoals verpakking, textiel en additieven voor bioplastics en biocomposieten
    in de breedste zin van het woord. Cellulose, dat gemakkelijk en goedkoop kan worden
    gewonnen uit plantaardige biomassa, zal op een ecologisch verantwoorde manier
    worden gemodificeerd met behulp van duurzame chemie of enzymatische processen,
    om het nieuwe functionaliteiten te geven (barrière voor micro-organismen, barrière
    voor gassen, weerstand tegen vocht en vuur) met behoud van zijn intrinsieke eigenschappen
    (afwezigheid van toxiciteit en biologische afbraak). De wijzigingen zullen worden
    uitgevoerd met behulp van innovatieve, milieuvriendelijke batch- en continuprocessen,
    met name reactieve extrusie, met het oog op opschaling voor markttoepassingen.
    De begunstigden van dit project zijn entiteiten uit de papier-, textiel- en kunststofindustrie,
    wat betekent dat de toepassingsgebieden zullen worden gediversifieerd, met als
    gevolg economische ontwikkelingen voor de regio's door de aanwezigheid van dit
    type industrie in het VALCELMAT-impactgebied. Onze aanpak vereist de onderlinge
    verbinding van verschillende vaardigheden, zowel menselijke als materiële. Om
    dit project tot een goed einde te brengen, hebben we een consortium opgezet van
    academische, industriële en institutionele partners die geografisch verspreid
    zijn over het impactgebied van het programma. Het feit dat sommige partners al
    met elkaar hadden samengewerkt, was een voordeel bij het ontwikkelen van ons consortium.
    Het resultaat is dat we entiteiten hebben die elkaar 'kennen'. Bovendien hebben
    sommige partners, zoals UArtois en MaNo, al samengewerkt in een INTERREG FWF-programma
    dat in 2019 wordt afgerond. UGent en MaNo werkten ook samen aan een project gefinancierd
    door INTERREG FWVl, dat eindigde in 2022. Het innovatieve aspect van ons VALCELMAT-project
    met betrekking tot de verschillende materialen waarop de introductie of coating
    van gemodificeerde biogebaseerde verbindingen gericht is, is een pluspunt. In
    feite richten we ons hier op verschillende markten en we willen geen product ontwerpen
    voor slechts één gebied, maar eerder analoge/homologe verbindingen ontwerpen voor
    verschillende toepassingen. De toepassingsgerichte kant van ons project is een
    essentieel element en we houden voortdurend de mogelijkheid en verplichting in
    gedachten om op grotere schaal te kunnen produceren.
  end_date: 2028-09-30
  gismo_id: 69cb822d-0350-4b6c-b2cd-30b7ec3fd096
  iweto_id: 41B06724
  start_date: 2024-10-01
  title: Functionalisering van cellulosegebaseerde substraten en vezels om nieuwe
    materialen te verkrijgen
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: 'Interreg F-W-VL valcelmat project : functionalization of cellulose to produce
  new high-performance materials'
type: conference
year: '2025'
...
---
_id: 01KJA45HTM6VM1J2DSRJ60JK4E
abstract:
- Sol-gel chemistry offers powerful tools for engineering silica-based materials with
  tunable properties, including organosilica nanofiber membranes that are essential
  for applications such as chemical sensing, solvent separation, and electrochemical
  barriers. Despite their potential, the molecular factors that govern electrospinnability
  remain insufficiently understood. In particular, the complex relationship between
  hydrolysis kinetics, crosslinking dynamics, and rheological behavior often forces
  researchers to rely on empirical trial-and-error methods. To address this challenge,
  we developed a predictive framework for methyltriethoxysilane (MTES)-based sol-gel
  systems, establishing correlations between viscosity evolution and key structural
  parameters, such as hydrolysis degree and the distribution of crosslinking functional
  groups. A comparative analysis with tetraethoxysilane (TEOS), a more crosslinkable
  four-arm precursor, was also conducted. Using ²⁹Si NMR spectroscopy and coupled
  matrix-based Monte Carlo (CMMC) modeling, we extracted Arrhenius parameters for
  MTES hydrolysis and condensation, which were then applied under non-isothermal conditions
  simulating electrospinning environments, including solvent evaporation. This allowed
  us to extract molecular rules defining processing conditions that distinguish between
  no deposition, electrospraying and electrospinning. To validate the model, we randomly
  selected three synthesis conditions based on its predictions and tested them experimentally.
  Scanning electron microscopy (SEM) imaging confirmed that the resulting morphologies
  matched the predicted electrospinnability outcomes, demonstrating the reliability
  of the molecular rules derived from the model. By identifying molecular thresholds
  for successful electrospinning, such as siloxane yields and group fractions, this
  predictive framework provides a rational alternative to experimental trial-and-error,
  supporting the design of advanced organosilica membranes for sustainable technologies.
abstract_full:
- lang: eng
  text: Sol-gel chemistry offers powerful tools for engineering silica-based materials
    with tunable properties, including organosilica nanofiber membranes that are essential
    for applications such as chemical sensing, solvent separation, and electrochemical
    barriers. Despite their potential, the molecular factors that govern electrospinnability
    remain insufficiently understood. In particular, the complex relationship between
    hydrolysis kinetics, crosslinking dynamics, and rheological behavior often forces
    researchers to rely on empirical trial-and-error methods. To address this challenge,
    we developed a predictive framework for methyltriethoxysilane (MTES)-based sol-gel
    systems, establishing correlations between viscosity evolution and key structural
    parameters, such as hydrolysis degree and the distribution of crosslinking functional
    groups. A comparative analysis with tetraethoxysilane (TEOS), a more crosslinkable
    four-arm precursor, was also conducted. Using ²⁹Si NMR spectroscopy and coupled
    matrix-based Monte Carlo (CMMC) modeling, we extracted Arrhenius parameters for
    MTES hydrolysis and condensation, which were then applied under non-isothermal
    conditions simulating electrospinning environments, including solvent evaporation.
    This allowed us to extract molecular rules defining processing conditions that
    distinguish between no deposition, electrospraying and electrospinning. To validate
    the model, we randomly selected three synthesis conditions based on its predictions
    and tested them experimentally. Scanning electron microscopy (SEM) imaging confirmed
    that the resulting morphologies matched the predicted electrospinnability outcomes,
    demonstrating the reliability of the molecular rules derived from the model. By
    identifying molecular thresholds for successful electrospinning, such as siloxane
    yields and group fractions, this predictive framework provides a rational alternative
    to experimental trial-and-error, supporting the design of advanced organosilica
    membranes for sustainable technologies.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE06
  ugent_id: WE06
author:
- _id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  first_name: Sofie
  last_name: Verschraegen
  name: Sofie Verschraegen
  name_last_first: Verschraegen, Sofie
  orcid_id: 0000-0002-6164-3662
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  - '000150868746'
  - '802003501534'
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- _id: cafb9d08-98a5-11ef-a462-a14c31f2439c
  affiliation:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: cafb9d08-98a5-11ef-a462-a14c31f2439c
  first_name: Alice
  last_name: Novello
  name: Alice Novello
  name_last_first: Novello, Alice
  orcid_id: 0009-0002-0113-7028
  ugent_id:
  - '000231441188'
  - '802004828111'
  - '975199409659'
- _id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  first_name: Eva
  last_name: Loccufier
  name: Eva Loccufier
  name_last_first: Loccufier, Eva
  orcid_id: 0000-0001-7045-2721
  ugent_id:
  - '802002671374'
  - '974161061035'
- _id: 7B0AF618-F4F5-11E8-B6BE-CDD65607D3EF
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 7B0AF618-F4F5-11E8-B6BE-CDD65607D3EF
  first_name: Alessandro
  last_name: Trigilio
  name: Alessandro Trigilio
  name_last_first: Trigilio, Alessandro
  orcid_id: 0000-0001-8878-9947
  ugent_id:
  - '802003054526'
  - '977697655874'
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
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- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
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    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01KJA45HTM6VM1J2DSRJ60JK4E
cite:
  apa: |2
      <div class="csl-entry">Verschraegen, S., Novello, A., Loccufier, E., Trigilio, A., De Buysser, K., D’hooge, D., &#38; De Clerck, K. (2025). From sol–gel chemistry to nanofiber membranes : a model-based approach. <i>FEARS 2025 : FEA Research Symposium, Abstracts</i>. Presented at the Faculty of Engineering and Architecture Research Symposium 2025 (FEARS 2025), Ghent, Belgium. https://doi.org/10.5281/zenodo.17435261</div>
  bof: |2
      <div class="csl-entry">Verschraegen, Sofie, Alice Novello, Eva Loccufier, Alessandro Trigilio, Klaartje De Buysser, Dagmar D’hooge, and Karen De Clerck. 2025. “From Sol–Gel Chemistry to Nanofiber Membranes : A Model-Based Approach.” In <i>FEARS 2025 : FEA Research Symposium, Abstracts</i>. Ghent, Belgium: Ghent University. Faculty of Engineering and Architecture. doi:10.5281/zenodo.17435261.</div>
  chicago-author-date: |2
      <div class="csl-entry">Verschraegen, Sofie, Alice Novello, Eva Loccufier, Alessandro Trigilio, Klaartje De Buysser, Dagmar D’hooge, and Karen De Clerck. 2025. “From Sol–Gel Chemistry to Nanofiber Membranes : A Model-Based Approach.” In <i>FEARS 2025 : FEA Research Symposium, Abstracts</i>. Ghent, Belgium: Ghent University. Faculty of Engineering and Architecture. https://doi.org/10.5281/zenodo.17435261.</div>
  fwo: |2
      <div class="csl-entry">Verschraegen, Sofie, Alice Novello, Eva Loccufier, Alessandro Trigilio, Klaartje De Buysser, Dagmar D’hooge, and Karen De Clerck. 2025. “From Sol–Gel Chemistry to Nanofiber Membranes : A Model-Based Approach.” In <i>FEARS 2025 : FEA Research Symposium, Abstracts</i>. Ghent, Belgium: Ghent University. Faculty of Engineering and Architecture. doi:10.5281/zenodo.17435261.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. Verschraegen <i>et al.</i>, “From sol–gel chemistry to nanofiber membranes : a model-based approach,” in <i>FEARS 2025 : FEA Research Symposium, Abstracts</i>, Ghent, Belgium, 2025.</div>
      </div>
  mla: |2
      <div class="csl-entry">Verschraegen, Sofie, et al. “From Sol–Gel Chemistry to Nanofiber Membranes : A Model-Based Approach.” <i>FEARS 2025 : FEA Research Symposium, Abstracts</i>, Ghent University. Faculty of Engineering and Architecture, 2025, doi:10.5281/zenodo.17435261.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Verschraegen S, Novello A, Loccufier E, Trigilio A, De Buysser K, D’hooge D, et al. From sol–gel chemistry to nanofiber membranes : a model-based approach. In: FEARS 2025 : FEA Research Symposium, Abstracts. Ghent, Belgium: Ghent University. Faculty of Engineering and Architecture; 2025.</div>
       </div>
classification: C3
conference:
  end_date: 2025-10-13
  location: Ghent, Belgium
  name: Faculty of Engineering and Architecture Research Symposium 2025 (FEARS 2025)
  organizer: Faculty of Engineering and Architecture, Ghent University
  start_date: 2025-10-13
conference_type: poster
copyright_statement: Creative Commons Attribution 4.0 International Public License
  (CC-BY 4.0)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
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  first_name: Sigrid
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  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2026-02-25 10:05:30
date_updated: 2026-03-31 05:34:46
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parent:
  title: 'FEARS 2025 : FEA Research Symposium, Abstracts'
publication_status: published
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publisher:
  location: Ghent, Belgium
  name: Ghent University. Faculty of Engineering and Architecture
status: public
subject:
- Technology and Engineering
title: 'From sol–gel chemistry to nanofiber membranes : a model-based approach'
type: conference
year: '2025'
...
---
_id: 01KJ51GN003AP1PVCP9NS80GY3
abstract:
- |-
  Sol-gel chemistry offers powerful tools for engineering silica-based materials with tunable properties, including
  organosilica nanofiber membranes that are essential for applications such as chemical sensing, solvent
  separation, and electrochemical barriers. Despite their potential, the molecular factors that govern
  electrospinnability remain insufficiently understood. In particular, the complex relationship between hydrolysis
  kinetics, crosslinking dynamics, and rheological behavior often forces researchers to rely on empirical
  trial-and-error methods. To address this challenge, we developed a predictive framework for
  methyltriethoxysilane (MTES)-based sol-gel systems, establishing correlations between viscosity evolution and
  key structural parameters, such as hydrolysis degree and the distribution of crosslinking functional groups.1 A
  comparative analysis with tetraethoxysilane (TEOS), a more crosslinkable four-arm precursor, was also
  conducted. Using ²⁹Si NMR spectroscopy and coupled matrix-based Monte Carlo (CMMC) modeling, we
  extracted Arrhenius parameters for MTES hydrolysis and condensation, which were then applied under
  non-isothermal conditions simulating electrospinning environments, including solvent evaporation. This allowed
  us to extract molecular rules defining processing conditions that distinguish between no deposition,
  electrospraying and electrospinning. To validate the model, we randomly selected three synthesis conditions
  based on its predictions and tested them experimentally. Scanning electron microscopy (SEM) imaging
  confirmed that the resulting morphologies matched the predicted electrospinnability outcomes, demonstrating
  the reliability of the molecular rules derived from the model. By identifying molecular thresholds for successful
  electrospinning, such as siloxane yields and group fractions, this predictive framework provides a rational
  alternative to experimental trial-and-error, supporting the design of advanced organosilica membranes for
  sustainable technologies.
abstract_full:
- lang: eng
  text: |-
    Sol-gel chemistry offers powerful tools for engineering silica-based materials with tunable properties, including
    organosilica nanofiber membranes that are essential for applications such as chemical sensing, solvent
    separation, and electrochemical barriers. Despite their potential, the molecular factors that govern
    electrospinnability remain insufficiently understood. In particular, the complex relationship between hydrolysis
    kinetics, crosslinking dynamics, and rheological behavior often forces researchers to rely on empirical
    trial-and-error methods. To address this challenge, we developed a predictive framework for
    methyltriethoxysilane (MTES)-based sol-gel systems, establishing correlations between viscosity evolution and
    key structural parameters, such as hydrolysis degree and the distribution of crosslinking functional groups.1 A
    comparative analysis with tetraethoxysilane (TEOS), a more crosslinkable four-arm precursor, was also
    conducted. Using ²⁹Si NMR spectroscopy and coupled matrix-based Monte Carlo (CMMC) modeling, we
    extracted Arrhenius parameters for MTES hydrolysis and condensation, which were then applied under
    non-isothermal conditions simulating electrospinning environments, including solvent evaporation. This allowed
    us to extract molecular rules defining processing conditions that distinguish between no deposition,
    electrospraying and electrospinning. To validate the model, we randomly selected three synthesis conditions
    based on its predictions and tested them experimentally. Scanning electron microscopy (SEM) imaging
    confirmed that the resulting morphologies matched the predicted electrospinnability outcomes, demonstrating
    the reliability of the molecular rules derived from the model. By identifying molecular thresholds for successful
    electrospinning, such as siloxane yields and group fractions, this predictive framework provides a rational
    alternative to experimental trial-and-error, supporting the design of advanced organosilica membranes for
    sustainable technologies.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: TEMP103
author:
- _id: cafb9d08-98a5-11ef-a462-a14c31f2439c
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: cafb9d08-98a5-11ef-a462-a14c31f2439c
  first_name: Alice
  last_name: Novello
  name: Alice Novello
  name_last_first: Novello, Alice
  orcid_id: 0009-0002-0113-7028
  ugent_id:
  - '000231441188'
  - '802004828111'
  - '975199409659'
- _id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  first_name: Sofie
  last_name: Verschraegen
  name: Sofie Verschraegen
  name_last_first: Verschraegen, Sofie
  orcid_id: 0000-0002-6164-3662
  ugent_id:
  - '000150868746'
  - '802003501534'
  - '919029486586'
  - '975200255882'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
biblio_id: 01KJ51GN003AP1PVCP9NS80GY3
cite:
  apa: |2
      <div class="csl-entry">Novello, A., Verschraegen, S., De Clerck, K., &#38; D’hooge, D. (2025). Model-based molecular rules for electrospinning solutions to deliver well-defined organosilica membranes. <i>Annual Meeting of the Belgian Polymer Group 2025, Book of Abstracts</i>. Presented at the Annual Meeting of the Belgian Polymer Group (BPG 2025), Houffalize, Belgium.</div>
  bof: |2
      <div class="csl-entry">Novello, Alice, Sofie Verschraegen, Karen De Clerck, and Dagmar D’hooge. 2025. “Model-Based Molecular Rules for Electrospinning Solutions to Deliver Well-Defined Organosilica Membranes.” In <i>Annual Meeting of the Belgian Polymer Group 2025, Book of Abstracts</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">Novello, Alice, Sofie Verschraegen, Karen De Clerck, and Dagmar D’hooge. 2025. “Model-Based Molecular Rules for Electrospinning Solutions to Deliver Well-Defined Organosilica Membranes.” In <i>Annual Meeting of the Belgian Polymer Group 2025, Book of Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">Novello, Alice, Sofie Verschraegen, Karen De Clerck, and Dagmar D’hooge. 2025. “Model-Based Molecular Rules for Electrospinning Solutions to Deliver Well-Defined Organosilica Membranes.” In <i>Annual Meeting of the Belgian Polymer Group 2025, Book of Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">A. Novello, S. Verschraegen, K. De Clerck, and D. D’hooge, “Model-based molecular rules for electrospinning solutions to deliver well-defined organosilica membranes,” in <i>Annual Meeting of the Belgian Polymer Group 2025, book of abstracts</i>, Houffalize, Belgium, 2025.</div>
      </div>
  mla: |2
      <div class="csl-entry">Novello, Alice, et al. “Model-Based Molecular Rules for Electrospinning Solutions to Deliver Well-Defined Organosilica Membranes.” <i>Annual Meeting of the Belgian Polymer Group 2025, Book of Abstracts</i>, 2025.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Novello A, Verschraegen S, De Clerck K, D’hooge D. Model-based molecular rules for electrospinning solutions to deliver well-defined organosilica membranes. In: Annual Meeting of the Belgian Polymer Group 2025, book of abstracts. 2025.</div>
       </div>
classification: C3
conference:
  end_date: 2025-05-27
  location: Houffalize, Belgium
  name: Annual Meeting of the Belgian Polymer Group (BPG 2025)
  organizer: Belgian Polymer Group, ULB
  start_date: 2025-05-26
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2026-02-23 10:42:56
date_updated: 2026-03-31 05:31:58
external: 0
file:
- _id: 01KJ532BEVZNVHGMFSYDR8E4ZE
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: abstract_BPG.pdf
  publication_version: publishedVersion
  sha256: 22d4459aff8c94aa41316e07794764f101af2e81d359cda118c1b67220681061
  size: '1417480'
  thumbnail_url: https://biblio.ugent.be/publication/01KJ51GN003AP1PVCP9NS80GY3/file/01KJ532BEVZNVHGMFSYDR8E4ZE/thumbnail.png
  url: https://biblio.ugent.be/publication/01KJ51GN003AP1PVCP9NS80GY3/file/01KJ532BEVZNVHGMFSYDR8E4ZE.pdf
handle: http://hdl.handle.net/1854/LU-01KJ51GN003AP1PVCP9NS80GY3
jcr: {}
language:
- eng
page:
  count: '1'
parent:
  title: Annual Meeting of the Belgian Polymer Group 2025, book of abstracts
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Model-based molecular rules for electrospinning solutions to deliver well-defined
  organosilica membranes
type: conference
year: '2025'
...
---
_id: 01JQRG2BWC5BBKN9AJXKAKMY3E
abstract:
- Shelled eggs are key components of animal reproduction on land, evolving independently
  in distant lineages of terrestrial animals including nematodes, gastropods, annelids,
  arthropods and chordates. They regulate critical functions such as the exchange
  of gases between embryo and the environment, desiccation avoidance and protection
  from harmful radiation, microbial infection and mechanical damage. A core mechanism
  behind eggshell multifunctionality is the incorporation of minerals (mainly calcium
  carbonate and calcium phosphate) into the shell. Very little is known about eggshell
  structure in invertebrates, but some recent pioneer studies have proposed that similar
  mineralization patterns may have evolved convergently in eggshells of vertebrates,
  pulmonate gastropods, and stick insects. However, because a detailed characterization
  of the structural and chemical composition of invertebrate eggshells is not available,
  it has not been possible to test this hypothesis. Here, we use computed tomography,
  electron microscopy, electron backscatter diffraction analyses, atomic force microscopy,
  spectroscopy and histochemistry to characterize and compare microstructure and chemical
  composition of snails, insect and vertebrate eggshells. These techniques revealed
  the universal presence of an organic matrix in mineralized eggshells. However, disparities
  in the distribution of calcium throughout the shell, crystallographic orientation
  that appears random in invertebrates (but not vertebrates), and presence of different
  calcium types including the rare and unstable vaterite highlight divergence whose
  functional significance should be the subject of future study
abstract_full:
- lang: eng
  text: Shelled eggs are key components of animal reproduction on land, evolving independently
    in distant lineages of terrestrial animals including nematodes, gastropods, annelids,
    arthropods and chordates. They regulate critical functions such as the exchange
    of gases between embryo and the environment, desiccation avoidance and protection
    from harmful radiation, microbial infection and mechanical damage. A core mechanism
    behind eggshell multifunctionality is the incorporation of minerals (mainly calcium
    carbonate and calcium phosphate) into the shell. Very little is known about eggshell
    structure in invertebrates, but some recent pioneer studies have proposed that
    similar mineralization patterns may have evolved convergently in eggshells of
    vertebrates, pulmonate gastropods, and stick insects. However, because a detailed
    characterization of the structural and chemical composition of invertebrate eggshells
    is not available, it has not been possible to test this hypothesis. Here, we use
    computed tomography, electron microscopy, electron backscatter diffraction analyses,
    atomic force microscopy, spectroscopy and histochemistry to characterize and compare
    microstructure and chemical composition of snails, insect and vertebrate eggshells.
    These techniques revealed the universal presence of an organic matrix in mineralized
    eggshells. However, disparities in the distribution of calcium throughout the
    shell, crystallographic orientation that appears random in invertebrates (but
    not vertebrates), and presence of different calcium types including the rare and
    unstable vaterite highlight divergence whose functional significance should be
    the subject of future study
additional_info: This article is licensed under a Creative Commons Attribution-NonCommercial
  3.0 Unported Licence.
affiliation:
- name: Department of Biology
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE11
  ugent_id: WE11
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_type: original
author:
- _id: 703A0548-BAC7-11E8-A22B-3DF65607D3EF
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: 703A0548-BAC7-11E8-A22B-3DF65607D3EF
  first_name: Gerben
  last_name: Debruyn
  name: Gerben Debruyn
  name_last_first: Debruyn, Gerben
  ugent_id:
  - '802003560037'
  - '976557705309'
- first_name: Seung
  last_name: Choi
  name: Seung Choi
  name_last_first: Choi, Seung
- _id: ac052746-e2bf-11ec-bec5-b2837359c7ca
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: ac052746-e2bf-11ec-bec5-b2837359c7ca
  first_name: Jessica Leigh
  last_name: Dobson
  name: Jessica Leigh Dobson
  name_last_first: Dobson, Jessica Leigh
  ugent_id:
  - '000211829610'
  - '802004043825'
  - '979522896891'
- _id: C275B788-9F44-11E8-B51F-A22C5707D3EF
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: C275B788-9F44-11E8-B51F-A22C5707D3EF
  first_name: Yana
  last_name: Maudens
  name: Yana Maudens
  name_last_first: Maudens, Yana
  orcid_id: 0009-0004-7574-7309
  ugent_id:
  - '000180496485'
  - '802004439404'
  - '973207706538'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: 25D6054A-6888-11E5-AD70-3415B5D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: 25D6054A-6888-11E5-AD70-3415B5D1D7B1
  first_name: Matthew
  last_name: Shawkey
  name: Matthew Shawkey
  name_last_first: Shawkey, Matthew
  orcid_id: 0000-0002-5131-8209
  ugent_id:
  - '802002093216'
  - '979048085026'
- first_name: Shukang
  last_name: Zhang
  name: Shukang Zhang
  name_last_first: Zhang, Shukang
- _id: F89F3E88-A37F-11E5-95B9-D7FEB4D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: F89F3E88-A37F-11E5-95B9-D7FEB4D1D7B1
  first_name: Liliana
  last_name: D'Alba Altamirano
  name: Liliana D'Alba Altamirano
  name_last_first: D'Alba Altamirano, Liliana
  orcid_id: 0000-0002-2478-3455
  ugent_id:
  - '802002269634'
biblio_id: 01JQRG2BWC5BBKN9AJXKAKMY3E
cite:
  apa: |2
      <div class="csl-entry">Debruyn, G., Choi, S., Dobson, J. L., Maudens, Y., De Clerck, K., Shawkey, M., … D’Alba Altamirano, L. (2025). Convergence in biomineralization patterns across animal eggshells. <i>FARADAY DISCUSSIONS</i>, <i>261</i>, 212–230. https://doi.org/10.1039/d5fd00028a</div>
  bof: |2
      <div class="csl-entry">Debruyn, Gerben, Seung Choi, Jessica Leigh Dobson, Yana Maudens, Karen De Clerck, Matthew Shawkey, Shukang Zhang, and Liliana D’Alba Altamirano. 2025. “Convergence in Biomineralization Patterns across Animal Eggshells.” <i>FARADAY DISCUSSIONS</i> 261: 212–230. doi:10.1039/d5fd00028a.</div>
  chicago-author-date: |2
      <div class="csl-entry">Debruyn, Gerben, Seung Choi, Jessica Leigh Dobson, Yana Maudens, Karen De Clerck, Matthew Shawkey, Shukang Zhang, and Liliana D’Alba Altamirano. 2025. “Convergence in Biomineralization Patterns across Animal Eggshells.” <i>FARADAY DISCUSSIONS</i> 261: 212–30. https://doi.org/10.1039/d5fd00028a.</div>
  fwo: |2
      <div class="csl-entry">Debruyn, Gerben, Seung Choi, Jessica Leigh Dobson, Yana Maudens, Karen De Clerck, Matthew Shawkey, Shukang Zhang, and Liliana D’Alba Altamirano. 2025. “Convergence in Biomineralization Patterns across Animal Eggshells.” <i>FARADAY DISCUSSIONS</i> 261: 212–230. doi:10.1039/d5fd00028a.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">G. Debruyn <i>et al.</i>, “Convergence in biomineralization patterns across animal eggshells,” <i>FARADAY DISCUSSIONS</i>, vol. 261, pp. 212–230, 2025.</div>
      </div>
  mla: |2
      <div class="csl-entry">Debruyn, Gerben, et al. “Convergence in Biomineralization Patterns across Animal Eggshells.” <i>FARADAY DISCUSSIONS</i>, vol. 261, 2025, pp. 212–30, doi:10.1039/d5fd00028a.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Debruyn G, Choi S, Dobson JL, Maudens Y, De Clerck K, Shawkey M, et al. Convergence in biomineralization patterns across animal eggshells. FARADAY DISCUSSIONS. 2025;261:212–30.</div>
       </div>
classification: A1
copyright_statement: A specific license has been chosen by the rights holder. Get
  in touch with the rights holder for reuse rights.
created_by:
  _id: 25D6054A-6888-11E5-AD70-3415B5D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: 25D6054A-6888-11E5-AD70-3415B5D1D7B1
  first_name: Matthew
  last_name: Shawkey
  name: Matthew Shawkey
  name_last_first: Shawkey, Matthew
  orcid_id: 0000-0002-5131-8209
  ugent_id:
  - '802002093216'
  - '979048085026'
date_created: 2025-04-01 10:59:01
date_updated: 2026-04-23 12:39:45
doi:
- 10.1039/d5fd00028a
external: 0
file:
- _id: 01JQRG68CCTJ61N0VHM43NSSWG
  access: private
  kind: fullText
  publication_version: acceptedVersion
  sha256: 427d62102c9365a7210b73e2e583fa233c900ecf158ac16892bbfad6776fdaca
  size: '2394765'
  thumbnail_url: https://biblio.ugent.be/publication/01JQRG2BWC5BBKN9AJXKAKMY3E/file/01JQRG68CCTJ61N0VHM43NSSWG/thumbnail.png
- _id: 01KPX5JTK2HGZ9NZ4KJ1M1WTKP
  access: open
  content_type: application/pdf
  kind: fullText
  name: publisher_version.pdf
  publication_version: publishedVersion
  sha256: d2451a67829342d2562f5420799bd6e7099c7a19ddf20ee901de77112b37cd52
  size: '1358377'
  url: https://biblio.ugent.be/publication/01JQRG2BWC5BBKN9AJXKAKMY3E/file/01KPX5JTK2HGZ9NZ4KJ1M1WTKP.pdf
handle: http://hdl.handle.net/1854/LU-01JQRG2BWC5BBKN9AJXKAKMY3E
issn:
- 1359-6640
- 1364-5498
jcr:
  prev_category_decile: 6
  prev_category_quartile: 3
  prev_category_vigintile: 12
  prev_impact_factor: 3.1
keyword:
- AMORPHOUS CALCIUM-CARBONATE
- EGG-CAPSULES
- MATRIX
- ULTRASTRUCTURE
- ARCHITECTURE
- MEMBRANES
- PROTEINS
- CHORION
- MODEL
- LAYER
language:
- eng
page:
  first: '212'
  last: '230'
parent:
  short_title: Faraday Discuss.
  title: FARADAY DISCUSSIONS
project:
- _id: 3G0A7921
  abstract: "<p>Eggs are multifunctional structures that enabled vertebrates to colonize
    the land millions of years ago. Eggshell morphology is at the core of animal survival
    and has evolved into a massive diversity of forms and functions in modern reptiles.
    These functions may also serve as models for new antimicrobial and/or breathable
    membranes.\nBut we still lack critical data on the chemical composition, ultrastructure,
    and material properties of reptile eggs. These data are critically needed to understand
    their effects on vertebrate evolution and successfully use them as biomimetic
    models.\nIn this project we will use a highly integrative approach including functional
    morphology, evolution, biomechanics and biomimicry to test hypotheses on form-function
    relationships in eggs and their potential as models for biomimetic materials.
    Specifically, we will address the following questions: How does egg morphology
    affect biomechanical function? Do nesting ecology and life history drive the evolution
    of eggshell design? Do bioinspired replicas retain functional properties comparable
    to natural eggs? \nTo answer these questions we will use state-of-the-art μCT,
    electron microscopy, chemical and biomechanical tests, phylogenetic comparative
    methods and materials science techniques to experimentally test form-function
    relationships and produce novel, bioinspired multifunctional membranes.</p>"
  end_date: 2024-12-31
  gismo_id: ae3ff06f-4420-11eb-809b-01df1efbbcb6
  iweto_id: 3G0A7921
  publication_count: 11
  start_date: 2021-01-01
  title: 'Biomechanics and Biomimicry of Reptile Eggs: Insights into their functions
    and evolution'
- _id: 41K07823
  abstract: <p>Defense against predators is critical, and moths have evolved an impressive
    array of anti-predator strategies to defend themselves. Camouflage in particular
    is a cost-effective way to escape a predator’s attention and has been widely studied,
    albeit mainly in the visual domain. Most moths are, however, night-active and
    therefore mainly need to defend themselves against bats hunting by sound, specifically
    through echolocation. To escape detection, moths may consequently have evolved
    scales on body and wings for acoustic camouflage, as these microstructures can
    in some species absorb ultrasound. <br />Here, our central aim is to identify
    form-function relationships of scales and scale assemblages producing acoustic
    camouflage. <br />To achieve our aim, we will first carry out a survey of the
    diversity in acoustic camouflage properties of a large set of species. Focusing
    on a subset of interesting species, we will then measure morphological properties
    of different classes of body and wing scales and model their sound absorptive
    or scattering capacities. Furthermore, we will determine how acoustic properties
    of these scale classes may trade off with other functions, in particular thermal
    regulation. Finally, we will test our form-function hypotheses via biomimicry,
    producing both analogues that directly mimic and extend the variation in scale
    morphology. <br />Our research plan will provide critical insight into the evolution
    and application of moth scales as a specialized antipredator strategy and its
    outcome may enable us to extend acoustic camouflage beyond what is found in nature,thereby
    improve functional performances. This will not only allow us to rigorously test
    our proposed form-function relationships but also potentially enable development
    of new thin sound-dampening materials with Air Force applications.</p>
  end_date: 2026-03-14
  gismo_id: 3d62d395-b5d6-4a31-8a48-1cbb69868e8d
  iweto_id: 41K07823
  publication_count: 3
  start_date: 2023-08-15
  title: Optimising Acoustic Camouflage through Characterisation and Biomimicry of
    Moth Scales
- _id: 41J09123
  abstract: Bioinspired Materials for Selective Radiation Reflectance
  end_date: 2026-08-14
  gismo_id: 42855afe-0cd7-424d-872c-55a9c8b61592
  iweto_id: 41J09123
  publication_count: 7
  start_date: 2023-08-15
  title: Bioinspired Materials for Selective Radiation Reflectance
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Convergence in biomineralization patterns across animal eggshells
type: journalArticle
volume: '261'
wos_id: '001507363800001'
wos_type: Article
year: '2025'
...
---
_id: 01JRCV45PEF3T562A4JY36C75P
abstract:
- Electrospun, water-stable nanofiber membranes made from hydrophilic, biocompatible
  poly(2-ethyl-2-oxazoline) (PEtOx) networks hold significant promise in biomedical
  applications, particularly in wound management. However, their mechanical behavior
  under varying environmental conditions remains poorly understood. This work provides
  an in-depth analysis of the tensile properties of photo-cross-linked cinnamoyl-modified
  high-molar-mass PEtOx (PEtOx-Cin) nanofiber membranes with varying ambient humidity,
  assessing their practical handling prior to application as wound dressings, while
  exploring their shape memory properties as basis for potential humidity-actuated
  wound closure. Cinnamoyl modification and cross-linking of PEtOx-Cin mats significantly
  improve moisture stability, accelerate moisture sorption, and raise the glass transition
  temperature (Tg) through newly formed covalent intermolecular bonds. At higher relative
  humidity (%RH) from 25 to 65%RH, moisture sorption induces plasticization, shifting
  the Tg below room temperature and transforming the membranes from brittle to highly
  ductile and elastomeric. This glass-to-rubber transition under ambient conditions
  enables humidity-stimulated shape memory behavior, revealing excellent temporary
  shape fixity at low humidity and rapid recovery to the original shape upon exposure
  to high humidity. The presented findings advance the understanding of cross-linked
  PEtOx-Cin nanofiber membranes, and while further optimization is needed to enhance
  mechanical stability at high humidity for improved handling, they underscore their
  unique potential for next-generation wound closure dressings.
abstract_full:
- lang: eng
  text: Electrospun, water-stable nanofiber membranes made from hydrophilic, biocompatible
    poly(2-ethyl-2-oxazoline) (PEtOx) networks hold significant promise in biomedical
    applications, particularly in wound management. However, their mechanical behavior
    under varying environmental conditions remains poorly understood. This work provides
    an in-depth analysis of the tensile properties of photo-cross-linked cinnamoyl-modified
    high-molar-mass PEtOx (PEtOx-Cin) nanofiber membranes with varying ambient humidity,
    assessing their practical handling prior to application as wound dressings, while
    exploring their shape memory properties as basis for potential humidity-actuated
    wound closure. Cinnamoyl modification and cross-linking of PEtOx-Cin mats significantly
    improve moisture stability, accelerate moisture sorption, and raise the glass
    transition temperature (Tg) through newly formed covalent intermolecular bonds.
    At higher relative humidity (%RH) from 25 to 65%RH, moisture sorption induces
    plasticization, shifting the Tg below room temperature and transforming the membranes
    from brittle to highly ductile and elastomeric. This glass-to-rubber transition
    under ambient conditions enables humidity-stimulated shape memory behavior, revealing
    excellent temporary shape fixity at low humidity and rapid recovery to the original
    shape upon exposure to high humidity. The presented findings advance the understanding
    of cross-linked PEtOx-Cin nanofiber membranes, and while further optimization
    is needed to enhance mechanical stability at high humidity for improved handling,
    they underscore their unique potential for next-generation wound closure dressings.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
article_type: original
author:
- _id: 4ECF3BC6-5675-11E5-B03A-F334B5D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 4ECF3BC6-5675-11E5-B03A-F334B5D1D7B1
  first_name: Olmo
  last_name: Frateur
  name: Olmo Frateur
  name_last_first: Frateur, Olmo
  orcid_id: 0000-0002-0198-561X
  ugent_id:
  - '000150886227'
  - '802003501433'
  - '976840489813'
- _id: 357A8410-45A5-11E3-AF0D-0AE410BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 357A8410-45A5-11E3-AF0D-0AE410BDE39D
  first_name: Martin
  last_name: Purino
  name: Martin Purino
  name_last_first: Purino, Martin
  ugent_id:
  - '802001701879'
  - '978926536750'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01JRCV45PEF3T562A4JY36C75P
cite:
  apa: |2
      <div class="csl-entry">Frateur, O., Purino, M., Daelemans, L., Hoogenboom, R., &#38; De Clerck, K. (2025). Ambient humidity-dependent tensile behavior and shape memory properties of cinnamoyl photo-cross-linked poly(2-ethyl-2-oxazoline) nanofibers. <i>ACS APPLIED MATERIALS &#38; INTERFACES</i>, <i>17</i>(16), 24474–24484. https://doi.org/10.1021/acsami.5c03496</div>
  bof: |2
      <div class="csl-entry">Frateur, Olmo, Martin Purino, Lode Daelemans, Richard Hoogenboom, and Karen De Clerck. 2025. “Ambient Humidity-Dependent Tensile Behavior and Shape Memory Properties of Cinnamoyl Photo-Cross-Linked Poly(2-Ethyl-2-Oxazoline) Nanofibers.” <i>ACS APPLIED MATERIALS &#38; INTERFACES</i> 17 (16): 24474–24484. doi:10.1021/acsami.5c03496.</div>
  chicago-author-date: |2
      <div class="csl-entry">Frateur, Olmo, Martin Purino, Lode Daelemans, Richard Hoogenboom, and Karen De Clerck. 2025. “Ambient Humidity-Dependent Tensile Behavior and Shape Memory Properties of Cinnamoyl Photo-Cross-Linked Poly(2-Ethyl-2-Oxazoline) Nanofibers.” <i>ACS APPLIED MATERIALS &#38; INTERFACES</i> 17 (16): 24474–84. https://doi.org/10.1021/acsami.5c03496.</div>
  fwo: |2
      <div class="csl-entry">Frateur, Olmo, Martin Purino, Lode Daelemans, Richard Hoogenboom, and Karen De Clerck. 2025. “Ambient Humidity-Dependent Tensile Behavior and Shape Memory Properties of Cinnamoyl Photo-Cross-Linked Poly(2-Ethyl-2-Oxazoline) Nanofibers.” <i>ACS APPLIED MATERIALS &#38; INTERFACES</i> 17 (16): 24474–24484. doi:10.1021/acsami.5c03496.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">O. Frateur, M. Purino, L. Daelemans, R. Hoogenboom, and K. De Clerck, “Ambient humidity-dependent tensile behavior and shape memory properties of cinnamoyl photo-cross-linked poly(2-ethyl-2-oxazoline) nanofibers,” <i>ACS APPLIED MATERIALS &#38; INTERFACES</i>, vol. 17, no. 16, pp. 24474–24484, 2025.</div>
      </div>
  mla: |2
      <div class="csl-entry">Frateur, Olmo, et al. “Ambient Humidity-Dependent Tensile Behavior and Shape Memory Properties of Cinnamoyl Photo-Cross-Linked Poly(2-Ethyl-2-Oxazoline) Nanofibers.” <i>ACS APPLIED MATERIALS &#38; INTERFACES</i>, vol. 17, no. 16, 2025, pp. 24474–84, doi:10.1021/acsami.5c03496.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Frateur O, Purino M, Daelemans L, Hoogenboom R, De Clerck K. Ambient humidity-dependent tensile behavior and shape memory properties of cinnamoyl photo-cross-linked poly(2-ethyl-2-oxazoline) nanofibers. ACS APPLIED MATERIALS &#38; INTERFACES. 2025;17(16):24474–84.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2025-04-09 08:37:03
date_updated: 2026-04-09 00:00:15
doi:
- 10.1021/acsami.5c03496
external: 0
file:
- _id: 01JRCVBZET62XCP67SFNVQYRG1
  access: restricted
  content_type: application/pdf
  kind: fullText
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- _id: 01JRCXRXC3SE2262GXDXKANH7Z
  access: open
  content_type: application/pdf
  kind: fullText
  name: AAM PEtOx-Cin mech props.pdf
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handle: http://hdl.handle.net/1854/LU-01JRCV45PEF3T562A4JY36C75P
issn:
- 1944-8244
- 1944-8252
issue: '16'
jcr:
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 4
  prev_impact_factor: 8.2
keyword:
- cinnamoyl
- poly(2-ethyl-2-oxazoline)
- photo-cross-linking
- electrospun nanofiber membranes
- humidity-dependent tensile properties
- humidity-actuated shape memory
language:
- eng
page:
  first: '24474'
  last: '24484'
parent:
  short_title: ACS Appl. Mater. Interfaces
  title: ACS APPLIED MATERIALS & INTERFACES
project:
- _id: 3S002821
  abstract: <p>As severe burns are a leading cause of morbidity, proper wound care
    is crucial. Treating burns requires specific care to provide an infection-free
    and moist environment. As such, advanced dressings are essential, however, no
    all-round dressings for every burn exist and the demand remains pressing. Our
    aim is to innovate novel wound dressings by combining both moisture regulation,
    antimicrobial action and conformability in one single dressing. The material needs
    will be met by engineering hybrid, electrospun nanofibrous structures, for which
    the novel, versatile poly(2-oxazoline) platform with a tunable hydrophilicity
    will be employed. This allows for the targeted design of a nanofibrous material
    with optimal moisture-managing properties. Moreover, electrospinning is ideally
    suited for doping bioactive agents and controlling the release rate. Innovatively
    linking moisture uptake with drug release in the nanofibrous structures enables
    an optimal and prolonged antiseptic action to prevent and treat infection during
    wound healing. Lastly, the mechanical properties will be examined and modified
    to improve membrane stability and conformability. Our findings, based on hybrid
    nanofibrous structures with the desired material properties, will significantly
    advance the preparation of widely applicable multifunctional wound dressings.
    This outcome will reduce healthcare costs and increase patient comfort, thus resulting
    in a major societal impact.</p>
  end_date: 2025-10-31
  gismo_id: 4ad519a6-2a81-11ec-a6b4-cd4eac00b947
  iweto_id: 3S002821
  publication_count: 5
  start_date: 2021-11-01
  title: Engineering hybrid nanofibrous membranes with superior moisture regulation
    and controlled antimicrobial action for future wound dressings
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Ambient humidity-dependent tensile behavior and shape memory properties of
  cinnamoyl photo-cross-linked poly(2-ethyl-2-oxazoline) nanofibers
type: journalArticle
volume: '17'
wos_id: '001461895400001'
wos_type: Article
year: '2025'
...
---
_id: 01JXHMJZD4TXWNG54VJE2GV2AT
abstract:
- Sol-gel chemistry enables the synthesis of silica-based materials with tailored
  properties, including (organo)silica nanofiber membranes, which are valued for applications
  in sensors, solvent separation, and electrochemical barriers. Despite this potential,
  understanding and gearing the molecular parameters governing well-defined sol-gel
  electrospinnability remains a challenge, often requiring trial-and-error optimization.
  In this study, we (i) predicted the electrospinnability of methyltriethoxysilane
  (MTES)-based sol-gel systems by linking the viscosity evolution to key structural
  network parameters such as the hydrolysis degree and crosslinking functional groups
  distributions, and (ii) performed a comparative study to the leading building block
  tetraethoxysilane (TEOS), which is characterized by more crosslinking potential
  (4 arm TEOS vs 3 arm MTES). Using experimental data and coupled matrix-based Monte
  Carlo (CMMC) modeling, we determined Arrhenius parameters for MTES hydrolysis and
  condensation reactions. By applying the Arrhenius parameters to the non-isothermal
  synthesis conditions for electrospinning, accounting for evaporation, we retrieved
  molecular rules defining processing conditions, leading to no deposition, electrospraying
  and electrospinning. Using scanning electron microscopy (SEM) imaging, we confirmed
  the reliability of these molecular rules by randomly selecting three cases according
  to the kinetic model providing validation in predicting electrospinnability. Our
  predictive framework thus identifies molecular requirements for stable electrospinning,
  reducing reliance on empirical approaches, and facilitating the design of high-performance
  (organo)silica nanofiber membranes and sustainable applications.
abstract_full:
- lang: eng
  text: Sol-gel chemistry enables the synthesis of silica-based materials with tailored
    properties, including (organo)silica nanofiber membranes, which are valued for
    applications in sensors, solvent separation, and electrochemical barriers. Despite
    this potential, understanding and gearing the molecular parameters governing well-defined
    sol-gel electrospinnability remains a challenge, often requiring trial-and-error
    optimization. In this study, we (i) predicted the electrospinnability of methyltriethoxysilane
    (MTES)-based sol-gel systems by linking the viscosity evolution to key structural
    network parameters such as the hydrolysis degree and crosslinking functional groups
    distributions, and (ii) performed a comparative study to the leading building
    block tetraethoxysilane (TEOS), which is characterized by more crosslinking potential
    (4 arm TEOS vs 3 arm MTES). Using experimental data and coupled matrix-based Monte
    Carlo (CMMC) modeling, we determined Arrhenius parameters for MTES hydrolysis
    and condensation reactions. By applying the Arrhenius parameters to the non-isothermal
    synthesis conditions for electrospinning, accounting for evaporation, we retrieved
    molecular rules defining processing conditions, leading to no deposition, electrospraying
    and electrospinning. Using scanning electron microscopy (SEM) imaging, we confirmed
    the reliability of these molecular rules by randomly selecting three cases according
    to the kinetic model providing validation in predicting electrospinnability. Our
    predictive framework thus identifies molecular requirements for stable electrospinning,
    reducing reliance on empirical approaches, and facilitating the design of high-performance
    (organo)silica nanofiber membranes and sustainable applications.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE06
  ugent_id: WE06
article_number: '164509'
article_type: original
author:
- _id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  credit_role:
  - writing_original_draft
  - visualization
  - methodology
  - investigation
  - funding_acquisition
  - formal_analysis
  - data_curation
  - conceptualization
  first_name: Sofie
  last_name: Verschraegen
  name: Sofie Verschraegen
  name_last_first: Verschraegen, Sofie
  orcid_id: 0000-0002-6164-3662
  ugent_id:
  - '000150868746'
  - '802003501534'
  - '919029486586'
  - '975200255882'
- _id: cafb9d08-98a5-11ef-a462-a14c31f2439c
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: cafb9d08-98a5-11ef-a462-a14c31f2439c
  credit_role:
  - writing_original_draft
  - visualization
  - methodology
  - investigation
  - formal_analysis
  - data_curation
  - conceptualization
  first_name: Alice
  last_name: Novello
  name: Alice Novello
  name_last_first: Novello, Alice
  orcid_id: 0009-0002-0113-7028
  ugent_id:
  - '000231441188'
  - '802004828111'
  - '975199409659'
- _id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  credit_role:
  - writing_review_editing
  - visualization
  - data_curation
  - conceptualization
  first_name: Eva
  last_name: Loccufier
  name: Eva Loccufier
  name_last_first: Loccufier, Eva
  orcid_id: 0000-0001-7045-2721
  ugent_id:
  - '802002671374'
  - '974161061035'
- _id: 7B0AF618-F4F5-11E8-B6BE-CDD65607D3EF
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 7B0AF618-F4F5-11E8-B6BE-CDD65607D3EF
  credit_role:
  - writing_review_editing
  - investigation
  - data_curation
  - conceptualization
  first_name: Alessandro
  last_name: Trigilio
  name: Alessandro Trigilio
  name_last_first: Trigilio, Alessandro
  orcid_id: 0000-0001-8878-9947
  ugent_id:
  - '802003054526'
  - '977697655874'
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - writing_review_editing
  - supervision
  - resources
  - project_administration
  - methodology
  - investigation
  - funding_acquisition
  - formal_analysis
  - conceptualization
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - writing_review_editing
  - supervision
  - resources
  - project_administration
  - methodology
  - investigation
  - funding_acquisition
  - formal_analysis
  - conceptualization
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - writing_review_editing
  - visualization
  - supervision
  - resources
  - project_administration
  - methodology
  - investigation
  - funding_acquisition
  - formal_analysis
  - conceptualization
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01JXHMJZD4TXWNG54VJE2GV2AT
cite:
  apa: |2
      <div class="csl-entry">Verschraegen, S., Novello, A., Loccufier, E., Trigilio, A., De Buysser, K., D’hooge, D., &#38; De Clerck, K. (2025). Model-based molecular rules for electrospinning solutions to deliver well-defined organosilica membranes. <i>CHEMICAL ENGINEERING JOURNAL</i>, <i>518</i>. https://doi.org/10.1016/j.cej.2025.164509</div>
  bof: |2
      <div class="csl-entry">Verschraegen, Sofie, Alice Novello, Eva Loccufier, Alessandro Trigilio, Klaartje De Buysser, Dagmar D’hooge, and Karen De Clerck. 2025. “Model-Based Molecular Rules for Electrospinning Solutions to Deliver Well-Defined Organosilica Membranes.” <i>CHEMICAL ENGINEERING JOURNAL</i> 518. doi:10.1016/j.cej.2025.164509.</div>
  chicago-author-date: |2
      <div class="csl-entry">Verschraegen, Sofie, Alice Novello, Eva Loccufier, Alessandro Trigilio, Klaartje De Buysser, Dagmar D’hooge, and Karen De Clerck. 2025. “Model-Based Molecular Rules for Electrospinning Solutions to Deliver Well-Defined Organosilica Membranes.” <i>CHEMICAL ENGINEERING JOURNAL</i> 518. https://doi.org/10.1016/j.cej.2025.164509.</div>
  fwo: |2
      <div class="csl-entry">Verschraegen, Sofie, Alice Novello, Eva Loccufier, Alessandro Trigilio, Klaartje De Buysser, Dagmar D’hooge, and Karen De Clerck. 2025. “Model-Based Molecular Rules for Electrospinning Solutions to Deliver Well-Defined Organosilica Membranes.” <i>CHEMICAL ENGINEERING JOURNAL</i> 518. doi:10.1016/j.cej.2025.164509.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. Verschraegen <i>et al.</i>, “Model-based molecular rules for electrospinning solutions to deliver well-defined organosilica membranes,” <i>CHEMICAL ENGINEERING JOURNAL</i>, vol. 518, 2025.</div>
      </div>
  mla: |2
      <div class="csl-entry">Verschraegen, Sofie, et al. “Model-Based Molecular Rules for Electrospinning Solutions to Deliver Well-Defined Organosilica Membranes.” <i>CHEMICAL ENGINEERING JOURNAL</i>, vol. 518, 2025, doi:10.1016/j.cej.2025.164509.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Verschraegen S, Novello A, Loccufier E, Trigilio A, De Buysser K, D’hooge D, et al. Model-based molecular rules for electrospinning solutions to deliver well-defined organosilica membranes. CHEMICAL ENGINEERING JOURNAL. 2025;518.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
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  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2025-06-12 08:37:30
date_updated: 2026-03-31 15:16:08
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handle: http://hdl.handle.net/1854/LU-01JXHMJZD4TXWNG54VJE2GV2AT
issn:
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- 1873-3212
jcr:
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 1
  prev_impact_factor: 13.2
keyword:
- Structure-property relationships
- Crosslinking
- Model-based design
- Polymerization kinetics
- SI-29 NMR
- SOL
- NANOFIBERS
- POLYMERIZATION
- METHYLTRIETHOXYSILANE
- TETRAETHOXYSILANE
- FABRICATION
- HYDROLYSIS
- RHEOLOGY
language:
- eng
page:
  count: '11'
parent:
  short_title: Chem. Eng. J.
  title: CHEMICAL ENGINEERING JOURNAL
project:
- _id: 3F006621
  abstract: '<p>Today the high potential of (organo)silica branched/crosslinked/network
    polymers in nanofibrous membranes cannot be exploited to the fullest due to the
    lack of a straightforward way to produce them. To solve this, a fundamental understanding
    of how sol-gel synthesis and electrospinning are related via rheology is required.
    The main bottleneck remains that the viscosity evolution, as the network develops
    during synthesis, cannot be fully interpreted at the molecular level. For this,
    it is essential to fundamentally link the different steps in the electrospinning
    production process: from network formation of (organo)silica precursor molecules
    over electrospinning toward nanofibrous membranes. Both experimental (e.g. 29Si
    NMR, rheology) and kinetic modelling techniques will be used for this purpose.
    The morphology of the resulting nanofibrous membranes will be determined and linked
    back to the chemical building blocks, sol-gel synthesis and the electrospinning
    process as to enable the tuning of these (organo)silica nanofibers for advanced
    applications. The fiber diameter and the wettability will be studied as key model
    properties at respectively the fiber and material membrane level. This generic
    methodology can in the future be expanded toward other material properties to
    allow for molecular scale-driven material property tuning.</p>'
  end_date: 2025-10-31
  gismo_id: 190fbf11-2a82-11ec-95aa-05ef7abe0c3c
  iweto_id: 3F006621
  start_date: 2021-11-01
  title: 'Connecting (organo)silica sol-gel synthesis and membrane electrospinning:
    pushing toward molecular scale-driven property tuning'
- _id: 12B0D24N
  abstract: <p>The use of polymers, both synthetic and natural, is ubiquitous and
    they are found in virtually any aspect of modern life, including e.g. engineering
    composites, medical devices, packaging, and electronics. Several topologies can
    derive from the different types of connectivities and 3D positioning of all the
    bonds inside polymers, which are the base to predict the polymer macroscopic properties.
    A particularly complex case are the network/crosslinked polymers which have applications
    such as hygiene products, tissue engineering scaffolds, and drug delivery devices.
    They can be obtained using chain-growth synthesis and a large number of side reactions
    can be encountered, as well as a more complex reactant structure involving a plethora
    of functional groups. A major example for polymer networks and drug delivery systems
    are the ones using hydrogels, which showcase a combination of both chemical and
    physical interactions. Modeling the formation of these systems lead to precise
    material design, but has the main drawback of a complicated set of chemical reactions
    that must be characterized, in addition to long simulation time. To tackle these,
    in this project we propose to (i) expand the capabilities of our stochastic algorithms
    applied to polymer networks reactions and interactions, (ii) gather information
    from polymer networks through machine learning as a predictive tool for microscopic
    properties and (iii) upgrade the 3D visualization toolbox for this system.</p>
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  title: 'DAEMON: Deep polymer network design through Algorithm EnhanceMents, OptimizatioNs
    and machine learning'
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    developed over the years within the NMR and Structure Analysis unit (together
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    structure. The goal of the Core Facility application is to provide the expertise
    centre, which was established following the previous centres of expertise initiative
    (2018) with the visibility and the support to reach long term and sustainable
    operation. As such, it will provide access to the NMR infrastructure and advanced
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    analyses for the entire UGent Research Community and beyond. &#160;
  end_date: 2026-09-30
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  title: Cofunding core facility - NMR Expertise Centre
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    magnetic resonance spectroscopy. It organizes and participates in scientific support
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  iweto_id: 01XP2017
  start_date: 2017-02-01
  title: High resolution NMR Centre – a centre of expertise for structure characterization
    and molecular analysis in chemical, biochemical, biomedical and materials sciences
    at Ghent University)
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    New Roman'; font-size: medium;\"> is considered out of service by Bruker since
    2018, and is thus currently considered a risk and liability for the continued
    availibility of this essential basic research infrastructure.&#160;</span></p>
    \n<p><span style=\"font-family: 'Times New Roman'; font-size: medium;\">The newly
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    active spectrometer users, coming from 18 different research groups.</span></p>"
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    chemical synthesis, their detailed characterization down to the molecular level
    is key for their practical development and ultimately, their valorization in novel
    applications. Working on solid and soft, homogeneous or heterogeneous materials,
    the 22 members of this consortium are all involved in materials development, spanning
    fields of research reaching from organic and pharmaceutical chemistry, to the
    development of smart textiles and novel catalysts towards the CO2 neutral economy.
    At first sight, UGent has an impressive collection of instruments for materials
    characterisation, yet a crucial one is missing: a Nuclear magnetic resonance (NMR)
    spectrometer equipped to investigate these often insoluble materials. This equipment,
    akin to MRI scanners in hospitals, is of crucial importance for the further development
    of advanced and functional materials within the consortium, which also involves
    research groups from partner universities. Efficient use in a wide diversity of
    research programs will be achieved by embedding the equipment within the NMR expertise
    center at UGent, created in 2018 with the support of the University Research Council
    to address all molecular characterization needs in the chemical sciences, using
    this powerful but high-investment cost analysis technique.</p>'
  end_date: 2024-04-30
  gismo_id: fa53f142-ef49-4d7e-ad16-584114152e03
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  title: 'Magnetische resonantieapparatuur voor gevorderd materiaalonderzoek: moleculaire
    karakterisering van vaste, zachte, homogene en heterogene materie in de ontwikkeling
    van geavanceerde functionele materialen en chemische katalyse'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Model-based molecular rules for electrospinning solutions to deliver well-defined
  organosilica membranes
type: journalArticle
volume: '518'
wos_id: '001510727500001'
wos_type: Article
year: '2025'
...
---
_id: 01JWZKP23T4TKVTH0WP315NTG1
abstract:
- Alumina nanofibers prepared by electrospinning without polymer additives are presented
  as a catalyst material for esterification reactions. An optimal synthesis recipe
  has been determined based on an Al‐alkoxide precursor (aluminum di(sec‐butoxide)
  acetoacetic ester chelate [ASB]). By using an initial molar composition of 1:3:0.2:0.8
  for ASB:ethanol:hydrochloric acid:distilled water, and maintaining a dynamic viscosity
  between 50 and 150 mPa s, homogeneous alumina nanofibers with excellent thermal
  resistance are produced. The acidity, as an indicator of catalytic potential, was
  evaluated using NH3 temperature‐programmed desorption and compared with alternative
  catalysts of similar chemical nature, including cast alumina, γ‐alumina, and HZSM‐5.
  Testing of the alumina fibers as a catalyst in an esterification reaction (conversion
  of n‐pentanol and acetic acid into pentyl acetate) showed catalytic activity with
  higher conversion than the commercial alternatives. In addition, the reusability
  of the material was confirmed, thereby highlighting its potential as a highly efficient
  catalyst.
abstract_full:
- lang: eng
  text: Alumina nanofibers prepared by electrospinning without polymer additives are
    presented as a catalyst material for esterification reactions. An optimal synthesis
    recipe has been determined based on an Al‐alkoxide precursor (aluminum di(sec‐butoxide)
    acetoacetic ester chelate [ASB]). By using an initial molar composition of 1:3:0.2:0.8
    for ASB:ethanol:hydrochloric acid:distilled water, and maintaining a dynamic viscosity
    between 50 and 150 mPa s, homogeneous alumina nanofibers with excellent thermal
    resistance are produced. The acidity, as an indicator of catalytic potential,
    was evaluated using NH3 temperature‐programmed desorption and compared with alternative
    catalysts of similar chemical nature, including cast alumina, γ‐alumina, and HZSM‐5.
    Testing of the alumina fibers as a catalyst in an esterification reaction (conversion
    of n‐pentanol and acetic acid into pentyl acetate) showed catalytic activity with
    higher conversion than the commercial alternatives. In addition, the reusability
    of the material was confirmed, thereby highlighting its potential as a highly
    efficient catalyst.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: e70007
article_type: original
author:
- _id: 153AA182-8047-11E6-BF13-77C3B4D1D7B1
  affiliation:
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    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 153AA182-8047-11E6-BF13-77C3B4D1D7B1
  first_name: Minglun
  last_name: Li
  name: Minglun Li
  name_last_first: Li, Minglun
  ugent_id:
  - '000161084967'
  - '802002448779'
  - '975880575688'
- _id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  affiliation:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  first_name: Eva
  last_name: Loccufier
  name: Eva Loccufier
  name_last_first: Loccufier, Eva
  orcid_id: 0000-0001-7045-2721
  ugent_id:
  - '802002671374'
  - '974161061035'
- _id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
  orcid_id: 0000-0002-1281-2968
  ugent_id:
  - '000070582957'
  - '975000449525'
- _id: AE95E938-F309-11E6-B2AB-2286AD28A064
  biblio_id: AE95E938-F309-11E6-B2AB-2286AD28A064
  first_name: Tom
  last_name: Vandevyvere
  name: Tom Vandevyvere
  name_last_first: Vandevyvere, Tom
  ugent_id:
  - '979635896437'
- _id: e2496be2-e8b0-11ea-9d57-b4134479fb35
  biblio_id: e2496be2-e8b0-11ea-9d57-b4134479fb35
  first_name: Varun
  last_name: Singh
  name: Varun Singh
  name_last_first: Singh, Varun
  ugent_id:
  - '973111540334'
- _id: F6D37CC4-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F6D37CC4-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Maarten
  last_name: Sabbe
  name: Maarten Sabbe
  name_last_first: Sabbe, Maarten
  orcid_id: 0000-0003-4824-2407
  ugent_id:
  - '801001769093'
  - '919019362618'
  - '971262821071'
- _id: 01EE3E14-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 01EE3E14-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jeroen
  last_name: Lauwaert
  name: Jeroen Lauwaert
  name_last_first: Lauwaert, Jeroen
  orcid_id: 0000-0003-2781-3477
  ugent_id:
  - '802001036017'
  - '977821688562'
- _id: F47DEEAA-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F47DEEAA-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Hilde
  last_name: Poelman
  name: Hilde Poelman
  name_last_first: Poelman, Hilde
  orcid_id: 0000-0003-4267-7397
  ugent_id:
  - '801000771108'
  - '973242707370'
- _id: 1E4688D2-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 1E4688D2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Vladimir
  last_name: Galvita
  name: Vladimir Galvita
  name_last_first: Galvita, Vladimir
  orcid_id: 0000-0001-9205-7917
  ugent_id:
  - '802000598103'
  - '973377731370'
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01JWZKP23T4TKVTH0WP315NTG1
cite:
  apa: |2
      <div class="csl-entry">Li, M., Loccufier, E., Geltmeyer, J., Vandevyvere, T., Singh, V., Sabbe, M., … De Clerck, K. (2025). One‐step electrospinning of alumina nanofibers to create a competitive esterification catalyst. <i>JOURNAL OF THE AMERICAN CERAMIC SOCIETY</i>, <i>108</i>(10). https://doi.org/10.1111/jace.70007</div>
  bof: |2
      <div class="csl-entry">Li, Minglun, Eva Loccufier, Jozefien Geltmeyer, Tom Vandevyvere, Varun Singh, Maarten Sabbe, Jeroen Lauwaert, Hilde Poelman, Vladimir Galvita, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2025. “One‐step Electrospinning of Alumina Nanofibers to Create a Competitive Esterification Catalyst.” <i>JOURNAL OF THE AMERICAN CERAMIC SOCIETY</i> 108 (10). doi:10.1111/jace.70007.</div>
  chicago-author-date: |2
      <div class="csl-entry">Li, Minglun, Eva Loccufier, Jozefien Geltmeyer, Tom Vandevyvere, Varun Singh, Maarten Sabbe, Jeroen Lauwaert, et al. 2025. “One‐step Electrospinning of Alumina Nanofibers to Create a Competitive Esterification Catalyst.” <i>JOURNAL OF THE AMERICAN CERAMIC SOCIETY</i> 108 (10). https://doi.org/10.1111/jace.70007.</div>
  fwo: |2
      <div class="csl-entry">Li, Minglun, Eva Loccufier, Jozefien Geltmeyer, Tom Vandevyvere, Varun Singh, Maarten Sabbe, Jeroen Lauwaert, Hilde Poelman, Vladimir Galvita, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2025. “One‐step Electrospinning of Alumina Nanofibers to Create a Competitive Esterification Catalyst.” <i>JOURNAL OF THE AMERICAN CERAMIC SOCIETY</i> 108 (10). doi:10.1111/jace.70007.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">M. Li <i>et al.</i>, “One‐step electrospinning of alumina nanofibers to create a competitive esterification catalyst,” <i>JOURNAL OF THE AMERICAN CERAMIC SOCIETY</i>, vol. 108, no. 10, 2025.</div>
      </div>
  mla: |2
      <div class="csl-entry">Li, Minglun, et al. “One‐step Electrospinning of Alumina Nanofibers to Create a Competitive Esterification Catalyst.” <i>JOURNAL OF THE AMERICAN CERAMIC SOCIETY</i>, vol. 108, no. 10, 2025, doi:10.1111/jace.70007.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Li M, Loccufier E, Geltmeyer J, Vandevyvere T, Singh V, Sabbe M, et al. One‐step electrospinning of alumina nanofibers to create a competitive esterification catalyst. JOURNAL OF THE AMERICAN CERAMIC SOCIETY. 2025;108(10).</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
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    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2025-06-05 08:35:22
date_updated: 2026-03-31 15:16:02
doi:
- 10.1111/jace.70007
external: 0
file:
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  kind: fullText
  name: Accepted manuscript paper 2 Minglun Li.pdf
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handle: http://hdl.handle.net/1854/LU-01JWZKP23T4TKVTH0WP315NTG1
issn:
- 0002-7820
- 1551-2916
issue: '10'
jcr:
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 3
  prev_impact_factor: 3.8
keyword:
- ceramics
- design of experiments
- electrospinning
- heterogeneous catalysis
- high purity alumina
- macropores
- sol-gel synthesis
- GAMMA-ALUMINA
- ACETIC-ACID
- ADSORPTION
- FIBERS
- TPD
- HYDROLYSIS
- MORPHOLOGY
- STABILITY
- MEMBRANES
- ZEOLITES
language:
- eng
page:
  count: '13'
parent:
  short_title: J. Am. Ceram. Soc.
  title: JOURNAL OF THE AMERICAN CERAMIC SOCIETY
project:
- _id: 3S009618
  abstract: <p>Nanofibres are fibres with a diameter that is 1000 times smaller than
    a human hair. This makes nanofibrous membranes very light and porous, ideally
    suited for advanced engineering applications in various sectors. By adding a specific
    functionality (for example hydrophobic groups, amines, thiol functions), the application
    field can even be extended. However, the material choice and design are crucial
    for optimal performance. Therefore, several bridged organosilanes, hybrid structures
    with organic and inorganic moieties, will be studied as an alternative starting
    product to make such nanofibrous membranes within this project. They allow for
    highly flexible materials with superior chemical and thermal stability for which,
    moreover, the hydrophobicity can be tuned. These functionalised nanofibers will
    be processed from water and ethanol, which is ecologically more friendly than
    most current nanofiber and membrane production techniques. Applications in the
    field of water purification and chemical conversion are targeted. These <br />applications
    require long-term stable materials and make use of the large specific surface
    area, high porosity and/or large pores of the nanofibrous membranes to target
    more efficient processes.</p>
  end_date: 2022-09-09
  gismo_id: d937d58c-be65-11e9-ace9-8bf558aeac68
  iweto_id: 3S009618
  start_date: 2018-01-01
  title: |-
    Long-term stable organosilica nanofibrous membranes
    functionalised for advanced engineering applications
- _id: 01B03518
  abstract: <p>The requested table top SEM with integrated micromechanical testing,
    combines a large sample chamber to accommodate a sensitive micromechanical set-up
    with a high magnification and easy sampling. This is highly novel and only recently
    available at moderate costs. The in-situ visualization of material performance
    under load at high magnification will boost the academic research of the applicants
    and their collaborators.</p>
  end_date: 2020-05-31
  gismo_id: 320e7057-5b7c-11e9-ac93-1bffacd2a7e2
  iweto_id: 01B03518
  publication_count: 1
  start_date: 2018-06-01
  title: Table top SEM with integrated in-situ micromechanical testing for fiber,
    polymer and composite materials
- _id: 01J10219
  abstract: <p>Membrane technology can offer an answer for today’s research challenges
    to solve environmental problems. These membranes are in need of an improved resistance
    to harsh environments. This will further broaden applications such as water recycling
    but will also open up very novel applications in a process intensification of
    CO2 conversion units. Within this project nanofibers are developed for these applications.</p>
  end_date: 2024-07-30
  gismo_id: 1e0c3a2d-9d90-11e9-83f9-d13d95d2d7be
  iweto_id: 01J10219
  start_date: 2019-10-01
  title: Nanofibrous membranes for today’s environmental research questions.
- _id: 3S042419
  abstract: <p>Due to the depletion of fossil resources and the environmental concerns
    about the use of these feedstocks, it is important to investigate the exploitation
    of alternatives, preferably of a renewable origin. Lignocellulose is a widely
    available type of biomass that does not compete with the food industry and can
    be converted into jet and diesel fuels as well as chemicals via a route that includes
    aldol condensation and hydrodeoxygenation (HDO) reactions. Although biomass-derived
    molecules are chemically very different from petroleum-based ones, the present
    generation of HDO catalysts are still based on the ones used in the petroleum
    industry. This project proposal aims to replace these catalysts by innovative
    Ni-Cu catalysts specifically designed for renewable components. It is expected
    to lead to an increased catalytic activity, a lower energy demand of the process,
    a better steering towards the desired product spectrum as well as a reduced cost
    of the final products. Secondly, a simulation tool will be developed that can
    provide guidelines on the necessary feedstock purity as well as which catalyst
    and reaction conditions that needs to be used to efficiently produce a product
    that meets specifications imposed based on the market demands.</p>
  end_date: 2023-10-31
  gismo_id: 57c1b13d-f98c-11e9-9191-7fc8fa7ad5b7
  iweto_id: 3S042419
  start_date: 2019-11-01
  title: Production of biofuels and chemicals via Ni-Cu catalyzed hydrodeoxygenation
    of furfural and its aldol condensates
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: One‐step electrospinning of alumina nanofibers to create a competitive esterification
  catalyst
type: journalArticle
volume: '108'
wos_id: '001501382900001'
wos_type: Article
year: '2025'
...
---
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- first_name: Claudia
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  orcid_id: 0000-0002-2478-3455
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  first_name: Karen
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  name: Karen De Clerck
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  orcid_id: 0000-0002-5650-3075
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biblio_id: 01JTFJMYP8FT6Z3R5G0RSM3RB0
cite:
  apa: |2
      <div class="csl-entry">Maudens, Y., Debruyn, G., Loccufier, E., Daelemans, L., Savino, E., Tonetti, C., … De Clerck, K. (2025). Biomimicry of the modular gaseous sorption properties of reptile eggshells via electrospun keratin membranes. <i>ESEE 2025 : 8th European Symposium on Electrohydrodynamic Atomization and Electrospinning 2025, Book of Abstracts</i>, 13–13.</div>
  bof: |2
      <div class="csl-entry">Maudens, Yana, Gerben Debruyn, Eva Loccufier, Lode Daelemans, Erica Savino, Cinzia Tonetti, Claudia Vineis, Alessio Varesano, Matthew Shawkey, Liliana D’Alba Altamirano, and Karen De Clerck. 2025. “Biomimicry of the Modular Gaseous Sorption Properties of Reptile Eggshells via Electrospun Keratin Membranes.” In <i>ESEE 2025 : 8th European Symposium on Electrohydrodynamic Atomization and Electrospinning 2025, Book of Abstracts</i>, 13–13.</div>
  chicago-author-date: |2
      <div class="csl-entry">Maudens, Yana, Gerben Debruyn, Eva Loccufier, Lode Daelemans, Erica Savino, Cinzia Tonetti, Claudia Vineis, et al. 2025. “Biomimicry of the Modular Gaseous Sorption Properties of Reptile Eggshells via Electrospun Keratin Membranes.” In <i>ESEE 2025 : 8th European Symposium on Electrohydrodynamic Atomization and Electrospinning 2025, Book of Abstracts</i>, 13–13.</div>
  fwo: |2
      <div class="csl-entry">Maudens, Yana, Gerben Debruyn, Eva Loccufier, Lode Daelemans, Erica Savino, Cinzia Tonetti, Claudia Vineis, Alessio Varesano, Matthew Shawkey, Liliana D’Alba Altamirano, and Karen De Clerck. 2025. “Biomimicry of the Modular Gaseous Sorption Properties of Reptile Eggshells via Electrospun Keratin Membranes.” In <i>ESEE 2025 : 8th European Symposium on Electrohydrodynamic Atomization and Electrospinning 2025, Book of Abstracts</i>, 13–13.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Y. Maudens <i>et al.</i>, “Biomimicry of the modular gaseous sorption properties of reptile eggshells via electrospun keratin membranes,” in <i>ESEE 2025 : 8th European Symposium on Electrohydrodynamic Atomization and Electrospinning 2025, Book of Abstracts</i>, Nicosia, Cyprus, 2025, pp. 13–13.</div>
      </div>
  mla: |2
      <div class="csl-entry">Maudens, Yana, et al. “Biomimicry of the Modular Gaseous Sorption Properties of Reptile Eggshells via Electrospun Keratin Membranes.” <i>ESEE 2025 : 8th European Symposium on Electrohydrodynamic Atomization and Electrospinning 2025, Book of Abstracts</i>, 2025, pp. 13–13.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Maudens Y, Debruyn G, Loccufier E, Daelemans L, Savino E, Tonetti C, et al. Biomimicry of the modular gaseous sorption properties of reptile eggshells via electrospun keratin membranes. In: ESEE 2025 : 8th European Symposium on Electrohydrodynamic Atomization and Electrospinning 2025, Book of Abstracts. 2025. p. 13–13.</div>
       </div>
classification: C3
conference:
  end_date: 2025-04-30
  location: Nicosia, Cyprus
  name: 8th European Symposium on Electrohydrodynamic Atomization and Electrospinning
    2025
  organizer: Theodora Krasia
  start_date: 2025-04-28
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
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  first_name: Yana
  last_name: Maudens
  name: Yana Maudens
  name_last_first: Maudens, Yana
  orcid_id: 0009-0004-7574-7309
  ugent_id:
  - '000180496485'
  - '802004439404'
date_created: 2025-05-05 06:38:03
date_updated: 2026-06-22 07:01:19
external: 0
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handle: http://hdl.handle.net/1854/LU-01JTFJMYP8FT6Z3R5G0RSM3RB0
jcr: {}
language:
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page:
  first: '13'
  last: '13'
parent:
  title: 'ESEE 2025 : 8th European Symposium on Electrohydrodynamic Atomization and
    Electrospinning 2025, Book of Abstracts'
project:
- _id: 3G0A7921
  abstract: "<p>Eggs are multifunctional structures that enabled vertebrates to colonize
    the land millions of years ago. Eggshell morphology is at the core of animal survival
    and has evolved into a massive diversity of forms and functions in modern reptiles.
    These functions may also serve as models for new antimicrobial and/or breathable
    membranes.\nBut we still lack critical data on the chemical composition, ultrastructure,
    and material properties of reptile eggs. These data are critically needed to understand
    their effects on vertebrate evolution and successfully use them as biomimetic
    models.\nIn this project we will use a highly integrative approach including functional
    morphology, evolution, biomechanics and biomimicry to test hypotheses on form-function
    relationships in eggs and their potential as models for biomimetic materials.
    Specifically, we will address the following questions: How does egg morphology
    affect biomechanical function? Do nesting ecology and life history drive the evolution
    of eggshell design? Do bioinspired replicas retain functional properties comparable
    to natural eggs? \nTo answer these questions we will use state-of-the-art μCT,
    electron microscopy, chemical and biomechanical tests, phylogenetic comparative
    methods and materials science techniques to experimentally test form-function
    relationships and produce novel, bioinspired multifunctional membranes.</p>"
  end_date: 2024-12-31
  gismo_id: ae3ff06f-4420-11eb-809b-01df1efbbcb6
  iweto_id: 3G0A7921
  publication_count: 11
  start_date: 2021-01-01
  title: 'Biomechanics and Biomimicry of Reptile Eggs: Insights into their functions
    and evolution'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Biomimicry of the modular gaseous sorption properties of reptile eggshells
  via electrospun keratin membranes
type: conference
year: '2025'
...
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cite:
  apa: |2
      <div class="csl-entry">Van de Velde, N., Lavens, E., Plekhova, V., Dhaware, V., De Windt, K., Frateur, O., … Vanhaecke, L. (2025). Polymer-driven innovation in ambient metabotyping : toward scalable pediatric biofluid analysis. <i>BeNeLux Metabolomics Days 2025, Abstracts</i>. Presented at the BeNeLux Metabolomics Days 2025, Leiden, the Netherlands.</div>
  bof: |2
      <div class="csl-entry">Van de Velde, Noa, Elias Lavens, Vera Plekhova, Vinita Dhaware, Kimberly De Windt, Olmo Frateur, Richard Hoogenboom, Karen De Clerck, and Lynn Vanhaecke. 2025. “Polymer-Driven Innovation in Ambient Metabotyping : Toward Scalable Pediatric Biofluid Analysis.” In <i>BeNeLux Metabolomics Days 2025, Abstracts</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">Van de Velde, Noa, Elias Lavens, Vera Plekhova, Vinita Dhaware, Kimberly De Windt, Olmo Frateur, Richard Hoogenboom, Karen De Clerck, and Lynn Vanhaecke. 2025. “Polymer-Driven Innovation in Ambient Metabotyping : Toward Scalable Pediatric Biofluid Analysis.” In <i>BeNeLux Metabolomics Days 2025, Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">Van de Velde, Noa, Elias Lavens, Vera Plekhova, Vinita Dhaware, Kimberly De Windt, Olmo Frateur, Richard Hoogenboom, Karen De Clerck, and Lynn Vanhaecke. 2025. “Polymer-Driven Innovation in Ambient Metabotyping : Toward Scalable Pediatric Biofluid Analysis.” In <i>BeNeLux Metabolomics Days 2025, Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">N. Van de Velde <i>et al.</i>, “Polymer-driven innovation in ambient metabotyping : toward scalable pediatric biofluid analysis,” in <i>BeNeLux Metabolomics Days 2025, Abstracts</i>, Leiden, the Netherlands, 2025.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van de Velde, Noa, et al. “Polymer-Driven Innovation in Ambient Metabotyping : Toward Scalable Pediatric Biofluid Analysis.” <i>BeNeLux Metabolomics Days 2025, Abstracts</i>, 2025.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van de Velde N, Lavens E, Plekhova V, Dhaware V, De Windt K, Frateur O, et al. Polymer-driven innovation in ambient metabotyping : toward scalable pediatric biofluid analysis. In: BeNeLux Metabolomics Days 2025, Abstracts. 2025.</div>
       </div>
classification: C3
conference:
  end_date: 2025-08-28
  location: Leiden, the Netherlands
  name: BeNeLux Metabolomics Days 2025
  organizer: BeNeLux Metabolomics Centre
  start_date: 2025-08-27
conference_type: poster
created_by:
  _id: 90b77070-b92c-11ef-b166-fc59883dcc98
  affiliation:
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    - ugent_id: DI
    - ugent_id: DI04
    ugent_id: DI04
  biblio_id: 90b77070-b92c-11ef-b166-fc59883dcc98
  first_name: Noa
  last_name: Van de Velde
  name: Noa Van de Velde
  name_last_first: Van de Velde, Noa
  orcid_id: 0009-0007-8469-8176
  ugent_id:
  - '000190763230'
  - '802004846295'
date_created: 2026-07-06 13:46:46
date_updated: 2026-07-07 08:30:41
external: 0
handle: http://hdl.handle.net/1854/LU-01KWVTWVHGQM2JCZP78RN025Q5
jcr: {}
language:
- eng
parent:
  title: BeNeLux Metabolomics Days 2025, Abstracts
publication_status: published
publication_status_sort: 2
status: public
subject:
- Biology and Life Sciences
title: 'Polymer-driven innovation in ambient metabotyping : toward scalable pediatric
  biofluid analysis'
type: conference
year: '2025'
...
---
_id: 01HPKKW4536F09QX221966778V
abstract:
- This paper studies thermomechanical coupling during room-temperature tensile testing
  of polyamide-6 (PA6) and 50 wt% short glass fibre/PA6. The tests were performed
  for different fibre angles (0°, 45°, 90°), moisture contents (dry, 50%RH), and strain
  rates (10^(-4), 10^(-2), 10^(-1)  s^(-1)). Digital image correlation (DIC) was coupled
  with infrared thermography. The contribution of the local strains, strain rates
  and temperatures to the global mechanical behaviour was investigated throughout
  deformation. The initial thermoelastic response was used to estimate the coefficient
  of thermal expansion. In PA6, neck development caused significant self-heating at
  high strain rates, differently between dry and 50%RH. In glass/PA6, however, temperature
  rises were always small (< +3 °C) despite local strain rate peaks in the fracture
  zone. This was ascribed to limited plastic deformation, as confirmed by post-mortem
  microscopy. The full-field data can be highly valuable for the development of advanced
  constitutive models for both pure polymer and short fibre composite.
abstract_full:
- lang: eng
  text: This paper studies thermomechanical coupling during room-temperature tensile
    testing of polyamide-6 (PA6) and 50 wt% short glass fibre/PA6. The tests were
    performed for different fibre angles (0°, 45°, 90°), moisture contents (dry, 50%RH),
    and strain rates (10^(-4), 10^(-2), 10^(-1)  s^(-1)). Digital image correlation
    (DIC) was coupled with infrared thermography. The contribution of the local strains,
    strain rates and temperatures to the global mechanical behaviour was investigated
    throughout deformation. The initial thermoelastic response was used to estimate
    the coefficient of thermal expansion. In PA6, neck development caused significant
    self-heating at high strain rates, differently between dry and 50%RH. In glass/PA6,
    however, temperature rises were always small (< +3 °C) despite local strain rate
    peaks in the fracture zone. This was ascribed to limited plastic deformation,
    as confirmed by post-mortem microscopy. The full-field data can be highly valuable
    for the development of advanced constitutive models for both pure polymer and
    short fibre composite.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: '108361'
article_type: original
author:
- _id: bf54bd2b-bd78-11ea-9edd-e723f25734e4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: bf54bd2b-bd78-11ea-9edd-e723f25734e4
  credit_role:
  - first_author
  - data_curation
  - formal_analysis
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  - validation
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  first_name: Daniele
  last_name: Finazzi
  name: Daniele Finazzi
  name_last_first: Finazzi, Daniele
  orcid_id: 0000-0002-6418-6823
  ugent_id:
  - '971313003619'
- _id: 734D4ECE-4D8B-11E8-A226-889411A95AF2
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 734D4ECE-4D8B-11E8-A226-889411A95AF2
  credit_role:
  - formal_analysis
  - methodology
  - software
  - writing_original_draft
  - writing_review_editing
  first_name: Yuriy
  last_name: Sinchuk
  name: Yuriy Sinchuk
  name_last_first: Sinchuk, Yuriy
  orcid_id: 0000-0002-2007-9874
  ugent_id:
  - '000181163563'
  - '802002870226'
  - '972445366562'
- _id: 71BBD8CE-7FCB-11E3-B98E-C68310BDE39D
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 71BBD8CE-7FCB-11E3-B98E-C68310BDE39D
  credit_role:
  - conceptualization
  - funding_acquisition
  - methodology
  - software
  - supervision
  - writing_review_editing
  first_name: Ruben
  last_name: Sevenois
  name: Ruben Sevenois
  name_last_first: Sevenois, Ruben
  orcid_id: 0000-0003-4977-2522
  ugent_id:
  - '979446364396'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  credit_role:
  - resources
  - supervision
  - writing_review_editing
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - resources
  - supervision
  - writing_review_editing
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- credit_role:
  - resources
  first_name: Gilles
  last_name: Robert
  name: Gilles Robert
  name_last_first: Robert, Gilles
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - conceptualization
  - funding_acquisition
  - project_administration
  - resources
  - supervision
  - writing_review_editing
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
biblio_id: 01HPKKW4536F09QX221966778V
cite:
  apa: |2
      <div class="csl-entry">Finazzi, D., Sinchuk, Y., Sevenois, R., Daelemans, L., De Clerck, K., Robert, G., &#38; Van Paepegem, W. (2024). Study of self-heating and local strain rate in polyamide-6 and short fibre glass/polyamide-6 under tension through synchronised full-field strain and temperature measurements. <i>POLYMER TESTING</i>, <i>132</i>. https://doi.org/10.1016/j.polymertesting.2024.108361</div>
  bof: |2-
      <div class="csl-entry">Finazzi, Daniele, Yuriy Sinchuk, Ruben Sevenois, Lode Daelemans, Karen De Clerck, Gilles Robert, and Wim Van Paepegem. 2024. “Study of Self-Heating and Local Strain Rate in Polyamide-6 and Short Fibre Glass/Polyamide-6 under Tension through Synchronised Full-Field Strain and Temperature Measurements.” <i>POLYMER TESTING</i> 132. doi:10.1016/j.polymertesting.2024.108361.</div>
    <div><i>Impact factor: 6, category: MATERIALS SCIENCE, CHARACTERIZATION & TESTING, rank: 1/31, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Finazzi, Daniele, Yuriy Sinchuk, Ruben Sevenois, Lode Daelemans, Karen De Clerck, Gilles Robert, and Wim Van Paepegem. 2024. “Study of Self-Heating and Local Strain Rate in Polyamide-6 and Short Fibre Glass/Polyamide-6 under Tension through Synchronised Full-Field Strain and Temperature Measurements.” <i>POLYMER TESTING</i> 132. https://doi.org/10.1016/j.polymertesting.2024.108361.</div>
  fwo: |2
      <div class="csl-entry">Finazzi, Daniele, Yuriy Sinchuk, Ruben Sevenois, Lode Daelemans, Karen De Clerck, Gilles Robert, and Wim Van Paepegem. 2024. “Study of Self-Heating and Local Strain Rate in Polyamide-6 and Short Fibre Glass/Polyamide-6 under Tension through Synchronised Full-Field Strain and Temperature Measurements.” <i>POLYMER TESTING</i> 132. doi:10.1016/j.polymertesting.2024.108361.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">D. Finazzi <i>et al.</i>, “Study of self-heating and local strain rate in polyamide-6 and short fibre glass/polyamide-6 under tension through synchronised full-field strain and temperature measurements,” <i>POLYMER TESTING</i>, vol. 132, 2024.</div>
      </div>
  mla: |2
      <div class="csl-entry">Finazzi, Daniele, et al. “Study of Self-Heating and Local Strain Rate in Polyamide-6 and Short Fibre Glass/Polyamide-6 under Tension through Synchronised Full-Field Strain and Temperature Measurements.” <i>POLYMER TESTING</i>, vol. 132, 2024, doi:10.1016/j.polymertesting.2024.108361.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Finazzi D, Sinchuk Y, Sevenois R, Daelemans L, De Clerck K, Robert G, et al. Study of self-heating and local strain rate in polyamide-6 and short fibre glass/polyamide-6 under tension through synchronised full-field strain and temperature measurements. POLYMER TESTING. 2024;132.</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution-NonCommercial-NoDerivatives 4.0
  International Public License (CC BY-NC-ND 4.0)
created_by:
  _id: bf54bd2b-bd78-11ea-9edd-e723f25734e4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: bf54bd2b-bd78-11ea-9edd-e723f25734e4
  first_name: Daniele
  last_name: Finazzi
  name: Daniele Finazzi
  name_last_first: Finazzi, Daniele
  orcid_id: 0000-0002-6418-6823
  ugent_id:
  - '971313003619'
date_created: 2024-02-14 10:51:19
date_updated: 2026-03-31 12:52:28
doi:
- 10.1016/j.polymertesting.2024.108361
external: 0
file:
- _id: 01HPKM10ZZ3DKR18GYWKGD8R0Q
  access: open
  content_type: application/pdf
  kind: fullText
  name: Finazzi et al (2024).pdf
  publication_version: publishedVersion
  sha256: 32dbea7e0c51f548314930015e1581681534d0753bc9ce412700a06c54fd27b6
  size: '15242275'
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  url: https://biblio.ugent.be/publication/01HPKKW4536F09QX221966778V/file/01HPKM10ZZ3DKR18GYWKGD8R0Q.pdf
handle: http://hdl.handle.net/1854/LU-01HPKKW4536F09QX221966778V
issn:
- 0142-9418
- 1873-2348
jcr:
  category: MATERIALS SCIENCE, CHARACTERIZATION & TESTING
  category_decile: 1
  category_quartile: 1
  category_rank: 1/31
  category_vigintile: 1
  eigenfactor: 0.01366
  immediacy_index: 1.3
  impact_factor: 6
  impact_factor_5yr: 5.5
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 1
  prev_impact_factor: 5
  total_cites: 21489
keyword:
- Polyamide-6 (PA6)
- Short fibre-reinforced composites (SFRPs)
- Tensile tests
- Digital image correlation (DIC)
- Self-heating
language:
- eng
page:
  count: '15'
parent:
  short_title: Polym Test
  title: POLYMER TESTING
project:
- _id: 179L03420
  abstract: "<p> General purpose </p> \n<p> Industrial processors / users of thermoplastic
    polymers and composites are confronted lacking an efficient end-to-end simulation
    workflow that makes the part seamless links to the design, and takes into account
    the physical changes it makes during the design phase thermoplastic material undergoes
    during production. The purpose of the ProPeL (PROces and </p> \n<p> Performance
    simulation of Lightweight Structures) project is two-fold: (i) predicting the
    “as-manufactured” lightweight profile and (ii) predicting the influence of the
    production process on the structural performance of lightweight structures. ProPeL
    aims to further develop the simulation options for the production and evaluation
    of thermoplastic components, both for fiber-reinforced as non-fiber-reinforced,
    as well as for amorphous and (semi-) crystalline polymers. </p>"
  end_date: 2024-05-31
  gismo_id: 4060755c-bdc2-49a5-8d00-487761e9afd8
  iweto_id: 179L03420
  publication_count: 2
  start_date: 2020-06-01
  title: 'ProPel: Process and Performance Simulation of Lightweight Structures'
- _id: 01XP1717
  abstract: <p>UGCT is a research/user facility offering external research groups
    and companies access to its unique combination of state-of-the-art in-house developed
    high-resolution X-ray CT systems and its CT expertise. The flexibility of the
    systems and the knowledge of the researchers involved allows to perform challenging
    experiments in various research fields, continuously pushing the limits of what
    is currently possible with CT.</p>
  end_date: 2024-01-31
  gismo_id: c007e1ff-1de1-43a1-8ef5-573ce37d58c1
  iweto_id: 01XP1717
  publication_count: 24
  start_date: 2017-02-01
  title: UGCT – Ghent University Centre for X-ray Tomography
- _id: '3E005020'
  abstract: <p>Engineers need to justify the usefulness of  Unidirectional Thermoplastic
    Fibre Reinforced Polymers in mechanical design before they can be integrated in
    high volume production lines of automotive suppliers. For this it is vital that
    1) the experimental thermomechanical properties of the material are known; and
    2) material models exist which can properly predict the material behaviour. In
    this project the fundamental knowledge required to experimentally characterise
    and virtually model a thermoplastic composite is acquired by a thorough experimental
    and modelling study of the thermo-visco-elasto-plastic and damage behaviour. The
    investigation specifically targets the strain rate dependent material behaviour,
    the stiffness change depending on damage, temperature, load speed and loading
    direction, and the development of permanent strain and damage. This in different
    material directions and in the presence of stress concentrations. For verification
    and model calibration the material behaviour is characterized under uniform loading
    conditions. For model validation the material is tested under multiaxial loading
    conditions in the presence of stress concentrations. The latter is achieved by
    using notched coupons. Upon completion of this project the most accurate understanding
    of thermomechanical behaviour of thermoplastic composites is obtained. At the
    same time the material model will, considering the current state-of-the-art, be
    the most extensively validated for this material. </p>
  end_date: 2023-04-16
  gismo_id: 19af023b-d7df-11ea-aa27-b1f81ec15cf7
  iweto_id: '3E005020'
  start_date: 2020-10-01
  title: Experimental Characterisation and Model Development of the Thermomechanical
    Response of Notched Continuous Fibre Reinforced Thermoplastic Composites under
    Tension and Compression at Ambient and Elevated Temperature.
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
- Chemistry
- Physics and Astronomy
title: Study of self-heating and local strain rate in polyamide-6 and short fibre
  glass/polyamide-6 under tension through synchronised full-field strain and temperature
  measurements
type: journalArticle
volume: '132'
wos_id: '001186968800001'
wos_type: Article
year: '2024'
...
---
_id: 01JDW0BCRZK37JEJ1VBA4BTBPW
abstract:
- Polyamide-6 (PA6) and short glass fibre-reinforced PA6 (GPA6) are increasingly used
  in structural automotive parts exposed to harsh conditions, respectively as liner
  in Type IV hydrogen tanks and under-the-hood components near the engine. Safe design
  requires understanding of their complex mechanical behaviour under the influence
  of temperature, moisture, and strain rate. Two models often applied in the literature
  are the temperature-humidity equivalence and the time-temperature superposition
  (TTS), however their accuracy to describe the full mechanical response is still
  unclear. By generating high-quality data, this paper conducts a quantitative study
  of these models on the mechanical response of injection-moulded PA6 and GPA6 with
  a very high fibre content (50 wt%). The materials were conditioned either dry or
  at 50%RH. Dynamic mechanical analysis (DMA) was used to measure the glass transition
  temperature of dry PA6 and 50%RH PA6, and to construct TTS master curves. Tensile
  tests were then conducted at different combinations of temperature, moisture, and
  strain rate. Comparison of the tensile true stress-true strain curves revealed that
  the proposed models fail to capture the effects of the thermal history, which may
  cause microstructural modifications as demonstrated with differential scanning calorimetry
  (DSC). The link between DSC, DMA, and tensile data constitutes a novelty of this
  work and was possible because all the samples had the same hygro-thermal history.
  Additionally, self-heating of PA6 causes deviations from the TTS at large strains.
  The results of this study may help develop more accurate material models, ultimately
  improving the design of structural automotive parts.
abstract_full:
- lang: eng
  text: Polyamide-6 (PA6) and short glass fibre-reinforced PA6 (GPA6) are increasingly
    used in structural automotive parts exposed to harsh conditions, respectively
    as liner in Type IV hydrogen tanks and under-the-hood components near the engine.
    Safe design requires understanding of their complex mechanical behaviour under
    the influence of temperature, moisture, and strain rate. Two models often applied
    in the literature are the temperature-humidity equivalence and the time-temperature
    superposition (TTS), however their accuracy to describe the full mechanical response
    is still unclear. By generating high-quality data, this paper conducts a quantitative
    study of these models on the mechanical response of injection-moulded PA6 and
    GPA6 with a very high fibre content (50 wt%). The materials were conditioned either
    dry or at 50%RH. Dynamic mechanical analysis (DMA) was used to measure the glass
    transition temperature of dry PA6 and 50%RH PA6, and to construct TTS master curves.
    Tensile tests were then conducted at different combinations of temperature, moisture,
    and strain rate. Comparison of the tensile true stress-true strain curves revealed
    that the proposed models fail to capture the effects of the thermal history, which
    may cause microstructural modifications as demonstrated with differential scanning
    calorimetry (DSC). The link between DSC, DMA, and tensile data constitutes a novelty
    of this work and was possible because all the samples had the same hygro-thermal
    history. Additionally, self-heating of PA6 causes deviations from the TTS at large
    strains. The results of this study may help develop more accurate material models,
    ultimately improving the design of structural automotive parts.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: '108653'
article_type: original
author:
- _id: bf54bd2b-bd78-11ea-9edd-e723f25734e4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: bf54bd2b-bd78-11ea-9edd-e723f25734e4
  credit_role:
  - first_author
  - conceptualization
  - data_curation
  - formal_analysis
  - investigation
  - methodology
  - software
  - validation
  - visualization
  - writing_original_draft
  first_name: Daniele
  last_name: Finazzi
  name: Daniele Finazzi
  name_last_first: Finazzi, Daniele
  orcid_id: 0000-0002-6418-6823
  ugent_id:
  - '971313003619'
- credit_role:
  - investigation
  - writing_review_editing
  first_name: Guillem
  last_name: Seychal
  name: Guillem Seychal
  name_last_first: Seychal, Guillem
- credit_role:
  - resources
  - supervision
  - writing_review_editing
  first_name: Jean-Marie
  last_name: Raquez
  name: Jean-Marie Raquez
  name_last_first: Raquez, Jean-Marie
- credit_role:
  - resources
  - writing_review_editing
  first_name: Gilles
  last_name: Robert
  name: Gilles Robert
  name_last_first: Robert, Gilles
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - resources
  - supervision
  - writing_review_editing
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
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cite:
  apa: |2
      <div class="csl-entry">Finazzi, D., Seychal, G., Raquez, J.-M., Robert, G., De Clerck, K., Daelemans, L., &#38; Van Paepegem, W. (2024). Study of the temperature-humidity equivalence and the time-temperature superposition principle in the finite-strain response of polyamide-6 and short glass fibre-reinforced polyamide-6. <i>POLYMER TESTING</i>, <i>141</i>. https://doi.org/10.1016/j.polymertesting.2024.108653</div>
  bof: |2-
      <div class="csl-entry">Finazzi, Daniele, Guillem Seychal, Jean-Marie Raquez, Gilles Robert, Karen De Clerck, Lode Daelemans, and Wim Van Paepegem. 2024. “Study of the Temperature-Humidity Equivalence and the Time-Temperature Superposition Principle in the Finite-Strain Response of Polyamide-6 and Short Glass Fibre-Reinforced Polyamide-6.” <i>POLYMER TESTING</i> 141. doi:10.1016/j.polymertesting.2024.108653.</div>
    <div><i>Impact factor: 6, category: MATERIALS SCIENCE, CHARACTERIZATION & TESTING, rank: 1/31, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Finazzi, Daniele, Guillem Seychal, Jean-Marie Raquez, Gilles Robert, Karen De Clerck, Lode Daelemans, and Wim Van Paepegem. 2024. “Study of the Temperature-Humidity Equivalence and the Time-Temperature Superposition Principle in the Finite-Strain Response of Polyamide-6 and Short Glass Fibre-Reinforced Polyamide-6.” <i>POLYMER TESTING</i> 141. https://doi.org/10.1016/j.polymertesting.2024.108653.</div>
  fwo: |2
      <div class="csl-entry">Finazzi, Daniele, Guillem Seychal, Jean-Marie Raquez, Gilles Robert, Karen De Clerck, Lode Daelemans, and Wim Van Paepegem. 2024. “Study of the Temperature-Humidity Equivalence and the Time-Temperature Superposition Principle in the Finite-Strain Response of Polyamide-6 and Short Glass Fibre-Reinforced Polyamide-6.” <i>POLYMER TESTING</i> 141. doi:10.1016/j.polymertesting.2024.108653.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">D. Finazzi <i>et al.</i>, “Study of the temperature-humidity equivalence and the time-temperature superposition principle in the finite-strain response of polyamide-6 and short glass fibre-reinforced polyamide-6,” <i>POLYMER TESTING</i>, vol. 141, 2024.</div>
      </div>
  mla: |2
      <div class="csl-entry">Finazzi, Daniele, et al. “Study of the Temperature-Humidity Equivalence and the Time-Temperature Superposition Principle in the Finite-Strain Response of Polyamide-6 and Short Glass Fibre-Reinforced Polyamide-6.” <i>POLYMER TESTING</i>, vol. 141, 2024, doi:10.1016/j.polymertesting.2024.108653.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Finazzi D, Seychal G, Raquez J-M, Robert G, De Clerck K, Daelemans L, et al. Study of the temperature-humidity equivalence and the time-temperature superposition principle in the finite-strain response of polyamide-6 and short glass fibre-reinforced polyamide-6. POLYMER TESTING. 2024;141.</div>
       </div>
classification: A1
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  biblio_id: bf54bd2b-bd78-11ea-9edd-e723f25734e4
  first_name: Daniele
  last_name: Finazzi
  name: Daniele Finazzi
  name_last_first: Finazzi, Daniele
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  ugent_id:
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date_created: 2024-11-29 13:04:19
date_updated: 2026-03-31 14:15:21
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keyword:
- Polyamide-6 (PA6)
- Short fibre-reinforced polymers (SFRPs)
- Time-temperature superposition (TTS)
- Dynamic mechanical analysis (DMA)
- Differential scanning calorimetry (DSC)
- Tensile tests
- PLASTIC-DEFORMATION
- WATER
- TRANSITION
- POLYMERS
- RELAXATION
- BEHAVIOR
language:
- eng
page:
  count: '15'
parent:
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  title: POLYMER TESTING
project:
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  abstract: "<p> General purpose </p> \n<p> Industrial processors / users of thermoplastic
    polymers and composites are confronted lacking an efficient end-to-end simulation
    workflow that makes the part seamless links to the design, and takes into account
    the physical changes it makes during the design phase thermoplastic material undergoes
    during production. The purpose of the ProPeL (PROces and </p> \n<p> Performance
    simulation of Lightweight Structures) project is two-fold: (i) predicting the
    “as-manufactured” lightweight profile and (ii) predicting the influence of the
    production process on the structural performance of lightweight structures. ProPeL
    aims to further develop the simulation options for the production and evaluation
    of thermoplastic components, both for fiber-reinforced as non-fiber-reinforced,
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  end_date: 2024-05-31
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    hydrogen needs to be stored in a lightweight composite tank under very high pressure
    (700 bar). Certification requirements are very stringent and require passing very
    expensive static burst pressure tests, fatigue tests and impact tests when dropped
    from low heights. Much trial-and-error is still used in the design of new tanks
    and many full-scale tests are needed to meet certification requirements. This
    project aims to (i) develop predictive simulations for fatigue and impact of full-scale
    tanks, (ii) partially replace full-scale tests with representative tests at subcomponent
    level, (iii) validate new systems for inspection and monitoring of full-scale
    tanks, and (iv) propose new designs for composite tanks with a smaller ecological
    <br />footprint and better recyclability for pressurised hydrogen storage.</p>
  end_date: 2027-06-30
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  iweto_id: 179A00124
  start_date: 2024-07-01
  title: 'COMFHY: Composite solutions for future hydrogen storage tanks'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Chemistry
- Technology and Engineering
title: Study of the temperature-humidity equivalence and the time-temperature superposition
  principle in the finite-strain response of polyamide-6 and short glass fibre-reinforced
  polyamide-6
type: journalArticle
volume: '141'
wos_id: '001372537900001'
wos_type: Article
year: '2024'
...
---
_id: 01HNZ8NZC5ENVF6C63C1FJNPJC
abstract:
- Tetraethyl orthosilicate (TEOS) directly electrospun nanofibrous membranes are well-established
  for high-demanding applications. However, further expansion and exploitation of
  these materials require broadening the portfolio of Si-based precursors. In the
  present work, a part of the Si–O–Si linkages is therefore replaced by terminal groups
  (Si–R) or bridged organic linkages (Si-R-Si), playing with the inorganic-organic
  precursor balance considering triethoxymethylsilane (TEOMS), bis(triethoxysilyl)methane
  (BTESM) or bis(triethoxysilyl)ethane (BTESE). Both a rheological and kinetic analysis
  for the sol-gel synthesis of these three precursors is first done in comparison
  with the TEOS-based reference system, followed by an in-depth study of the electrospinning
  potential and the resulting organosilica nanofibrous materials properties. The production
  of the nanofibrous materials is achieved by electrospinning of a partly cross-linked
  sol-gel system with an optimal initial precursor/H2O/EtOH ratio selecting a sufficiently
  low temperature. It is demonstrated that the precursor/H2O ratio mainly controls
  the reactivity of the polycondensation by hydrolysis enhancement, and the precursor/EtOH
  ratio allows control over the dynamic viscosity due to dilution of the system. Depending
  on the chemical structure, a different range of workable viscosity conditions is
  obtained, highlighting the relevance of the construction of structure-property relationships.
  The rheological and kinetic analysis underpinned the relation of chemistry building
  blocks and organosilica network synthesis for material applications in general for
  the first time. Overall, a wide portfolio of membrane properties is reported, including
  the control over water take-up, acidity and basicity strength, and thermal stability
  starting from molecular thus chemical variations.
abstract_full:
- lang: eng
  text: Tetraethyl orthosilicate (TEOS) directly electrospun nanofibrous membranes
    are well-established for high-demanding applications. However, further expansion
    and exploitation of these materials require broadening the portfolio of Si-based
    precursors. In the present work, a part of the Si–O–Si linkages is therefore replaced
    by terminal groups (Si–R) or bridged organic linkages (Si-R-Si), playing with
    the inorganic-organic precursor balance considering triethoxymethylsilane (TEOMS),
    bis(triethoxysilyl)methane (BTESM) or bis(triethoxysilyl)ethane (BTESE). Both
    a rheological and kinetic analysis for the sol-gel synthesis of these three precursors
    is first done in comparison with the TEOS-based reference system, followed by
    an in-depth study of the electrospinning potential and the resulting organosilica
    nanofibrous materials properties. The production of the nanofibrous materials
    is achieved by electrospinning of a partly cross-linked sol-gel system with an
    optimal initial precursor/H2O/EtOH ratio selecting a sufficiently low temperature.
    It is demonstrated that the precursor/H2O ratio mainly controls the reactivity
    of the polycondensation by hydrolysis enhancement, and the precursor/EtOH ratio
    allows control over the dynamic viscosity due to dilution of the system. Depending
    on the chemical structure, a different range of workable viscosity conditions
    is obtained, highlighting the relevance of the construction of structure-property
    relationships. The rheological and kinetic analysis underpinned the relation of
    chemistry building blocks and organosilica network synthesis for material applications
    in general for the first time. Overall, a wide portfolio of membrane properties
    is reported, including the control over water take-up, acidity and basicity strength,
    and thermal stability starting from molecular thus chemical variations.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
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  ugent_id: TW11
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  - ugent_id: WE06
  ugent_id: WE06
article_number: '101950'
article_type: original
author:
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  last_name: Loccufier
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  first_name: Sofie
  last_name: Verschraegen
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  orcid_id: 0000-0002-6164-3662
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  first_name: Bianca
  last_name: Swanckaert
  name: Bianca Swanckaert
  name_last_first: Swanckaert, Bianca
  orcid_id: 0000-0001-6036-6512
  ugent_id:
  - '978889457589'
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - conceptualization
  - supervision
  - writing_original_draft
  - writing_review_editing
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - supervision
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  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
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  credit_role:
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  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
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  - '801000947425'
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biblio_id: 01HNZ8NZC5ENVF6C63C1FJNPJC
cite:
  apa: |2
      <div class="csl-entry">Loccufier, E., Verschraegen, S., Swanckaert, B., D’hooge, D., De Buysser, K., &#38; De Clerck, K. (2024). A broad spectrum of electrospun organosilica membrane properties by tuning the chemical nature of the precursor building block. <i>MATERIALS TODAY CHEMISTRY</i>, <i>36</i>. https://doi.org/10.1016/j.mtchem.2024.101950</div>
  bof: |2-
      <div class="csl-entry">Loccufier, Eva, Sofie Verschraegen, Bianca Swanckaert, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2024. “A Broad Spectrum of Electrospun Organosilica Membrane Properties by Tuning the Chemical Nature of the Precursor Building Block.” <i>MATERIALS TODAY CHEMISTRY</i> 36. doi:10.1016/j.mtchem.2024.101950.</div>
    <div><i>Impact factor: 6.7, category: CHEMISTRY, MULTIDISCIPLINARY, rank: 38/174, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Loccufier, Eva, Sofie Verschraegen, Bianca Swanckaert, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2024. “A Broad Spectrum of Electrospun Organosilica Membrane Properties by Tuning the Chemical Nature of the Precursor Building Block.” <i>MATERIALS TODAY CHEMISTRY</i> 36. https://doi.org/10.1016/j.mtchem.2024.101950.</div>
  fwo: |2
      <div class="csl-entry">Loccufier, Eva, Sofie Verschraegen, Bianca Swanckaert, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2024. “A Broad Spectrum of Electrospun Organosilica Membrane Properties by Tuning the Chemical Nature of the Precursor Building Block.” <i>MATERIALS TODAY CHEMISTRY</i> 36. doi:10.1016/j.mtchem.2024.101950.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Loccufier, S. Verschraegen, B. Swanckaert, D. D’hooge, K. De Buysser, and K. De Clerck, “A broad spectrum of electrospun organosilica membrane properties by tuning the chemical nature of the precursor building block,” <i>MATERIALS TODAY CHEMISTRY</i>, vol. 36, 2024.</div>
      </div>
  mla: |2
      <div class="csl-entry">Loccufier, Eva, et al. “A Broad Spectrum of Electrospun Organosilica Membrane Properties by Tuning the Chemical Nature of the Precursor Building Block.” <i>MATERIALS TODAY CHEMISTRY</i>, vol. 36, 2024, doi:10.1016/j.mtchem.2024.101950.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Loccufier E, Verschraegen S, Swanckaert B, D’hooge D, De Buysser K, De Clerck K. A broad spectrum of electrospun organosilica membrane properties by tuning the chemical nature of the precursor building block. MATERIALS TODAY CHEMISTRY. 2024;36.</div>
       </div>
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  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2024-02-06 13:10:54
date_updated: 2026-03-31 12:55:04
doi:
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jcr:
  category: CHEMISTRY, MULTIDISCIPLINARY
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  total_cites: 14198
keyword:
- Organosilica nanofibers
- Sol-gel synthesis
- Electrospinning
- Chemical inertness
- Wettability control
language:
- eng
page:
  count: '13'
parent:
  short_title: Mater. Today Chem.
  title: MATERIALS TODAY CHEMISTRY
project:
- _id: 3F006621
  abstract: '<p>Today the high potential of (organo)silica branched/crosslinked/network
    polymers in nanofibrous membranes cannot be exploited to the fullest due to the
    lack of a straightforward way to produce them. To solve this, a fundamental understanding
    of how sol-gel synthesis and electrospinning are related via rheology is required.
    The main bottleneck remains that the viscosity evolution, as the network develops
    during synthesis, cannot be fully interpreted at the molecular level. For this,
    it is essential to fundamentally link the different steps in the electrospinning
    production process: from network formation of (organo)silica precursor molecules
    over electrospinning toward nanofibrous membranes. Both experimental (e.g. 29Si
    NMR, rheology) and kinetic modelling techniques will be used for this purpose.
    The morphology of the resulting nanofibrous membranes will be determined and linked
    back to the chemical building blocks, sol-gel synthesis and the electrospinning
    process as to enable the tuning of these (organo)silica nanofibers for advanced
    applications. The fiber diameter and the wettability will be studied as key model
    properties at respectively the fiber and material membrane level. This generic
    methodology can in the future be expanded toward other material properties to
    allow for molecular scale-driven material property tuning.</p>'
  end_date: 2025-10-31
  gismo_id: 190fbf11-2a82-11ec-95aa-05ef7abe0c3c
  iweto_id: 3F006621
  start_date: 2021-11-01
  title: 'Connecting (organo)silica sol-gel synthesis and membrane electrospinning:
    pushing toward molecular scale-driven property tuning'
- _id: 3S039119
  abstract: <p>Challenges in clean water availability have risen over the years, and
    especially third world countries are in great need of low-cost water purification
    techniques, such as separation membranes. By implementing functionalised organosilica
    nanofibrous membranes, an affinity-based separation mechanism at low energy-cost
    can be developed that withstands harsh environmental conditions. These membranes
    should have a desirable hydrophobicity to tune the affinity of different solvents
    towards the membrane. Additionally, their mechanical endurance should be optimised
    as to increase their life time. These goals are systematically addressed in this
    project. Organosilica nanofibrous membranes will be produced via electrospinning
    starting from a variety of bis-silane precursors. By implementing different functionalities,
    the wettability towards different solvents can be altered in view of separation
    applications. A thorough study on the behaviour of sol-gel systems will be conducted
    to create a comprehensive understanding of the influence of functionalities on
    the electrospinning process. Additionally, a mechanical study will reveal the
    link between the 3D-structure of the organosilica network and the mechanical behaviour.
    With this fundamental knowledge, it will be possible to develop affinity-based
    separation membranes for water purification. This application will even be extended
    towards solvent separation in view of process intensification of liquid-phase
    CO2 conversion to alcohols.</p>
  end_date: 2023-10-31
  gismo_id: 9cfd7b5f-f96d-11e9-b85e-e128f57a36f9
  iweto_id: 3S039119
  start_date: 2019-11-01
  title: Functionalised nanofibrous organosilica membranes for advanced affinity-based
    separation applications
- _id: 01B03518
  abstract: <p>The requested table top SEM with integrated micromechanical testing,
    combines a large sample chamber to accommodate a sensitive micromechanical set-up
    with a high magnification and easy sampling. This is highly novel and only recently
    available at moderate costs. The in-situ visualization of material performance
    under load at high magnification will boost the academic research of the applicants
    and their collaborators.</p>
  end_date: 2020-05-31
  gismo_id: 320e7057-5b7c-11e9-ac93-1bffacd2a7e2
  iweto_id: 01B03518
  publication_count: 1
  start_date: 2018-06-01
  title: Table top SEM with integrated in-situ micromechanical testing for fiber,
    polymer and composite materials
- _id: 01J10219
  abstract: <p>Membrane technology can offer an answer for today’s research challenges
    to solve environmental problems. These membranes are in need of an improved resistance
    to harsh environments. This will further broaden applications such as water recycling
    but will also open up very novel applications in a process intensification of
    CO2 conversion units. Within this project nanofibers are developed for these applications.</p>
  end_date: 2024-07-30
  gismo_id: 1e0c3a2d-9d90-11e9-83f9-d13d95d2d7be
  iweto_id: 01J10219
  start_date: 2019-10-01
  title: Nanofibrous membranes for today’s environmental research questions.
- _id: 3S009618
  abstract: <p>Nanofibres are fibres with a diameter that is 1000 times smaller than
    a human hair. This makes nanofibrous membranes very light and porous, ideally
    suited for advanced engineering applications in various sectors. By adding a specific
    functionality (for example hydrophobic groups, amines, thiol functions), the application
    field can even be extended. However, the material choice and design are crucial
    for optimal performance. Therefore, several bridged organosilanes, hybrid structures
    with organic and inorganic moieties, will be studied as an alternative starting
    product to make such nanofibrous membranes within this project. They allow for
    highly flexible materials with superior chemical and thermal stability for which,
    moreover, the hydrophobicity can be tuned. These functionalised nanofibers will
    be processed from water and ethanol, which is ecologically more friendly than
    most current nanofiber and membrane production techniques. Applications in the
    field of water purification and chemical conversion are targeted. These <br />applications
    require long-term stable materials and make use of the large specific surface
    area, high porosity and/or large pores of the nanofibrous membranes to target
    more efficient processes.</p>
  end_date: 2022-09-09
  gismo_id: d937d58c-be65-11e9-ace9-8bf558aeac68
  iweto_id: 3S009618
  start_date: 2018-01-01
  title: |-
    Long-term stable organosilica nanofibrous membranes
    functionalised for advanced engineering applications
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: A broad spectrum of electrospun organosilica membrane properties by tuning
  the chemical nature of the precursor building block
type: journalArticle
volume: '36'
wos_id: '001176489800001'
wos_type: Article
year: '2024'
...
---
_id: 01HX9H1DPNFY4XKVNWCZ8ZRB09
abstract:
- Poly(2-ethyl-2-oxazoline) (PEtOx) is a potent member of the versatile poly(2-oxazoline)
  polymer platform with its high hydrophilicity that could be beneficial in numerous
  biomedical applications, especially in the form of a nanofibrous membrane. However,
  its water-solubility limits its application in situations where a stable, nanofibrous
  morphology is required in aqueous environments. The present work offers a straightforward
  route towards water-stable PEtOx-based nanofibrous membranes, via post-polymerization
  functionalization with cinnamoyl moieties (PEtOx-Cin) and photo-crosslinking of
  the electrospun membranes. It is shown that a UVB treatment does not significantly
  affect the nanofibrous morphology, while successfully inducing the cinnamoyl dimerization
  process and hence the formation of a polymeric network, as evidenced by spectral
  analysis. The hereby crosslinked PEtOx-based nanofibers exhibit a prolonged water-stability
  (at least 45 days), while, interestingly, intermediate irradiation times yield the
  best results. Full disintegration of the photo-crosslinked nanofibers in aqueous
  media could be achieved by subsequent UVC exposure. This is not only due to decrosslinking
  of the cinnamoyl dimers, but was also found to be due to partial degradation of
  the polymeric backbone. The investigation of UVB/UVC exposure on pure PEtOx nanofibrous
  membranes confirmed the photo-degradation of the polymeric backbone by a significant
  decrease in molar mass as observed by size exclusion chromatography and supported
  by spectral analysis. The hereby proposed, straightforward route for reversible
  crosslinking of PEtOx-based nanofibrous membranes and their accessible disintegration
  will contribute to the promotion of these materials in biomedical applications where
  a water-stable, nanofibrous morphology combined with high hydrophilicity and easy
  removal is required.
abstract_full:
- lang: eng
  text: Poly(2-ethyl-2-oxazoline) (PEtOx) is a potent member of the versatile poly(2-oxazoline)
    polymer platform with its high hydrophilicity that could be beneficial in numerous
    biomedical applications, especially in the form of a nanofibrous membrane. However,
    its water-solubility limits its application in situations where a stable, nanofibrous
    morphology is required in aqueous environments. The present work offers a straightforward
    route towards water-stable PEtOx-based nanofibrous membranes, via post-polymerization
    functionalization with cinnamoyl moieties (PEtOx-Cin) and photo-crosslinking of
    the electrospun membranes. It is shown that a UVB treatment does not significantly
    affect the nanofibrous morphology, while successfully inducing the cinnamoyl dimerization
    process and hence the formation of a polymeric network, as evidenced by spectral
    analysis. The hereby crosslinked PEtOx-based nanofibers exhibit a prolonged water-stability
    (at least 45 days), while, interestingly, intermediate irradiation times yield
    the best results. Full disintegration of the photo-crosslinked nanofibers in aqueous
    media could be achieved by subsequent UVC exposure. This is not only due to decrosslinking
    of the cinnamoyl dimers, but was also found to be due to partial degradation of
    the polymeric backbone. The investigation of UVB/UVC exposure on pure PEtOx nanofibrous
    membranes confirmed the photo-degradation of the polymeric backbone by a significant
    decrease in molar mass as observed by size exclusion chromatography and supported
    by spectral analysis. The hereby proposed, straightforward route for reversible
    crosslinking of PEtOx-based nanofibrous membranes and their accessible disintegration
    will contribute to the promotion of these materials in biomedical applications
    where a water-stable, nanofibrous morphology combined with high hydrophilicity
    and easy removal is required.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
article_number: '113076'
article_type: original
author:
- _id: 4ECF3BC6-5675-11E5-B03A-F334B5D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 4ECF3BC6-5675-11E5-B03A-F334B5D1D7B1
  credit_role:
  - writing_original_draft
  - methodology
  - investigation
  first_name: Olmo
  last_name: Frateur
  name: Olmo Frateur
  name_last_first: Frateur, Olmo
  orcid_id: 0000-0002-0198-561X
  ugent_id:
  - '000150886227'
  - '802003501433'
  - '976840489813'
- _id: 39CBE44E-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 39CBE44E-F0EE-11E1-A9DE-61C894A0A6B4
  credit_role:
  - writing_review_editing
  - methodology
  - investigation
  first_name: Jana
  last_name: Becelaere
  name: Jana Becelaere
  name_last_first: Becelaere, Jana
  orcid_id: 0000-0001-5024-3308
  ugent_id:
  - '977861082888'
- _id: D031A838-F0EE-11E1-A197-91C894A0A6B4
  biblio_id: D031A838-F0EE-11E1-A197-91C894A0A6B4
  credit_role:
  - writing_review_editing
  - investigation
  first_name: Ronald
  last_name: Merckx
  name: Ronald Merckx
  name_last_first: Merckx, Ronald
  orcid_id: 0000-0002-2867-0888
  ugent_id:
  - '974260040744'
- _id: 0FBA8502-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 0FBA8502-F0EE-11E1-A9DE-61C894A0A6B4
  credit_role:
  - writing_review_editing
  - methodology
  - investigation
  - conceptualization
  first_name: Joachim
  last_name: Van Guyse
  name: Joachim Van Guyse
  name_last_first: Van Guyse, Joachim
  ugent_id:
  - '000080062786'
  - '802001924676'
  - '979806612797'
- _id: 357A8410-45A5-11E3-AF0D-0AE410BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 357A8410-45A5-11E3-AF0D-0AE410BDE39D
  credit_role:
  - writing_review_editing
  - investigation
  first_name: Martin
  last_name: Purino
  name: Martin Purino
  name_last_first: Purino, Martin
  ugent_id:
  - '802001701879'
  - '978926536750'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  credit_role:
  - writing_review_editing
  - supervision
  - methodology
  - funding_acquisition
  - conceptualization
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - writing_review_editing
  - supervision
  - methodology
  - funding_acquisition
  - conceptualization
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01HX9H1DPNFY4XKVNWCZ8ZRB09
cite:
  apa: |2
      <div class="csl-entry">Frateur, O., Becelaere, J., Merckx, R., Van Guyse, J., Purino, M., Hoogenboom, R., &#38; De Clerck, K. (2024). Development of reversibly photo-crosslinkable water-stable poly(2-ethyl-2-oxazoline) nanofibers via functionalization with cinnamoyl moieties. <i>EUROPEAN POLYMER JOURNAL</i>, <i>212</i>. https://doi.org/10.1016/j.eurpolymj.2024.113076</div>
  bof: |2-
      <div class="csl-entry">Frateur, Olmo, Jana Becelaere, Ronald Merckx, Joachim Van Guyse, Martin Purino, Richard Hoogenboom, and Karen De Clerck. 2024. “Development of Reversibly Photo-Crosslinkable Water-Stable Poly(2-Ethyl-2-Oxazoline) Nanofibers via Functionalization with Cinnamoyl Moieties.” <i>EUROPEAN POLYMER JOURNAL</i> 212. doi:10.1016/j.eurpolymj.2024.113076.</div>
    <div><i>Impact factor: 6.3, category: POLYMER SCIENCE, rank: 7/85, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Frateur, Olmo, Jana Becelaere, Ronald Merckx, Joachim Van Guyse, Martin Purino, Richard Hoogenboom, and Karen De Clerck. 2024. “Development of Reversibly Photo-Crosslinkable Water-Stable Poly(2-Ethyl-2-Oxazoline) Nanofibers via Functionalization with Cinnamoyl Moieties.” <i>EUROPEAN POLYMER JOURNAL</i> 212. https://doi.org/10.1016/j.eurpolymj.2024.113076.</div>
  fwo: |2
      <div class="csl-entry">Frateur, Olmo, Jana Becelaere, Ronald Merckx, Joachim Van Guyse, Martin Purino, Richard Hoogenboom, and Karen De Clerck. 2024. “Development of Reversibly Photo-Crosslinkable Water-Stable Poly(2-Ethyl-2-Oxazoline) Nanofibers via Functionalization with Cinnamoyl Moieties.” <i>EUROPEAN POLYMER JOURNAL</i> 212. doi:10.1016/j.eurpolymj.2024.113076.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">O. Frateur <i>et al.</i>, “Development of reversibly photo-crosslinkable water-stable poly(2-ethyl-2-oxazoline) nanofibers via functionalization with cinnamoyl moieties,” <i>EUROPEAN POLYMER JOURNAL</i>, vol. 212, 2024.</div>
      </div>
  mla: |2
      <div class="csl-entry">Frateur, Olmo, et al. “Development of Reversibly Photo-Crosslinkable Water-Stable Poly(2-Ethyl-2-Oxazoline) Nanofibers via Functionalization with Cinnamoyl Moieties.” <i>EUROPEAN POLYMER JOURNAL</i>, vol. 212, 2024, doi:10.1016/j.eurpolymj.2024.113076.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Frateur O, Becelaere J, Merckx R, Van Guyse J, Purino M, Hoogenboom R, et al. Development of reversibly photo-crosslinkable water-stable poly(2-ethyl-2-oxazoline) nanofibers via functionalization with cinnamoyl moieties. EUROPEAN POLYMER JOURNAL. 2024;212.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2024-05-07 12:39:15
date_updated: 2026-03-31 14:04:59
doi:
- 10.1016/j.eurpolymj.2024.113076
external: 0
file:
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  url: https://biblio.ugent.be/publication/01HX9H1DPNFY4XKVNWCZ8ZRB09/file/01HX9HEC9BH3JDYGWJ5KDJQCHV.pdf
handle: http://hdl.handle.net/1854/LU-01HX9H1DPNFY4XKVNWCZ8ZRB09
issn:
- 0014-3057
jcr:
  category: POLYMER SCIENCE
  category_decile: 1
  category_quartile: 1
  category_rank: 7/85
  category_vigintile: 2
  eigenfactor: 0.02045
  immediacy_index: 1.7
  impact_factor: 6.3
  impact_factor_5yr: 6
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 2
  prev_impact_factor: 5.8
  total_cites: 36400
keyword:
- Solvent electrospinning
- Nanofibers
- Poly(2-ethyl-2-oxazoline)
- Cinnamoyl
- Photo-crosslinking
- Water-stability
- Photo-degradation
- CRYSTAL ALIGNMENT PROPERTIES
- ELECTROSPUN NANOFIBERS
- PARTIAL HYDROLYSIS
- DRUG-DELIVERY
- POLY(2-OXAZOLINE)S
- LINKING
- POLY(2-ETHYL-2-OXAZOLINE)
- PHOTOREACTIVITY
- POLYMERIZATION
- NANOPARTICLES
language:
- eng
page:
  count: '16'
parent:
  short_title: Eur. Polym. J.
  title: EUROPEAN POLYMER JOURNAL
project:
- _id: 3S002821
  abstract: <p>As severe burns are a leading cause of morbidity, proper wound care
    is crucial. Treating burns requires specific care to provide an infection-free
    and moist environment. As such, advanced dressings are essential, however, no
    all-round dressings for every burn exist and the demand remains pressing. Our
    aim is to innovate novel wound dressings by combining both moisture regulation,
    antimicrobial action and conformability in one single dressing. The material needs
    will be met by engineering hybrid, electrospun nanofibrous structures, for which
    the novel, versatile poly(2-oxazoline) platform with a tunable hydrophilicity
    will be employed. This allows for the targeted design of a nanofibrous material
    with optimal moisture-managing properties. Moreover, electrospinning is ideally
    suited for doping bioactive agents and controlling the release rate. Innovatively
    linking moisture uptake with drug release in the nanofibrous structures enables
    an optimal and prolonged antiseptic action to prevent and treat infection during
    wound healing. Lastly, the mechanical properties will be examined and modified
    to improve membrane stability and conformability. Our findings, based on hybrid
    nanofibrous structures with the desired material properties, will significantly
    advance the preparation of widely applicable multifunctional wound dressings.
    This outcome will reduce healthcare costs and increase patient comfort, thus resulting
    in a major societal impact.</p>
  end_date: 2025-10-31
  gismo_id: 4ad519a6-2a81-11ec-a6b4-cd4eac00b947
  iweto_id: 3S002821
  start_date: 2021-11-01
  title: Engineering hybrid nanofibrous membranes with superior moisture regulation
    and controlled antimicrobial action for future wound dressings
- _id: 3S000718
  abstract: <p>Today, over 60%, of all newly developed drugs are discarded due to
    low water-solubility. This low water-solubility is due to both the chemical makeup
    and the high degree of crystallinity of the drug. The current formulation techniques
    to produce tablets today cannot circumvent this problem, which means that the
    produced product cannot be absorbed by our body and will, hence, have a very low
    efficacy. With solvent electrospinning as a new formulation technique it is aimed
    to homogeneously disperse the drug in a polymer matrix. In first proof of principle
    experiments on the drug flubendazole it has already been shown that this can prevent
    crystallization, which enhances the solubility of the drug inside aqueous environments,
    such as the body. In other words, by formulating highly crystalline drugs with
    low water-solubility via solvent electrospinning, the drug's bioavailability is
    increased. However, this phenomenon is not fully understood and, hence, far from
    optimized and for sure not yet widely applicable. Thus, the influence of different
    process parameters on the final drug delivery should be studied. Also different
    polymers and different drugs should be examined. In this project, these topics
    will be dealt with and finally the formulation of highly crystalline drugs that
    are insoluble in aqueous environments will be made viable. The technique will
    be well understood and optimized in order to design new polymer-drug systems that
    increase the bioavailability of the drug.</p>
  end_date: 2022-12-31
  gismo_id: d89c7f90-be65-11e9-ace9-8bf558aeac68
  iweto_id: 3S000718
  start_date: 2018-01-01
  title: |-
    Solvent electrospinning nanofibers as a novel material for improved
    polymer-API solid dispersions.
- _id: 01B03518
  abstract: <p>The requested table top SEM with integrated micromechanical testing,
    combines a large sample chamber to accommodate a sensitive micromechanical set-up
    with a high magnification and easy sampling. This is highly novel and only recently
    available at moderate costs. The in-situ visualization of material performance
    under load at high magnification will boost the academic research of the applicants
    and their collaborators.</p>
  end_date: 2020-05-31
  gismo_id: 320e7057-5b7c-11e9-ac93-1bffacd2a7e2
  iweto_id: 01B03518
  publication_count: 1
  start_date: 2018-06-01
  title: Table top SEM with integrated in-situ micromechanical testing for fiber,
    polymer and composite materials
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
- Chemistry
title: Development of reversibly photo-crosslinkable water-stable poly(2-ethyl-2-oxazoline)
  nanofibers via functionalization with cinnamoyl moieties
type: journalArticle
volume: '212'
wos_id: '001239112000001'
wos_type: Article
year: '2024'
...
---
_id: 01J28RPZ13508VRDJ8H14JS2KS
abstract:
- This paper studies thermomechanical coupling during room-temperature tensile testing
  of polyamide-6 (PA6) and short glass fibre/PA6 (50 wt%). The tests were performed
  for different dominant angles of the short fibres (0°, 45°, 90°), moisture contents
  (dry, 50%RH), and strain rates (10 −4 , 10 −2 , 10 −1 s −1). Digital image correlation
  (DIC) was coupled with infrared thermography. The contribution of the local strains,
  strain rates and temperatures to the global mechanical behaviour was investigated
  throughout deformation. The initial thermoelastic response was used to estimate
  the coefficient of thermal expansion. In PA6, neck development caused significant
  self-heating at high strain rates, differently between dry and 50%RH. In glass/PA6,
  however, temperature rises were always small (< +3 °C) despite local strain rate
  peaks in the fracture zone. This was ascribed to limited plastic deformation, as
  confirmed by post-mortem microscopy. The full-field data can be highly valuable
  for the development of advanced constitutive models for both pure polymer and short
  fibre composite.
abstract_full:
- lang: eng
  text: This paper studies thermomechanical coupling during room-temperature tensile
    testing of polyamide-6 (PA6) and short glass fibre/PA6 (50 wt%). The tests were
    performed for different dominant angles of the short fibres (0°, 45°, 90°), moisture
    contents (dry, 50%RH), and strain rates (10 −4 , 10 −2 , 10 −1 s −1). Digital
    image correlation (DIC) was coupled with infrared thermography. The contribution
    of the local strains, strain rates and temperatures to the global mechanical behaviour
    was investigated throughout deformation. The initial thermoelastic response was
    used to estimate the coefficient of thermal expansion. In PA6, neck development
    caused significant self-heating at high strain rates, differently between dry
    and 50%RH. In glass/PA6, however, temperature rises were always small (< +3 °C)
    despite local strain rate peaks in the fracture zone. This was ascribed to limited
    plastic deformation, as confirmed by post-mortem microscopy. The full-field data
    can be highly valuable for the development of advanced constitutive models for
    both pure polymer and short fibre composite.
additional_info: 'DOI Proceedings Book: 10.60691/yj56-np80'
affiliation:
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  url: https://gem.ec-nantes.fr/en/eccm21-proceedings/
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  biblio_id: bf54bd2b-bd78-11ea-9edd-e723f25734e4
  first_name: Daniele
  last_name: Finazzi
  name: Daniele Finazzi
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biblio_id: 01J28RPZ13508VRDJ8H14JS2KS
cite:
  apa: |2
      <div class="csl-entry">Finazzi, D., Robert, G., Daelemans, L., De Clerck, K., &#38; Van Paepegem, W. (2024). Thermomechanical coupling during tensile testing of PA6 and short fibre glass/PA6. In C. Binetruy &#38; F. Jacquemin (Eds.), <i>Proceedings of the 21st European Conference on Composite Materials : volume 3 : material and structural behavior simulation &#38; testing</i> (Vol. 3, pp. 122–129). The European Society for Composite Materials (ESCM) and the Ecole Centrale de Nantes.</div>
  bof: |2
      <div class="csl-entry">Finazzi, Daniele, Gilles Robert, Lode Daelemans, Karen De Clerck, and Wim Van Paepegem. 2024. “Thermomechanical Coupling during Tensile Testing of PA6 and Short Fibre Glass/PA6.” In <i>Proceedings of the 21st European Conference on Composite Materials : Volume 3 : Material and Structural Behavior Simulation &#38; Testing</i>, ed by. Cristophe Binetruy and Frédéric Jacquemin, 3:122–129. The European Society for Composite Materials (ESCM) and the Ecole Centrale de Nantes.</div>
  chicago-author-date: |2
      <div class="csl-entry">Finazzi, Daniele, Gilles Robert, Lode Daelemans, Karen De Clerck, and Wim Van Paepegem. 2024. “Thermomechanical Coupling during Tensile Testing of PA6 and Short Fibre Glass/PA6.” In <i>Proceedings of the 21st European Conference on Composite Materials : Volume 3 : Material and Structural Behavior Simulation &#38; Testing</i>, edited by Cristophe Binetruy and Frédéric Jacquemin, 3:122–29. The European Society for Composite Materials (ESCM) and the Ecole Centrale de Nantes.</div>
  fwo: |2
      <div class="csl-entry">Finazzi, Daniele, Gilles Robert, Lode Daelemans, Karen De Clerck, and Wim Van Paepegem. 2024. “Thermomechanical Coupling during Tensile Testing of PA6 and Short Fibre Glass/PA6.” In <i>Proceedings of the 21st European Conference on Composite Materials : Volume 3 : Material and Structural Behavior Simulation &#38; Testing</i>, ed by. Cristophe Binetruy and Frédéric Jacquemin, 3:122–129. The European Society for Composite Materials (ESCM) and the Ecole Centrale de Nantes.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">D. Finazzi, G. Robert, L. Daelemans, K. De Clerck, and W. Van Paepegem, “Thermomechanical coupling during tensile testing of PA6 and short fibre glass/PA6,” in <i>Proceedings of the 21st European Conference on Composite Materials : volume 3 : material and structural behavior simulation &#38; testing</i>, Nantes, France, 2024, vol. 3, pp. 122–129.</div>
      </div>
  mla: |2
      <div class="csl-entry">Finazzi, Daniele, et al. “Thermomechanical Coupling during Tensile Testing of PA6 and Short Fibre Glass/PA6.” <i>Proceedings of the 21st European Conference on Composite Materials : Volume 3 : Material and Structural Behavior Simulation &#38; Testing</i>, edited by Cristophe Binetruy and Frédéric Jacquemin, vol. 3, The European Society for Composite Materials (ESCM) and the Ecole Centrale de Nantes., 2024, pp. 122–29.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Finazzi D, Robert G, Daelemans L, De Clerck K, Van Paepegem W. Thermomechanical coupling during tensile testing of PA6 and short fibre glass/PA6. In: Binetruy C, Jacquemin F, editors. Proceedings of the 21st European Conference on Composite Materials : volume 3 : material and structural behavior simulation &#38; testing. The European Society for Composite Materials (ESCM) and the Ecole Centrale de Nantes.; 2024. p. 122–9.</div>
       </div>
classification: C1
conference:
  end_date: 2024-07-05
  location: Nantes, France
  name: 21st European Conference on Composite Materials (ECCM21)
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conference_type: proceedingsPaper
copyright_statement: Creative Commons Attribution-NonCommercial 4.0 International
  Public License (CC BY-NC 4.0)
created_by:
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date_created: 2024-07-08 08:52:36
date_updated: 2026-03-31 12:56:26
editor:
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  last_name: Binetruy
  name: Cristophe Binetruy
  name_last_first: Binetruy, Cristophe
- first_name: Frédéric
  last_name: Jacquemin
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parent:
  title: 'Proceedings of the 21st European Conference on Composite Materials : volume
    3 : material and structural behavior simulation & testing'
project:
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  abstract: "<p> General purpose </p> \n<p> Industrial processors / users of thermoplastic
    polymers and composites are confronted lacking an efficient end-to-end simulation
    workflow that makes the part seamless links to the design, and takes into account
    the physical changes it makes during the design phase thermoplastic material undergoes
    during production. The purpose of the ProPeL (PROces and </p> \n<p> Performance
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    “as-manufactured” lightweight profile and (ii) predicting the influence of the
    production process on the structural performance of lightweight structures. ProPeL
    aims to further develop the simulation options for the production and evaluation
    of thermoplastic components, both for fiber-reinforced as non-fiber-reinforced,
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  publication_count: 2
  start_date: 2020-06-01
  title: 'ProPel: Process and Performance Simulation of Lightweight Structures'
publication_status: published
publication_status_sort: 2
publisher:
  name: The European Society for Composite Materials (ESCM) and the Ecole Centrale
    de Nantes.
status: public
subject:
- Technology and Engineering
title: Thermomechanical coupling during tensile testing of PA6 and short fibre glass/PA6
type: conference
volume: '3'
year: '2024'
...
---
_id: 01HTYYQ114XTD4XGJPGBT0QWTA
abstract:
- The continuous development of advanced catalysts to increase process yield and selectivity
  is crucial. A high specific surface area and a good active phase dispersion are
  generally essential to create catalytic materials with a large number of active
  sites. Notably, materials with a fibrous morphology are appealing because of their
  large surface‐to‐volume ratio and flexibility. This contribution highlights the
  morphology of different types of fibrous structures currently under investigation,
  all the way from the nanoscale to the macroscale and back, where the distinction
  lies in the length and diameter of the fibers, as well as in the connection between
  the structures. Fibers with at least one submicron to nanoscale characteristic result
  in a higher yield, but can display practical usability issues when unbound. Therefore,
  fibrous structure catalysts with a balance between the small diameter and handleability
  are important for industrial viability. By combining different morphologies, the
  best of both nanomaterials and macroscopic integer materials can be combined into
  advanced catalytic materials. This overview showcases the large potential of these
  materials but makes clear that further research is needed to keep expanding the
  use and effectiveness of fibrous structures in catalysis.
abstract_full:
- lang: eng
  text: The continuous development of advanced catalysts to increase process yield
    and selectivity is crucial. A high specific surface area and a good active phase
    dispersion are generally essential to create catalytic materials with a large
    number of active sites. Notably, materials with a fibrous morphology are appealing
    because of their large surface‐to‐volume ratio and flexibility. This contribution
    highlights the morphology of different types of fibrous structures currently under
    investigation, all the way from the nanoscale to the macroscale and back, where
    the distinction lies in the length and diameter of the fibers, as well as in the
    connection between the structures. Fibers with at least one submicron to nanoscale
    characteristic result in a higher yield, but can display practical usability issues
    when unbound. Therefore, fibrous structure catalysts with a balance between the
    small diameter and handleability are important for industrial viability. By combining
    different morphologies, the best of both nanomaterials and macroscopic integer
    materials can be combined into advanced catalytic materials. This overview showcases
    the large potential of these materials but makes clear that further research is
    needed to keep expanding the use and effectiveness of fibrous structures in catalysis.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
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  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Chemistry
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  - ugent_id: WE
  - ugent_id: WE06
  ugent_id: WE06
article_number: e202301563
article_type: review
author:
- _id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  first_name: Eva
  last_name: Loccufier
  name: Eva Loccufier
  name_last_first: Loccufier, Eva
  orcid_id: 0000-0001-7045-2721
  ugent_id:
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- first_name: Damien P.
  last_name: Debecker
  name: Damien P. Debecker
  name_last_first: Debecker, Damien P.
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
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- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
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  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01HTYYQ114XTD4XGJPGBT0QWTA
cite:
  apa: |2
      <div class="csl-entry">Loccufier, E., Debecker, D. P., D’hooge, D., De Buysser, K., &#38; De Clerck, K. (2024). Fibrous material structure developments for sustainable heterogeneous catalysis : an overview. <i>CHEMCATCHEM</i>, <i>16</i>(14). https://doi.org/10.1002/cctc.202301563</div>
  bof: |2-
      <div class="csl-entry">Loccufier, Eva, Damien P. Debecker, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2024. “Fibrous Material Structure Developments for Sustainable Heterogeneous Catalysis : An Overview.” <i>CHEMCATCHEM</i> 16 (14). doi:10.1002/cctc.202301563.</div>
    <div><i>Impact factor: 3.9, category: CHEMISTRY, PHYSICAL, rank: 73/162, quartile: 2.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Loccufier, Eva, Damien P. Debecker, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2024. “Fibrous Material Structure Developments for Sustainable Heterogeneous Catalysis : An Overview.” <i>CHEMCATCHEM</i> 16 (14). https://doi.org/10.1002/cctc.202301563.</div>
  fwo: |2
      <div class="csl-entry">Loccufier, Eva, Damien P. Debecker, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2024. “Fibrous Material Structure Developments for Sustainable Heterogeneous Catalysis : An Overview.” <i>CHEMCATCHEM</i> 16 (14). doi:10.1002/cctc.202301563.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Loccufier, D. P. Debecker, D. D’hooge, K. De Buysser, and K. De Clerck, “Fibrous material structure developments for sustainable heterogeneous catalysis : an overview,” <i>CHEMCATCHEM</i>, vol. 16, no. 14, 2024.</div>
      </div>
  mla: |2
      <div class="csl-entry">Loccufier, Eva, et al. “Fibrous Material Structure Developments for Sustainable Heterogeneous Catalysis : An Overview.” <i>CHEMCATCHEM</i>, vol. 16, no. 14, 2024, doi:10.1002/cctc.202301563.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Loccufier E, Debecker DP, D’hooge D, De Buysser K, De Clerck K. Fibrous material structure developments for sustainable heterogeneous catalysis : an overview. CHEMCATCHEM. 2024;16(14).</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
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  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2024-04-08 13:35:12
date_updated: 2026-03-31 13:55:00
doi:
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issn:
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- 1867-3899
issue: '14'
jcr:
  category: CHEMISTRY, PHYSICAL
  category_decile: 5
  category_quartile: 2
  category_rank: 73/162
  category_vigintile: 9
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  immediacy_index: 0.9
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  impact_factor_5yr: 4.2
  prev_category_decile: 5
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  total_cites: 25476
keyword:
- Inorganic Chemistry
- Organic Chemistry
- Physical and Theoretical Chemistry
- Catalysis
- Fiber-based catalysts
- Nanofibers
- Porosity
- Surface-to-volume ratio
language:
- eng
page:
  count: '12'
parent:
  short_title: ChemCatChem
  title: CHEMCATCHEM
project:
- _id: 01J10219
  abstract: <p>Membrane technology can offer an answer for today’s research challenges
    to solve environmental problems. These membranes are in need of an improved resistance
    to harsh environments. This will further broaden applications such as water recycling
    but will also open up very novel applications in a process intensification of
    CO2 conversion units. Within this project nanofibers are developed for these applications.</p>
  end_date: 2024-07-30
  gismo_id: 1e0c3a2d-9d90-11e9-83f9-d13d95d2d7be
  iweto_id: 01J10219
  start_date: 2019-10-01
  title: Nanofibrous membranes for today’s environmental research questions.
- _id: 3S009618
  abstract: <p>Nanofibres are fibres with a diameter that is 1000 times smaller than
    a human hair. This makes nanofibrous membranes very light and porous, ideally
    suited for advanced engineering applications in various sectors. By adding a specific
    functionality (for example hydrophobic groups, amines, thiol functions), the application
    field can even be extended. However, the material choice and design are crucial
    for optimal performance. Therefore, several bridged organosilanes, hybrid structures
    with organic and inorganic moieties, will be studied as an alternative starting
    product to make such nanofibrous membranes within this project. They allow for
    highly flexible materials with superior chemical and thermal stability for which,
    moreover, the hydrophobicity can be tuned. These functionalised nanofibers will
    be processed from water and ethanol, which is ecologically more friendly than
    most current nanofiber and membrane production techniques. Applications in the
    field of water purification and chemical conversion are targeted. These <br />applications
    require long-term stable materials and make use of the large specific surface
    area, high porosity and/or large pores of the nanofibrous membranes to target
    more efficient processes.</p>
  end_date: 2022-09-09
  gismo_id: d937d58c-be65-11e9-ace9-8bf558aeac68
  iweto_id: 3S009618
  start_date: 2018-01-01
  title: |-
    Long-term stable organosilica nanofibrous membranes
    functionalised for advanced engineering applications
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: 'Fibrous material structure developments for sustainable heterogeneous catalysis
  : an overview'
type: journalArticle
volume: '16'
wos_id: '001173804900001'
wos_type: Review
year: '2024'
...
---
_id: 01HEMVT5YQPNE0S9D0E80PSVBM
abstract:
- Highly stable hydrophobic silica-based membranes were successfully fabricated through
  chemical post-modification of directly electrospun silica nanofibrous membranes.
  Five different Si-alkoxy chlorides were tried as reagents at room temperature, allowing
  for an easy two-step production process. Trimethylchlorosilane (TMCS) was determined
  as to be the most suitable modifier, for this purpose. The modified membrane exhibits
  long-term hydrophobicity even under high humidity and water submersion, maintaining
  this property after exposure to elevated temperatures and acidic conditions, surpassing
  the unmodified membrane. The separation effectiveness for immiscible water/solvent
  solutions was proven, followed by an investigation into the relation between the
  surface tension of some miscible water/solvent solutions and the resulting wetting
  behavior of the TMCS-modified membrane, to utilize the membrane as a process intensification
  tool, specifically as a solvent gate.
abstract_full:
- lang: eng
  text: Highly stable hydrophobic silica-based membranes were successfully fabricated
    through chemical post-modification of directly electrospun silica nanofibrous
    membranes. Five different Si-alkoxy chlorides were tried as reagents at room temperature,
    allowing for an easy two-step production process. Trimethylchlorosilane (TMCS)
    was determined as to be the most suitable modifier, for this purpose. The modified
    membrane exhibits long-term hydrophobicity even under high humidity and water
    submersion, maintaining this property after exposure to elevated temperatures
    and acidic conditions, surpassing the unmodified membrane. The separation effectiveness
    for immiscible water/solvent solutions was proven, followed by an investigation
    into the relation between the surface tension of some miscible water/solvent solutions
    and the resulting wetting behavior of the TMCS-modified membrane, to utilize the
    membrane as a process intensification tool, specifically as a solvent gate.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE06
  ugent_id: WE06
article_type: original
author:
- _id: 153AA182-8047-11E6-BF13-77C3B4D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 153AA182-8047-11E6-BF13-77C3B4D1D7B1
  first_name: Minglun
  last_name: Li
  name: Minglun Li
  name_last_first: Li, Minglun
  ugent_id:
  - '000161084967'
  - '802002448779'
  - '975880575688'
- _id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  first_name: Eva
  last_name: Loccufier
  name: Eva Loccufier
  name_last_first: Loccufier, Eva
  orcid_id: 0000-0001-7045-2721
  ugent_id:
  - '802002671374'
  - '974161061035'
- _id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
  orcid_id: 0000-0002-1281-2968
  ugent_id:
  - '000070582957'
  - '975000449525'
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01HEMVT5YQPNE0S9D0E80PSVBM
cite:
  apa: |2
      <div class="csl-entry">Li, M., Loccufier, E., Geltmeyer, J., D’hooge, D., De Buysser, K., &#38; De Clerck, K. (2024). Playing with chlorine-based post-modification strategies for manufacturing silica nanofibrous membranes acting as stable hydrophobic separation barriers. <i>ADVANCED FIBER MATERIALS</i>, <i>6</i>(1), 145–157. https://doi.org/10.1007/s42765-023-00335-y</div>
  bof: |2-
      <div class="csl-entry">Li, Minglun, Eva Loccufier, Jozefien Geltmeyer, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2024. “Playing with Chlorine-Based Post-Modification Strategies for Manufacturing Silica Nanofibrous Membranes Acting as Stable Hydrophobic Separation Barriers.” <i>ADVANCED FIBER MATERIALS</i> 6 (1): 145–157. doi:10.1007/s42765-023-00335-y.</div>
    <div><i>Impact factor: 21.3, category: MATERIALS SCIENCE, TEXTILES, rank: 1/26, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Li, Minglun, Eva Loccufier, Jozefien Geltmeyer, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2024. “Playing with Chlorine-Based Post-Modification Strategies for Manufacturing Silica Nanofibrous Membranes Acting as Stable Hydrophobic Separation Barriers.” <i>ADVANCED FIBER MATERIALS</i> 6 (1): 145–57. https://doi.org/10.1007/s42765-023-00335-y.</div>
  fwo: |2
      <div class="csl-entry">Li, Minglun, Eva Loccufier, Jozefien Geltmeyer, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2024. “Playing with Chlorine-Based Post-Modification Strategies for Manufacturing Silica Nanofibrous Membranes Acting as Stable Hydrophobic Separation Barriers.” <i>ADVANCED FIBER MATERIALS</i> 6 (1): 145–157. doi:10.1007/s42765-023-00335-y.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">M. Li, E. Loccufier, J. Geltmeyer, D. D’hooge, K. De Buysser, and K. De Clerck, “Playing with chlorine-based post-modification strategies for manufacturing silica nanofibrous membranes acting as stable hydrophobic separation barriers,” <i>ADVANCED FIBER MATERIALS</i>, vol. 6, no. 1, pp. 145–157, 2024.</div>
      </div>
  mla: |2
      <div class="csl-entry">Li, Minglun, et al. “Playing with Chlorine-Based Post-Modification Strategies for Manufacturing Silica Nanofibrous Membranes Acting as Stable Hydrophobic Separation Barriers.” <i>ADVANCED FIBER MATERIALS</i>, vol. 6, no. 1, 2024, pp. 145–57, doi:10.1007/s42765-023-00335-y.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Li M, Loccufier E, Geltmeyer J, D’hooge D, De Buysser K, De Clerck K. Playing with chlorine-based post-modification strategies for manufacturing silica nanofibrous membranes acting as stable hydrophobic separation barriers. ADVANCED FIBER MATERIALS. 2024;6(1):145–57.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2023-11-07 12:23:43
date_updated: 2026-03-31 13:48:14
doi:
- 10.1007/s42765-023-00335-y
external: 0
file:
- _id: 01HEMXMETAM80E1WX4Z7RJZW8F
  access: open
  content_type: application/pdf
  kind: fullText
  name: Manuscript Advanced Fiber Materials.pdf
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  url: https://biblio.ugent.be/publication/01HEMVT5YQPNE0S9D0E80PSVBM/file/01J091YA77JZTNPDQYZTQE4HSH.pdf
handle: http://hdl.handle.net/1854/LU-01HEMVT5YQPNE0S9D0E80PSVBM
issn:
- 2524-7921
- 2524-793X
issue: '1'
jcr:
  category: MATERIALS SCIENCE, TEXTILES
  category_decile: 1
  category_quartile: 1
  category_rank: 1/26
  category_vigintile: 1
  eigenfactor: 0.00745
  immediacy_index: 5.3
  impact_factor: 21.3
  impact_factor_5yr: 18.3
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 1
  prev_impact_factor: 17.2
  total_cites: 6644
keyword:
- Polymers and Plastics
- Materials Chemistry
- Electronic, Optical and Magnetic Materials
- Materials Science (miscellaneous)
- Electrospinning
- Nanofibers
- silica
- Post-functionalization
- Hydrophobicity
- Separation barrier
- WATER
- FABRICATION
- STABILITY
- REMOVAL
- FILTRATION
- COMPOSITE
- MATS
- MESH
- OIL
language:
- eng
page:
  first: '145'
  last: '157'
parent:
  short_title: Adv. Fiber Mater.
  title: ADVANCED FIBER MATERIALS
project:
- _id: 01J10219
  abstract: <p>Membrane technology can offer an answer for today’s research challenges
    to solve environmental problems. These membranes are in need of an improved resistance
    to harsh environments. This will further broaden applications such as water recycling
    but will also open up very novel applications in a process intensification of
    CO2 conversion units. Within this project nanofibers are developed for these applications.</p>
  end_date: 2024-07-30
  gismo_id: 1e0c3a2d-9d90-11e9-83f9-d13d95d2d7be
  iweto_id: 01J10219
  start_date: 2019-10-01
  title: Nanofibrous membranes for today’s environmental research questions.
- _id: 3S009618
  abstract: <p>Nanofibres are fibres with a diameter that is 1000 times smaller than
    a human hair. This makes nanofibrous membranes very light and porous, ideally
    suited for advanced engineering applications in various sectors. By adding a specific
    functionality (for example hydrophobic groups, amines, thiol functions), the application
    field can even be extended. However, the material choice and design are crucial
    for optimal performance. Therefore, several bridged organosilanes, hybrid structures
    with organic and inorganic moieties, will be studied as an alternative starting
    product to make such nanofibrous membranes within this project. They allow for
    highly flexible materials with superior chemical and thermal stability for which,
    moreover, the hydrophobicity can be tuned. These functionalised nanofibers will
    be processed from water and ethanol, which is ecologically more friendly than
    most current nanofiber and membrane production techniques. Applications in the
    field of water purification and chemical conversion are targeted. These <br />applications
    require long-term stable materials and make use of the large specific surface
    area, high porosity and/or large pores of the nanofibrous membranes to target
    more efficient processes.</p>
  end_date: 2022-09-09
  gismo_id: d937d58c-be65-11e9-ace9-8bf558aeac68
  iweto_id: 3S009618
  start_date: 2018-01-01
  title: |-
    Long-term stable organosilica nanofibrous membranes
    functionalised for advanced engineering applications
- _id: 01B03518
  abstract: <p>The requested table top SEM with integrated micromechanical testing,
    combines a large sample chamber to accommodate a sensitive micromechanical set-up
    with a high magnification and easy sampling. This is highly novel and only recently
    available at moderate costs. The in-situ visualization of material performance
    under load at high magnification will boost the academic research of the applicants
    and their collaborators.</p>
  end_date: 2020-05-31
  gismo_id: 320e7057-5b7c-11e9-ac93-1bffacd2a7e2
  iweto_id: 01B03518
  publication_count: 1
  start_date: 2018-06-01
  title: Table top SEM with integrated in-situ micromechanical testing for fiber,
    polymer and composite materials
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
- Chemistry
title: Playing with chlorine-based post-modification strategies for manufacturing
  silica nanofibrous membranes acting as stable hydrophobic separation barriers
type: journalArticle
volume: '6'
wos_id: '001092839900001'
wos_type: Article
year: '2024'
...
---
_id: 01JS1WW95NEXW8TQ56G5193VPX
abstract:
- 'This study investigates the effectiveness of polyether block amide (PEBA) thermoplastic
  elastomeric nanofibers in reducing low-velocity impact damage across three carbon
  fiber composite lay-up configurations: a cross-ply [0 degrees/90 degrees]2s (CP)
  and a quasi-isotropic [0 degrees/45 degrees/90 degrees/-45 degrees]s (QI) lay-up
  utilizing unidirectional plies, and a stacked woven [(0 degrees,90 degrees)]4s (W)
  lay-up using twill woven fabric plies. The flexural strength and interlaminar shear
  strength of the composites remained unaffected by the addition of nanofibers: around
  750 MPa and 63 MPa for CP, 550 MPa and 58 MPa for QI, and 650 MPa and 50 MPa for
  W, respectively. The incorporation of nanofibers in the interlaminar regions resulted
  in a substantial reduction in projected damage area, ranging from 30% to 50% reduction
  over an impact energy range of 5-20 J. Microscopic analysis showed that especially
  the delamination damage decreased in toughened composites, while intralaminar damage
  remained similar for the cross-ply and quasi-isotropic lay-ups and decreased only
  in the woven lay-up. This agrees with the broad body of research that shows that
  interleaved nanofibers result in a higher delamination resistance due to toughening
  mechanisms related to nanofiber bridging of cracks. Despite their ability to mitigate
  delamination during impact, nanofibers showed limited positive effects on Compression
  After Impact (CAI) strength in quasi-isotropic and cross-ply composites. Interestingly,
  only the woven fabric composites demonstrated improved CAI strength, with a 12%
  improvement on average over the impact energy range, attributed to a reduction in
  both interlaminar and intralaminar damage. This study indicates the critical role
  of fiber integrity over delamination size in determining CAI performance, suggesting
  that the delaminations are not sufficiently large to induce buckling of sub-layers,
  thereby minimizing the effect of nanofiber toughening on the CAI strength.'
abstract_full:
- lang: eng
  text: 'This study investigates the effectiveness of polyether block amide (PEBA)
    thermoplastic elastomeric nanofibers in reducing low-velocity impact damage across
    three carbon fiber composite lay-up configurations: a cross-ply [0 degrees/90
    degrees]2s (CP) and a quasi-isotropic [0 degrees/45 degrees/90 degrees/-45 degrees]s
    (QI) lay-up utilizing unidirectional plies, and a stacked woven [(0 degrees,90
    degrees)]4s (W) lay-up using twill woven fabric plies. The flexural strength and
    interlaminar shear strength of the composites remained unaffected by the addition
    of nanofibers: around 750 MPa and 63 MPa for CP, 550 MPa and 58 MPa for QI, and
    650 MPa and 50 MPa for W, respectively. The incorporation of nanofibers in the
    interlaminar regions resulted in a substantial reduction in projected damage area,
    ranging from 30% to 50% reduction over an impact energy range of 5-20 J. Microscopic
    analysis showed that especially the delamination damage decreased in toughened
    composites, while intralaminar damage remained similar for the cross-ply and quasi-isotropic
    lay-ups and decreased only in the woven lay-up. This agrees with the broad body
    of research that shows that interleaved nanofibers result in a higher delamination
    resistance due to toughening mechanisms related to nanofiber bridging of cracks.
    Despite their ability to mitigate delamination during impact, nanofibers showed
    limited positive effects on Compression After Impact (CAI) strength in quasi-isotropic
    and cross-ply composites. Interestingly, only the woven fabric composites demonstrated
    improved CAI strength, with a 12% improvement on average over the impact energy
    range, attributed to a reduction in both interlaminar and intralaminar damage.
    This study indicates the critical role of fiber integrity over delamination size
    in determining CAI performance, suggesting that the delaminations are not sufficiently
    large to induce buckling of sub-layers, thereby minimizing the effect of nanofiber
    toughening on the CAI strength.'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: '3060'
article_type: original
author:
- _id: 2D12E8D8-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 2D12E8D8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Timo
  last_name: Meireman
  name: Timo Meireman
  name_last_first: Meireman, Timo
  ugent_id:
  - '972580996713'
- _id: 0D5D9168-4716-11E7-B659-9A5FAE28A064
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0D5D9168-4716-11E7-B659-9A5FAE28A064
  first_name: Erik
  last_name: Verboven
  name: Erik Verboven
  name_last_first: Verboven, Erik
  orcid_id: 0000-0001-6164-0130
  ugent_id:
  - '802002619642'
  - '977116732473'
- _id: 199EDBAE-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 199EDBAE-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Mathias
  last_name: Kersemans
  name: Mathias Kersemans
  name_last_first: Kersemans, Mathias
  orcid_id: 0000-0002-9325-0556
  ugent_id:
  - '802000786039'
  - '977395323042'
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
biblio_id: 01JS1WW95NEXW8TQ56G5193VPX
cite:
  apa: |2
      <div class="csl-entry">Meireman, T., Verboven, E., Kersemans, M., Van Paepegem, W., De Clerck, K., &#38; Daelemans, L. (2024). Low-velocity impact resistance and compression after impact strength of thermoplastic nanofiber toughened carbon/epoxy composites with different layups. <i>POLYMERS</i>, <i>16</i>(21). https://doi.org/10.3390/polym16213060</div>
  bof: |2-
      <div class="csl-entry">Meireman, Timo, Erik Verboven, Mathias Kersemans, Wim Van Paepegem, Karen De Clerck, and Lode Daelemans. 2024. “Low-Velocity Impact Resistance and Compression after Impact Strength of Thermoplastic Nanofiber Toughened Carbon/Epoxy Composites with Different Layups.” <i>POLYMERS</i> 16 (21). doi:10.3390/polym16213060.</div>
    <div><i>Impact factor: 4.9, category: POLYMER SCIENCE, rank: 15/85, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Meireman, Timo, Erik Verboven, Mathias Kersemans, Wim Van Paepegem, Karen De Clerck, and Lode Daelemans. 2024. “Low-Velocity Impact Resistance and Compression after Impact Strength of Thermoplastic Nanofiber Toughened Carbon/Epoxy Composites with Different Layups.” <i>POLYMERS</i> 16 (21). https://doi.org/10.3390/polym16213060.</div>
  fwo: |2
      <div class="csl-entry">Meireman, Timo, Erik Verboven, Mathias Kersemans, Wim Van Paepegem, Karen De Clerck, and Lode Daelemans. 2024. “Low-Velocity Impact Resistance and Compression after Impact Strength of Thermoplastic Nanofiber Toughened Carbon/Epoxy Composites with Different Layups.” <i>POLYMERS</i> 16 (21). doi:10.3390/polym16213060.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">T. Meireman, E. Verboven, M. Kersemans, W. Van Paepegem, K. De Clerck, and L. Daelemans, “Low-velocity impact resistance and compression after impact strength of thermoplastic nanofiber toughened carbon/epoxy composites with different layups,” <i>POLYMERS</i>, vol. 16, no. 21, 2024.</div>
      </div>
  mla: |2
      <div class="csl-entry">Meireman, Timo, et al. “Low-Velocity Impact Resistance and Compression after Impact Strength of Thermoplastic Nanofiber Toughened Carbon/Epoxy Composites with Different Layups.” <i>POLYMERS</i>, vol. 16, no. 21, 2024, doi:10.3390/polym16213060.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Meireman T, Verboven E, Kersemans M, Van Paepegem W, De Clerck K, Daelemans L. Low-velocity impact resistance and compression after impact strength of thermoplastic nanofiber toughened carbon/epoxy composites with different layups. POLYMERS. 2024;16(21).</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
date_created: 2025-04-17 12:51:45
date_updated: 2026-03-31 05:14:17
doi:
- 10.3390/polym16213060
external: 0
file:
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  url: https://biblio.ugent.be/publication/01JS1WW95NEXW8TQ56G5193VPX/file/01JS1XFZB6GV8H2J9ZNV6AYNY7.pdf
handle: http://hdl.handle.net/1854/LU-01JS1WW95NEXW8TQ56G5193VPX
issn:
- 2073-4360
issue: '21'
jcr:
  category: POLYMER SCIENCE
  category_decile: 2
  category_quartile: 1
  category_rank: 15/85
  category_vigintile: 4
  eigenfactor: 0.10941
  immediacy_index: 1.1
  impact_factor: 4.9
  impact_factor_5yr: 5.2
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 4
  prev_impact_factor: 4.7
  total_cites: 121159
keyword:
- damage resistance
- electrospinning
- residual compressive strength
- DELAMINATION
- FIBER/EPOXY
- BEHAVIOR
- INTERLEAVES
language:
- eng
page:
  count: '16'
parent:
  short_title: Polymers
  title: POLYMERS
project:
- _id: BOF/STA/202009/046
  abstract: <p>Every textile material, be it for low-end consumer goods or high-end
    technical products, is exploited for the properties resulting from its multi-scale
    nature (fibres -&gt; yarns -&gt; textiles -&gt; derivatives). Understanding this
    multi-scale nature is thus key to improving this materials. Textiles are, for
    example, well suited for technical applications thanks to their unique combination
    of lightness, flexibility and strength. Yet such applications often require a
    thorough understanding of the mechanical performance, which in itself is quite
    challenging due to the complex microstructure. By following a multiscale analysis,
    combining both experimental and numerical techniques, starting with individual
    fibres and building up till complete textile materials and derivatives such as
    composites, we underpin the micro-macro relationships that govern the mechanical
    behaviour of textiles. This project combines both advanced testing methods with
    in-situ measurement of the deformation mechanisms at microscale, and novel finite
    element modelling tools that allow simulations at the microscale.</p>
  deleted: 1
  end_date: 2025-06-30
  gismo_id: 25182d45-ccf4-11eb-9f0b-e5cd0f711fbd
  iweto_id: BOF/STA/202009/046
  publication_count: 1
  start_date: 2021-07-01
  title: Multi-scale analysis of textile and derived materials
publication_status: published
publication_status_sort: 2
pubmed_id: '39518268'
status: public
subject:
- Technology and Engineering
title: Low-velocity impact resistance and compression after impact strength of thermoplastic
  nanofiber toughened carbon/epoxy composites with different layups
type: journalArticle
volume: '16'
wos_id: '001351767700001'
wos_type: Article
year: '2024'
...
---
_id: 01JJPN13AF60WMMS2V3SV7R7M3
abstract:
- |-
  The attractive properties of poly(2-alkyl/aryl-2-oxazolines) (PAOx), including good biocompatibility and stealth behaviour, coupled with their structural variability and facile functionalization techniques, have amplified the research interest in this versatile polymer platform, particularly for applications focused in the biomedical field (Hoogenboom 2022; Yang et al. 2023). Notably, poly(2-ethyl-2-oxazoline) (PEtOx) presents remarkable potential due to its high hydrophilicity in situations where hygroscopic behaviour is desired, as illustrated by ongoing pre-clinical trials on PEtOx-drug conjugates (Moreadith et al. 2017), positioning PEtOx as a commercially competitive alternative to the more established poly(ethylene glycol) (PEG). By combining this material with the versatility and scalability of the solvent electrospinning technique, PAOx nanofibrous membranes emerge as an attractive support-material for demanding (biomedical) applications. However, the inherent water-solubility of PEtOx limits its application in situations where a stable, nanofibrous morphology is required in aqueous environments, such as in tissue engineering or wound dressings.
  The present work offers a straightforward route towards biocompatible, water-stable PEtOx-based nanofibrous membranes, via photo-crosslinking of the electrospun membranes comprising cinnamoyl-bearing PEtOx (PEtOx-Cin). The proposed functionalisation of PEtOx with cinnamoyl moieties entails a two-step process, involving partial hydrolysis of PEtOx to incorporate reactive polyethyleneimine units, followed by cinnamoyl addition. This post-polymerization approach allows for the utilization of large-scale, commercially available materials. After successful synthesis, homogeneous PEtOx-Cin nanofibrous mats are electrospun using only green solvents, in a process similar to that for unmodified PEtOx.
  It is revealed that a UVB treatment does not significantly affect the nanofibrous morphology, while successfully inducing the cinnamoyl dimerization process and hence the formation of a polymeric network, as evidenced by spectral analysis. Indeed, conversions of up to 95% after 24 h of UVB exposure of 10% functionalised PEtOx-Cin could be reached. The hereby crosslinked PEtOx-based nanofibers exhibit prolonged water-stability (at least 45 days), while, interestingly, intermediate irradiation times (5 h) yield the best results. Full disintegration of the photo-crosslinked nanofibers in aqueous media could be achieved by subsequent UVC exposure. This is not only due to decrosslinking of the cinnamoyl dimers, but also due to partial degradation of the polymeric backbone. Investigation of UVB/UVC exposure on pure PEtOx nanofibrous membranes confirmed the photo-degradation of the polymeric backbone, evidenced by a significant decrease in molar mass as observed by size exclusion chromatography and supported by spectral analysis.
  The hereby proposed, straightforward methodology for reversible biocompatible crosslinking of PEtOx-based nanofibrous membranes and their accessible disintegration will contribute to advance these materials in biomedical applications necessitating water-stable, nanofibrous morphologies combined with high hydrophilicity and easy removal.

  Acknowledgments
  This work was supported by the Research Foundation – Flanders (FWO) through a strategic research PhD grant (1S22722N), as well as the Centre for Textile Science and Engineering and the Supramolecular Chemistry group, both at Ghent University.

  References
  Hoogenboom, Richard. 2022. “The Future of Poly(2-Oxazoline)S.” European Polymer Journal 179:111521. doi: 10.1016/J.EURPOLYMJ.2022.111521.
  Moreadith, Randall W., Tacey X. Viegas, Michael D. Bentley, J. Milton Harris, Zhihao Fang, Kunsang Yoon, Bekir Dizman, Rebecca Weimer, Brendan P. Rae, Xiuling Li, Christoph Rader, David Standaert, and Warren Olanow. 2017. “Clinical Development of a Poly(2-Oxazoline) (POZ) Polymer Therapeutic for the Treatment of Parkinson’s Disease – Proof of Concept of POZ as a Versatile Polymer Platform for Drug Development in Multiple Therapeutic Indications.” European Polymer Journal 88:524–52.
  Yang, Liuxin, Faming Wang, Pengfei Ren, Tianzhu Zhang, and Qianli Zhang. 2023. “Poly(2-Oxazoline)s: Synthesis and Biomedical Applications.” Macromolecular Research 2023 31:5 31(5):413–26. doi: 10.1007/S13233-023-00116-X.
abstract_full:
- lang: eng
  text: |-
    The attractive properties of poly(2-alkyl/aryl-2-oxazolines) (PAOx), including good biocompatibility and stealth behaviour, coupled with their structural variability and facile functionalization techniques, have amplified the research interest in this versatile polymer platform, particularly for applications focused in the biomedical field (Hoogenboom 2022; Yang et al. 2023). Notably, poly(2-ethyl-2-oxazoline) (PEtOx) presents remarkable potential due to its high hydrophilicity in situations where hygroscopic behaviour is desired, as illustrated by ongoing pre-clinical trials on PEtOx-drug conjugates (Moreadith et al. 2017), positioning PEtOx as a commercially competitive alternative to the more established poly(ethylene glycol) (PEG). By combining this material with the versatility and scalability of the solvent electrospinning technique, PAOx nanofibrous membranes emerge as an attractive support-material for demanding (biomedical) applications. However, the inherent water-solubility of PEtOx limits its application in situations where a stable, nanofibrous morphology is required in aqueous environments, such as in tissue engineering or wound dressings.
    The present work offers a straightforward route towards biocompatible, water-stable PEtOx-based nanofibrous membranes, via photo-crosslinking of the electrospun membranes comprising cinnamoyl-bearing PEtOx (PEtOx-Cin). The proposed functionalisation of PEtOx with cinnamoyl moieties entails a two-step process, involving partial hydrolysis of PEtOx to incorporate reactive polyethyleneimine units, followed by cinnamoyl addition. This post-polymerization approach allows for the utilization of large-scale, commercially available materials. After successful synthesis, homogeneous PEtOx-Cin nanofibrous mats are electrospun using only green solvents, in a process similar to that for unmodified PEtOx.
    It is revealed that a UVB treatment does not significantly affect the nanofibrous morphology, while successfully inducing the cinnamoyl dimerization process and hence the formation of a polymeric network, as evidenced by spectral analysis. Indeed, conversions of up to 95% after 24 h of UVB exposure of 10% functionalised PEtOx-Cin could be reached. The hereby crosslinked PEtOx-based nanofibers exhibit prolonged water-stability (at least 45 days), while, interestingly, intermediate irradiation times (5 h) yield the best results. Full disintegration of the photo-crosslinked nanofibers in aqueous media could be achieved by subsequent UVC exposure. This is not only due to decrosslinking of the cinnamoyl dimers, but also due to partial degradation of the polymeric backbone. Investigation of UVB/UVC exposure on pure PEtOx nanofibrous membranes confirmed the photo-degradation of the polymeric backbone, evidenced by a significant decrease in molar mass as observed by size exclusion chromatography and supported by spectral analysis.
    The hereby proposed, straightforward methodology for reversible biocompatible crosslinking of PEtOx-based nanofibrous membranes and their accessible disintegration will contribute to advance these materials in biomedical applications necessitating water-stable, nanofibrous morphologies combined with high hydrophilicity and easy removal.

    Acknowledgments
    This work was supported by the Research Foundation – Flanders (FWO) through a strategic research PhD grant (1S22722N), as well as the Centre for Textile Science and Engineering and the Supramolecular Chemistry group, both at Ghent University.

    References
    Hoogenboom, Richard. 2022. “The Future of Poly(2-Oxazoline)S.” European Polymer Journal 179:111521. doi: 10.1016/J.EURPOLYMJ.2022.111521.
    Moreadith, Randall W., Tacey X. Viegas, Michael D. Bentley, J. Milton Harris, Zhihao Fang, Kunsang Yoon, Bekir Dizman, Rebecca Weimer, Brendan P. Rae, Xiuling Li, Christoph Rader, David Standaert, and Warren Olanow. 2017. “Clinical Development of a Poly(2-Oxazoline) (POZ) Polymer Therapeutic for the Treatment of Parkinson’s Disease – Proof of Concept of POZ as a Versatile Polymer Platform for Drug Development in Multiple Therapeutic Indications.” European Polymer Journal 88:524–52.
    Yang, Liuxin, Faming Wang, Pengfei Ren, Tianzhu Zhang, and Qianli Zhang. 2023. “Poly(2-Oxazoline)s: Synthesis and Biomedical Applications.” Macromolecular Research 2023 31:5 31(5):413–26. doi: 10.1007/S13233-023-00116-X.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
author:
- _id: 4ECF3BC6-5675-11E5-B03A-F334B5D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 4ECF3BC6-5675-11E5-B03A-F334B5D1D7B1
  first_name: Olmo
  last_name: Frateur
  name: Olmo Frateur
  name_last_first: Frateur, Olmo
  orcid_id: 0000-0002-0198-561X
  ugent_id:
  - '000150886227'
  - '802003501433'
  - '976840489813'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01JJPN13AF60WMMS2V3SV7R7M3
cite:
  apa: |2
      <div class="csl-entry">Frateur, O., Hoogenboom, R., &#38; De Clerck, K. (2024). Cinnamoyl functionalization and photo-crosslinking of PEtOx-based nanofibres to obtain aqueous stability. <i>8th International Conference on Electrospinning, Abstracts</i>, 95–95.</div>
  bof: |2
      <div class="csl-entry">Frateur, Olmo, Richard Hoogenboom, and Karen De Clerck. 2024. “Cinnamoyl Functionalization and Photo-Crosslinking of PEtOx-Based Nanofibres to Obtain Aqueous Stability.” In <i>8th International Conference on Electrospinning, Abstracts</i>, 95–95.</div>
  chicago-author-date: |2
      <div class="csl-entry">Frateur, Olmo, Richard Hoogenboom, and Karen De Clerck. 2024. “Cinnamoyl Functionalization and Photo-Crosslinking of PEtOx-Based Nanofibres to Obtain Aqueous Stability.” In <i>8th International Conference on Electrospinning, Abstracts</i>, 95–95.</div>
  fwo: |2
      <div class="csl-entry">Frateur, Olmo, Richard Hoogenboom, and Karen De Clerck. 2024. “Cinnamoyl Functionalization and Photo-Crosslinking of PEtOx-Based Nanofibres to Obtain Aqueous Stability.” In <i>8th International Conference on Electrospinning, Abstracts</i>, 95–95.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">O. Frateur, R. Hoogenboom, and K. De Clerck, “Cinnamoyl functionalization and photo-crosslinking of PEtOx-based nanofibres to obtain aqueous stability,” in <i>8th International Conference on Electrospinning, Abstracts</i>, Kraków, Poland, 2024, pp. 95–95.</div>
      </div>
  mla: |2
      <div class="csl-entry">Frateur, Olmo, et al. “Cinnamoyl Functionalization and Photo-Crosslinking of PEtOx-Based Nanofibres to Obtain Aqueous Stability.” <i>8th International Conference on Electrospinning, Abstracts</i>, 2024, pp. 95–95.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Frateur O, Hoogenboom R, De Clerck K. Cinnamoyl functionalization and photo-crosslinking of PEtOx-based nanofibres to obtain aqueous stability. In: 8th International Conference on Electrospinning, Abstracts. 2024. p. 95–95.</div>
       </div>
classification: C3
conference:
  end_date: 2024-06-28
  location: Kraków, Poland
  name: 8th International Conference on Electrospinning (Electrospin2024)
  organizer: Electropspun Fibers Group, AGH University of Krakow
  start_date: 2024-06-25
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
  _id: 4ECF3BC6-5675-11E5-B03A-F334B5D1D7B1
  affiliation:
  - path:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 4ECF3BC6-5675-11E5-B03A-F334B5D1D7B1
  first_name: Olmo
  last_name: Frateur
  name: Olmo Frateur
  name_last_first: Frateur, Olmo
  orcid_id: 0000-0002-0198-561X
  ugent_id:
  - '000150886227'
  - '802003501433'
  - '976840489813'
date_created: 2025-01-28 14:28:45
date_updated: 2026-03-31 05:13:27
external: 0
file:
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  url: https://biblio.ugent.be/publication/01JJPN13AF60WMMS2V3SV7R7M3/file/01JJPPGXSXPYSS6JR6SJK30NCJ.pdf
handle: http://hdl.handle.net/1854/LU-01JJPN13AF60WMMS2V3SV7R7M3
jcr: {}
language:
- eng
page:
  first: '95'
  last: '95'
parent:
  title: 8th International Conference on Electrospinning, Abstracts
project:
- _id: 3S002821
  abstract: <p>As severe burns are a leading cause of morbidity, proper wound care
    is crucial. Treating burns requires specific care to provide an infection-free
    and moist environment. As such, advanced dressings are essential, however, no
    all-round dressings for every burn exist and the demand remains pressing. Our
    aim is to innovate novel wound dressings by combining both moisture regulation,
    antimicrobial action and conformability in one single dressing. The material needs
    will be met by engineering hybrid, electrospun nanofibrous structures, for which
    the novel, versatile poly(2-oxazoline) platform with a tunable hydrophilicity
    will be employed. This allows for the targeted design of a nanofibrous material
    with optimal moisture-managing properties. Moreover, electrospinning is ideally
    suited for doping bioactive agents and controlling the release rate. Innovatively
    linking moisture uptake with drug release in the nanofibrous structures enables
    an optimal and prolonged antiseptic action to prevent and treat infection during
    wound healing. Lastly, the mechanical properties will be examined and modified
    to improve membrane stability and conformability. Our findings, based on hybrid
    nanofibrous structures with the desired material properties, will significantly
    advance the preparation of widely applicable multifunctional wound dressings.
    This outcome will reduce healthcare costs and increase patient comfort, thus resulting
    in a major societal impact.</p>
  end_date: 2025-10-31
  gismo_id: 4ad519a6-2a81-11ec-a6b4-cd4eac00b947
  iweto_id: 3S002821
  start_date: 2021-11-01
  title: Engineering hybrid nanofibrous membranes with superior moisture regulation
    and controlled antimicrobial action for future wound dressings
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Cinnamoyl functionalization and photo-crosslinking of PEtOx-based nanofibres
  to obtain aqueous stability
type: conference
year: '2024'
...
---
_id: 01HX75FB27ARZCM04678FF34G9
abstract:
- In short fibre composites, debonding cracks usually initiate from fibre tips and
  their growth is governed by the properties of the fibre/matrix interface. These
  properties are ideally acquired from a model test similar to the real composite,
  while excluding the effects of fibre fractures and the induced debonding interactions.
  Therefore, in this study, debonding growth was examined in detail, using novel single
  short fibre specimens, which were fabricated using a new methodology. These experiments
  were further complemented with a continuous fibre case study, where the established
  single fibre fragmentation specimens were evaluated. The progression of debonding
  and pull-out damages versus remote stress was studied for two fibre sizings utilizing
  real-time in-situ polarized light microscopy. A finite element model was built to
  obtain the fibre/matrix interfacial fracture toughness considering thermal residual
  stresses, friction and matrix plasticity, and a very good correlation was obtained
  between the model and the experiments.
abstract_full:
- lang: eng
  text: In short fibre composites, debonding cracks usually initiate from fibre tips
    and their growth is governed by the properties of the fibre/matrix interface.
    These properties are ideally acquired from a model test similar to the real composite,
    while excluding the effects of fibre fractures and the induced debonding interactions.
    Therefore, in this study, debonding growth was examined in detail, using novel
    single short fibre specimens, which were fabricated using a new methodology. These
    experiments were further complemented with a continuous fibre case study, where
    the established single fibre fragmentation specimens were evaluated. The progression
    of debonding and pull-out damages versus remote stress was studied for two fibre
    sizings utilizing real-time in-situ polarized light microscopy. A finite element
    model was built to obtain the fibre/matrix interfacial fracture toughness considering
    thermal residual stresses, friction and matrix plasticity, and a very good correlation
    was obtained between the model and the experiments.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
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  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: '108435'
article_type: original
author:
- _id: d271f551-a15a-11eb-8c83-edeb9b1cd9d7
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: d271f551-a15a-11eb-8c83-edeb9b1cd9d7
  first_name: Mehdi
  last_name: Nikforooz
  name: Mehdi Nikforooz
  name_last_first: Nikforooz, Mehdi
  ugent_id:
  - '976302603389'
- _id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  biblio_id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  first_name: Olivier
  last_name: Verschatse
  name: Olivier Verschatse
  name_last_first: Verschatse, Olivier
  orcid_id: 0000-0001-7732-6007
  ugent_id:
  - '974442908376'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
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cite:
  apa: |2
      <div class="csl-entry">Nikforooz, M., Verschatse, O., Daelemans, L., De Clerck, K., &#38; Van Paepegem, W. (2024). Mixed experimental-numerical method for quantitative measurement of mode II fibre/matrix interface debonding and comparison of fibre sizings in single short fibre composites. <i>POLYMER TESTING</i>, <i>134</i>. https://doi.org/10.1016/j.polymertesting.2024.108435</div>
  bof: |2-
      <div class="csl-entry">Nikforooz, Mehdi, Olivier Verschatse, Lode Daelemans, Karen De Clerck, and Wim Van Paepegem. 2024. “Mixed Experimental-Numerical Method for Quantitative Measurement of Mode II Fibre/Matrix Interface Debonding and Comparison of Fibre Sizings in Single Short Fibre Composites.” <i>POLYMER TESTING</i> 134. doi:10.1016/j.polymertesting.2024.108435.</div>
    <div><i>Impact factor: 6, category: MATERIALS SCIENCE, CHARACTERIZATION & TESTING, rank: 1/31, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Nikforooz, Mehdi, Olivier Verschatse, Lode Daelemans, Karen De Clerck, and Wim Van Paepegem. 2024. “Mixed Experimental-Numerical Method for Quantitative Measurement of Mode II Fibre/Matrix Interface Debonding and Comparison of Fibre Sizings in Single Short Fibre Composites.” <i>POLYMER TESTING</i> 134. https://doi.org/10.1016/j.polymertesting.2024.108435.</div>
  fwo: |2
      <div class="csl-entry">Nikforooz, Mehdi, Olivier Verschatse, Lode Daelemans, Karen De Clerck, and Wim Van Paepegem. 2024. “Mixed Experimental-Numerical Method for Quantitative Measurement of Mode II Fibre/Matrix Interface Debonding and Comparison of Fibre Sizings in Single Short Fibre Composites.” <i>POLYMER TESTING</i> 134. doi:10.1016/j.polymertesting.2024.108435.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">M. Nikforooz, O. Verschatse, L. Daelemans, K. De Clerck, and W. Van Paepegem, “Mixed experimental-numerical method for quantitative measurement of mode II fibre/matrix interface debonding and comparison of fibre sizings in single short fibre composites,” <i>POLYMER TESTING</i>, vol. 134, 2024.</div>
      </div>
  mla: |2
      <div class="csl-entry">Nikforooz, Mehdi, et al. “Mixed Experimental-Numerical Method for Quantitative Measurement of Mode II Fibre/Matrix Interface Debonding and Comparison of Fibre Sizings in Single Short Fibre Composites.” <i>POLYMER TESTING</i>, vol. 134, 2024, doi:10.1016/j.polymertesting.2024.108435.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Nikforooz M, Verschatse O, Daelemans L, De Clerck K, Van Paepegem W. Mixed experimental-numerical method for quantitative measurement of mode II fibre/matrix interface debonding and comparison of fibre sizings in single short fibre composites. POLYMER TESTING. 2024;134.</div>
       </div>
classification: A1
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  abstract: |-
    <p>The North-C-Blade consortium will evaluate the use of gasification technology for the recycling of decommissioned wind turbine blades. This includes proper waste/feed preparation, novel electrified reactor technology, and chlorine removal from the product so that it can be further valorised in novel material applications. A feasibility study will be performed to assess the viability of a gasification plant that can process up to 200 kta of waste including decommissioned wind turbine blades from the North Sea Region.</p>
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subject:
- Technology and Engineering
title: Mixed experimental-numerical method for quantitative measurement of mode II
  fibre/matrix interface debonding and comparison of fibre sizings in single short
  fibre composites
type: journalArticle
volume: '134'
wos_id: '001237694500001'
wos_type: Article
year: '2024'
...
---
_id: 01HX74Q9CWJD0E3V5H4GST2CT7
abstract:
- In short fibre composites, off-axis fibres are potentially subject to mixed-mode
  loading, which results in interactive debonding growth in opening and sliding modes.
  This synergy might differ for strong and weak fibre/ matrix bondings inducing discrete
  debonding patterns. This study employed an optical visualization technique to investigate,
  for the first time, the mixed-mode debonding growth for short fibres with different
  sizings and offaxis angles, through in-situ real-time measurements. For this purpose,
  embedded single short-fibre specimens were fabricated using E-glass fibres and an
  epoxy matrix, with a novel and more efficient manufacturing method than done so
  far in literature. E-glass fibres with two different sizings were utilized, including
  a polypropylenecompatible (weak) sizing and an epoxy-compatible (strong) sizing.
  While there was a relatively rapid debonding growth for the transverse fibres with
  the weak sizing, the strong sizing experienced a gradual debonding growth independent
  of the fibre angle. For the weak sizing, partial debonding cracks were initiated
  at different locations along the length of the fibres, where they coalesced into
  dominant debonding cracks. For the strong sizing, debonding was always initiated
  and localized at the fibre tip, and there was a clear synchronous propagation of
  debonding in the arc and length of the fibre.
abstract_full:
- lang: eng
  text: In short fibre composites, off-axis fibres are potentially subject to mixed-mode
    loading, which results in interactive debonding growth in opening and sliding
    modes. This synergy might differ for strong and weak fibre/ matrix bondings inducing
    discrete debonding patterns. This study employed an optical visualization technique
    to investigate, for the first time, the mixed-mode debonding growth for short
    fibres with different sizings and offaxis angles, through in-situ real-time measurements.
    For this purpose, embedded single short-fibre specimens were fabricated using
    E-glass fibres and an epoxy matrix, with a novel and more efficient manufacturing
    method than done so far in literature. E-glass fibres with two different sizings
    were utilized, including a polypropylenecompatible (weak) sizing and an epoxy-compatible
    (strong) sizing. While there was a relatively rapid debonding growth for the transverse
    fibres with the weak sizing, the strong sizing experienced a gradual debonding
    growth independent of the fibre angle. For the weak sizing, partial debonding
    cracks were initiated at different locations along the length of the fibres, where
    they coalesced into dominant debonding cracks. For the strong sizing, debonding
    was always initiated and localized at the fibre tip, and there was a clear synchronous
    propagation of debonding in the arc and length of the fibre.
affiliation:
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  first_name: Mehdi
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  first_name: Olivier
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  first_name: Wim
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biblio_id: 01HX74Q9CWJD0E3V5H4GST2CT7
cite:
  apa: |2
      <div class="csl-entry">Nikforooz, M., Verschatse, O., Daelemans, L., De Clerck, K., &#38; Van Paepegem, W. (2024). Experimental method for in-situ real-time measurement of mixed mode fibre/matrix interface debonding and comparison of fibre sizings in single short fibre composites. <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, <i>249</i>. https://doi.org/10.1016/j.compscitech.2024.110488</div>
  chicago-author-date: |2
      <div class="csl-entry">Nikforooz, Mehdi, Olivier Verschatse, Lode Daelemans, Karen De Clerck, and Wim Van Paepegem. 2024. “Experimental Method for In-Situ Real-Time Measurement of Mixed Mode Fibre/Matrix Interface Debonding and Comparison of Fibre Sizings in Single Short Fibre Composites.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i> 249. https://doi.org/10.1016/j.compscitech.2024.110488.</div>
  fwo: |2
      <div class="csl-entry">Nikforooz, Mehdi, Olivier Verschatse, Lode Daelemans, Karen De Clerck, and Wim Van Paepegem. 2024. “Experimental Method for In-Situ Real-Time Measurement of Mixed Mode Fibre/Matrix Interface Debonding and Comparison of Fibre Sizings in Single Short Fibre Composites.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i> 249. doi:10.1016/j.compscitech.2024.110488.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">M. Nikforooz, O. Verschatse, L. Daelemans, K. De Clerck, and W. Van Paepegem, “Experimental method for in-situ real-time measurement of mixed mode fibre/matrix interface debonding and comparison of fibre sizings in single short fibre composites,” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, vol. 249, 2024.</div>
      </div>
  mla: |2
      <div class="csl-entry">Nikforooz, Mehdi, et al. “Experimental Method for In-Situ Real-Time Measurement of Mixed Mode Fibre/Matrix Interface Debonding and Comparison of Fibre Sizings in Single Short Fibre Composites.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, vol. 249, 2024, doi:10.1016/j.compscitech.2024.110488.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Nikforooz M, Verschatse O, Daelemans L, De Clerck K, Van Paepegem W. Experimental method for in-situ real-time measurement of mixed mode fibre/matrix interface debonding and comparison of fibre sizings in single short fibre composites. COMPOSITES SCIENCE AND TECHNOLOGY. 2024;249.</div>
       </div>
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keyword:
- Short-fibre composites
- Debonding
- Fibre/matrix bond
- Interface
- Optical
- microscopy
- FRAGMENTATION TEST
- DAMAGE MECHANISMS
- NORMAL STRENGTH
- MATRIX
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    <p>The North-C-Blade consortium will evaluate the use of gasification technology for the recycling of decommissioned wind turbine blades. This includes proper waste/feed preparation, novel electrified reactor technology, and chlorine removal from the product so that it can be further valorised in novel material applications. A feasibility study will be performed to assess the viability of a gasification plant that can process up to 200 kta of waste including decommissioned wind turbine blades from the North Sea Region.</p>
    <p>&#160;</p>
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title: Experimental method for in-situ real-time measurement of mixed mode fibre/matrix
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  biblio_id: d271f551-a15a-11eb-8c83-edeb9b1cd9d7
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  first_name: Karen
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  affiliation:
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    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
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  first_name: Wim
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  name: Wim Van Paepegem
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  affiliation:
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    - ugent_id: TW
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    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
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biblio_id: 01JS1VF9HWG31C9HNEBK37W6F6
cite:
  apa: |2
      <div class="csl-entry">Verschatse, O., Nikforooz, M., De Clerck, K., Van Paepegem, W., &#38; Daelemans, L. (2024). Fiber-matrix debonding behavior using in-situ electron and light microscopy during mechanical testing. <i>Proceedings of the 21st European Conference on Composite Materials</i>, <i>4</i>, 175–181. https://doi.org/10.60691/yj56-np80</div>
  bof: |2
      <div class="csl-entry">Verschatse, Olivier, Mehdi Nikforooz, Karen De Clerck, Wim Van Paepegem, and Lode Daelemans. 2024. “Fiber-Matrix Debonding Behavior Using in-Situ Electron and Light Microscopy during Mechanical Testing.” In <i>Proceedings of the 21st European Conference on Composite Materials</i>, 4:175–181. doi:10.60691/yj56-np80.</div>
  chicago-author-date: |2
      <div class="csl-entry">Verschatse, Olivier, Mehdi Nikforooz, Karen De Clerck, Wim Van Paepegem, and Lode Daelemans. 2024. “Fiber-Matrix Debonding Behavior Using in-Situ Electron and Light Microscopy during Mechanical Testing.” In <i>Proceedings of the 21st European Conference on Composite Materials</i>, 4:175–81. https://doi.org/10.60691/yj56-np80.</div>
  fwo: |2
      <div class="csl-entry">Verschatse, Olivier, Mehdi Nikforooz, Karen De Clerck, Wim Van Paepegem, and Lode Daelemans. 2024. “Fiber-Matrix Debonding Behavior Using in-Situ Electron and Light Microscopy during Mechanical Testing.” In <i>Proceedings of the 21st European Conference on Composite Materials</i>, 4:175–181. doi:10.60691/yj56-np80.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">O. Verschatse, M. Nikforooz, K. De Clerck, W. Van Paepegem, and L. Daelemans, “Fiber-matrix debonding behavior using in-situ electron and light microscopy during mechanical testing,” in <i>Proceedings of the 21st European Conference on Composite Materials</i>, Nantes, France, 2024, vol. 4, pp. 175–181.</div>
      </div>
  mla: |2
      <div class="csl-entry">Verschatse, Olivier, et al. “Fiber-Matrix Debonding Behavior Using in-Situ Electron and Light Microscopy during Mechanical Testing.” <i>Proceedings of the 21st European Conference on Composite Materials</i>, vol. 4, 2024, pp. 175–81, doi:10.60691/yj56-np80.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Verschatse O, Nikforooz M, De Clerck K, Van Paepegem W, Daelemans L. Fiber-matrix debonding behavior using in-situ electron and light microscopy during mechanical testing. In: Proceedings of the 21st European Conference on Composite Materials. 2024. p. 175–81.</div>
       </div>
classification: C1
conference:
  end_date: 2024-07-05
  location: Nantes, France
  name: 21st European Conference on Composite Materials
  start_date: 2024-07-02
conference_type: proceedingsPaper
copyright_statement: No license (in copyright)
created_by:
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    ugent_id: TW11
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  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
date_created: 2025-04-17 12:27:11
date_updated: 2026-03-31 15:01:58
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- 10.60691/yj56-np80
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issue_title: Experimental techniques
jcr: {}
language:
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page:
  first: '175'
  last: '181'
parent:
  title: Proceedings of the 21st European Conference on Composite Materials
publication_status: published
publication_status_sort: 2
series_title: Proceedings of the 21st European Conference on Composite Materials
status: public
subject:
- Technology and Engineering
title: Fiber-matrix debonding behavior using in-situ electron and light microscopy
  during mechanical testing
type: conference
volume: '4'
year: '2024'
...
---
_id: 01JAFVP59BHK4BMNWMSZBHSRQ9
abstract:
- Within the nanofiber field, cross-linked nanofiber networks have attracted a great
  deal of attention due to their remarkable properties. Compared to conventional fibrous
  structures, nanofibers are lightweight materials with small diameters, high porosity,
  controllable pore structures, and a high surface-to-volume ratio. To this end, cross-linking
  ensures solvent stability, making them ideal for various applications in which solvent
  contact or humid environments are prerequisites. This review aims to highlight the
  potential of nanofiber networks beyond their solvent resistivity by emphasizing
  the chemical reactivity of such novel systems and constructs. To this end, an overview
  of approaches for the preparation of a reactive nanofibrous network is presented,
  including the most recent (versatile) functional nanofiber reactive networks.
abstract_full:
- lang: eng
  text: Within the nanofiber field, cross-linked nanofiber networks have attracted
    a great deal of attention due to their remarkable properties. Compared to conventional
    fibrous structures, nanofibers are lightweight materials with small diameters,
    high porosity, controllable pore structures, and a high surface-to-volume ratio.
    To this end, cross-linking ensures solvent stability, making them ideal for various
    applications in which solvent contact or humid environments are prerequisites.
    This review aims to highlight the potential of nanofiber networks beyond their
    solvent resistivity by emphasizing the chemical reactivity of such novel systems
    and constructs. To this end, an overview of approaches for the preparation of
    a reactive nanofibrous network is presented, including the most recent (versatile)
    functional nanofiber reactive networks.
additional_info: 'R.M. and V.D.: These authors contributed equally to this work.'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
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  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Organic and Macromolecular Chemistry
  path:
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  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
article_type: review
author:
- _id: D031A838-F0EE-11E1-A197-91C894A0A6B4
  biblio_id: D031A838-F0EE-11E1-A197-91C894A0A6B4
  credit_role:
  - first_author
  first_name: Ronald
  last_name: Merckx
  name: Ronald Merckx
  name_last_first: Merckx, Ronald
  orcid_id: 0000-0002-2867-0888
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- _id: b0b09753-f9b5-11ed-9b2e-cb89cf1dd9c5
  affiliation:
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    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: b0b09753-f9b5-11ed-9b2e-cb89cf1dd9c5
  credit_role:
  - first_author
  first_name: Vinita
  last_name: Dhaware
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- _id: 4a1b4eed-f3dd-11eb-bc25-e810a8c5848d
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 4a1b4eed-f3dd-11eb-bc25-e810a8c5848d
  first_name: Meike
  last_name: Leiske
  name: Meike Leiske
  name_last_first: Leiske, Meike
  ugent_id:
  - '802003771720'
  - '975263848375'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
biblio_id: 01JAFVP59BHK4BMNWMSZBHSRQ9
cite:
  apa: |2
      <div class="csl-entry">Merckx, R., Dhaware, V., Leiske, M., De Clerck, K., &#38; Hoogenboom, R. (2024). Reactive nanofiber networks from a chemistry perspective. <i>CHEMISTRY OF MATERIALS</i>, <i>36</i>(19), 9189–9206. https://doi.org/10.1021/acs.chemmater.4c00277</div>
  bof: |2-
      <div class="csl-entry">Merckx, Ronald, Vinita Dhaware, Meike Leiske, Karen De Clerck, and Richard Hoogenboom. 2024. “Reactive Nanofiber Networks from a Chemistry Perspective.” <i>CHEMISTRY OF MATERIALS</i> 36 (19): 9189–9206. doi:10.1021/acs.chemmater.4c00277.</div>
    <div><i>Impact factor: 7, category: MATERIALS SCIENCE, MULTIDISCIPLINARY, rank: 75/341, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Merckx, Ronald, Vinita Dhaware, Meike Leiske, Karen De Clerck, and Richard Hoogenboom. 2024. “Reactive Nanofiber Networks from a Chemistry Perspective.” <i>CHEMISTRY OF MATERIALS</i> 36 (19): 9189–9206. https://doi.org/10.1021/acs.chemmater.4c00277.</div>
  fwo: |2
      <div class="csl-entry">Merckx, Ronald, Vinita Dhaware, Meike Leiske, Karen De Clerck, and Richard Hoogenboom. 2024. “Reactive Nanofiber Networks from a Chemistry Perspective.” <i>CHEMISTRY OF MATERIALS</i> 36 (19): 9189–9206. doi:10.1021/acs.chemmater.4c00277.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">R. Merckx, V. Dhaware, M. Leiske, K. De Clerck, and R. Hoogenboom, “Reactive nanofiber networks from a chemistry perspective,” <i>CHEMISTRY OF MATERIALS</i>, vol. 36, no. 19, pp. 9189–9206, 2024.</div>
      </div>
  mla: |2
      <div class="csl-entry">Merckx, Ronald, et al. “Reactive Nanofiber Networks from a Chemistry Perspective.” <i>CHEMISTRY OF MATERIALS</i>, vol. 36, no. 19, 2024, pp. 9189–206, doi:10.1021/acs.chemmater.4c00277.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Merckx R, Dhaware V, Leiske M, De Clerck K, Hoogenboom R. Reactive nanofiber networks from a chemistry perspective. CHEMISTRY OF MATERIALS. 2024;36(19):9189–206.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
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  ugent_id:
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  - '971075574089'
date_created: 2024-10-18 13:04:50
date_updated: 2026-03-31 05:13:46
doi:
- 10.1021/acs.chemmater.4c00277
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handle: http://hdl.handle.net/1854/LU-01JAFVP59BHK4BMNWMSZBHSRQ9
issn:
- 0897-4756
- 1520-5002
issue: '19'
jcr:
  category: MATERIALS SCIENCE, MULTIDISCIPLINARY
  category_decile: 3
  category_quartile: 1
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  category_vigintile: 5
  eigenfactor: 0.06551
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  prev_category_decile: 3
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  total_cites: 113952
keyword:
- PHOTO-CROSS-LINKING
- ELECTROSPUN GELATIN NANOFIBERS
- PH-RESPONSIVE NANOFIBERS
- CLICK CHEMISTRY
- BIOMOLECULAR IMMOBILIZATION
- BIOMEDICAL APPLICATIONS
- RADICAL POLYMERIZATION
- BLOCK-COPOLYMERS
- FABRICATION
- FIBERS
language:
- eng
page:
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  last: '9206'
parent:
  short_title: Chem. Mat.
  title: CHEMISTRY OF MATERIALS
project:
- _id: 3S012019
  abstract: |-
    <p>This proposal addresses one of the most important challenges of our society the food loss and food waste around the globe. The main sector contributing to food waste are the consumers. Most consumers mistakenly believe that expiration dates on food indicate how safe the food is to consume, however these dates are not related to the risk of food poisoning or foodborne illness. These dates solely indicate freshness used by manufacturers to convey when the product is at its peak. Although most food is still edible after the expiration date, it is disposed prematurely. In addition, most of the household food is discarded even before the expiration date is reached, due to an uncertainty of its freshness. Within this project a sensor will be designed to provide an easy-to-read, objective measurement on food edibility. The inedibility of food originates from the growth of bacteria. These microorganisms produce volatile organic compounds (VOCs) resulting in a foul odour. The sensor will consist of organic dyes placed on polymer nanofibers and when the threshold is exceeded the sensor will change its color indicating that the organic compounds in the food are exceeding the predetermined limits.



    </p>
  end_date: 2022-12-31
  gismo_id: 4b38d931-60d8-11e9-aa53-555acf89d448
  iweto_id: 3S012019
  start_date: 2019-01-01
  title: 'How polymeric sensors can prevent food waste: expiration date reinvented.'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Chemistry
title: Reactive nanofiber networks from a chemistry perspective
type: journalArticle
volume: '36'
wos_id: '001294198500001'
wos_type: Article
year: '2024'
...
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  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
biblio_id: 01JJKZHBVQ7QDHJ5XQEG5G7PG4
cite:
  apa: |2
      <div class="csl-entry">Verschraegen, S., Loccufier, E., De Keer, L., Van Steenberge, P., De Buysser, K., De Clerck, K., &#38; D’hooge, D. (2024). Silica nanofiber membranes : the role of sol-gel crosslinking kinetics. <i>8th International Conference on Electrospinning, Abstracts</i>. Presented at the 8th International Conference on Electrospinning, Krakow, Poland.</div>
  bof: |2
      <div class="csl-entry">Verschraegen, Sofie, Eva Loccufier, Lies De Keer, Paul Van Steenberge, Klaartje De Buysser, Karen De Clerck, and Dagmar D’hooge. 2024. “Silica Nanofiber Membranes : The Role of Sol-Gel Crosslinking Kinetics.” In <i>8th International Conference on Electrospinning, Abstracts</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">Verschraegen, Sofie, Eva Loccufier, Lies De Keer, Paul Van Steenberge, Klaartje De Buysser, Karen De Clerck, and Dagmar D’hooge. 2024. “Silica Nanofiber Membranes : The Role of Sol-Gel Crosslinking Kinetics.” In <i>8th International Conference on Electrospinning, Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">Verschraegen, Sofie, Eva Loccufier, Lies De Keer, Paul Van Steenberge, Klaartje De Buysser, Karen De Clerck, and Dagmar D’hooge. 2024. “Silica Nanofiber Membranes : The Role of Sol-Gel Crosslinking Kinetics.” In <i>8th International Conference on Electrospinning, Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. Verschraegen <i>et al.</i>, “Silica nanofiber membranes : the role of sol-gel crosslinking kinetics,” in <i>8th International Conference on Electrospinning, Abstracts</i>, Krakow, Poland, 2024.</div>
      </div>
  mla: |2
      <div class="csl-entry">Verschraegen, Sofie, et al. “Silica Nanofiber Membranes : The Role of Sol-Gel Crosslinking Kinetics.” <i>8th International Conference on Electrospinning, Abstracts</i>, 2024.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Verschraegen S, Loccufier E, De Keer L, Van Steenberge P, De Buysser K, De Clerck K, et al. Silica nanofiber membranes : the role of sol-gel crosslinking kinetics. In: 8th International Conference on Electrospinning, Abstracts. 2024.</div>
       </div>
classification: C3
conference:
  end_date: 2024-06-28
  location: Krakow, Poland
  name: 8th International Conference on Electrospinning
  start_date: 2024-06-25
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
  _id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
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  first_name: Sofie
  last_name: Verschraegen
  name: Sofie Verschraegen
  name_last_first: Verschraegen, Sofie
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date_created: 2025-01-27 13:34:40
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parent:
  title: 8th International Conference on Electrospinning, Abstracts
project:
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  abstract: '<p>Today the high potential of (organo)silica branched/crosslinked/network
    polymers in nanofibrous membranes cannot be exploited to the fullest due to the
    lack of a straightforward way to produce them. To solve this, a fundamental understanding
    of how sol-gel synthesis and electrospinning are related via rheology is required.
    The main bottleneck remains that the viscosity evolution, as the network develops
    during synthesis, cannot be fully interpreted at the molecular level. For this,
    it is essential to fundamentally link the different steps in the electrospinning
    production process: from network formation of (organo)silica precursor molecules
    over electrospinning toward nanofibrous membranes. Both experimental (e.g. 29Si
    NMR, rheology) and kinetic modelling techniques will be used for this purpose.
    The morphology of the resulting nanofibrous membranes will be determined and linked
    back to the chemical building blocks, sol-gel synthesis and the electrospinning
    process as to enable the tuning of these (organo)silica nanofibers for advanced
    applications. The fiber diameter and the wettability will be studied as key model
    properties at respectively the fiber and material membrane level. This generic
    methodology can in the future be expanded toward other material properties to
    allow for molecular scale-driven material property tuning.</p>'
  end_date: 2025-10-31
  gismo_id: 190fbf11-2a82-11ec-95aa-05ef7abe0c3c
  iweto_id: 3F006621
  start_date: 2021-11-01
  title: 'Connecting (organo)silica sol-gel synthesis and membrane electrospinning:
    pushing toward molecular scale-driven property tuning'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: 'Silica nanofiber membranes : the role of sol-gel crosslinking kinetics'
type: conference
year: '2024'
...
---
_id: 01JHSWANJ3ACGR909MTBTNAAMR
abstract:
- |-
  Polymer networks play an indispensable role in advancing next-generation materials. The design of such
  large-scale chemical entities is challenging, primarily hindered by the limited comprehension of the effect of reaction
  conditions on the final macroscopic properties of polymer gels and their product performance due to a lack of proper
  characterization tools for such complex topologies. Our research group has developed a combined kinetic Monte Carlo
  and molecular dynamics tool that accounts for kinetics, thermodynamics, and topological features of the formed polymeric networks. By employing this in silico-based characterization tool, we can thoroughly examine the structural evolution of individual macromolecules/segments throughout network formation. This facilitates the fundamental insight into
  structure-property relationships, bridging the molecular and material scales, and enables the development of synthesis
  protocols toward maximal material performance. In this work, experimental studies into the synthesis, material characterization, and practical application level of organosilica networks demonstrate the high validation potential of this advanced tool. One notable application is the sol-gel-based synthesis of organosilica networks for electrospinning highly
  resistant filtration membranes. These membranes show promise in various applications, including gravity-driven separation of heterogeneous azeotropes and ion-exchange processes
abstract_full:
- lang: eng
  text: |-
    Polymer networks play an indispensable role in advancing next-generation materials. The design of such
    large-scale chemical entities is challenging, primarily hindered by the limited comprehension of the effect of reaction
    conditions on the final macroscopic properties of polymer gels and their product performance due to a lack of proper
    characterization tools for such complex topologies. Our research group has developed a combined kinetic Monte Carlo
    and molecular dynamics tool that accounts for kinetics, thermodynamics, and topological features of the formed polymeric networks. By employing this in silico-based characterization tool, we can thoroughly examine the structural evolution of individual macromolecules/segments throughout network formation. This facilitates the fundamental insight into
    structure-property relationships, bridging the molecular and material scales, and enables the development of synthesis
    protocols toward maximal material performance. In this work, experimental studies into the synthesis, material characterization, and practical application level of organosilica networks demonstrate the high validation potential of this advanced tool. One notable application is the sol-gel-based synthesis of organosilica networks for electrospinning highly
    resistant filtration membranes. These membranes show promise in various applications, including gravity-driven separation of heterogeneous azeotropes and ion-exchange processes
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
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  - ugent_id: UGent
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  ugent_id: TW11
- name: Department of Chemistry
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  ugent_id: WE06
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  url: https://www.ppiconference.eu/
article_number: P2464
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    ugent_id: TW11
  biblio_id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  first_name: Eva
  last_name: Loccufier
  name: Eva Loccufier
  name_last_first: Loccufier, Eva
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    ugent_id: TW11
  biblio_id: 7B0AF618-F4F5-11E8-B6BE-CDD65607D3EF
  first_name: Alessandro
  last_name: Trigilio
  name: Alessandro Trigilio
  name_last_first: Trigilio, Alessandro
  orcid_id: 0000-0001-8878-9947
  ugent_id:
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    ugent_id: TW11
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  first_name: Sofie
  last_name: Verschraegen
  name: Sofie Verschraegen
  name_last_first: Verschraegen, Sofie
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    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
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- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
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  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01JHSWANJ3ACGR909MTBTNAAMR
cite:
  apa: |2
      <div class="csl-entry">Loccufier, E., Trigilio, A., Verschraegen, S., De Buysser, K., D’hooge, D., &#38; De Clerck, K. (2024). Molecular design, material performance  and the application potential  in polymer network research. <i>PPI 2024 : International Conference on Polymer Process Innovation, Abstracts</i>. Presented at the 4th International Conference on Polymer Process Innovation (PPI 2024), Ghent, Belgium.</div>
  bof: |2
      <div class="csl-entry">Loccufier, Eva, Alessandro Trigilio, Sofie Verschraegen, Klaartje De Buysser, Dagmar D’hooge, and Karen De Clerck. 2024. “Molecular Design, Material Performance  and the Application Potential  in Polymer Network Research.” In <i>PPI 2024 : International Conference on Polymer Process Innovation, Abstracts</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">Loccufier, Eva, Alessandro Trigilio, Sofie Verschraegen, Klaartje De Buysser, Dagmar D’hooge, and Karen De Clerck. 2024. “Molecular Design, Material Performance  and the Application Potential  in Polymer Network Research.” In <i>PPI 2024 : International Conference on Polymer Process Innovation, Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">Loccufier, Eva, Alessandro Trigilio, Sofie Verschraegen, Klaartje De Buysser, Dagmar D’hooge, and Karen De Clerck. 2024. “Molecular Design, Material Performance  and the Application Potential  in Polymer Network Research.” In <i>PPI 2024 : International Conference on Polymer Process Innovation, Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Loccufier, A. Trigilio, S. Verschraegen, K. De Buysser, D. D’hooge, and K. De Clerck, “Molecular design, material performance  and the application potential  in polymer network research,” in <i>PPI 2024 : International Conference on Polymer Process Innovation, Abstracts</i>, Ghent, Belgium, 2024.</div>
      </div>
  mla: |2
      <div class="csl-entry">Loccufier, Eva, et al. “Molecular Design, Material Performance  and the Application Potential  in Polymer Network Research.” <i>PPI 2024 : International Conference on Polymer Process Innovation, Abstracts</i>, 2024.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Loccufier E, Trigilio A, Verschraegen S, De Buysser K, D’hooge D, De Clerck K. Molecular design, material performance  and the application potential  in polymer network research. In: PPI 2024 : International Conference on Polymer Process Innovation, Abstracts. 2024.</div>
       </div>
classification: C3
conference:
  end_date: 2024-09-20
  location: Ghent, Belgium
  name: 4th International Conference on Polymer Process Innovation (PPI 2024)
  start_date: 2024-09-18
conference_type: poster
copyright_statement: No license (in copyright)
created_by:
  _id: 798BCFF0-0208-11E3-BADE-15C210BDE39D
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    ugent_id: TW11
  biblio_id: 798BCFF0-0208-11E3-BADE-15C210BDE39D
  first_name: Paulien
  last_name: Baeyens
  name: Paulien Baeyens
  name_last_first: Baeyens, Paulien
  ugent_id:
  - '802002698757'
  - '974253404530'
date_created: 2025-01-17 10:18:20
date_updated: 2026-03-31 15:13:27
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  title: 'PPI 2024 : International Conference on Polymer Process Innovation, Abstracts'
project:
- _id: 3F006621
  abstract: '<p>Today the high potential of (organo)silica branched/crosslinked/network
    polymers in nanofibrous membranes cannot be exploited to the fullest due to the
    lack of a straightforward way to produce them. To solve this, a fundamental understanding
    of how sol-gel synthesis and electrospinning are related via rheology is required.
    The main bottleneck remains that the viscosity evolution, as the network develops
    during synthesis, cannot be fully interpreted at the molecular level. For this,
    it is essential to fundamentally link the different steps in the electrospinning
    production process: from network formation of (organo)silica precursor molecules
    over electrospinning toward nanofibrous membranes. Both experimental (e.g. 29Si
    NMR, rheology) and kinetic modelling techniques will be used for this purpose.
    The morphology of the resulting nanofibrous membranes will be determined and linked
    back to the chemical building blocks, sol-gel synthesis and the electrospinning
    process as to enable the tuning of these (organo)silica nanofibers for advanced
    applications. The fiber diameter and the wettability will be studied as key model
    properties at respectively the fiber and material membrane level. This generic
    methodology can in the future be expanded toward other material properties to
    allow for molecular scale-driven material property tuning.</p>'
  end_date: 2025-10-31
  gismo_id: 190fbf11-2a82-11ec-95aa-05ef7abe0c3c
  iweto_id: 3F006621
  start_date: 2021-11-01
  title: 'Connecting (organo)silica sol-gel synthesis and membrane electrospinning:
    pushing toward molecular scale-driven property tuning'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Chemistry
- Technology and Engineering
title: Molecular design, material performance  and the application potential  in polymer
  network research
type: conference
year: '2024'
...
---
_id: 01JHJEW8C4F62BK6WN98QKPSQ4
abstract:
- Network materials are important both in nature and in the field of synthetic chemistry.
  Depending on the chemistry, the degree or order of the molecular build-up of the
  network is altering, affecting the macroscopic properties. In this work, a generic
  framework is presented that enables an unprecedented quantification of polymer network
  synthesis at the molecular scale based on matrix-based kinetic Monte Carlo simulations.
  The framework enables obtaining the 3D molecular structure of the network at any
  synthesis time as well as hard-to-access molecular descriptors such as the molecular
  pore size distribution. The experimental validation of the framework is illustrated
  in this work by combining the coupled matrix-based Monte Carlo modeling with 29Si
  nuclear magnetic resonance (NMR) to capture the crosslinking kinetics of tetraethyl
  orthosilicate (TEOS). By developing a dedicated 29Si NMR protocol, the chemical
  kinetics of the reactions can be understood by reporting the Arrhenius parameters
  for the most important reactions for the TEOS crosslinking with hydrochloric acid
  (HCl) as reference case. Moreover, these Arrhenius parameters are used to better
  understand the non-isothermal kinetics
abstract_full:
- lang: eng
  text: Network materials are important both in nature and in the field of synthetic
    chemistry. Depending on the chemistry, the degree or order of the molecular build-up
    of the network is altering, affecting the macroscopic properties. In this work,
    a generic framework is presented that enables an unprecedented quantification
    of polymer network synthesis at the molecular scale based on matrix-based kinetic
    Monte Carlo simulations. The framework enables obtaining the 3D molecular structure
    of the network at any synthesis time as well as hard-to-access molecular descriptors
    such as the molecular pore size distribution. The experimental validation of the
    framework is illustrated in this work by combining the coupled matrix-based Monte
    Carlo modeling with 29Si nuclear magnetic resonance (NMR) to capture the crosslinking
    kinetics of tetraethyl orthosilicate (TEOS). By developing a dedicated 29Si NMR
    protocol, the chemical kinetics of the reactions can be understood by reporting
    the Arrhenius parameters for the most important reactions for the TEOS crosslinking
    with hydrochloric acid (HCl) as reference case. Moreover, these Arrhenius parameters
    are used to better understand the non-isothermal kinetics
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
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  ugent_id: TW11
- name: Department of Chemistry
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  - ugent_id: WE06
  ugent_id: WE06
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  kind: fullText
  url: https://www.dwi.rwth-aachen.de/en/page/macromolecular-chemistry-soft-matter-connects
author:
- _id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  affiliation:
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  biblio_id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  first_name: Sofie
  last_name: Verschraegen
  name: Sofie Verschraegen
  name_last_first: Verschraegen, Sofie
  orcid_id: 0000-0002-6164-3662
  ugent_id:
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  affiliation:
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    ugent_id: TW11
  biblio_id: 7B0AF618-F4F5-11E8-B6BE-CDD65607D3EF
  first_name: Alessandro
  last_name: Trigilio
  name: Alessandro Trigilio
  name_last_first: Trigilio, Alessandro
  orcid_id: 0000-0001-8878-9947
  ugent_id:
  - '802003054526'
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  affiliation:
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    ugent_id: TW11
  biblio_id: 90b173d4-fcfb-11e9-8d98-cd3bb79cd7d0
  first_name: Mariya
  last_name: Edeleva
  name: Mariya Edeleva
  name_last_first: Edeleva, Mariya
  orcid_id: 0000-0003-0421-237X
  ugent_id:
  - '802003313695'
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  affiliation:
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    ugent_id: TW11
  biblio_id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  first_name: Eva
  last_name: Loccufier
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  first_name: Lies
  last_name: De Keer
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  - '802002106754'
  - '971930032541'
- _id: 9D281AC4-45E4-11E9-AEDE-43515707D3EF
  affiliation:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 9D281AC4-45E4-11E9-AEDE-43515707D3EF
  first_name: Pablo
  last_name: Reyes Isaacura
  name: Pablo Reyes Isaacura
  name_last_first: Reyes Isaacura, Pablo
  orcid_id: 0000-0001-6662-3313
  ugent_id:
  - '802003126567'
  - '977467732835'
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
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  ugent_id:
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- _id: F99156E8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F99156E8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Paul
  last_name: Van Steenberge
  name: Paul Van Steenberge
  name_last_first: Van Steenberge, Paul
  orcid_id: 0000-0001-6244-1299
  ugent_id:
  - '802000264461'
  - '975633424843'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
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  - '801000947425'
  - '976215851340'
- first_name: Reinhold
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  name: Reinhold Dauskardt
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- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
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    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
biblio_id: 01JHJEW8C4F62BK6WN98QKPSQ4
cite:
  apa: |2
      <div class="csl-entry">Verschraegen, S., Trigilio, A., Edeleva, M., Loccufier, E., De Keer, L., Reyes Isaacura, P., … D’hooge, D. (2024). Integrating 29Si NMR and kinetic Monte Carlo modeling to capture (in)organic polymer crosslinking kinetics. <i>Macromolecular Chemistry &#38; Soft Matter Connects Symposium 2024, Abstracts</i>. Presented at the Macromolecular Chemistry &#38; Soft Matter Connects Symposium 2024, Aachen, Germany.</div>
  bof: |2
      <div class="csl-entry">Verschraegen, Sofie, Alessandro Trigilio, Mariya Edeleva, Eva Loccufier, Lies De Keer, Pablo Reyes Isaacura, Klaartje De Buysser, Paul Van Steenberge, Karen De Clerck, Reinhold Dauskardt, and Dagmar D’hooge. 2024. “Integrating 29Si NMR and Kinetic Monte Carlo Modeling to Capture (in)Organic Polymer Crosslinking Kinetics.” In <i>Macromolecular Chemistry &#38; Soft Matter Connects Symposium 2024, Abstracts</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">Verschraegen, Sofie, Alessandro Trigilio, Mariya Edeleva, Eva Loccufier, Lies De Keer, Pablo Reyes Isaacura, Klaartje De Buysser, et al. 2024. “Integrating 29Si NMR and Kinetic Monte Carlo Modeling to Capture (in)Organic Polymer Crosslinking Kinetics.” In <i>Macromolecular Chemistry &#38; Soft Matter Connects Symposium 2024, Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">Verschraegen, Sofie, Alessandro Trigilio, Mariya Edeleva, Eva Loccufier, Lies De Keer, Pablo Reyes Isaacura, Klaartje De Buysser, Paul Van Steenberge, Karen De Clerck, Reinhold Dauskardt, and Dagmar D’hooge. 2024. “Integrating 29Si NMR and Kinetic Monte Carlo Modeling to Capture (in)Organic Polymer Crosslinking Kinetics.” In <i>Macromolecular Chemistry &#38; Soft Matter Connects Symposium 2024, Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. Verschraegen <i>et al.</i>, “Integrating 29Si NMR and kinetic Monte Carlo modeling to capture (in)organic polymer crosslinking kinetics,” in <i>Macromolecular Chemistry &#38; Soft Matter Connects Symposium 2024, Abstracts</i>, Aachen, Germany, 2024.</div>
      </div>
  mla: |2
      <div class="csl-entry">Verschraegen, Sofie, et al. “Integrating 29Si NMR and Kinetic Monte Carlo Modeling to Capture (in)Organic Polymer Crosslinking Kinetics.” <i>Macromolecular Chemistry &#38; Soft Matter Connects Symposium 2024, Abstracts</i>, 2024.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Verschraegen S, Trigilio A, Edeleva M, Loccufier E, De Keer L, Reyes Isaacura P, et al. Integrating 29Si NMR and kinetic Monte Carlo modeling to capture (in)organic polymer crosslinking kinetics. In: Macromolecular Chemistry &#38; Soft Matter Connects Symposium 2024, Abstracts. 2024.</div>
       </div>
classification: C3
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  location: Aachen, Germany
  name: Macromolecular Chemistry & Soft Matter Connects Symposium 2024
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copyright_statement: No license (in copyright)
created_by:
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  last_name: Baeyens
  name: Paulien Baeyens
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date_created: 2025-01-14 13:08:35
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parent:
  title: Macromolecular Chemistry & Soft Matter Connects Symposium 2024, Abstracts
project:
- _id: 12B0D24N
  abstract: <p>The use of polymers, both synthetic and natural, is ubiquitous and
    they are found in virtually any aspect of modern life, including e.g. engineering
    composites, medical devices, packaging, and electronics. Several topologies can
    derive from the different types of connectivities and 3D positioning of all the
    bonds inside polymers, which are the base to predict the polymer macroscopic properties.
    A particularly complex case are the network/crosslinked polymers which have applications
    such as hygiene products, tissue engineering scaffolds, and drug delivery devices.
    They can be obtained using chain-growth synthesis and a large number of side reactions
    can be encountered, as well as a more complex reactant structure involving a plethora
    of functional groups. A major example for polymer networks and drug delivery systems
    are the ones using hydrogels, which showcase a combination of both chemical and
    physical interactions. Modeling the formation of these systems lead to precise
    material design, but has the main drawback of a complicated set of chemical reactions
    that must be characterized, in addition to long simulation time. To tackle these,
    in this project we propose to (i) expand the capabilities of our stochastic algorithms
    applied to polymer networks reactions and interactions, (ii) gather information
    from polymer networks through machine learning as a predictive tool for microscopic
    properties and (iii) upgrade the 3D visualization toolbox for this system.</p>
  end_date: 2026-09-30
  gismo_id: 30d3f7fd-19a5-11ee-b953-3bd20bad1f45
  iweto_id: 12B0D24N
  publication_count: 1
  start_date: 2023-10-01
  title: 'DAEMON: Deep polymer network design through Algorithm EnhanceMents, OptimizatioNs
    and machine learning'
- _id: 3F006621
  abstract: '<p>Today the high potential of (organo)silica branched/crosslinked/network
    polymers in nanofibrous membranes cannot be exploited to the fullest due to the
    lack of a straightforward way to produce them. To solve this, a fundamental understanding
    of how sol-gel synthesis and electrospinning are related via rheology is required.
    The main bottleneck remains that the viscosity evolution, as the network develops
    during synthesis, cannot be fully interpreted at the molecular level. For this,
    it is essential to fundamentally link the different steps in the electrospinning
    production process: from network formation of (organo)silica precursor molecules
    over electrospinning toward nanofibrous membranes. Both experimental (e.g. 29Si
    NMR, rheology) and kinetic modelling techniques will be used for this purpose.
    The morphology of the resulting nanofibrous membranes will be determined and linked
    back to the chemical building blocks, sol-gel synthesis and the electrospinning
    process as to enable the tuning of these (organo)silica nanofibers for advanced
    applications. The fiber diameter and the wettability will be studied as key model
    properties at respectively the fiber and material membrane level. This generic
    methodology can in the future be expanded toward other material properties to
    allow for molecular scale-driven material property tuning.</p>'
  end_date: 2025-10-31
  gismo_id: 190fbf11-2a82-11ec-95aa-05ef7abe0c3c
  iweto_id: 3F006621
  start_date: 2021-11-01
  title: 'Connecting (organo)silica sol-gel synthesis and membrane electrospinning:
    pushing toward molecular scale-driven property tuning'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
- Chemistry
title: Integrating 29Si NMR and kinetic Monte Carlo modeling to capture (in)organic
  polymer crosslinking kinetics
type: conference
year: '2024'
...
---
_id: 01J9VB92A4KD7C84Q3PNWAJ9ZK
abstract:
- |-
  Polymer networks play an indispensable role in advancing next-generation materials. The
  design of such large-scale chemical entities is challenging, primarily hindered by the limited
  comprehension of the effect of reaction conditions on the final macroscopic properties of
  polymer gels and their product performance due to a lack of proper characterization tools for
  such complex topologies. Our research group has developed a combined kinetic Monte Carlo
  and molecular dynamics tool that accounts for kinetics, thermodynamics, and topological
  features of the formed polymeric networks. By employing this in silico-based characterization
  tool, we can thoroughly examine the structural evolution of individual
  macromolecules/segments throughout network formation. This facilitates the fundamental
  insight into structure-property relationships, bridging the molecular and material scales, and
  enables the development of synthesis protocols toward maximal material performance. In this
  work, experimental studies into the synthesis, material characterization, and practical
  application level of organosilica networks demonstrate the high validation potential of this
  advanced tool. One notable application is the sol-gel-based synthesis of organosilica networks
  for electrospinning highly resistant filtration membranes. These membranes show promise in
  various applications, including gravity-driven separation of heterogeneous azeotropes and ionexchange processes.
abstract_full:
- lang: eng
  text: |-
    Polymer networks play an indispensable role in advancing next-generation materials. The
    design of such large-scale chemical entities is challenging, primarily hindered by the limited
    comprehension of the effect of reaction conditions on the final macroscopic properties of
    polymer gels and their product performance due to a lack of proper characterization tools for
    such complex topologies. Our research group has developed a combined kinetic Monte Carlo
    and molecular dynamics tool that accounts for kinetics, thermodynamics, and topological
    features of the formed polymeric networks. By employing this in silico-based characterization
    tool, we can thoroughly examine the structural evolution of individual
    macromolecules/segments throughout network formation. This facilitates the fundamental
    insight into structure-property relationships, bridging the molecular and material scales, and
    enables the development of synthesis protocols toward maximal material performance. In this
    work, experimental studies into the synthesis, material characterization, and practical
    application level of organosilica networks demonstrate the high validation potential of this
    advanced tool. One notable application is the sol-gel-based synthesis of organosilica networks
    for electrospinning highly resistant filtration membranes. These membranes show promise in
    various applications, including gravity-driven separation of heterogeneous azeotropes and ionexchange processes.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
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  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Chemistry
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  - ugent_id: WE06
  ugent_id: WE06
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  kind: fullText
  url: https://www.dwi.rwth-aachen.de/en/page/macromolecular-chemistry-soft-matter-connects
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  url: https://www.dwi.rwth-aachen.de/files/redaktion/Macromolecular%20Chemistry%20and%20Soft%20Matter%20Connects/MCSMCS_Abstract%20Book%202024.pdf
author:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  first_name: Eva
  last_name: Loccufier
  name: Eva Loccufier
  name_last_first: Loccufier, Eva
  orcid_id: 0000-0001-7045-2721
  ugent_id:
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- _id: 7B0AF618-F4F5-11E8-B6BE-CDD65607D3EF
  affiliation:
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    ugent_id: TW11
  biblio_id: 7B0AF618-F4F5-11E8-B6BE-CDD65607D3EF
  first_name: Alessandro
  last_name: Trigilio
  name: Alessandro Trigilio
  name_last_first: Trigilio, Alessandro
  orcid_id: 0000-0001-8878-9947
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- _id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  affiliation:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  first_name: Sofie
  last_name: Verschraegen
  name: Sofie Verschraegen
  name_last_first: Verschraegen, Sofie
  orcid_id: 0000-0002-6164-3662
  ugent_id:
  - '000150868746'
  - '802003501534'
  - '919029486586'
  - '975200255882'
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
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    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
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  orcid_id: 0000-0001-9663-9893
  ugent_id:
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- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
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  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01J9VB92A4KD7C84Q3PNWAJ9ZK
cite:
  apa: |2
      <div class="csl-entry">Loccufier, E., Trigilio, A., Verschraegen, S., De Buysser, K., D’hooge, D., &#38; De Clerck, K. (2024). Bridging scales from molecular design to material performance and application potential in polymer network research. <i>Macromolecular Chemistry &#38; Soft Matter Connects Symposium 2024, Abstracts</i>. Presented at the Macromolecular Chemistry &#38; Soft Matter Connects Symposium 2024, Aachen, Germany.</div>
  bof: |2
      <div class="csl-entry">Loccufier, Eva, Alessandro Trigilio, Sofie Verschraegen, Klaartje De Buysser, Dagmar D’hooge, and Karen De Clerck. 2024. “Bridging Scales from Molecular Design to Material Performance and Application Potential in Polymer Network Research.” In <i>Macromolecular Chemistry &#38; Soft Matter Connects Symposium 2024, Abstracts</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">Loccufier, Eva, Alessandro Trigilio, Sofie Verschraegen, Klaartje De Buysser, Dagmar D’hooge, and Karen De Clerck. 2024. “Bridging Scales from Molecular Design to Material Performance and Application Potential in Polymer Network Research.” In <i>Macromolecular Chemistry &#38; Soft Matter Connects Symposium 2024, Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">Loccufier, Eva, Alessandro Trigilio, Sofie Verschraegen, Klaartje De Buysser, Dagmar D’hooge, and Karen De Clerck. 2024. “Bridging Scales from Molecular Design to Material Performance and Application Potential in Polymer Network Research.” In <i>Macromolecular Chemistry &#38; Soft Matter Connects Symposium 2024, Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Loccufier, A. Trigilio, S. Verschraegen, K. De Buysser, D. D’hooge, and K. De Clerck, “Bridging scales from molecular design to material performance and application potential in polymer network research,” in <i>Macromolecular Chemistry &#38; Soft Matter Connects Symposium 2024, Abstracts</i>, Aachen, Germany, 2024.</div>
      </div>
  mla: |2
      <div class="csl-entry">Loccufier, Eva, et al. “Bridging Scales from Molecular Design to Material Performance and Application Potential in Polymer Network Research.” <i>Macromolecular Chemistry &#38; Soft Matter Connects Symposium 2024, Abstracts</i>, 2024.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Loccufier E, Trigilio A, Verschraegen S, De Buysser K, D’hooge D, De Clerck K. Bridging scales from molecular design to material performance and application potential in polymer network research. In: Macromolecular Chemistry &#38; Soft Matter Connects Symposium 2024, Abstracts. 2024.</div>
       </div>
classification: C3
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  location: Aachen, Germany
  name: Macromolecular Chemistry & Soft Matter Connects Symposium 2024
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  first_name: Paulien
  last_name: Baeyens
  name: Paulien Baeyens
  name_last_first: Baeyens, Paulien
  ugent_id:
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  - '974253404530'
date_created: 2024-10-10 13:53:16
date_updated: 2026-03-31 15:13:28
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- eng
page:
  count: '1'
parent:
  title: Macromolecular Chemistry & Soft Matter Connects Symposium 2024, Abstracts
project:
- _id: 3F006621
  abstract: '<p>Today the high potential of (organo)silica branched/crosslinked/network
    polymers in nanofibrous membranes cannot be exploited to the fullest due to the
    lack of a straightforward way to produce them. To solve this, a fundamental understanding
    of how sol-gel synthesis and electrospinning are related via rheology is required.
    The main bottleneck remains that the viscosity evolution, as the network develops
    during synthesis, cannot be fully interpreted at the molecular level. For this,
    it is essential to fundamentally link the different steps in the electrospinning
    production process: from network formation of (organo)silica precursor molecules
    over electrospinning toward nanofibrous membranes. Both experimental (e.g. 29Si
    NMR, rheology) and kinetic modelling techniques will be used for this purpose.
    The morphology of the resulting nanofibrous membranes will be determined and linked
    back to the chemical building blocks, sol-gel synthesis and the electrospinning
    process as to enable the tuning of these (organo)silica nanofibers for advanced
    applications. The fiber diameter and the wettability will be studied as key model
    properties at respectively the fiber and material membrane level. This generic
    methodology can in the future be expanded toward other material properties to
    allow for molecular scale-driven material property tuning.</p>'
  end_date: 2025-10-31
  gismo_id: 190fbf11-2a82-11ec-95aa-05ef7abe0c3c
  iweto_id: 3F006621
  start_date: 2021-11-01
  title: 'Connecting (organo)silica sol-gel synthesis and membrane electrospinning:
    pushing toward molecular scale-driven property tuning'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Chemistry
- Technology and Engineering
title: Bridging scales from molecular design to material performance and application
  potential in polymer network research
type: conference
year: '2024'
...
---
_id: 01J9V8X9EKBJJXQ60QCW5756YN
abstract:
- |-
  Network materials are important both in nature and in the field of synthetic chemistry. Depending on the
  chemistry, the degree or order of the molecular build-up of the network is altering, affecting the macroscopic
  properties. In this work, a generic framework is presented that enables an unprecedented quantification of
  polymer network synthesis at the molecular scale based on matrix-based kinetic Monte Carlo simulations. The
  framework enables obtaining the 3D molecular structure of the network at any synthesis time as well as
  hard-to-access molecular descriptors such as the molecular pore size distribution. The experimental validation of
  the framework is illustrated in this work by combining the coupled matrix-based Monte Carlo modeling with 29
  Si nuclear magnetic resonance (NMR) to capture the crosslinking kinetics of tetraethyl orthosilicate (TEOS). By
  developing a dedicated 29Si NMR protocol, the chemical kinetics of the reactions can be understood by reporting
  the Arrhenius parameters for the most important reactions for the TEOS crosslinking with hydrochloric acid
  (HCl) as reference case. Moreover, these Arrhenius parameters are used to better understand the non-isothermal
  kinetics utilized to synthesize sol/gel-like precursor solutions. Successful model validation under both isothermal
  and non-isothermal conditions is demonstrated, unlocking the door to a better understanding of TEOS
  crosslinking kinetics and associated material properties.
abstract_full:
- lang: eng
  text: |-
    Network materials are important both in nature and in the field of synthetic chemistry. Depending on the
    chemistry, the degree or order of the molecular build-up of the network is altering, affecting the macroscopic
    properties. In this work, a generic framework is presented that enables an unprecedented quantification of
    polymer network synthesis at the molecular scale based on matrix-based kinetic Monte Carlo simulations. The
    framework enables obtaining the 3D molecular structure of the network at any synthesis time as well as
    hard-to-access molecular descriptors such as the molecular pore size distribution. The experimental validation of
    the framework is illustrated in this work by combining the coupled matrix-based Monte Carlo modeling with 29
    Si nuclear magnetic resonance (NMR) to capture the crosslinking kinetics of tetraethyl orthosilicate (TEOS). By
    developing a dedicated 29Si NMR protocol, the chemical kinetics of the reactions can be understood by reporting
    the Arrhenius parameters for the most important reactions for the TEOS crosslinking with hydrochloric acid
    (HCl) as reference case. Moreover, these Arrhenius parameters are used to better understand the non-isothermal
    kinetics utilized to synthesize sol/gel-like precursor solutions. Successful model validation under both isothermal
    and non-isothermal conditions is demonstrated, unlocking the door to a better understanding of TEOS
    crosslinking kinetics and associated material properties.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE06
  ugent_id: WE06
author:
- _id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  first_name: Sofie
  last_name: Verschraegen
  name: Sofie Verschraegen
  name_last_first: Verschraegen, Sofie
  orcid_id: 0000-0002-6164-3662
  ugent_id:
  - '000150868746'
  - '802003501534'
  - '919029486586'
  - '975200255882'
- _id: 7B0AF618-F4F5-11E8-B6BE-CDD65607D3EF
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 7B0AF618-F4F5-11E8-B6BE-CDD65607D3EF
  first_name: Alessandro
  last_name: Trigilio
  name: Alessandro Trigilio
  name_last_first: Trigilio, Alessandro
  orcid_id: 0000-0001-8878-9947
  ugent_id:
  - '802003054526'
  - '977697655874'
- _id: 90b173d4-fcfb-11e9-8d98-cd3bb79cd7d0
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 90b173d4-fcfb-11e9-8d98-cd3bb79cd7d0
  first_name: Mariya
  last_name: Edeleva
  name: Mariya Edeleva
  name_last_first: Edeleva, Mariya
  orcid_id: 0000-0003-0421-237X
  ugent_id:
  - '802003313695'
  - '977225873338'
- _id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  first_name: Eva
  last_name: Loccufier
  name: Eva Loccufier
  name_last_first: Loccufier, Eva
  orcid_id: 0000-0001-7045-2721
  ugent_id:
  - '802002671374'
  - '974161061035'
- _id: 28DB1308-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 28DB1308-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lies
  last_name: De Keer
  name: Lies De Keer
  name_last_first: De Keer, Lies
  orcid_id: 0000-0003-2620-0046
  ugent_id:
  - '000100481791'
  - '802002106754'
  - '971930032541'
- _id: 9D281AC4-45E4-11E9-AEDE-43515707D3EF
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 9D281AC4-45E4-11E9-AEDE-43515707D3EF
  first_name: Pablo
  last_name: Reyes Isaacura
  name: Pablo Reyes Isaacura
  name_last_first: Reyes Isaacura, Pablo
  orcid_id: 0000-0001-6662-3313
  ugent_id:
  - '802003126567'
  - '977467732835'
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: F99156E8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F99156E8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Paul
  last_name: Van Steenberge
  name: Paul Van Steenberge
  name_last_first: Van Steenberge, Paul
  orcid_id: 0000-0001-6244-1299
  ugent_id:
  - '802000264461'
  - '975633424843'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- first_name: Reinhold
  last_name: Dauskardt
  name: Reinhold Dauskardt
  name_last_first: Dauskardt, Reinhold
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
biblio_id: 01J9V8X9EKBJJXQ60QCW5756YN
cite:
  apa: |2
      <div class="csl-entry">Verschraegen, S., Trigilio, A., Edeleva, M., Loccufier, E., De Keer, L., Reyes Isaacura, P., … D’hooge, D. (2024). Unveiling (in)organic polymer crosslinking kinetics through 29si NMR and kinetic Monte Carlo modeling. <i>Annual Meeting of the Belgian Polymer Group (BPG 2024), Abstracts</i>. Presented at the Annual Meeting of the Belgian Polymer Group (BPG 2024), Blankenberge, Belgium.</div>
  bof: |2
      <div class="csl-entry">Verschraegen, Sofie, Alessandro Trigilio, Mariya Edeleva, Eva Loccufier, Lies De Keer, Pablo Reyes Isaacura, Klaartje De Buysser, Paul Van Steenberge, Karen De Clerck, Reinhold Dauskardt, and Dagmar D’hooge. 2024. “Unveiling (in)Organic Polymer Crosslinking Kinetics through 29si NMR and Kinetic Monte Carlo Modeling.” In <i>Annual Meeting of the Belgian Polymer Group (BPG 2024), Abstracts</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">Verschraegen, Sofie, Alessandro Trigilio, Mariya Edeleva, Eva Loccufier, Lies De Keer, Pablo Reyes Isaacura, Klaartje De Buysser, et al. 2024. “Unveiling (in)Organic Polymer Crosslinking Kinetics through 29si NMR and Kinetic Monte Carlo Modeling.” In <i>Annual Meeting of the Belgian Polymer Group (BPG 2024), Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">Verschraegen, Sofie, Alessandro Trigilio, Mariya Edeleva, Eva Loccufier, Lies De Keer, Pablo Reyes Isaacura, Klaartje De Buysser, Paul Van Steenberge, Karen De Clerck, Reinhold Dauskardt, and Dagmar D’hooge. 2024. “Unveiling (in)Organic Polymer Crosslinking Kinetics through 29si NMR and Kinetic Monte Carlo Modeling.” In <i>Annual Meeting of the Belgian Polymer Group (BPG 2024), Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. Verschraegen <i>et al.</i>, “Unveiling (in)organic polymer crosslinking kinetics through 29si NMR and kinetic Monte Carlo modeling,” in <i>Annual Meeting of the Belgian Polymer Group (BPG 2024), Abstracts</i>, Blankenberge, Belgium, 2024.</div>
      </div>
  mla: |2
      <div class="csl-entry">Verschraegen, Sofie, et al. “Unveiling (in)Organic Polymer Crosslinking Kinetics through 29si NMR and Kinetic Monte Carlo Modeling.” <i>Annual Meeting of the Belgian Polymer Group (BPG 2024), Abstracts</i>, 2024.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Verschraegen S, Trigilio A, Edeleva M, Loccufier E, De Keer L, Reyes Isaacura P, et al. Unveiling (in)organic polymer crosslinking kinetics through 29si NMR and kinetic Monte Carlo modeling. In: Annual Meeting of the Belgian Polymer Group (BPG 2024), Abstracts. 2024.</div>
       </div>
classification: C3
conference:
  end_date: 2024-05-31
  location: Blankenberge, Belgium
  name: Annual Meeting of the Belgian Polymer Group (BPG 2024)
  start_date: 2024-05-30
conference_type: poster
copyright_statement: No license (in copyright)
created_by:
  _id: 798BCFF0-0208-11E3-BADE-15C210BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 798BCFF0-0208-11E3-BADE-15C210BDE39D
  first_name: Paulien
  last_name: Baeyens
  name: Paulien Baeyens
  name_last_first: Baeyens, Paulien
  ugent_id:
  - '802002698757'
  - '974253404530'
date_created: 2024-10-10 13:11:53
date_updated: 2026-03-31 15:13:28
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-01J9V8X9EKBJJXQ60QCW5756YN
jcr: {}
language:
- eng
page:
  count: '1'
parent:
  title: Annual Meeting of the Belgian Polymer Group (BPG 2024), Abstracts
project:
- _id: 12B0D24N
  abstract: <p>The use of polymers, both synthetic and natural, is ubiquitous and
    they are found in virtually any aspect of modern life, including e.g. engineering
    composites, medical devices, packaging, and electronics. Several topologies can
    derive from the different types of connectivities and 3D positioning of all the
    bonds inside polymers, which are the base to predict the polymer macroscopic properties.
    A particularly complex case are the network/crosslinked polymers which have applications
    such as hygiene products, tissue engineering scaffolds, and drug delivery devices.
    They can be obtained using chain-growth synthesis and a large number of side reactions
    can be encountered, as well as a more complex reactant structure involving a plethora
    of functional groups. A major example for polymer networks and drug delivery systems
    are the ones using hydrogels, which showcase a combination of both chemical and
    physical interactions. Modeling the formation of these systems lead to precise
    material design, but has the main drawback of a complicated set of chemical reactions
    that must be characterized, in addition to long simulation time. To tackle these,
    in this project we propose to (i) expand the capabilities of our stochastic algorithms
    applied to polymer networks reactions and interactions, (ii) gather information
    from polymer networks through machine learning as a predictive tool for microscopic
    properties and (iii) upgrade the 3D visualization toolbox for this system.</p>
  end_date: 2026-09-30
  gismo_id: 30d3f7fd-19a5-11ee-b953-3bd20bad1f45
  iweto_id: 12B0D24N
  publication_count: 1
  start_date: 2023-10-01
  title: 'DAEMON: Deep polymer network design through Algorithm EnhanceMents, OptimizatioNs
    and machine learning'
- _id: 3F006621
  abstract: '<p>Today the high potential of (organo)silica branched/crosslinked/network
    polymers in nanofibrous membranes cannot be exploited to the fullest due to the
    lack of a straightforward way to produce them. To solve this, a fundamental understanding
    of how sol-gel synthesis and electrospinning are related via rheology is required.
    The main bottleneck remains that the viscosity evolution, as the network develops
    during synthesis, cannot be fully interpreted at the molecular level. For this,
    it is essential to fundamentally link the different steps in the electrospinning
    production process: from network formation of (organo)silica precursor molecules
    over electrospinning toward nanofibrous membranes. Both experimental (e.g. 29Si
    NMR, rheology) and kinetic modelling techniques will be used for this purpose.
    The morphology of the resulting nanofibrous membranes will be determined and linked
    back to the chemical building blocks, sol-gel synthesis and the electrospinning
    process as to enable the tuning of these (organo)silica nanofibers for advanced
    applications. The fiber diameter and the wettability will be studied as key model
    properties at respectively the fiber and material membrane level. This generic
    methodology can in the future be expanded toward other material properties to
    allow for molecular scale-driven material property tuning.</p>'
  end_date: 2025-10-31
  gismo_id: 190fbf11-2a82-11ec-95aa-05ef7abe0c3c
  iweto_id: 3F006621
  start_date: 2021-11-01
  title: 'Connecting (organo)silica sol-gel synthesis and membrane electrospinning:
    pushing toward molecular scale-driven property tuning'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
- Chemistry
title: Unveiling (in)organic polymer crosslinking kinetics through 29si NMR and kinetic
  Monte Carlo modeling
type: conference
year: '2024'
...
---
_id: 01JHQNV8627WFA9YP4942R9H7P
abstract:
- |-
  Eggs are multifunctional structures that enabled vertebrates to colonize the land millions of years ago. Life on Earth imposes a series of environmental challenges on eggs, often presenting conflicting or contradicting demands. For example, eggs must be crack-resistant yet allow breakage from the inside, be impermeable to bacteria yet breathable and in some cases allow water absorption. Eggshells also offer protection from harmful radiation while allowing some light transmission. As a result, they have evolved into multifunctional systems with extraordinary properties, including unique combinations of high flexibility and strength, strong water absorption and antimicrobial filtration. Biomimicking of these natural structures could lead to the development of new materials with advanced properties for filtration/separation technology, sensors and biomedical applications.
  Through chemical and physical analysis of sixty-two reptile eggshells (Debruyn et al., 2024), the key structural components - namely a proteinaceous layer (primarily keratin) and an inorganic calcium carbonate component - were identified and used to develop biomimicry models. The non-woven layer of proteinaceous fibers closely resembles randomly oriented nanofibrous membranes produced via solvent electrospinning. Hence, keratin, extracted through a sulphitolysis process, was electrospun from formic acid. A subsequent heat treatment ensured crosslinking of residual amine and carboxyl groups in the keratin chains, imparting hydrophobicity and improved water stability to the nanofibrous membranes. To further approximate the eggshell’s inner proteinaceous layer, the keratin nanofibers were embedded in an egg white matrix using a dip-coating procedure. The mineral component, typically found in Testudines and Crocodylia eggshells, was mimicked by depositing calcium carbonate particles onto the keratin-based membranes.
  This biomimetic approach paves the way for the production of multifunctional, biocompatible keratin-based membranes tailored to the specific needs of various end-applications such as filtration membranes, wound dressings, smart textiles, etc.
abstract_full:
- lang: eng
  text: |-
    Eggs are multifunctional structures that enabled vertebrates to colonize the land millions of years ago. Life on Earth imposes a series of environmental challenges on eggs, often presenting conflicting or contradicting demands. For example, eggs must be crack-resistant yet allow breakage from the inside, be impermeable to bacteria yet breathable and in some cases allow water absorption. Eggshells also offer protection from harmful radiation while allowing some light transmission. As a result, they have evolved into multifunctional systems with extraordinary properties, including unique combinations of high flexibility and strength, strong water absorption and antimicrobial filtration. Biomimicking of these natural structures could lead to the development of new materials with advanced properties for filtration/separation technology, sensors and biomedical applications.
    Through chemical and physical analysis of sixty-two reptile eggshells (Debruyn et al., 2024), the key structural components - namely a proteinaceous layer (primarily keratin) and an inorganic calcium carbonate component - were identified and used to develop biomimicry models. The non-woven layer of proteinaceous fibers closely resembles randomly oriented nanofibrous membranes produced via solvent electrospinning. Hence, keratin, extracted through a sulphitolysis process, was electrospun from formic acid. A subsequent heat treatment ensured crosslinking of residual amine and carboxyl groups in the keratin chains, imparting hydrophobicity and improved water stability to the nanofibrous membranes. To further approximate the eggshell’s inner proteinaceous layer, the keratin nanofibers were embedded in an egg white matrix using a dip-coating procedure. The mineral component, typically found in Testudines and Crocodylia eggshells, was mimicked by depositing calcium carbonate particles onto the keratin-based membranes.
    This biomimetic approach paves the way for the production of multifunctional, biocompatible keratin-based membranes tailored to the specific needs of various end-applications such as filtration membranes, wound dressings, smart textiles, etc.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Biology
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE11
  ugent_id: WE11
alternative_title:
- Biomimicry of reptile eggshells based on keratin nanofibrous membranes
author:
- _id: C275B788-9F44-11E8-B51F-A22C5707D3EF
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: C275B788-9F44-11E8-B51F-A22C5707D3EF
  first_name: Yana
  last_name: Maudens
  name: Yana Maudens
  name_last_first: Maudens, Yana
  orcid_id: 0009-0004-7574-7309
  ugent_id:
  - '000180496485'
  - '802004439404'
  - '973207706538'
- _id: 703A0548-BAC7-11E8-A22B-3DF65607D3EF
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: 703A0548-BAC7-11E8-A22B-3DF65607D3EF
  first_name: Gerben
  last_name: Debruyn
  name: Gerben Debruyn
  name_last_first: Debruyn, Gerben
  ugent_id:
  - '802003560037'
  - '976557705309'
- _id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  first_name: Eva
  last_name: Loccufier
  name: Eva Loccufier
  name_last_first: Loccufier, Eva
  orcid_id: 0000-0001-7045-2721
  ugent_id:
  - '802002671374'
  - '974161061035'
- first_name: Cinzia
  last_name: Tonetti
  name: Cinzia Tonetti
  name_last_first: Tonetti, Cinzia
- first_name: Claudia
  last_name: Vineis
  name: Claudia Vineis
  name_last_first: Vineis, Claudia
- first_name: Alessio
  last_name: Varesano
  name: Alessio Varesano
  name_last_first: Varesano, Alessio
- _id: F89F3E88-A37F-11E5-95B9-D7FEB4D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: F89F3E88-A37F-11E5-95B9-D7FEB4D1D7B1
  first_name: Liliana
  last_name: D'Alba Altamirano
  name: Liliana D'Alba Altamirano
  name_last_first: D'Alba Altamirano, Liliana
  orcid_id: 0000-0002-2478-3455
  ugent_id:
  - '802002269634'
- _id: 25D6054A-6888-11E5-AD70-3415B5D1D7B1
  affiliation:
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    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: 25D6054A-6888-11E5-AD70-3415B5D1D7B1
  first_name: Matthew
  last_name: Shawkey
  name: Matthew Shawkey
  name_last_first: Shawkey, Matthew
  orcid_id: 0000-0002-5131-8209
  ugent_id:
  - '802002093216'
  - '979048085026'
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  affiliation:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01JHQNV8627WFA9YP4942R9H7P
cite:
  apa: |2
      <div class="csl-entry">Maudens, Y., Debruyn, G., Loccufier, E., Tonetti, C., Vineis, C., Varesano, A., … De Clerck, K. (2024). Biomimicry of reptile eggshells based on electrospun keratin membranes. <i>2024 FEA Research Symposium, Abstracts</i>. Presented at the 22nd Faculty of Engineering and Architecture Research Symposium (FEARS 2024), Ghent, Belgium. https://doi.org/10.5281/zenodo.15076977</div>
  bof: |2
      <div class="csl-entry">Maudens, Yana, Gerben Debruyn, Eva Loccufier, Cinzia Tonetti, Claudia Vineis, Alessio Varesano, Liliana D’Alba Altamirano, Matthew Shawkey, Lode Daelemans, and Karen De Clerck. 2024. “Biomimicry of Reptile Eggshells Based on Electrospun Keratin Membranes.” In <i>2024 FEA Research Symposium, Abstracts</i>. doi:10.5281/zenodo.15076977.</div>
  chicago-author-date: |2
      <div class="csl-entry">Maudens, Yana, Gerben Debruyn, Eva Loccufier, Cinzia Tonetti, Claudia Vineis, Alessio Varesano, Liliana D’Alba Altamirano, Matthew Shawkey, Lode Daelemans, and Karen De Clerck. 2024. “Biomimicry of Reptile Eggshells Based on Electrospun Keratin Membranes.” In <i>2024 FEA Research Symposium, Abstracts</i>. https://doi.org/10.5281/zenodo.15076977.</div>
  fwo: |2
      <div class="csl-entry">Maudens, Yana, Gerben Debruyn, Eva Loccufier, Cinzia Tonetti, Claudia Vineis, Alessio Varesano, Liliana D’Alba Altamirano, Matthew Shawkey, Lode Daelemans, and Karen De Clerck. 2024. “Biomimicry of Reptile Eggshells Based on Electrospun Keratin Membranes.” In <i>2024 FEA Research Symposium, Abstracts</i>. doi:10.5281/zenodo.15076977.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Y. Maudens <i>et al.</i>, “Biomimicry of reptile eggshells based on electrospun keratin membranes,” in <i>2024 FEA Research Symposium, Abstracts</i>, Ghent, Belgium, 2024.</div>
      </div>
  mla: |2
      <div class="csl-entry">Maudens, Yana, et al. “Biomimicry of Reptile Eggshells Based on Electrospun Keratin Membranes.” <i>2024 FEA Research Symposium, Abstracts</i>, 2024, doi:10.5281/zenodo.15076977.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Maudens Y, Debruyn G, Loccufier E, Tonetti C, Vineis C, Varesano A, et al. Biomimicry of reptile eggshells based on electrospun keratin membranes. In: 2024 FEA Research Symposium, Abstracts. 2024.</div>
       </div>
classification: C3
conference:
  end_date: 2024-11-27
  location: Ghent, Belgium
  name: 22nd Faculty of Engineering and Architecture Research Symposium (FEARS 2024)
  start_date: 2024-11-27
conference_type: poster
copyright_statement: Creative Commons Attribution 4.0 International Public License
  (CC-BY 4.0)
created_by:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2025-01-16 13:46:34
date_updated: 2026-05-07 14:34:42
doi:
- 10.5281/zenodo.15076977
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handle: http://hdl.handle.net/1854/LU-01JHQNV8627WFA9YP4942R9H7P
jcr: {}
language:
- eng
parent:
  title: 2024 FEA Research Symposium, Abstracts
project:
- _id: 3G0A7921
  abstract: "<p>Eggs are multifunctional structures that enabled vertebrates to colonize
    the land millions of years ago. Eggshell morphology is at the core of animal survival
    and has evolved into a massive diversity of forms and functions in modern reptiles.
    These functions may also serve as models for new antimicrobial and/or breathable
    membranes.\nBut we still lack critical data on the chemical composition, ultrastructure,
    and material properties of reptile eggs. These data are critically needed to understand
    their effects on vertebrate evolution and successfully use them as biomimetic
    models.\nIn this project we will use a highly integrative approach including functional
    morphology, evolution, biomechanics and biomimicry to test hypotheses on form-function
    relationships in eggs and their potential as models for biomimetic materials.
    Specifically, we will address the following questions: How does egg morphology
    affect biomechanical function? Do nesting ecology and life history drive the evolution
    of eggshell design? Do bioinspired replicas retain functional properties comparable
    to natural eggs? \nTo answer these questions we will use state-of-the-art μCT,
    electron microscopy, chemical and biomechanical tests, phylogenetic comparative
    methods and materials science techniques to experimentally test form-function
    relationships and produce novel, bioinspired multifunctional membranes.</p>"
  end_date: 2024-12-31
  gismo_id: ae3ff06f-4420-11eb-809b-01df1efbbcb6
  iweto_id: 3G0A7921
  publication_count: 11
  start_date: 2021-01-01
  title: 'Biomechanics and Biomimicry of Reptile Eggs: Insights into their functions
    and evolution'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Biology and Life Sciences
- Technology and Engineering
title: Biomimicry of reptile eggshells based on electrospun keratin membranes
type: conference
year: '2024'
...
---
_id: 01J00YG8QZ62HKD34KBPVPS5KP
abstract:
- The amniotic egg fulfils a critical role in reproduction by serving as an interface
  between the external environment and the embryo. Because non-avian reptiles are
  rarely incubated, they must be heated by, and absorb water from, the oviposition
  site for the developing embryo. The mechanisms by which they absorb sufficient,
  but not excess, water and how these mechanisms vary with local habitat is largely
  unknown, despite its significance to their evolution. Here, we first performed histology,
  Fourier-transform infrared spectroscopy and dynamic vapor sorption experiments to
  elucidate the mechanisms of eggshell absorption for 56 reptile species. Then, we
  used phylogenetic comparative analysis to test the hypothesis that the absorptive
  capacity of reptile eggshells increases with aridity of the environment. We found
  that water absorption increases in the presence of a superficial mucopolysaccharide
  layer and decreases with increased calcium content. We found that eggs from arid
  environments have highly absorbent eggshells, but only in species with weakly calcified
  shells. Our results suggest that reptile eggshells have over evolutionary time tuned
  absorptive capacity to environmental moisture level. Since these eggs often must
  sustain conflicting constraints, they may serve as inspirations for new biomimetic
  materials, such as water filtering membranes or humidity sensors.
abstract_full:
- lang: eng
  text: The amniotic egg fulfils a critical role in reproduction by serving as an
    interface between the external environment and the embryo. Because non-avian reptiles
    are rarely incubated, they must be heated by, and absorb water from, the oviposition
    site for the developing embryo. The mechanisms by which they absorb sufficient,
    but not excess, water and how these mechanisms vary with local habitat is largely
    unknown, despite its significance to their evolution. Here, we first performed
    histology, Fourier-transform infrared spectroscopy and dynamic vapor sorption
    experiments to elucidate the mechanisms of eggshell absorption for 56 reptile
    species. Then, we used phylogenetic comparative analysis to test the hypothesis
    that the absorptive capacity of reptile eggshells increases with aridity of the
    environment. We found that water absorption increases in the presence of a superficial
    mucopolysaccharide layer and decreases with increased calcium content. We found
    that eggs from arid environments have highly absorbent eggshells, but only in
    species with weakly calcified shells. Our results suggest that reptile eggshells
    have over evolutionary time tuned absorptive capacity to environmental moisture
    level. Since these eggs often must sustain conflicting constraints, they may serve
    as inspirations for new biomimetic materials, such as water filtering membranes
    or humidity sensors.
affiliation:
- name: Department of Biology
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE11
  ugent_id: WE11
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_type: original
author:
- _id: 703A0548-BAC7-11E8-A22B-3DF65607D3EF
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: 703A0548-BAC7-11E8-A22B-3DF65607D3EF
  first_name: Gerben
  last_name: Debruyn
  name: Gerben Debruyn
  name_last_first: Debruyn, Gerben
  ugent_id:
  - '802003560037'
- _id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
  orcid_id: 0000-0002-1281-2968
  ugent_id:
  - '000070582957'
  - '975000449525'
- _id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
  ugent_id:
  - '000100318410'
  - '802002133935'
  - '975208259089'
- _id: 9FCE3F38-36AE-11E3-8C57-182C11BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: 9FCE3F38-36AE-11E3-8C57-182C11BDE39D
  first_name: Michaël
  last_name: Nicolaï
  name: Michaël Nicolaï
  name_last_first: Nicolaï, Michaël
  orcid_id: 0000-0002-9570-0311
  ugent_id:
  - '802002891545'
- _id: 206f8610-8dea-11ec-9462-83f6fd8e2d34
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: 206f8610-8dea-11ec-9462-83f6fd8e2d34
  first_name: Wanjie
  last_name: Xie
  name: Wanjie Xie
  name_last_first: Xie, Wanjie
  ugent_id:
  - '802003945411'
- _id: D734B5B6-6296-11E7-8720-9E85AD28A064
  biblio_id: D734B5B6-6296-11E7-8720-9E85AD28A064
  first_name: Maarten
  last_name: Wynant
  name: Maarten Wynant
  name_last_first: Wynant, Maarten
  ugent_id:
  - '919029536706'
- _id: 25D6054A-6888-11E5-AD70-3415B5D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: 25D6054A-6888-11E5-AD70-3415B5D1D7B1
  first_name: Matthew
  last_name: Shawkey
  name: Matthew Shawkey
  name_last_first: Shawkey, Matthew
  orcid_id: 0000-0002-5131-8209
  ugent_id:
  - '802002093216'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
- _id: F89F3E88-A37F-11E5-95B9-D7FEB4D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: F89F3E88-A37F-11E5-95B9-D7FEB4D1D7B1
  first_name: Liliana
  last_name: D'Alba Altamirano
  name: Liliana D'Alba Altamirano
  name_last_first: D'Alba Altamirano, Liliana
  orcid_id: 0000-0002-2478-3455
  ugent_id:
  - '802002269634'
biblio_id: 01J00YG8QZ62HKD34KBPVPS5KP
cite:
  apa: |2
      <div class="csl-entry">Debruyn, G., Geltmeyer, J., Schoolaert, E., Nicolaï, M., Xie, W., Wynant, M., … D’Alba Altamirano, L. (2024). Hydric environment and chemical composition shape non-avian reptile eggshell absorption. <i>INTEGRATIVE AND COMPARATIVE BIOLOGY</i>, <i>64</i>(1), 107–119. https://doi.org/10.1093/icb/icae040</div>
  bof: |2-
      <div class="csl-entry">Debruyn, Gerben, Jozefien Geltmeyer, Ella Schoolaert, Michaël Nicolaï, Wanjie Xie, Maarten Wynant, Matthew Shawkey, Karen De Clerck, and Liliana D’Alba Altamirano. 2024. “Hydric Environment and Chemical Composition Shape Non-Avian Reptile Eggshell Absorption.” <i>INTEGRATIVE AND COMPARATIVE BIOLOGY</i> 64 (1): 107–119. doi:10.1093/icb/icae040.</div>
    <div><i>Impact factor: 2.1, category: ZOOLOGY, rank: 24/176, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Debruyn, Gerben, Jozefien Geltmeyer, Ella Schoolaert, Michaël Nicolaï, Wanjie Xie, Maarten Wynant, Matthew Shawkey, Karen De Clerck, and Liliana D’Alba Altamirano. 2024. “Hydric Environment and Chemical Composition Shape Non-Avian Reptile Eggshell Absorption.” <i>INTEGRATIVE AND COMPARATIVE BIOLOGY</i> 64 (1): 107–19. https://doi.org/10.1093/icb/icae040.</div>
  fwo: |2
      <div class="csl-entry">Debruyn, Gerben, Jozefien Geltmeyer, Ella Schoolaert, Michaël Nicolaï, Wanjie Xie, Maarten Wynant, Matthew Shawkey, Karen De Clerck, and Liliana D’Alba Altamirano. 2024. “Hydric Environment and Chemical Composition Shape Non-Avian Reptile Eggshell Absorption.” <i>INTEGRATIVE AND COMPARATIVE BIOLOGY</i> 64 (1): 107–119. doi:10.1093/icb/icae040.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">G. Debruyn <i>et al.</i>, “Hydric environment and chemical composition shape non-avian reptile eggshell absorption,” <i>INTEGRATIVE AND COMPARATIVE BIOLOGY</i>, vol. 64, no. 1, pp. 107–119, 2024.</div>
      </div>
  mla: |2
      <div class="csl-entry">Debruyn, Gerben, et al. “Hydric Environment and Chemical Composition Shape Non-Avian Reptile Eggshell Absorption.” <i>INTEGRATIVE AND COMPARATIVE BIOLOGY</i>, vol. 64, no. 1, 2024, pp. 107–19, doi:10.1093/icb/icae040.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Debruyn G, Geltmeyer J, Schoolaert E, Nicolaï M, Xie W, Wynant M, et al. Hydric environment and chemical composition shape non-avian reptile eggshell absorption. INTEGRATIVE AND COMPARATIVE BIOLOGY. 2024;64(1):107–19.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
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    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: 25D6054A-6888-11E5-AD70-3415B5D1D7B1
  first_name: Matthew
  last_name: Shawkey
  name: Matthew Shawkey
  name_last_first: Shawkey, Matthew
  orcid_id: 0000-0002-5131-8209
  ugent_id:
  - '802002093216'
date_created: 2024-06-10 11:28:28
date_updated: 2026-06-11 13:56:42
doi:
- 10.1093/icb/icae040
external: 0
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handle: http://hdl.handle.net/1854/LU-01J00YG8QZ62HKD34KBPVPS5KP
issn:
- 1540-7063
- 1557-7023
issue: '1'
jcr:
  category: ZOOLOGY
  category_decile: 2
  category_quartile: 1
  category_rank: 24/176
  category_vigintile: 3
  eigenfactor: 0.00477
  immediacy_index: 0.8
  impact_factor: 2.1
  impact_factor_5yr: 2.7
  prev_category_decile: 2
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  prev_impact_factor: 2.2
  total_cites: 6853
keyword:
- AMORPHOUS CALCIUM-CARBONATE
- WATER EXCHANGE
- EGG
- CUTICLE
- MICROSTRUCTURE
- INCUBATION
- EVOLUTION
- ARAGONITE
- LIZARD
- GROWTH
language:
- eng
page:
  first: '107'
  last: '119'
parent:
  short_title: Integr. Comp. Biol.
  title: INTEGRATIVE AND COMPARATIVE BIOLOGY
project:
- _id: 3G0A7921
  abstract: "<p>Eggs are multifunctional structures that enabled vertebrates to colonize
    the land millions of years ago. Eggshell morphology is at the core of animal survival
    and has evolved into a massive diversity of forms and functions in modern reptiles.
    These functions may also serve as models for new antimicrobial and/or breathable
    membranes.\nBut we still lack critical data on the chemical composition, ultrastructure,
    and material properties of reptile eggs. These data are critically needed to understand
    their effects on vertebrate evolution and successfully use them as biomimetic
    models.\nIn this project we will use a highly integrative approach including functional
    morphology, evolution, biomechanics and biomimicry to test hypotheses on form-function
    relationships in eggs and their potential as models for biomimetic materials.
    Specifically, we will address the following questions: How does egg morphology
    affect biomechanical function? Do nesting ecology and life history drive the evolution
    of eggshell design? Do bioinspired replicas retain functional properties comparable
    to natural eggs? \nTo answer these questions we will use state-of-the-art μCT,
    electron microscopy, chemical and biomechanical tests, phylogenetic comparative
    methods and materials science techniques to experimentally test form-function
    relationships and produce novel, bioinspired multifunctional membranes.</p>"
  end_date: 2024-12-31
  gismo_id: ae3ff06f-4420-11eb-809b-01df1efbbcb6
  iweto_id: 3G0A7921
  publication_count: 11
  start_date: 2021-01-01
  title: 'Biomechanics and Biomimicry of Reptile Eggs: Insights into their functions
    and evolution'
publication_status: published
publication_status_sort: 2
pubmed_id: '38755009'
status: public
subject:
- Biology and Life Sciences
title: Hydric environment and chemical composition shape non-avian reptile eggshell
  absorption
type: journalArticle
volume: '64'
wos_id: '001239112400001'
wos_type: Article
year: '2024'
...
---
_id: 01JDMEX9K4XKFAQF4PFNVBTN8R
abstract:
- 'Colours in nature can be pigmentary, structural or a combination of both. The prevalence,
  function and nanostructural origin of structural coloration in eggs is largely unknown.
  Stick and leaf insect eggs display a wide variety of colours, most of which are
  produced by pigments. The eggs of Myronides glaucus (Phasmida: Lonchodidae; Hennemann,
  2021), however, show a clear purple to green iridescence. Here, we use micro-spectrophotometry,
  Fourier-transform infrared reflectance, transmission- and scanning electron microscopy,
  atomic force microscopy, finite-difference time-domain optical simulations and experimental
  approaches to elucidate the mechanism for iridescence in M. glaucus eggshells, which
  together reveal that iridescence is caused by thin-film interference by a 200- to
  450-nm-thick outermost layer. These results highlight the diversity of phasmid eggs
  and the need to study the different mechanisms and functions of structural coloration.'
abstract_full:
- lang: dut
  text: 'Colours in nature can be pigmentary, structural or a combination of both.
    The prevalence, function and nanostructural origin of structural coloration in
    eggs is largely unknown. Stick and leaf insect eggs display a wide variety of
    colours, most of which are produced by pigments. The eggs of Myronides glaucus
    (Phasmida: Lonchodidae; Hennemann, 2021), however, show a clear purple to green
    iridescence. Here, we use micro-spectrophotometry, Fourier-transform infrared
    reflectance, transmission- and scanning electron microscopy, atomic force microscopy,
    finite-difference time-domain optical simulations and experimental approaches
    to elucidate the mechanism for iridescence in M. glaucus eggshells, which together
    reveal that iridescence is caused by thin-film interference by a 200- to 450-nm-thick
    outermost layer. These results highlight the diversity of phasmid eggs and the
    need to study the different mechanisms and functions of structural coloration.'
affiliation:
- name: Department of Biology
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE11
  ugent_id: WE11
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_type: original
author:
- _id: 703A0548-BAC7-11E8-A22B-3DF65607D3EF
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: 703A0548-BAC7-11E8-A22B-3DF65607D3EF
  first_name: Gerben
  last_name: Debruyn
  name: Gerben Debruyn
  name_last_first: Debruyn, Gerben
  ugent_id:
  - '802003560037'
- first_name: Thies H.
  last_name: Büscher
  name: Thies H. Büscher
  name_last_first: Büscher, Thies H.
- _id: 9FCE3F38-36AE-11E3-8C57-182C11BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: 9FCE3F38-36AE-11E3-8C57-182C11BDE39D
  first_name: Michaël
  last_name: Nicolaï
  name: Michaël Nicolaï
  name_last_first: Nicolaï, Michaël
  orcid_id: 0000-0002-9570-0311
  ugent_id:
  - '802002891545'
- _id: ac052746-e2bf-11ec-bec5-b2837359c7ca
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: ac052746-e2bf-11ec-bec5-b2837359c7ca
  first_name: Jessica Leigh
  last_name: Dobson
  name: Jessica Leigh Dobson
  name_last_first: Dobson, Jessica Leigh
  ugent_id:
  - '000211829610'
  - '802004043825'
- _id: 206f8610-8dea-11ec-9462-83f6fd8e2d34
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: 206f8610-8dea-11ec-9462-83f6fd8e2d34
  first_name: Wanjie
  last_name: Xie
  name: Wanjie Xie
  name_last_first: Xie, Wanjie
  ugent_id:
  - '802003945411'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
- _id: F89F3E88-A37F-11E5-95B9-D7FEB4D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: F89F3E88-A37F-11E5-95B9-D7FEB4D1D7B1
  first_name: Liliana
  last_name: D'Alba Altamirano
  name: Liliana D'Alba Altamirano
  name_last_first: D'Alba Altamirano, Liliana
  orcid_id: 0000-0002-2478-3455
  ugent_id:
  - '802002269634'
- _id: 25D6054A-6888-11E5-AD70-3415B5D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: 25D6054A-6888-11E5-AD70-3415B5D1D7B1
  first_name: Matthew
  last_name: Shawkey
  name: Matthew Shawkey
  name_last_first: Shawkey, Matthew
  orcid_id: 0000-0002-5131-8209
  ugent_id:
  - '802002093216'
biblio_id: 01JDMEX9K4XKFAQF4PFNVBTN8R
cite:
  apa: |2
      <div class="csl-entry">Debruyn, G., Büscher, T. H., Nicolaï, M., Dobson, J. L., Xie, W., De Clerck, K., … Shawkey, M. (2024). Thin‐film iridescence in the eggshell of a stick insect (Myronides glaucus). <i>PHYSIOLOGICAL ENTOMOLOGY</i>, <i>50</i>(1), 88–95. https://doi.org/10.1111/phen.12469</div>
  bof: |2-
      <div class="csl-entry">Debruyn, Gerben, Thies H. Büscher, Michaël Nicolaï, Jessica Leigh Dobson, Wanjie Xie, Karen De Clerck, Liliana D’Alba Altamirano, and Matthew Shawkey. 2024. “Thin‐film Iridescence in the Eggshell of a Stick Insect (Myronides Glaucus).” <i>PHYSIOLOGICAL ENTOMOLOGY</i> 50 (1): 88–95. doi:10.1111/phen.12469.</div>
    <div><i>Impact factor: 1.5, category: ENTOMOLOGY, rank: 41/100, quartile: 2.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Debruyn, Gerben, Thies H. Büscher, Michaël Nicolaï, Jessica Leigh Dobson, Wanjie Xie, Karen De Clerck, Liliana D’Alba Altamirano, and Matthew Shawkey. 2024. “Thin‐film Iridescence in the Eggshell of a Stick Insect (Myronides Glaucus).” <i>PHYSIOLOGICAL ENTOMOLOGY</i> 50 (1): 88–95. https://doi.org/10.1111/phen.12469.</div>
  fwo: |2
      <div class="csl-entry">Debruyn, Gerben, Thies H. Büscher, Michaël Nicolaï, Jessica Leigh Dobson, Wanjie Xie, Karen De Clerck, Liliana D’Alba Altamirano, and Matthew Shawkey. 2024. “Thin‐film Iridescence in the Eggshell of a Stick Insect (Myronides Glaucus).” <i>PHYSIOLOGICAL ENTOMOLOGY</i> 50 (1): 88–95. doi:10.1111/phen.12469.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">G. Debruyn <i>et al.</i>, “Thin‐film iridescence in the eggshell of a stick insect (Myronides glaucus),” <i>PHYSIOLOGICAL ENTOMOLOGY</i>, vol. 50, no. 1, pp. 88–95, 2024.</div>
      </div>
  mla: |2
      <div class="csl-entry">Debruyn, Gerben, et al. “Thin‐film Iridescence in the Eggshell of a Stick Insect (Myronides Glaucus).” <i>PHYSIOLOGICAL ENTOMOLOGY</i>, vol. 50, no. 1, 2024, pp. 88–95, doi:10.1111/phen.12469.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Debruyn G, Büscher TH, Nicolaï M, Dobson JL, Xie W, De Clerck K, et al. Thin‐film iridescence in the eggshell of a stick insect (Myronides glaucus). PHYSIOLOGICAL ENTOMOLOGY. 2024;50(1):88–95.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: 25D6054A-6888-11E5-AD70-3415B5D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: 25D6054A-6888-11E5-AD70-3415B5D1D7B1
  first_name: Matthew
  last_name: Shawkey
  name: Matthew Shawkey
  name_last_first: Shawkey, Matthew
  orcid_id: 0000-0002-5131-8209
  ugent_id:
  - '802002093216'
date_created: 2024-11-26 14:44:50
date_updated: 2026-06-11 13:59:12
doi:
- 10.1111/phen.12469
external: 0
file:
- _id: 01KTVFKYVS5EMCA5GSGZE10PPN
  access: open
  content_type: application/pdf
  kind: fullText
  name: accepted_manuscript.pdf
  publication_version: acceptedVersion
  sha256: 61f6edf7a6c9014fda977b91c1857364934e7be2a3dafe52fc64b5885efa34de
  size: '764422'
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  size: '1134883'
  url: https://biblio.ugent.be/publication/01JDMEX9K4XKFAQF4PFNVBTN8R/file/01KTVFMJ9TQ6D5AM7XK3FW02JM.pdf
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  size: '3043430'
handle: http://hdl.handle.net/1854/LU-01JDMEX9K4XKFAQF4PFNVBTN8R
issn:
- 0307-6962
- 1365-3032
issue: '1'
jcr:
  category: ENTOMOLOGY
  category_decile: 5
  category_quartile: 2
  category_rank: 41/100
  category_vigintile: 9
  eigenfactor: 0.00041
  immediacy_index: 0.3
  impact_factor: 1.5
  impact_factor_5yr: 1.8
  prev_category_decile: 4
  prev_category_quartile: 2
  prev_category_vigintile: 7
  prev_impact_factor: 1.6
  total_cites: 1862
keyword:
- eggs
- finite-difference time-domain simulation
- iridescence
- stick insect
- structural coloration
- STRUCTURAL COLOR MECHANISMS
- BEETLES
- PUPAE
- SCALE
- BIRD
language:
- eng
page:
  first: '88'
  last: '95'
parent:
  short_title: Physiol Entomol
  title: PHYSIOLOGICAL ENTOMOLOGY
project:
- _id: 3G0A7921
  abstract: "<p>Eggs are multifunctional structures that enabled vertebrates to colonize
    the land millions of years ago. Eggshell morphology is at the core of animal survival
    and has evolved into a massive diversity of forms and functions in modern reptiles.
    These functions may also serve as models for new antimicrobial and/or breathable
    membranes.\nBut we still lack critical data on the chemical composition, ultrastructure,
    and material properties of reptile eggs. These data are critically needed to understand
    their effects on vertebrate evolution and successfully use them as biomimetic
    models.\nIn this project we will use a highly integrative approach including functional
    morphology, evolution, biomechanics and biomimicry to test hypotheses on form-function
    relationships in eggs and their potential as models for biomimetic materials.
    Specifically, we will address the following questions: How does egg morphology
    affect biomechanical function? Do nesting ecology and life history drive the evolution
    of eggshell design? Do bioinspired replicas retain functional properties comparable
    to natural eggs? \nTo answer these questions we will use state-of-the-art μCT,
    electron microscopy, chemical and biomechanical tests, phylogenetic comparative
    methods and materials science techniques to experimentally test form-function
    relationships and produce novel, bioinspired multifunctional membranes.</p>"
  end_date: 2024-12-31
  gismo_id: ae3ff06f-4420-11eb-809b-01df1efbbcb6
  iweto_id: 3G0A7921
  publication_count: 11
  start_date: 2021-01-01
  title: 'Biomechanics and Biomimicry of Reptile Eggs: Insights into their functions
    and evolution'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
- Biology and Life Sciences
title: Thin‐film iridescence in the eggshell of a stick insect (Myronides glaucus)
type: journalArticle
volume: '50'
wos_id: '001338113100001'
wos_type: Article
year: '2024'
...
---
_id: 01HP44SV8Z604P15WZ6N79V9M4
abstract:
- This meeting is the report of the European Childhood Obesity Group 32nd Annual Congress
  in Albena (Bulgaria), taking place from the 7th to the 9th of September 2023.
abstract_full:
- lang: und
  text: This meeting is the report of the European Childhood Obesity Group 32nd Annual
    Congress in Albena (Bulgaria), taking place from the 7th to the 9th of September
    2023.
additional_info: 'DOI Abstract Book : 10.1159/000533360'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Translational Physiology, Infectiology and Public Health
  path:
  - ugent_id: UGent
  - ugent_id: DI
  - ugent_id: DI04
  ugent_id: DI04
- name: Department of Public Health and Primary Care
  path:
  - ugent_id: UGent
  - ugent_id: GE
  - ugent_id: GE39
  ugent_id: GE39
alternative_location:
- access: open
  kind: fullText
  url: https://karger.com/anm/article/79/4/381/862140/The-32nd-Annual-Conference-of-ECOG-Albena-Bulgaria
author:
- _id: A9239AE6-15AD-11E3-B408-FEAE10BDE39D
  affiliation:
  - name: Ghent University Hospital
    path:
    - ugent_id: UZGent
    ugent_id: UZGent
  biblio_id: A9239AE6-15AD-11E3-B408-FEAE10BDE39D
  first_name: Margot
  last_name: De Spiegeleer
  name: Margot De Spiegeleer
  name_last_first: De Spiegeleer, Margot
  orcid_id: 0000-0002-1088-7245
  ugent_id:
  - '000130754582'
  - '974472127810'
- _id: CFD1E364-6721-11E6-9459-1DCEB4D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: DI
    - ugent_id: DI04
    ugent_id: DI04
  biblio_id: CFD1E364-6721-11E6-9459-1DCEB4D1D7B1
  first_name: Vera
  last_name: Plekhova
  name: Vera Plekhova
  name_last_first: Plekhova, Vera
  orcid_id: 0000-0002-6109-7032
  ugent_id:
  - '802002994912'
  - '977915818675'
- _id: 5681F212-8AAA-11E7-994E-48E0AD28A064
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: DI
    - ugent_id: DI04
    ugent_id: DI04
  biblio_id: 5681F212-8AAA-11E7-994E-48E0AD28A064
  first_name: Kimberly
  last_name: De Windt
  name: Kimberly De Windt
  name_last_first: De Windt, Kimberly
  orcid_id: 0000-0002-9589-5112
  ugent_id:
  - '000170678267'
  - '802004133246'
  - '976434719514'
- _id: 137E2946-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 137E2946-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Marilyn
  last_name: De Graeve
  name: Marilyn De Graeve
  name_last_first: De Graeve, Marilyn
  orcid_id: 0000-0001-6916-401X
  ugent_id:
  - '971668236009'
- _id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
  orcid_id: 0000-0002-1281-2968
  ugent_id:
  - '000070582957'
  - '975000449525'
- first_name: Inge
  last_name: Gies
  name: Inge Gies
  name_last_first: Gies, Inge
- _id: F47B132E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: GE
    - ugent_id: GE39
    ugent_id: GE39
  biblio_id: F47B132E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Stefaan
  last_name: De Henauw
  name: Stefaan De Henauw
  name_last_first: De Henauw, Stefaan
  orcid_id: 0000-0003-4141-5432
  ugent_id:
  - '801000760293'
  - '971658810740'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F77AFAE4-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: DI
    - ugent_id: DI04
    ugent_id: DI04
  biblio_id: F77AFAE4-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lynn
  last_name: Vanhaecke
  name: Lynn Vanhaecke
  name_last_first: Vanhaecke, Lynn
  orcid_id: 0000-0003-0400-2188
  ugent_id:
  - '801001950969'
  - '976961995245'
biblio_id: 01HP44SV8Z604P15WZ6N79V9M4
cite:
  apa: |2
      <div class="csl-entry">De Spiegeleer, M., Plekhova, V., De Windt, K., De Graeve, M., Geltmeyer, J., Gies, I., … Vanhaecke, L. (2023). Metabotyping children using rectal MetaSAMP®-LA-REIMS : the MetaBEAse cohort. <i>ANNALS OF NUTRITION AND METABOLISM</i>, <i>79</i>(4), 385–386. S. Karger AG.</div>
  bof: |2-
      <div class="csl-entry">De Spiegeleer, Margot, Vera Plekhova, Kimberly De Windt, Marilyn De Graeve, Jozefien Geltmeyer, Inge Gies, Stefaan De Henauw, Karen De Clerck, and Lynn Vanhaecke. 2023. “Metabotyping Children Using Rectal MetaSAMP®-LA-REIMS : The MetaBEAse Cohort.” In <i>ANNALS OF NUTRITION AND METABOLISM</i>, 79:385–386. S. Karger AG.</div>
    <div><i>Impact factor: 3.2, category: ENDOCRINOLOGY & METABOLISM, rank: 81/186, quartile: 2.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">De Spiegeleer, Margot, Vera Plekhova, Kimberly De Windt, Marilyn De Graeve, Jozefien Geltmeyer, Inge Gies, Stefaan De Henauw, Karen De Clerck, and Lynn Vanhaecke. 2023. “Metabotyping Children Using Rectal MetaSAMP®-LA-REIMS : The MetaBEAse Cohort.” In <i>ANNALS OF NUTRITION AND METABOLISM</i>, 79:385–86. S. Karger AG.</div>
  fwo: |2
      <div class="csl-entry">De Spiegeleer, Margot, Vera Plekhova, Kimberly De Windt, Marilyn De Graeve, Jozefien Geltmeyer, Inge Gies, Stefaan De Henauw, Karen De Clerck, and Lynn Vanhaecke. 2023. “Metabotyping Children Using Rectal MetaSAMP®-LA-REIMS : The MetaBEAse Cohort.” In <i>ANNALS OF NUTRITION AND METABOLISM</i>, 79:385–386. S. Karger AG.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">M. De Spiegeleer <i>et al.</i>, “Metabotyping children using rectal MetaSAMP®-LA-REIMS : the MetaBEAse cohort,” in <i>ANNALS OF NUTRITION AND METABOLISM</i>, Albena, Bulgaria, 2023, vol. 79, no. 4, pp. 385–386.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Spiegeleer, Margot, et al. “Metabotyping Children Using Rectal MetaSAMP®-LA-REIMS : The MetaBEAse Cohort.” <i>ANNALS OF NUTRITION AND METABOLISM</i>, vol. 79, no. 4, S. Karger AG, 2023, pp. 385–86.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Spiegeleer M, Plekhova V, De Windt K, De Graeve M, Geltmeyer J, Gies I, et al. Metabotyping children using rectal MetaSAMP®-LA-REIMS : the MetaBEAse cohort. In: ANNALS OF NUTRITION AND METABOLISM. S. Karger AG; 2023. p. 385–6.</div>
       </div>
classification: C3
conference:
  end_date: 2023-09-09
  location: Albena, Bulgaria
  name: 32nd Annual Conference of ECOG
  start_date: 2023-09-07
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2024-02-08 10:39:19
date_updated: 2026-03-31 13:27:40
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-01HP44SV8Z604P15WZ6N79V9M4
issn:
- 0250-6807
- 1421-9697
issue: '4'
jcr:
  category: ENDOCRINOLOGY & METABOLISM
  category_decile: 6
  category_quartile: 2
  category_rank: 81/186
  category_vigintile: 11
  eigenfactor: 0.00301
  immediacy_index: 0.6
  impact_factor: 3.2
  impact_factor_5yr: 4.5
  prev_category_decile: 5
  prev_category_quartile: 2
  prev_category_vigintile: 9
  prev_impact_factor: 3.9
  total_cites: 5133
keyword:
- Nutrition and Dietetics
- Medicine (miscellaneous)
language:
- eng
page:
  first: '385'
  last: '386'
parent:
  short_title: Ann Nutr Metab
  title: ANNALS OF NUTRITION AND METABOLISM
project:
- _id: F2020/IOF-StarTT/066
  abstract: <p>There is an unmet need for samplers permitting rapid sample processing
    for a.o. precision medicine metabolomic fingerprinting. AIMS-based metabolomics
    allows to record mass spectra from samples in their native environment without
    the need for chromatographic separation. Existing samplers are not customized
    for this approach or matrix is burned along with the sample leading to interferences
    and contamination. In this StartTT we aim to deliver a functional prototype of
    a novel patented sampler. This sampler will be customized and finetuned to enable
    maximal extraction of any metabolome (liquid biopsies, food and environmental
    samples) while enabling direct AIMS-based metabolomics of captured molecules.
    Based on the aformentioned requirements, an optimized prototype sampler will be
    selected for upscaling. We intend to produce a large batch of the selected prototype
    through a collaboration with a CRO/CMO company and optimize the large batch production
    parameters in conjunction with that company. Finally, samplers will be evaluated
    for rapid metabolomics testing in a precision medicine pediatrics study.</p>
  end_date: 2022-07-31
  gismo_id: 55dc1171-bf61-11ea-8c04-77b709f2f7d3
  iweto_id: F2020/IOF-StarTT/066
  start_date: 2020-08-01
  title: Novel sampler for ambient ionization high-resolution mass spectrometry (AIMS)-based
    metabolomics and its application in pediatrics precision medicine.
- _id: F2022/IOF-StarTT/091
  abstract: <p>Ambient ionization mass spectrometry (AIMS) based metabolomics is an
    emerging powerful analysis tool in precision medicine, food and evironmental applications.
    AIMS allows to record mass spectra from samples in their native environment without
    the need for chromatographic separation. Sampling devices that capture and stabilize
    biofluid metabolites while enabling maximal extraction for AIMS-based metabolomics
    analysis are currently not available on the market. This StarTT projects builds
    on previous development by UGent of a novel patented sampler costumized for AIMS
    and will tackle current shortcomings of limited functionality of the polymers,
    long-term stability and pre-industrial upscaling. The aim of the project is to
    optimize the sampler design to achieve maximal metabolomics capture and stability
    and to bring the invention from a lab scale prototype to the stage of a clinically
    validated pre-industrial prototype kit.</p>
  end_date: 2025-07-15
  gismo_id: e9086e04-7c8d-11ed-ac18-b54206a6b40c
  iweto_id: F2022/IOF-StarTT/091
  start_date: 2022-12-16
  title: PolySAMP - polymeric sampler for metabolomics
- _id: 3S034519
  abstract: <p>Today’s children are increasingly facing metabolic-related health issues,
    among which the worldwide prevalence of overweight and obesity is rising at an
    alarming pace. Childhood obesity is associated with the early onset of chronic
    diseases including an emergence of prediabetes and diabetes mellitus type 2. The
    decline of insulin sensitivity already years before puberty, exposes children
    to long-term complications prior the appearance of clinical symptoms and time
    of diagnosis. The shortened life expectancy and large economic burden imposed
    underlines the need for the identification of metabotypes at risk at an early
    stage. One’s genetics, microbial gut composition and every aspect of the environment
    in which children are raised have been implicated in diet-related obesity rendering
    metabolomics a very powerful tool towards precision medicine. Yet, the excellence
    of stool in reflecting the intertwining thereof is completely unexplored for pediatric
    purposes, whereas blood sampling causing pain and stress for child and parent
    only captures a narrow fraction of the metabolome. As such, I propose rectal sampling
    using a medical swab tailored with electrospun nanofibers for optimal gut metabolome
    coverage. Ambient laser desorption ionization will be hyphenated to high-resolution
    mass spectrometry-based metabolomics to provide a framework for elucidating predictive
    and/or prognostic biomarkers for ever-increasing pediatric metabolic diseases
    such as obesity and (pre)diabetes. </p>
  end_date: 2023-09-30
  gismo_id: 9c7697d7-f96d-11e9-b85e-e128f57a36f9
  iweto_id: 3S034519
  start_date: 2019-11-01
  title: Rectal sampler for metabotyping of overweight and obese children towards
    early prevention and prognosis of metabolic diseases
publication_status: published
publication_status_sort: 2
publisher:
  name: S. Karger AG
series_title: The 32nd Annual Conference of ECOG, Albena, Bulgaria, September 7-9
  2023, Abstracts
status: public
subject:
- Medicine and Health Sciences
title: 'Metabotyping children using rectal MetaSAMP®-LA-REIMS : the MetaBEAse cohort'
type: conference
volume: '79'
wos_id: '001100556000008'
wos_type: Meeting Abstract
year: '2023'
...
---
_id: 01HN2JS3RT2ZA4MECZV5G1SQB2
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
author:
- _id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  first_name: Sofie
  last_name: Verschraegen
  name: Sofie Verschraegen
  name_last_first: Verschraegen, Sofie
  orcid_id: 0000-0002-6164-3662
  ugent_id:
  - '000150868746'
  - '802003501534'
  - '919029486586'
  - '975200255882'
- _id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  first_name: Eva
  last_name: Loccufier
  name: Eva Loccufier
  name_last_first: Loccufier, Eva
  orcid_id: 0000-0001-7045-2721
  ugent_id:
  - '802002671374'
  - '974161061035'
- _id: 28DB1308-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 28DB1308-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lies
  last_name: De Keer
  name: Lies De Keer
  name_last_first: De Keer, Lies
  orcid_id: 0000-0003-2620-0046
  ugent_id:
  - '000100481791'
  - '802002106754'
  - '971930032541'
- _id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
  orcid_id: 0000-0002-1281-2968
  ugent_id:
  - '000070582957'
  - '975000449525'
- _id: F99156E8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F99156E8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Paul
  last_name: Van Steenberge
  name: Paul Van Steenberge
  name_last_first: Van Steenberge, Paul
  orcid_id: 0000-0001-6244-1299
  ugent_id:
  - '802000264461'
  - '975633424843'
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
biblio_id: 01HN2JS3RT2ZA4MECZV5G1SQB2
cite:
  apa: |2
      <div class="csl-entry">Verschraegen, S., Loccufier, E., De Keer, L., Geltmeyer, J., Van Steenberge, P., De Buysser, K., … D’hooge, D. (2023). Combining 29Si NMR and kinetic Monte Carlo modeling to capture tetraethyl orthosilicate crosslinking kinetics. <i>ACS Fall 2023, Abstracts</i>. Presented at the ACS Fall 2023, San Francisco, USA (hybrid).</div>
  bof: |2
      <div class="csl-entry">Verschraegen, Sofie, Eva Loccufier, Lies De Keer, Jozefien Geltmeyer, Paul Van Steenberge, Klaartje De Buysser, Karen De Clerck, and Dagmar D’hooge. 2023. “Combining 29Si NMR and Kinetic Monte Carlo Modeling to Capture Tetraethyl Orthosilicate Crosslinking Kinetics.” In <i>ACS Fall 2023, Abstracts</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">Verschraegen, Sofie, Eva Loccufier, Lies De Keer, Jozefien Geltmeyer, Paul Van Steenberge, Klaartje De Buysser, Karen De Clerck, and Dagmar D’hooge. 2023. “Combining 29Si NMR and Kinetic Monte Carlo Modeling to Capture Tetraethyl Orthosilicate Crosslinking Kinetics.” In <i>ACS Fall 2023, Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">Verschraegen, Sofie, Eva Loccufier, Lies De Keer, Jozefien Geltmeyer, Paul Van Steenberge, Klaartje De Buysser, Karen De Clerck, and Dagmar D’hooge. 2023. “Combining 29Si NMR and Kinetic Monte Carlo Modeling to Capture Tetraethyl Orthosilicate Crosslinking Kinetics.” In <i>ACS Fall 2023, Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. Verschraegen <i>et al.</i>, “Combining 29Si NMR and kinetic Monte Carlo modeling to capture tetraethyl orthosilicate crosslinking kinetics,” in <i>ACS Fall 2023, Abstracts</i>, San Francisco, USA (hybrid), 2023.</div>
      </div>
  mla: |2
      <div class="csl-entry">Verschraegen, Sofie, et al. “Combining 29Si NMR and Kinetic Monte Carlo Modeling to Capture Tetraethyl Orthosilicate Crosslinking Kinetics.” <i>ACS Fall 2023, Abstracts</i>, 2023.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Verschraegen S, Loccufier E, De Keer L, Geltmeyer J, Van Steenberge P, De Buysser K, et al. Combining 29Si NMR and kinetic Monte Carlo modeling to capture tetraethyl orthosilicate crosslinking kinetics. In: ACS Fall 2023, Abstracts. 2023.</div>
       </div>
classification: C3
conference:
  end_date: 2023-08-17
  location: San Francisco, USA (hybrid)
  name: ACS Fall 2023
  organizer: American Chemical Society
  start_date: 2023-08-13
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2024-01-26 09:49:24
date_updated: 2026-03-31 13:27:44
external: 0
file:
- _id: 01HN2K4ZTARADDWDYHM268XSNR
  access: open
  content_type: application/vnd.openxmlformats-officedocument.wordprocessingml.document
  kind: fullText
  name: ACS abstract.docx
  publication_version: acceptedVersion
  sha256: 17b8c37fef2e77fcec606695ec5da522ec0fd720c5f8e43dd77a1e66eb0200b3
  size: '104887'
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handle: http://hdl.handle.net/1854/LU-01HN2JS3RT2ZA4MECZV5G1SQB2
jcr: {}
language:
- eng
page:
  count: '1'
parent:
  title: ACS Fall 2023, Abstracts
project:
- _id: 3F006621
  abstract: '<p>Today the high potential of (organo)silica branched/crosslinked/network
    polymers in nanofibrous membranes cannot be exploited to the fullest due to the
    lack of a straightforward way to produce them. To solve this, a fundamental understanding
    of how sol-gel synthesis and electrospinning are related via rheology is required.
    The main bottleneck remains that the viscosity evolution, as the network develops
    during synthesis, cannot be fully interpreted at the molecular level. For this,
    it is essential to fundamentally link the different steps in the electrospinning
    production process: from network formation of (organo)silica precursor molecules
    over electrospinning toward nanofibrous membranes. Both experimental (e.g. 29Si
    NMR, rheology) and kinetic modelling techniques will be used for this purpose.
    The morphology of the resulting nanofibrous membranes will be determined and linked
    back to the chemical building blocks, sol-gel synthesis and the electrospinning
    process as to enable the tuning of these (organo)silica nanofibers for advanced
    applications. The fiber diameter and the wettability will be studied as key model
    properties at respectively the fiber and material membrane level. This generic
    methodology can in the future be expanded toward other material properties to
    allow for molecular scale-driven material property tuning.</p>'
  end_date: 2025-10-31
  gismo_id: 190fbf11-2a82-11ec-95aa-05ef7abe0c3c
  iweto_id: 3F006621
  start_date: 2021-11-01
  title: 'Connecting (organo)silica sol-gel synthesis and membrane electrospinning:
    pushing toward molecular scale-driven property tuning'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Combining 29Si NMR and kinetic Monte Carlo modeling to capture tetraethyl orthosilicate
  crosslinking kinetics
type: conference
year: '2023'
...
---
_id: 01HHKSJAXKY6K53AREEXFV198F
abstract:
- Unfortunately, approximately 40% of all marketed drugs and over 90% of medicines
  in development suffer from poor aqueous solubility and hence limited bioavailability
  upon oral administration. This critical, current challenge in pharmaceutics has
  led to an increased interest in advanced aqueous solubility-enhancing strategies,
  with the formulation of amorphous solid dispersions (ASDs) as one of the most promising
  routes. Here, the active pharmaceutical ingredient is ideally molecularly dispersed
  in a polymeric carrier, hence increasing its chemical potential with respect to
  its highly stable crystalline counterpart and improving the thermodynamic driving
  force for dissolution in the gastrointestinal fluids. Nonetheless, the amount of
  marketed ASDs is still limited, as many ASDs lack physical stability due to their
  amorphous nature, and recrystallization to their less soluble state during production,
  downstream processing, storage, and dissolution often limits the applicability.
  In this research, an important step is taken towards the bioavailability improvement
  of poorly water-soluble drugs through the formulation of stable ASDs, with flubendazole
  (FBZ), itraconazole (ITC), mebendazole (MBZ), and celecoxib (CCX) as known Biopharmaceutics
  Classification System (BCS) class II model compounds. Solvent electrospinning of
  a working solution of the drug and poly(2-ethyl-2-oxazoline) is put forward, because
  of the extremely fast solvent evaporation, which freezes the API in the polymeric
  carrier in a highly homogeneous manner. This work demonstrates the viability and
  broad applicability of this strategy to produce stable nanofibrous ASDs with ultrahigh
  drug loadings (up to 55, 60, 70, and 80 wt% for FBZ, ITC, MBZ, and CCX, respectively)
  and long-term stability (at least one year). Importantly, at such high drug loadings,
  lowering the concentration of the polymer in the electrospinning solution below
  the concentration where it can be spun in the absence of the drug is essential,
  as the interactions between the polymer and the drug result in an increased solution
  viscosity. A combination of experimental analysis and molecular dynamics simulations
  revealed that this formulation strategy provides strong, dominant, and highly stable
  hydrogen bonds between the polymer and the drug, which is crucial to obtain the
  high drug loadings and to preserve the long-term amorphous character of the ASDs
  upon storage. In vitro drug release studies confirm the remarkable potential of
  this electrospinning formulation strategy by significantly increasing drug solubility
  values (e.g. up to 50 times for ITC after 5 hours) and dissolution rates, even after
  one-year storage of the formulations (as tested for FBZ).
abstract_full:
- lang: eng
  text: Unfortunately, approximately 40% of all marketed drugs and over 90% of medicines
    in development suffer from poor aqueous solubility and hence limited bioavailability
    upon oral administration. This critical, current challenge in pharmaceutics has
    led to an increased interest in advanced aqueous solubility-enhancing strategies,
    with the formulation of amorphous solid dispersions (ASDs) as one of the most
    promising routes. Here, the active pharmaceutical ingredient is ideally molecularly
    dispersed in a polymeric carrier, hence increasing its chemical potential with
    respect to its highly stable crystalline counterpart and improving the thermodynamic
    driving force for dissolution in the gastrointestinal fluids. Nonetheless, the
    amount of marketed ASDs is still limited, as many ASDs lack physical stability
    due to their amorphous nature, and recrystallization to their less soluble state
    during production, downstream processing, storage, and dissolution often limits
    the applicability. In this research, an important step is taken towards the bioavailability
    improvement of poorly water-soluble drugs through the formulation of stable ASDs,
    with flubendazole (FBZ), itraconazole (ITC), mebendazole (MBZ), and celecoxib
    (CCX) as known Biopharmaceutics Classification System (BCS) class II model compounds.
    Solvent electrospinning of a working solution of the drug and poly(2-ethyl-2-oxazoline)
    is put forward, because of the extremely fast solvent evaporation, which freezes
    the API in the polymeric carrier in a highly homogeneous manner. This work demonstrates
    the viability and broad applicability of this strategy to produce stable nanofibrous
    ASDs with ultrahigh drug loadings (up to 55, 60, 70, and 80 wt% for FBZ, ITC,
    MBZ, and CCX, respectively) and long-term stability (at least one year). Importantly,
    at such high drug loadings, lowering the concentration of the polymer in the electrospinning
    solution below the concentration where it can be spun in the absence of the drug
    is essential, as the interactions between the polymer and the drug result in an
    increased solution viscosity. A combination of experimental analysis and molecular
    dynamics simulations revealed that this formulation strategy provides strong,
    dominant, and highly stable hydrogen bonds between the polymer and the drug, which
    is crucial to obtain the high drug loadings and to preserve the long-term amorphous
    character of the ASDs upon storage. In vitro drug release studies confirm the
    remarkable potential of this electrospinning formulation strategy by significantly
    increasing drug solubility values (e.g. up to 50 times for ITC after 5 hours)
    and dissolution rates, even after one-year storage of the formulations (as tested
    for FBZ).
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Pharmaceutics
  path:
  - ugent_id: UGent
  - ugent_id: FW
  - ugent_id: FW01
  ugent_id: FW01
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
alternative_location:
- access: open
  kind: fullText
  url: https://www.mrs.org/meetings-events/fall-meetings-exhibits/2023-mrs-fall-meeting/symposium-sessions#program
- access: open
  kind: fullText
  url: https://www.mrs.org/meetings-events/fall-meetings-exhibits/2023-mrs-fall-meeting
- access: open
  kind: fullText
  url: https://www.mrs.org/docs/default-source/meetings-events/fall-meetings/2023/f23-abstract-book.pdf?sfvrsn=74480d09_1
article_number: SB09.08.09
author:
- _id: 4ECF3BC6-5675-11E5-B03A-F334B5D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 4ECF3BC6-5675-11E5-B03A-F334B5D1D7B1
  first_name: Olmo
  last_name: Frateur
  name: Olmo Frateur
  name_last_first: Frateur, Olmo
  orcid_id: 0000-0002-0198-561X
  ugent_id:
  - '000150886227'
  - '802003501433'
  - '976840489813'
- _id: 39CBE44E-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 39CBE44E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jana
  last_name: Becelaere
  name: Jana Becelaere
  name_last_first: Becelaere, Jana
  orcid_id: 0000-0001-5024-3308
  ugent_id:
  - '977861082888'
- _id: F4A465E4-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: UGent
    - ugent_id: FW
    - ugent_id: FW01
    ugent_id: FW01
  biblio_id: F4A465E4-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Chris
  last_name: Vervaet
  name: Chris Vervaet
  name_last_first: Vervaet, Chris
  orcid_id: 0000-0002-1291-6054
  ugent_id:
  - '801000867397'
  - '973325837380'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01HHKSJAXKY6K53AREEXFV198F
cite:
  apa: |2
      <div class="csl-entry">Frateur, O., Becelaere, J., Vervaet, C., Hoogenboom, R., &#38; De Clerck, K. (2023). Increasing aqueous drug solubility by solvent electrospinning of poly(2-ethyl-2-oxazoline) based stable amorphous solid dispersions with high drug loading. <i>2023 MRS Fall Meeting &#38; Exhibit, Abstracts</i>, 1000–1001. Materials Research Society (MRS).</div>
  chicago-author-date: |2
      <div class="csl-entry">Frateur, Olmo, Jana Becelaere, Chris Vervaet, Richard Hoogenboom, and Karen De Clerck. 2023. “Increasing Aqueous Drug Solubility by Solvent Electrospinning of Poly(2-Ethyl-2-Oxazoline) Based Stable Amorphous Solid Dispersions with High Drug Loading.” In <i>2023 MRS Fall Meeting &#38; Exhibit, Abstracts</i>, 1000–1001. Materials Research Society (MRS).</div>
  fwo: |2
      <div class="csl-entry">Frateur, Olmo, Jana Becelaere, Chris Vervaet, Richard Hoogenboom, and Karen De Clerck. 2023. “Increasing Aqueous Drug Solubility by Solvent Electrospinning of Poly(2-Ethyl-2-Oxazoline) Based Stable Amorphous Solid Dispersions with High Drug Loading.” In <i>2023 MRS Fall Meeting &#38; Exhibit, Abstracts</i>, 1000–1001. Materials Research Society (MRS).</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">O. Frateur, J. Becelaere, C. Vervaet, R. Hoogenboom, and K. De Clerck, “Increasing aqueous drug solubility by solvent electrospinning of poly(2-ethyl-2-oxazoline) based stable amorphous solid dispersions with high drug loading,” in <i>2023 MRS Fall Meeting &#38; Exhibit, Abstracts</i>, Boston, Massachusetts, USA + Virtual, 2023, pp. 1000–1001.</div>
      </div>
  mla: |2
      <div class="csl-entry">Frateur, Olmo, et al. “Increasing Aqueous Drug Solubility by Solvent Electrospinning of Poly(2-Ethyl-2-Oxazoline) Based Stable Amorphous Solid Dispersions with High Drug Loading.” <i>2023 MRS Fall Meeting &#38; Exhibit, Abstracts</i>, Materials Research Society (MRS), 2023, pp. 1000–01.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Frateur O, Becelaere J, Vervaet C, Hoogenboom R, De Clerck K. Increasing aqueous drug solubility by solvent electrospinning of poly(2-ethyl-2-oxazoline) based stable amorphous solid dispersions with high drug loading. In: 2023 MRS Fall Meeting &#38; Exhibit, Abstracts. Materials Research Society (MRS); 2023. p. 1000–1.</div>
       </div>
classification: C3
conference:
  end_date: 2023-12-07
  location: Boston, Massachusetts, USA + Virtual
  name: 2023 MRS Fall Meeting & Exhibit
  organizer: Materials Research Society (MRS)
  start_date: 2023-11-26
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2023-12-14 09:12:20
date_updated: 2026-03-31 13:26:14
external: 0
file:
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  kind: fullText
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handle: http://hdl.handle.net/1854/LU-01HHKSJAXKY6K53AREEXFV198F
language:
- eng
page:
  first: '1000'
  last: '1001'
parent:
  title: 2023 MRS Fall Meeting & Exhibit, Abstracts
project:
- _id: 3S002821
  abstract: <p>As severe burns are a leading cause of morbidity, proper wound care
    is crucial. Treating burns requires specific care to provide an infection-free
    and moist environment. As such, advanced dressings are essential, however, no
    all-round dressings for every burn exist and the demand remains pressing. Our
    aim is to innovate novel wound dressings by combining both moisture regulation,
    antimicrobial action and conformability in one single dressing. The material needs
    will be met by engineering hybrid, electrospun nanofibrous structures, for which
    the novel, versatile poly(2-oxazoline) platform with a tunable hydrophilicity
    will be employed. This allows for the targeted design of a nanofibrous material
    with optimal moisture-managing properties. Moreover, electrospinning is ideally
    suited for doping bioactive agents and controlling the release rate. Innovatively
    linking moisture uptake with drug release in the nanofibrous structures enables
    an optimal and prolonged antiseptic action to prevent and treat infection during
    wound healing. Lastly, the mechanical properties will be examined and modified
    to improve membrane stability and conformability. Our findings, based on hybrid
    nanofibrous structures with the desired material properties, will significantly
    advance the preparation of widely applicable multifunctional wound dressings.
    This outcome will reduce healthcare costs and increase patient comfort, thus resulting
    in a major societal impact.</p>
  end_date: 2025-10-31
  gismo_id: 4ad519a6-2a81-11ec-a6b4-cd4eac00b947
  iweto_id: 3S002821
  start_date: 2021-11-01
  title: Engineering hybrid nanofibrous membranes with superior moisture regulation
    and controlled antimicrobial action for future wound dressings
- _id: 3S000718
  abstract: <p>Today, over 60%, of all newly developed drugs are discarded due to
    low water-solubility. This low water-solubility is due to both the chemical makeup
    and the high degree of crystallinity of the drug. The current formulation techniques
    to produce tablets today cannot circumvent this problem, which means that the
    produced product cannot be absorbed by our body and will, hence, have a very low
    efficacy. With solvent electrospinning as a new formulation technique it is aimed
    to homogeneously disperse the drug in a polymer matrix. In first proof of principle
    experiments on the drug flubendazole it has already been shown that this can prevent
    crystallization, which enhances the solubility of the drug inside aqueous environments,
    such as the body. In other words, by formulating highly crystalline drugs with
    low water-solubility via solvent electrospinning, the drug's bioavailability is
    increased. However, this phenomenon is not fully understood and, hence, far from
    optimized and for sure not yet widely applicable. Thus, the influence of different
    process parameters on the final drug delivery should be studied. Also different
    polymers and different drugs should be examined. In this project, these topics
    will be dealt with and finally the formulation of highly crystalline drugs that
    are insoluble in aqueous environments will be made viable. The technique will
    be well understood and optimized in order to design new polymer-drug systems that
    increase the bioavailability of the drug.</p>
  end_date: 2022-12-31
  gismo_id: d89c7f90-be65-11e9-ace9-8bf558aeac68
  iweto_id: 3S000718
  start_date: 2018-01-01
  title: |-
    Solvent electrospinning nanofibers as a novel material for improved
    polymer-API solid dispersions.
publication_status: published
publication_status_sort: 2
publisher:
  name: Materials Research Society (MRS)
status: public
subject:
- Technology and Engineering
- Chemistry
title: Increasing aqueous drug solubility by solvent electrospinning of poly(2-ethyl-2-oxazoline)
  based stable amorphous solid dispersions with high drug loading
type: conference
year: '2023'
...
---
_id: 01HA25M3577S3JXMWKYCTN1GGJ
abstract:
- In this work, the feasibility of ultra-high drug loaded amorphous solid dispersions
  (ASDs) for the poorly soluble itraconazole, mebendazole and celecoxib via solvent
  electrospinning in combination with poly(2-ethyl-2-oxazoline) and fenofibrate in
  combination with polyvinylpyrrolidone is demonstrated. By lowering the polymer concentration
  in the electrospinning solution below its individual spinnable limit, ASDs with
  a drug content of up to 80 wt% are obtained. This is attributed to drug-polymer
  interactions not being limited by default to hydrogen bonds, as also Van der Waals
  interactions can result in high drug loadings. The theoretically predicted miscibility
  by the Flory-Huggins theory is corroborated by the experimental findings based on
  (modulated) differential scanning calorimetry and x-ray diffraction. Globally, the
  maximally obtained amorphous drug loadings are higher compared to the loadings found
  in literature. Additionally, non-sink dissolution tests demonstrate an increase
  in solubility of up to 50 times compared to their crystalline counterparts. Moreover,
  due to the lack of precipitation biocompatible PEtOx succeeds in stabilizing the
  dissolved drug and inhibiting its instant precipitation. The current work thus demonstrates
  the broader applicability of the electrospinning technique for the production of
  physically stable ASDs with ultra-high drug loadings, a result which has been validated
  for several Biopharmaceutics Classification System class II drugs.
abstract_full:
- lang: eng
  text: In this work, the feasibility of ultra-high drug loaded amorphous solid dispersions
    (ASDs) for the poorly soluble itraconazole, mebendazole and celecoxib via solvent
    electrospinning in combination with poly(2-ethyl-2-oxazoline) and fenofibrate
    in combination with polyvinylpyrrolidone is demonstrated. By lowering the polymer
    concentration in the electrospinning solution below its individual spinnable limit,
    ASDs with a drug content of up to 80 wt% are obtained. This is attributed to drug-polymer
    interactions not being limited by default to hydrogen bonds, as also Van der Waals
    interactions can result in high drug loadings. The theoretically predicted miscibility
    by the Flory-Huggins theory is corroborated by the experimental findings based
    on (modulated) differential scanning calorimetry and x-ray diffraction. Globally,
    the maximally obtained amorphous drug loadings are higher compared to the loadings
    found in literature. Additionally, non-sink dissolution tests demonstrate an increase
    in solubility of up to 50 times compared to their crystalline counterparts. Moreover,
    due to the lack of precipitation biocompatible PEtOx succeeds in stabilizing the
    dissolved drug and inhibiting its instant precipitation. The current work thus
    demonstrates the broader applicability of the electrospinning technique for the
    production of physically stable ASDs with ultra-high drug loadings, a result which
    has been validated for several Biopharmaceutics Classification System class II
    drugs.
additional_info: 'Shared first co-author: JB and OF contributed equally.'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
- name: Department of Pharmaceutics
  path:
  - ugent_id: UGent
  - ugent_id: FW
  - ugent_id: FW01
  ugent_id: FW01
article_type: original
author:
- _id: 39CBE44E-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 39CBE44E-F0EE-11E1-A9DE-61C894A0A6B4
  credit_role:
  - first_author
  first_name: Jana
  last_name: Becelaere
  name: Jana Becelaere
  name_last_first: Becelaere, Jana
  orcid_id: 0000-0001-5024-3308
  ugent_id:
  - '977861082888'
- _id: 4ECF3BC6-5675-11E5-B03A-F334B5D1D7B1
  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 4ECF3BC6-5675-11E5-B03A-F334B5D1D7B1
  credit_role:
  - first_author
  first_name: Olmo
  last_name: Frateur
  name: Olmo Frateur
  name_last_first: Frateur, Olmo
  orcid_id: 0000-0002-0198-561X
  ugent_id:
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  - '976840489813'
- _id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  credit_role:
  - writing_review_editing
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
  ugent_id:
  - '000100318410'
  - '802002133935'
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- _id: 0276C59A-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: FW01
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  credit_role:
  - writing_review_editing
  first_name: Valérie
  last_name: Vanhoorne
  name: Valérie Vanhoorne
  name_last_first: Vanhoorne, Valérie
  orcid_id: 0000-0003-4249-3408
  ugent_id:
  - '802001047939'
  - '977541519725'
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - writing_review_editing
  - supervision
  - funding_acquisition
  - conceptualization
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
- _id: F4A465E4-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: FW
    - ugent_id: FW01
    ugent_id: FW01
  biblio_id: F4A465E4-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - writing_review_editing
  - supervision
  - funding_acquisition
  - conceptualization
  first_name: Chris
  last_name: Vervaet
  name: Chris Vervaet
  name_last_first: Vervaet, Chris
  orcid_id: 0000-0002-1291-6054
  ugent_id:
  - '801000867397'
  - '973325837380'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  credit_role:
  - writing_review_editing
  - supervision
  - funding_acquisition
  - conceptualization
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - writing_review_editing
  - supervision
  - funding_acquisition
  - conceptualization
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01HA25M3577S3JXMWKYCTN1GGJ
cite:
  apa: |2
      <div class="csl-entry">Becelaere, J., Frateur, O., Schoolaert, E., Vanhoorne, V., D’hooge, D., Vervaet, C., … De Clerck, K. (2023). Solvent electrospinning amorphous solid dispersions with high itraconazole, celecoxib, mebendazole and fenofibrate drug loading and release potential. <i>JOURNAL OF CONTROLLED RELEASE</i>, <i>362</i>, 268–277. https://doi.org/10.1016/j.jconrel.2023.08.054</div>
  chicago-author-date: |2
      <div class="csl-entry">Becelaere, Jana, Olmo Frateur, Ella Schoolaert, Valérie Vanhoorne, Dagmar D’hooge, Chris Vervaet, Richard Hoogenboom, and Karen De Clerck. 2023. “Solvent Electrospinning Amorphous Solid Dispersions with High Itraconazole, Celecoxib, Mebendazole and Fenofibrate Drug Loading and Release Potential.” <i>JOURNAL OF CONTROLLED RELEASE</i> 362: 268–77. https://doi.org/10.1016/j.jconrel.2023.08.054.</div>
  fwo: |2
      <div class="csl-entry">Becelaere, Jana, Olmo Frateur, Ella Schoolaert, Valérie Vanhoorne, Dagmar D’hooge, Chris Vervaet, Richard Hoogenboom, and Karen De Clerck. 2023. “Solvent Electrospinning Amorphous Solid Dispersions with High Itraconazole, Celecoxib, Mebendazole and Fenofibrate Drug Loading and Release Potential.” <i>JOURNAL OF CONTROLLED RELEASE</i> 362: 268–277. doi:10.1016/j.jconrel.2023.08.054.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">J. Becelaere <i>et al.</i>, “Solvent electrospinning amorphous solid dispersions with high itraconazole, celecoxib, mebendazole and fenofibrate drug loading and release potential,” <i>JOURNAL OF CONTROLLED RELEASE</i>, vol. 362, pp. 268–277, 2023.</div>
      </div>
  mla: |2
      <div class="csl-entry">Becelaere, Jana, et al. “Solvent Electrospinning Amorphous Solid Dispersions with High Itraconazole, Celecoxib, Mebendazole and Fenofibrate Drug Loading and Release Potential.” <i>JOURNAL OF CONTROLLED RELEASE</i>, vol. 362, 2023, pp. 268–77, doi:10.1016/j.jconrel.2023.08.054.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Becelaere J, Frateur O, Schoolaert E, Vanhoorne V, D’hooge D, Vervaet C, et al. Solvent electrospinning amorphous solid dispersions with high itraconazole, celecoxib, mebendazole and fenofibrate drug loading and release potential. JOURNAL OF CONTROLLED RELEASE. 2023;362:268–77.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: 4ECF3BC6-5675-11E5-B03A-F334B5D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 4ECF3BC6-5675-11E5-B03A-F334B5D1D7B1
  first_name: Olmo
  last_name: Frateur
  name: Olmo Frateur
  name_last_first: Frateur, Olmo
  orcid_id: 0000-0002-0198-561X
  ugent_id:
  - '000150886227'
  - '802003501433'
  - '976840489813'
date_created: 2023-09-11 13:06:48
date_updated: 2026-03-31 13:26:24
doi:
- 10.1016/j.jconrel.2023.08.054
external: 0
file:
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  access: open
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handle: http://hdl.handle.net/1854/LU-01HA25M3577S3JXMWKYCTN1GGJ
issn:
- 0168-3659
- 1873-4995
jcr:
  category: PHARMACOLOGY & PHARMACY
  category_decile: 1
  category_quartile: 1
  category_rank: 12/354
  category_vigintile: 1
  immediacy_index: 2
  impact_factor: 10.5
  impact_factor_5yr: 10.6
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 1
  prev_impact_factor: 10.8
  total_cites: 66109
keyword:
- Amorphous solid dispersions (ASDs)
- Poly(2-ethyl-2-oxazoline) (PEtOx)
- Solvent electrospinning
- Solubility enhancement
- Poorly soluble drugs
- Flory-Huggins
language:
- eng
page:
  first: '268'
  last: '277'
parent:
  short_title: J. Control. Release
  title: JOURNAL OF CONTROLLED RELEASE
project:
- _id: 3S000718
  abstract: <p>Today, over 60%, of all newly developed drugs are discarded due to
    low water-solubility. This low water-solubility is due to both the chemical makeup
    and the high degree of crystallinity of the drug. The current formulation techniques
    to produce tablets today cannot circumvent this problem, which means that the
    produced product cannot be absorbed by our body and will, hence, have a very low
    efficacy. With solvent electrospinning as a new formulation technique it is aimed
    to homogeneously disperse the drug in a polymer matrix. In first proof of principle
    experiments on the drug flubendazole it has already been shown that this can prevent
    crystallization, which enhances the solubility of the drug inside aqueous environments,
    such as the body. In other words, by formulating highly crystalline drugs with
    low water-solubility via solvent electrospinning, the drug's bioavailability is
    increased. However, this phenomenon is not fully understood and, hence, far from
    optimized and for sure not yet widely applicable. Thus, the influence of different
    process parameters on the final drug delivery should be studied. Also different
    polymers and different drugs should be examined. In this project, these topics
    will be dealt with and finally the formulation of highly crystalline drugs that
    are insoluble in aqueous environments will be made viable. The technique will
    be well understood and optimized in order to design new polymer-drug systems that
    increase the bioavailability of the drug.</p>
  end_date: 2022-12-31
  gismo_id: d89c7f90-be65-11e9-ace9-8bf558aeac68
  iweto_id: 3S000718
  start_date: 2018-01-01
  title: |-
    Solvent electrospinning nanofibers as a novel material for improved
    polymer-API solid dispersions.
- _id: 3S002821
  abstract: <p>As severe burns are a leading cause of morbidity, proper wound care
    is crucial. Treating burns requires specific care to provide an infection-free
    and moist environment. As such, advanced dressings are essential, however, no
    all-round dressings for every burn exist and the demand remains pressing. Our
    aim is to innovate novel wound dressings by combining both moisture regulation,
    antimicrobial action and conformability in one single dressing. The material needs
    will be met by engineering hybrid, electrospun nanofibrous structures, for which
    the novel, versatile poly(2-oxazoline) platform with a tunable hydrophilicity
    will be employed. This allows for the targeted design of a nanofibrous material
    with optimal moisture-managing properties. Moreover, electrospinning is ideally
    suited for doping bioactive agents and controlling the release rate. Innovatively
    linking moisture uptake with drug release in the nanofibrous structures enables
    an optimal and prolonged antiseptic action to prevent and treat infection during
    wound healing. Lastly, the mechanical properties will be examined and modified
    to improve membrane stability and conformability. Our findings, based on hybrid
    nanofibrous structures with the desired material properties, will significantly
    advance the preparation of widely applicable multifunctional wound dressings.
    This outcome will reduce healthcare costs and increase patient comfort, thus resulting
    in a major societal impact.</p>
  end_date: 2025-10-31
  gismo_id: 4ad519a6-2a81-11ec-a6b4-cd4eac00b947
  iweto_id: 3S002821
  start_date: 2021-11-01
  title: Engineering hybrid nanofibrous membranes with superior moisture regulation
    and controlled antimicrobial action for future wound dressings
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Solvent electrospinning amorphous solid dispersions with high itraconazole,
  celecoxib, mebendazole and fenofibrate drug loading and release potential
type: journalArticle
volume: '362'
wos_id: '001076370000001'
wos_type: Article
year: '2023'
...
---
_id: 01H815QS3246S1CHZTW91J8HVX
abstract:
- Electrospun silica nanofiber membranes show a high potential in many advanced environmental
  applications. However, little is known about their mechanical performance which
  could be a limiting factor for further innovation. It is shown in this work that
  silica nanofiber membranes have a completely different deformation behavior compared
  to conventional polymeric/thermoplastic nanofiber membranes, resulting from their
  significant differences in chemical and physical properties such as fiber interactions
  and porosity. Furthermore, storage at room temperature initiates remarkable changes
  in failure mechanisms, depending on the storage humidity, which can be accelerated
  via a thermal treatment. These changes are linked to the structural changes of the
  membrane resulting from its chemical reactivity towards moisture in the air. Additional
  interactions and crosslinks are observed, leading to fiber shrinkage and rearrangement.
  As a result, more contact points are created between nanofibers, creating additional
  friction forces and, as such, a complete shift in mechanical properties towards
  a stronger, stiffer, and more brittle material (tensile strength of 14.0 ± 3.8 MPa
  vs. 3.1 ± 0.4 MPa and failure strain of 0.9 ± 0.2% vs. 24.2 ± 1.0%). The silica
  nanofiber membranes thus allow mechanical tunability via altering the storage or
  treatment conditions.
abstract_full:
- lang: eng
  text: Electrospun silica nanofiber membranes show a high potential in many advanced
    environmental applications. However, little is known about their mechanical performance
    which could be a limiting factor for further innovation. It is shown in this work
    that silica nanofiber membranes have a completely different deformation behavior
    compared to conventional polymeric/thermoplastic nanofiber membranes, resulting
    from their significant differences in chemical and physical properties such as
    fiber interactions and porosity. Furthermore, storage at room temperature initiates
    remarkable changes in failure mechanisms, depending on the storage humidity, which
    can be accelerated via a thermal treatment. These changes are linked to the structural
    changes of the membrane resulting from its chemical reactivity towards moisture
    in the air. Additional interactions and crosslinks are observed, leading to fiber
    shrinkage and rearrangement. As a result, more contact points are created between
    nanofibers, creating additional friction forces and, as such, a complete shift
    in mechanical properties towards a stronger, stiffer, and more brittle material
    (tensile strength of 14.0 ± 3.8 MPa vs. 3.1 ± 0.4 MPa and failure strain of 0.9
    ± 0.2% vs. 24.2 ± 1.0%). The silica nanofiber membranes thus allow mechanical
    tunability via altering the storage or treatment conditions.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE06
  ugent_id: WE06
article_type: original
author:
- _id: 9DBE7436-0234-11E4-8A54-7BF54B2F559A
  biblio_id: 9DBE7436-0234-11E4-8A54-7BF54B2F559A
  first_name: Bianca
  last_name: Swanckaert
  name: Bianca Swanckaert
  name_last_first: Swanckaert, Bianca
  orcid_id: 0000-0001-6036-6512
  ugent_id:
  - '978889457589'
- _id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  biblio_id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  first_name: Olivier
  last_name: Verschatse
  name: Olivier Verschatse
  name_last_first: Verschatse, Olivier
  orcid_id: 0000-0001-7732-6007
  ugent_id:
  - '974442908376'
- _id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  first_name: Eva
  last_name: Loccufier
  name: Eva Loccufier
  name_last_first: Loccufier, Eva
  orcid_id: 0000-0001-7045-2721
  ugent_id:
  - '802002671374'
  - '974161061035'
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01H815QS3246S1CHZTW91J8HVX
cite:
  apa: |2
      <div class="csl-entry">Swanckaert, B., Verschatse, O., Loccufier, E., De Buysser, K., Daelemans, L., &#38; De Clerck, K. (2023). Chemical and structural induced ductile-to-brittle transition in electrospun silica nanofiber membranes. <i>CERAMICS INTERNATIONAL</i>, <i>49</i>(20), 33305–33315. https://doi.org/10.1016/j.ceramint.2023.08.041</div>
  chicago-author-date: |2
      <div class="csl-entry">Swanckaert, Bianca, Olivier Verschatse, Eva Loccufier, Klaartje De Buysser, Lode Daelemans, and Karen De Clerck. 2023. “Chemical and Structural Induced Ductile-to-Brittle Transition in Electrospun Silica Nanofiber Membranes.” <i>CERAMICS INTERNATIONAL</i> 49 (20): 33305–15. https://doi.org/10.1016/j.ceramint.2023.08.041.</div>
  fwo: |2
      <div class="csl-entry">Swanckaert, Bianca, Olivier Verschatse, Eva Loccufier, Klaartje De Buysser, Lode Daelemans, and Karen De Clerck. 2023. “Chemical and Structural Induced Ductile-to-Brittle Transition in Electrospun Silica Nanofiber Membranes.” <i>CERAMICS INTERNATIONAL</i> 49 (20): 33305–33315. doi:10.1016/j.ceramint.2023.08.041.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. Swanckaert, O. Verschatse, E. Loccufier, K. De Buysser, L. Daelemans, and K. De Clerck, “Chemical and structural induced ductile-to-brittle transition in electrospun silica nanofiber membranes,” <i>CERAMICS INTERNATIONAL</i>, vol. 49, no. 20, pp. 33305–33315, 2023.</div>
      </div>
  mla: |2
      <div class="csl-entry">Swanckaert, Bianca, et al. “Chemical and Structural Induced Ductile-to-Brittle Transition in Electrospun Silica Nanofiber Membranes.” <i>CERAMICS INTERNATIONAL</i>, vol. 49, no. 20, 2023, pp. 33305–15, doi:10.1016/j.ceramint.2023.08.041.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Swanckaert B, Verschatse O, Loccufier E, De Buysser K, Daelemans L, De Clerck K. Chemical and structural induced ductile-to-brittle transition in electrospun silica nanofiber membranes. CERAMICS INTERNATIONAL. 2023;49(20):33305–15.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2023-08-17 07:18:11
date_updated: 2026-03-31 13:25:56
doi:
- 10.1016/j.ceramint.2023.08.041
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-01H815QS3246S1CHZTW91J8HVX
issn:
- 0272-8842
- 1873-3956
issue: '20'
jcr:
  category: MATERIALS SCIENCE, CERAMICS
  category_decile: 1
  category_quartile: 1
  category_rank: 3/31
  category_vigintile: 2
  eigenfactor: 0.09556
  immediacy_index: 1.4
  impact_factor: 5.1
  impact_factor_5yr: 4.7
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 2
  prev_impact_factor: 5.2
  total_cites: 127305
keyword:
- Materials Chemistry
- Surfaces, Coatings and Films
- Process Chemistry and Technology
- Ceramics and Composites
- Electronic, Optical and Magnetic Materials
- Silica nanofiber membranes
- Electrospinning
- Deformation behavior
- Dynamic
language:
- eng
page:
  first: '33305'
  last: '33315'
parent:
  short_title: Ceram. Int.
  title: CERAMICS INTERNATIONAL
project:
- _id: 3S039119
  abstract: <p>Challenges in clean water availability have risen over the years, and
    especially third world countries are in great need of low-cost water purification
    techniques, such as separation membranes. By implementing functionalised organosilica
    nanofibrous membranes, an affinity-based separation mechanism at low energy-cost
    can be developed that withstands harsh environmental conditions. These membranes
    should have a desirable hydrophobicity to tune the affinity of different solvents
    towards the membrane. Additionally, their mechanical endurance should be optimised
    as to increase their life time. These goals are systematically addressed in this
    project. Organosilica nanofibrous membranes will be produced via electrospinning
    starting from a variety of bis-silane precursors. By implementing different functionalities,
    the wettability towards different solvents can be altered in view of separation
    applications. A thorough study on the behaviour of sol-gel systems will be conducted
    to create a comprehensive understanding of the influence of functionalities on
    the electrospinning process. Additionally, a mechanical study will reveal the
    link between the 3D-structure of the organosilica network and the mechanical behaviour.
    With this fundamental knowledge, it will be possible to develop affinity-based
    separation membranes for water purification. This application will even be extended
    towards solvent separation in view of process intensification of liquid-phase
    CO2 conversion to alcohols.</p>
  end_date: 2023-10-31
  gismo_id: 9cfd7b5f-f96d-11e9-b85e-e128f57a36f9
  iweto_id: 3S039119
  start_date: 2019-11-01
  title: Functionalised nanofibrous organosilica membranes for advanced affinity-based
    separation applications
- _id: BOF/STA/202009/046
  abstract: <p>Every textile material, be it for low-end consumer goods or high-end
    technical products, is exploited for the properties resulting from its multi-scale
    nature (fibres -&gt; yarns -&gt; textiles -&gt; derivatives). Understanding this
    multi-scale nature is thus key to improving this materials. Textiles are, for
    example, well suited for technical applications thanks to their unique combination
    of lightness, flexibility and strength. Yet such applications often require a
    thorough understanding of the mechanical performance, which in itself is quite
    challenging due to the complex microstructure. By following a multiscale analysis,
    combining both experimental and numerical techniques, starting with individual
    fibres and building up till complete textile materials and derivatives such as
    composites, we underpin the micro-macro relationships that govern the mechanical
    behaviour of textiles. This project combines both advanced testing methods with
    in-situ measurement of the deformation mechanisms at microscale, and novel finite
    element modelling tools that allow simulations at the microscale.</p>
  deleted: 1
  end_date: 2025-06-30
  gismo_id: 25182d45-ccf4-11eb-9f0b-e5cd0f711fbd
  iweto_id: BOF/STA/202009/046
  publication_count: 1
  start_date: 2021-07-01
  title: Multi-scale analysis of textile and derived materials
- _id: 01J10219
  abstract: <p>Membrane technology can offer an answer for today’s research challenges
    to solve environmental problems. These membranes are in need of an improved resistance
    to harsh environments. This will further broaden applications such as water recycling
    but will also open up very novel applications in a process intensification of
    CO2 conversion units. Within this project nanofibers are developed for these applications.</p>
  end_date: 2024-07-30
  gismo_id: 1e0c3a2d-9d90-11e9-83f9-d13d95d2d7be
  iweto_id: 01J10219
  start_date: 2019-10-01
  title: Nanofibrous membranes for today’s environmental research questions.
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Chemical and structural induced ductile-to-brittle transition in electrospun
  silica nanofiber membranes
type: journalArticle
volume: '49'
wos_id: '001071928600001'
wos_type: Article
year: '2023'
...
---
_id: 01GRR1T4AEYTVZH7BR3VHVQZ6Y
abstract:
- Textile products are composed of various blends of synthetic or natural polymers.
  Elastane increases the functionality during use phase, but impedes high quality
  recycling. This study investigates the selective chemical dissolution of elastane
  from blended textile. Hansen solubility parameters and COSMO-RS were applied for
  solvent screening. The most recommended biobased solvents were experimentally validated
  with polyester, polyamide, cotton, wool and elastane for which solubility limits
  were determined and hence, their selectivity towards elastane dissolution. A TGA-corrected
  gravimetric method was developed as quantification tool and showed that tetrahydrofurfuryl
  alcohol and ɣ-valerolactone have comparable elastane dissolution capabilities to
  classical solvents (5 mg elastane/g solvent). Polyester/elastane and polyamide/elastane
  blends were subjected to this process as case studies. The LCA study showed that
  this selective solvent-based dissolution process saves 60% CO2-eq./kg textile waste
  compared to incineration. This interdisciplinary work can set the benchmark for
  further developing and upscaling physical/dissolution recycling processes for blended
  textiles.
abstract_full:
- lang: eng
  text: Textile products are composed of various blends of synthetic or natural polymers.
    Elastane increases the functionality during use phase, but impedes high quality
    recycling. This study investigates the selective chemical dissolution of elastane
    from blended textile. Hansen solubility parameters and COSMO-RS were applied for
    solvent screening. The most recommended biobased solvents were experimentally
    validated with polyester, polyamide, cotton, wool and elastane for which solubility
    limits were determined and hence, their selectivity towards elastane dissolution.
    A TGA-corrected gravimetric method was developed as quantification tool and showed
    that tetrahydrofurfuryl alcohol and ɣ-valerolactone have comparable elastane dissolution
    capabilities to classical solvents (5 mg elastane/g solvent). Polyester/elastane
    and polyamide/elastane blends were subjected to this process as case studies.
    The LCA study showed that this selective solvent-based dissolution process saves
    60% CO2-eq./kg textile waste compared to incineration. This interdisciplinary
    work can set the benchmark for further developing and upscaling physical/dissolution
    recycling processes for blended textiles.
affiliation:
- name: Department of Green Chemistry and Technology
  path:
  - ugent_id: UGent
  - ugent_id: LA
  - ugent_id: LA24
  ugent_id: LA24
- name: Department of Applied physics
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW17
  ugent_id: TW17
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Physics and astronomy
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE05
  ugent_id: WE05
article_number: '106903'
article_type: original
author:
- _id: 1D7D45A8-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 1D7D45A8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Kim
  last_name: Phan
  name: Kim Phan
  name_last_first: Phan, Kim
  orcid_id: 0000-0001-8660-5251
  ugent_id:
  - '000090124821'
  - '802002578620'
  - '971260175395'
- _id: 4AE82178-2240-11E3-BD2F-D1D610BDE39D
  affiliation:
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    - ugent_id: LA
    - ugent_id: LA24
    ugent_id: LA24
  biblio_id: 4AE82178-2240-11E3-BD2F-D1D610BDE39D
  first_name: Sibel
  last_name: Ügdüler
  name: Sibel Ügdüler
  name_last_first: Ügdüler, Sibel
  ugent_id:
  - '802002808386'
  - '974939656288'
- _id: ECCBC23C-82C3-11E2-BB4A-B55F10BDE39D
  affiliation:
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    - ugent_id: LA24
    ugent_id: LA24
  biblio_id: ECCBC23C-82C3-11E2-BB4A-B55F10BDE39D
  first_name: Lies
  last_name: Harinck
  name: Lies Harinck
  name_last_first: Harinck, Lies
  ugent_id:
  - '802001417650'
  - '972688684190'
- _id: C08D2C10-CD25-11E5-AEFD-71F0B4D1D7B1
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: C08D2C10-CD25-11E5-AEFD-71F0B4D1D7B1
  first_name: Ruben
  last_name: Denolf
  name: Ruben Denolf
  name_last_first: Denolf, Ruben
  orcid_id: 0000-0002-1271-0128
  ugent_id:
  - '972506839102'
- _id: 60EFF916-4D07-11E5-AC4F-AE11B5D1D7B1
  biblio_id: 60EFF916-4D07-11E5-AC4F-AE11B5D1D7B1
  first_name: Martijn
  last_name: Roosen
  name: Martijn Roosen
  name_last_first: Roosen, Martijn
  orcid_id: 0000-0002-9551-4658
  ugent_id:
  - '974623612003'
- first_name: Galahad
  last_name: O'Rourke
  name: Galahad O'Rourke
  name_last_first: O'Rourke, Galahad
- first_name: Dirk
  last_name: De Vos
  name: Dirk De Vos
  name_last_first: De Vos, Dirk
- _id: F542886E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW17
    ugent_id: TW17
  - path:
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    - ugent_id: WE
    - ugent_id: WE05
    ugent_id: WE05
  biblio_id: F542886E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Veronique
  last_name: Van Speybroeck
  name: Veronique Van Speybroeck
  name_last_first: Van Speybroeck, Veronique
  orcid_id: 0000-0003-2206-178X
  ugent_id:
  - '801001153549'
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  - '976495757166'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: FBC5C354-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA24
    ugent_id: LA24
  biblio_id: FBC5C354-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Steven
  last_name: De Meester
  name: Steven De Meester
  name_last_first: De Meester, Steven
  orcid_id: 0000-0002-5246-3918
  ugent_id:
  - '802000481497'
  - '973680737243'
biblio_id: 01GRR1T4AEYTVZH7BR3VHVQZ6Y
cite:
  apa: |2
      <div class="csl-entry">Phan, K., Ügdüler, S., Harinck, L., Denolf, R., Roosen, M., O’Rourke, G., … De Meester, S. (2023). Analysing the potential of the selective dissolution of elastane from mixed fiber textile waste. <i>RESOURCES CONSERVATION AND RECYCLING</i>, <i>191</i>. https://doi.org/10.1016/j.resconrec.2023.106903</div>
  chicago-author-date: |2
      <div class="csl-entry">Phan, Kim, Sibel Ügdüler, Lies Harinck, Ruben Denolf, Martijn Roosen, Galahad O’Rourke, Dirk De Vos, Veronique Van Speybroeck, Karen De Clerck, and Steven De Meester. 2023. “Analysing the Potential of the Selective Dissolution of Elastane from Mixed Fiber Textile Waste.” <i>RESOURCES CONSERVATION AND RECYCLING</i> 191. https://doi.org/10.1016/j.resconrec.2023.106903.</div>
  fwo: |2
      <div class="csl-entry">Phan, Kim, Sibel Ügdüler, Lies Harinck, Ruben Denolf, Martijn Roosen, Galahad O’Rourke, Dirk De Vos, Veronique Van Speybroeck, Karen De Clerck, and Steven De Meester. 2023. “Analysing the Potential of the Selective Dissolution of Elastane from Mixed Fiber Textile Waste.” <i>RESOURCES CONSERVATION AND RECYCLING</i> 191. doi:10.1016/j.resconrec.2023.106903.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. Phan <i>et al.</i>, “Analysing the potential of the selective dissolution of elastane from mixed fiber textile waste,” <i>RESOURCES CONSERVATION AND RECYCLING</i>, vol. 191, 2023.</div>
      </div>
  mla: |2
      <div class="csl-entry">Phan, Kim, et al. “Analysing the Potential of the Selective Dissolution of Elastane from Mixed Fiber Textile Waste.” <i>RESOURCES CONSERVATION AND RECYCLING</i>, vol. 191, 2023, doi:10.1016/j.resconrec.2023.106903.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Phan K, Ügdüler S, Harinck L, Denolf R, Roosen M, O’Rourke G, et al. Analysing the potential of the selective dissolution of elastane from mixed fiber textile waste. RESOURCES CONSERVATION AND RECYCLING. 2023;191.</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution-NonCommercial-NoDerivatives 4.0
  International Public License (CC BY-NC-ND 4.0)
created_by:
  _id: 60EFF916-4D07-11E5-AC4F-AE11B5D1D7B1
  biblio_id: 60EFF916-4D07-11E5-AC4F-AE11B5D1D7B1
  first_name: Martijn
  last_name: Roosen
  name: Martijn Roosen
  name_last_first: Roosen, Martijn
  orcid_id: 0000-0002-9551-4658
  ugent_id:
  - '974623612003'
date_created: 2023-02-08 08:20:56
date_updated: 2026-03-31 13:19:32
doi:
- 10.1016/j.resconrec.2023.106903
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-01GRR1T4AEYTVZH7BR3VHVQZ6Y
issn:
- 0921-3449
- 1879-0658
jcr:
  category: ENVIRONMENTAL SCIENCES
  category_decile: 1
  category_quartile: 1
  category_rank: 15/358
  category_vigintile: 1
  eigenfactor: 0.04811
  immediacy_index: 1.6
  impact_factor: 11.2
  impact_factor_5yr: 12.1
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 1
  prev_impact_factor: 13.2
  total_cites: 47249
keyword:
- Textile
- Recycling
- Polymers
- COSMO-RS
- TGA
- solvent
- IONIC LIQUIDS
- SOLUBILITY PARAMETERS
- CELLULOSE
- FABRICS
language:
- eng
page:
  count: '15'
parent:
  short_title: Resour. Conserv. Recycl.
  title: RESOURCES CONSERVATION AND RECYCLING
project:
- _id: 179W04520
  abstract: |-
    <p>An important sector for plastics is the textile sector, where recycling rates are currently lower than in other plastic sectors such as packaging. As many textile streams are blends of polymers, mechanical recycling is not obvious. Alternatively, textiles can be recycled via solvent-based technologies that allow separation of the various fibres and removal of additives. This leads to pure polymers that can immediately be used as new raw materials. In this project, we test different green solvents to selectively dissolve fibres from mixed textile streams. We also test the quality of the separated and purified polymers in new applications.</p>
    <p>&#160;</p>
  end_date: 2023-06-30
  gismo_id: f1995a99-c029-433b-a853-b5a442d60431
  iweto_id: 179W04520
  start_date: 2021-01-01
  title: 'ReMixT: Separation and recycling of mixed textiles'
- _id: 179O01221
  abstract: <p>The MULTILAYER project is looking for innovative solutions to achieve
    carbon circularity for multi-layer plastics, especially packaging film waste.
    A balanced combination of recycling by dissolution, delamination, chemical cleavage
    and catalysis is used to recover the most important or valuable components from
    three selected film types.</p>
  end_date: 2022-12-31
  gismo_id: b51528d2-9881-4147-a897-b706edd5f113
  iweto_id: 179O01221
  start_date: 2021-03-01
  title: A combined dissolution, delamination and catalysis approach to upcycling
    of multilayered packaging materials
- _id: HPC-UGent
  abstract: The central High Performance Computing infrastructure of Ghent University
    is part of the Flemish Supercomputer Center and is built and maintained with the
    support of Ghent University, the Hercules Foundation and the department of Economy,
    Science and Innovation of the Flemish Government. Thanks to this support, use
    of the infrastructure is free of charge for researchers of Ghent University.
  iweto_id: HPC-UGent
  publication_count: 144
  start_date: 01-JAN-08
  title: 'HPC-UGent: the central High Performance Computing infrastructure of Ghent
    University'
  ugent_id:
  - '801001384834'
  - '801001682908'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Chemistry
title: Analysing the potential of the selective dissolution of elastane from mixed
  fiber textile waste
type: journalArticle
volume: '191'
wos_id: '000995487300001'
wos_type: Article
year: '2023'
...
---
_id: 01GS5ZAXPVP643BB9BXQQ6BMWH
affiliation:
- name: Department of Translational Physiology, Infectiology and Public Health
  path:
  - ugent_id: UGent
  - ugent_id: DI
  - ugent_id: DI04
  ugent_id: DI04
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
author:
- _id: A9239AE6-15AD-11E3-B408-FEAE10BDE39D
  affiliation:
  - name: Ghent University Hospital
    path:
    - ugent_id: UZGent
    ugent_id: UZGent
  biblio_id: A9239AE6-15AD-11E3-B408-FEAE10BDE39D
  credit_role:
  - first_author
  first_name: Margot
  last_name: De Spiegeleer
  name: Margot De Spiegeleer
  name_last_first: De Spiegeleer, Margot
  orcid_id: 0000-0002-1088-7245
  ugent_id:
  - '000130754582'
  - '974472127810'
- _id: CFD1E364-6721-11E6-9459-1DCEB4D1D7B1
  affiliation:
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    - ugent_id: DI
    - ugent_id: DI04
    ugent_id: DI04
  biblio_id: CFD1E364-6721-11E6-9459-1DCEB4D1D7B1
  credit_role:
  - data_curation
  - methodology
  - visualization
  first_name: Vera
  last_name: Plekhova
  name: Vera Plekhova
  name_last_first: Plekhova, Vera
  orcid_id: 0000-0002-6109-7032
  ugent_id:
  - '802002994912'
  - '977915818675'
- _id: 137E2946-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 137E2946-F0EE-11E1-A9DE-61C894A0A6B4
  credit_role:
  - data_curation
  - visualization
  - writing_review_editing
  first_name: Marilyn
  last_name: De Graeve
  name: Marilyn De Graeve
  name_last_first: De Graeve, Marilyn
  orcid_id: 0000-0001-6916-401X
  ugent_id:
  - '971668236009'
- first_name: Inge
  last_name: Gies
  name: Inge Gies
  name_last_first: Gies, Inge
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - funding_acquisition
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F77AFAE4-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: DI
    - ugent_id: DI04
    ugent_id: DI04
  biblio_id: F77AFAE4-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - last_author
  first_name: Lynn
  last_name: Vanhaecke
  name: Lynn Vanhaecke
  name_last_first: Vanhaecke, Lynn
  orcid_id: 0000-0003-0400-2188
  ugent_id:
  - '801001950969'
  - '976961995245'
biblio_id: 01GS5ZAXPVP643BB9BXQQ6BMWH
cite:
  apa: |2
      <div class="csl-entry">De Spiegeleer, M., Plekhova, V., De Graeve, M., Gies, I., De Clerck, K., &#38; Vanhaecke, L. (2023). Point-of-care applicable metabotyping using MetaSAMP®-LA-REIMS : Metabolomics research on Early Metabolic Disease (MetaBEAse) cohort. <i>BeSOMS-BASO Winter Symposium 2023, Abstracts</i>. Presented at the BeSOMS-BASO Winter Symposium 2023, Waerboom, Groot-Bijgaarden.</div>
  bof: |2
      <div class="csl-entry">De Spiegeleer, Margot, Vera Plekhova, Marilyn De Graeve, Inge Gies, Karen De Clerck, and Lynn Vanhaecke. 2023. “Point-of-Care Applicable Metabotyping Using MetaSAMP®-LA-REIMS : Metabolomics Research on Early Metabolic Disease (MetaBEAse) Cohort.” In <i>BeSOMS-BASO Winter Symposium 2023, Abstracts</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Spiegeleer, Margot, Vera Plekhova, Marilyn De Graeve, Inge Gies, Karen De Clerck, and Lynn Vanhaecke. 2023. “Point-of-Care Applicable Metabotyping Using MetaSAMP®-LA-REIMS : Metabolomics Research on Early Metabolic Disease (MetaBEAse) Cohort.” In <i>BeSOMS-BASO Winter Symposium 2023, Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">De Spiegeleer, Margot, Vera Plekhova, Marilyn De Graeve, Inge Gies, Karen De Clerck, and Lynn Vanhaecke. 2023. “Point-of-Care Applicable Metabotyping Using MetaSAMP®-LA-REIMS : Metabolomics Research on Early Metabolic Disease (MetaBEAse) Cohort.” In <i>BeSOMS-BASO Winter Symposium 2023, Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">M. De Spiegeleer, V. Plekhova, M. De Graeve, I. Gies, K. De Clerck, and L. Vanhaecke, “Point-of-care applicable metabotyping using MetaSAMP®-LA-REIMS : Metabolomics research on Early Metabolic Disease (MetaBEAse) cohort,” in <i>BeSOMS-BASO Winter Symposium 2023, Abstracts</i>, Waerboom, Groot-Bijgaarden, 2023.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Spiegeleer, Margot, et al. “Point-of-Care Applicable Metabotyping Using MetaSAMP®-LA-REIMS : Metabolomics Research on Early Metabolic Disease (MetaBEAse) Cohort.” <i>BeSOMS-BASO Winter Symposium 2023, Abstracts</i>, 2023.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Spiegeleer M, Plekhova V, De Graeve M, Gies I, De Clerck K, Vanhaecke L. Point-of-care applicable metabotyping using MetaSAMP®-LA-REIMS : Metabolomics research on Early Metabolic Disease (MetaBEAse) cohort. In: BeSOMS-BASO Winter Symposium 2023, Abstracts. 2023.</div>
       </div>
classification: C3
conference:
  end_date: 2023-02-03
  location: Waerboom, Groot-Bijgaarden
  name: BeSOMS-BASO Winter Symposium 2023
  organizer: BASO-BESOMS
  start_date: 2023-02-03
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
  _id: A9239AE6-15AD-11E3-B408-FEAE10BDE39D
  affiliation:
  - name: Ghent University Hospital
    path:
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    ugent_id: UZGent
  biblio_id: A9239AE6-15AD-11E3-B408-FEAE10BDE39D
  first_name: Margot
  last_name: De Spiegeleer
  name: Margot De Spiegeleer
  name_last_first: De Spiegeleer, Margot
  orcid_id: 0000-0002-1088-7245
  ugent_id:
  - '000130754582'
  - '974472127810'
date_created: 2023-02-13 18:07:03
date_updated: 2026-03-31 08:18:25
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-01GS5ZAXPVP643BB9BXQQ6BMWH
jcr: {}
language:
- eng
page:
  count: '2'
parent:
  title: BeSOMS-BASO Winter Symposium 2023, Abstracts
publication_status: unpublished
publication_status_sort: 0
status: public
subject:
- Medicine and Health Sciences
- Chemistry
- Technology and Engineering
- Biology and Life Sciences
title: 'Point-of-care applicable metabotyping using MetaSAMP®-LA-REIMS : Metabolomics
  research on Early Metabolic Disease (MetaBEAse) cohort'
type: conference
year: '2023'
...
---
_id: 01HV9GYYHNTRVD30F15P8K01F5
abstract:
- Global food waste is a cross-cutting issue that ranges from agricultural production
  to storage in households and leads to the loss of one-third of produced food products.
  Although the currently depicted static expiry, best-by, and due-by dates provide
  accurate information on when to consume the food product, these time indications
  are only valid under ideal storage conditions. Therefore, there is a stringent need
  for easy-to-use sensor applications that allow continuous monitoring of food freshness.
  This work showcases a straightforward and effortless approach to obtain highly porous
  cross-linked water-stable and reactive hydrophilic nanofiber membranes based on
  electrospinning of poly(2-isoproprenyl-2-oxazoline) (PiPOx) with succinic acid as
  the cross-linker. Subsequent thermal treatment of the produced succinic acid-containing
  PiPOx nanofiber networks generated sufficient cross-linking to preserve the fibrous
  morphology in an aqueous environment while retaining the hydrophilic character of
  the scaffold. The remaining 2-oxazoline side chains of PiPOx are stable at room
  temperature but provide reactivity for post-cross-linking modification with carboxylic
  acid-containing compounds, as exploited here for continuous food monitoring by incorporating
  acid-functionalized dyes to yield a colorimetric sensor for biogenic food spoilage
  indicators, such as thiol- and amine-containing small molecules.
abstract_full:
- lang: eng
  text: Global food waste is a cross-cutting issue that ranges from agricultural production
    to storage in households and leads to the loss of one-third of produced food products.
    Although the currently depicted static expiry, best-by, and due-by dates provide
    accurate information on when to consume the food product, these time indications
    are only valid under ideal storage conditions. Therefore, there is a stringent
    need for easy-to-use sensor applications that allow continuous monitoring of food
    freshness. This work showcases a straightforward and effortless approach to obtain
    highly porous cross-linked water-stable and reactive hydrophilic nanofiber membranes
    based on electrospinning of poly(2-isoproprenyl-2-oxazoline) (PiPOx) with succinic
    acid as the cross-linker. Subsequent thermal treatment of the produced succinic
    acid-containing PiPOx nanofiber networks generated sufficient cross-linking to
    preserve the fibrous morphology in an aqueous environment while retaining the
    hydrophilic character of the scaffold. The remaining 2-oxazoline side chains of
    PiPOx are stable at room temperature but provide reactivity for post-cross-linking
    modification with carboxylic acid-containing compounds, as exploited here for
    continuous food monitoring by incorporating acid-functionalized dyes to yield
    a colorimetric sensor for biogenic food spoilage indicators, such as thiol- and
    amine-containing small molecules.
affiliation:
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_type: original
author:
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  first_name: Ronald
  last_name: Merckx
  name: Ronald Merckx
  name_last_first: Merckx, Ronald
  orcid_id: 0000-0002-2867-0888
  ugent_id:
  - '974260040744'
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  first_name: Jana
  last_name: Becelaere
  name: Jana Becelaere
  name_last_first: Becelaere, Jana
  orcid_id: 0000-0001-5024-3308
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  - '977861082888'
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  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
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    ugent_id: TW11
  biblio_id: 4ECF3BC6-5675-11E5-B03A-F334B5D1D7B1
  first_name: Olmo
  last_name: Frateur
  name: Olmo Frateur
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  affiliation:
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    path:
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  biblio_id: 4a1b4eed-f3dd-11eb-bc25-e810a8c5848d
  first_name: Meike
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  name: Meike Leiske
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  first_name: Daniël
  last_name: Peeters
  name: Daniël Peeters
  name_last_first: Peeters, Daniël
  ugent_id:
  - '000160003924'
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  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: E4D526DC-DE2E-11E8-B57E-A3685607D3EF
  first_name: Adriana
  last_name: Jerca
  name: Adriana Jerca
  name_last_first: Jerca, Adriana
  ugent_id:
  - '802003032904'
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- _id: 88FDC734-E001-11E5-A52B-C053B5D1D7B1
  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: 88FDC734-E001-11E5-A52B-C053B5D1D7B1
  first_name: Valentin-Victor
  last_name: Jerca
  name: Valentin-Victor Jerca
  name_last_first: Jerca, Valentin-Victor
  ugent_id:
  - '802002296007'
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- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
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    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
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    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
biblio_id: 01HV9GYYHNTRVD30F15P8K01F5
cite:
  apa: |2
      <div class="csl-entry">Merckx, R., Becelaere, J., Schoolaert, E., Frateur, O., Leiske, M., Peeters, D., … Hoogenboom, R. (2023). Poly(2-isoproprenyl-2-oxazoline)-based reactive hydrophilic cross-linked nanofiber networks as the basis for colorimetric continuous meat freshness monitoring sensors. <i>CHEMISTRY OF MATERIALS</i>, <i>35</i>(17), 7079–7093. https://doi.org/10.1021/acs.chemmater.3c01355</div>
  bof: |2-
      <div class="csl-entry">Merckx, Ronald, Jana Becelaere, Ella Schoolaert, Olmo Frateur, Meike Leiske, Daniël Peeters, Adriana Jerca, Valentin-Victor Jerca, Karen De Clerck, and Richard Hoogenboom. 2023. “Poly(2-Isoproprenyl-2-Oxazoline)-Based Reactive Hydrophilic Cross-Linked Nanofiber Networks as the Basis for Colorimetric Continuous Meat Freshness Monitoring Sensors.” <i>CHEMISTRY OF MATERIALS</i> 35 (17): 7079–7093. doi:10.1021/acs.chemmater.3c01355.</div>
    <div><i>Impact factor: 7.2, category: MATERIALS SCIENCE, MULTIDISCIPLINARY, rank: 85/438, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Merckx, Ronald, Jana Becelaere, Ella Schoolaert, Olmo Frateur, Meike Leiske, Daniël Peeters, Adriana Jerca, Valentin-Victor Jerca, Karen De Clerck, and Richard Hoogenboom. 2023. “Poly(2-Isoproprenyl-2-Oxazoline)-Based Reactive Hydrophilic Cross-Linked Nanofiber Networks as the Basis for Colorimetric Continuous Meat Freshness Monitoring Sensors.” <i>CHEMISTRY OF MATERIALS</i> 35 (17): 7079–93. https://doi.org/10.1021/acs.chemmater.3c01355.</div>
  fwo: |2
      <div class="csl-entry">Merckx, Ronald, Jana Becelaere, Ella Schoolaert, Olmo Frateur, Meike Leiske, Daniël Peeters, Adriana Jerca, Valentin-Victor Jerca, Karen De Clerck, and Richard Hoogenboom. 2023. “Poly(2-Isoproprenyl-2-Oxazoline)-Based Reactive Hydrophilic Cross-Linked Nanofiber Networks as the Basis for Colorimetric Continuous Meat Freshness Monitoring Sensors.” <i>CHEMISTRY OF MATERIALS</i> 35 (17): 7079–7093. doi:10.1021/acs.chemmater.3c01355.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">R. Merckx <i>et al.</i>, “Poly(2-isoproprenyl-2-oxazoline)-based reactive hydrophilic cross-linked nanofiber networks as the basis for colorimetric continuous meat freshness monitoring sensors,” <i>CHEMISTRY OF MATERIALS</i>, vol. 35, no. 17, pp. 7079–7093, 2023.</div>
      </div>
  mla: |2
      <div class="csl-entry">Merckx, Ronald, et al. “Poly(2-Isoproprenyl-2-Oxazoline)-Based Reactive Hydrophilic Cross-Linked Nanofiber Networks as the Basis for Colorimetric Continuous Meat Freshness Monitoring Sensors.” <i>CHEMISTRY OF MATERIALS</i>, vol. 35, no. 17, 2023, pp. 7079–93, doi:10.1021/acs.chemmater.3c01355.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Merckx R, Becelaere J, Schoolaert E, Frateur O, Leiske M, Peeters D, et al. Poly(2-isoproprenyl-2-oxazoline)-based reactive hydrophilic cross-linked nanofiber networks as the basis for colorimetric continuous meat freshness monitoring sensors. CHEMISTRY OF MATERIALS. 2023;35(17):7079–93.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
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    ugent_id: WE07
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  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
date_created: 2024-04-12 16:06:30
date_updated: 2026-03-31 13:47:21
doi:
- 10.1021/acs.chemmater.3c01355
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handle: http://hdl.handle.net/1854/LU-01HV9GYYHNTRVD30F15P8K01F5
issn:
- 0897-4756
- 1520-5002
issue: '17'
jcr:
  category: MATERIALS SCIENCE, MULTIDISCIPLINARY
  category_decile: 3
  category_quartile: 1
  category_rank: 85/438
  category_vigintile: 5
  immediacy_index: 1.5
  impact_factor: 7.2
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  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 4
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  total_cites: 113115
keyword:
- ELECTROSPUN NANOFIBERS
- POLYMERIC NANOFIBERS
- BENDING INSTABILITY
- TIME-TEMPERATURE
- AQUEOUS-SOLUTION
- BIOGENIC-AMINES
- LINKING
- QUALITY
- PH
- POLY(2-ISOPROPENYL-2-OXAZOLINE)
language:
- eng
page:
  first: '7079'
  last: '7093'
parent:
  short_title: Chem. Mat.
  title: CHEMISTRY OF MATERIALS
project:
- _id: 3S013517
  abstract: <p>Nanofibers are fibers with a diameter that is 1000 times smaller than
    a human hair. This makes<br /> nanofiber membranes very light and porous, making
    them ideally suited for sensor applications. By<br /> adding an indicator dye,
    that is a dye that changes color or fluorescence in reponse to a specific<br />
    chemical substance, to the nanofiber membrane, an ultrasensitive optical, chemical
    sensor is<br /> created. However, to design an optimal sensor, it is important
    to understand how the synthesis<br /> and production of the nanofibers influence
    the behavior and performance of the sensor.<br /> Therefore, in this project,
    different poly(2-oxazoline)s, which are very versatile polymers with<br /> tunable
    water solubility, will be covalently linked to pyrene, i.e. a fluorescent dye
    that is used for<br /> visualization. These functionalized polymers will then
    be processed into nanofibers from water,<br /> which is ecologically more friendly
    than the current nanofiber production techniques. The<br /> microstructure and
    behavior of the nanofibers and, thus, the sensor performance, can now be<br />
    analyzed as pyrene will function as a probe in visualization techniques. The produced
    nanofibrous<br /> sensors can be used in many applications, such as the detection
    of explosives and metal cations.<br /> Moreover, the pyrene-system will be used
    as a model to efficiently design optimal, optical sensors<br /> that change color
    in response to pH-changes. These sensors are suited for many applications such<br
    /> as wound healing, safety equipment and food inspection.</p>
  end_date: 2021-03-31
  gismo_id: 4c4bb546-8208-11e9-8dbc-f3943d565b0b
  iweto_id: 3S013517
  publication_count: 1
  start_date: 2017-01-01
  title: |-
    Development of easy read-out, ultrasensitive and reversible optical
    nanofibrous sensors based on waterborne electrospinning of dyefunctionalized
    copoly(2-oxazoline)s.
- _id: 3S000718
  abstract: <p>Today, over 60%, of all newly developed drugs are discarded due to
    low water-solubility. This low water-solubility is due to both the chemical makeup
    and the high degree of crystallinity of the drug. The current formulation techniques
    to produce tablets today cannot circumvent this problem, which means that the
    produced product cannot be absorbed by our body and will, hence, have a very low
    efficacy. With solvent electrospinning as a new formulation technique it is aimed
    to homogeneously disperse the drug in a polymer matrix. In first proof of principle
    experiments on the drug flubendazole it has already been shown that this can prevent
    crystallization, which enhances the solubility of the drug inside aqueous environments,
    such as the body. In other words, by formulating highly crystalline drugs with
    low water-solubility via solvent electrospinning, the drug's bioavailability is
    increased. However, this phenomenon is not fully understood and, hence, far from
    optimized and for sure not yet widely applicable. Thus, the influence of different
    process parameters on the final drug delivery should be studied. Also different
    polymers and different drugs should be examined. In this project, these topics
    will be dealt with and finally the formulation of highly crystalline drugs that
    are insoluble in aqueous environments will be made viable. The technique will
    be well understood and optimized in order to design new polymer-drug systems that
    increase the bioavailability of the drug.</p>
  end_date: 2022-12-31
  gismo_id: d89c7f90-be65-11e9-ace9-8bf558aeac68
  iweto_id: 3S000718
  start_date: 2018-01-01
  title: |-
    Solvent electrospinning nanofibers as a novel material for improved
    polymer-API solid dispersions.
- _id: 3S012019
  abstract: |-
    <p>This proposal addresses one of the most important challenges of our society the food loss and food waste around the globe. The main sector contributing to food waste are the consumers. Most consumers mistakenly believe that expiration dates on food indicate how safe the food is to consume, however these dates are not related to the risk of food poisoning or foodborne illness. These dates solely indicate freshness used by manufacturers to convey when the product is at its peak. Although most food is still edible after the expiration date, it is disposed prematurely. In addition, most of the household food is discarded even before the expiration date is reached, due to an uncertainty of its freshness. Within this project a sensor will be designed to provide an easy-to-read, objective measurement on food edibility. The inedibility of food originates from the growth of bacteria. These microorganisms produce volatile organic compounds (VOCs) resulting in a foul odour. The sensor will consist of organic dyes placed on polymer nanofibers and when the threshold is exceeded the sensor will change its color indicating that the organic compounds in the food are exceeding the predetermined limits.



    </p>
  end_date: 2022-12-31
  gismo_id: 4b38d931-60d8-11e9-aa53-555acf89d448
  iweto_id: 3S012019
  start_date: 2019-01-01
  title: 'How polymeric sensors can prevent food waste: expiration date reinvented.'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Chemistry
- Agriculture and Food Sciences
title: Poly(2-isoproprenyl-2-oxazoline)-based reactive hydrophilic cross-linked nanofiber
  networks as the basis for colorimetric continuous meat freshness monitoring sensors
type: journalArticle
volume: '35'
wos_id: '001178992000001'
wos_type: Article
year: '2023'
...
---
_id: '8768522'
abstract:
- An important challenge in the valorization of CO2 and H2 into fuels is the development
  of a stable, reusable and easy to handle heterogeneous catalyst. Here, a silica
  nanofibrous membrane is investigated as carrier for Ru nanoparticles, themselves
  encapsulated inside the metal organic framework (MOF) Cr-MIL-101. The catalytic
  membrane is investigated for the Sabatier methanation reaction. The direct electrospinning
  of a tetraorthosilicate (TEOS) sol results in a highly thermal resistant silica
  nanofibrous structure (up to 1100 degrees C) with pores between the fibers in the
  mu m-range, allowing a high gas throughput with low pressure requirements. A straightforward
  dip-coating procedure of the carrier was used to obtain a Ru@MIL-101 functionalized
  silica nanofibrous veil, avoiding Ru clustering. The obtained catalytic membrane
  exhibited an apparent turnover frequency of 3257 h-1 at 250 degrees C. This system
  therefore paves the way towards structured reactors for efficient CO2 hydrogenation
  processes.
abstract_full:
- lang: eng
  text: An important challenge in the valorization of CO2 and H2 into fuels is the
    development of a stable, reusable and easy to handle heterogeneous catalyst. Here,
    a silica nanofibrous membrane is investigated as carrier for Ru nanoparticles,
    themselves encapsulated inside the metal organic framework (MOF) Cr-MIL-101. The
    catalytic membrane is investigated for the Sabatier methanation reaction. The
    direct electrospinning of a tetraorthosilicate (TEOS) sol results in a highly
    thermal resistant silica nanofibrous structure (up to 1100 degrees C) with pores
    between the fibers in the mu m-range, allowing a high gas throughput with low
    pressure requirements. A straightforward dip-coating procedure of the carrier
    was used to obtain a Ru@MIL-101 functionalized silica nanofibrous veil, avoiding
    Ru clustering. The obtained catalytic membrane exhibited an apparent turnover
    frequency of 3257 h-1 at 250 degrees C. This system therefore paves the way towards
    structured reactors for efficient CO2 hydrogenation processes.
additional_info: The first two authors contributed equally
affiliation:
- name: Department of Chemistry
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  - ugent_id: WE
  - ugent_id: WE06
  ugent_id: WE06
- name: Department of Materials, Textiles and Chemical Engineering
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  ugent_id: TW11
article_number: '121972'
article_type: original
author:
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  - path:
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    - ugent_id: TW11
    ugent_id: TW11
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  last_name: Loccufier
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  - '802002671374'
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- _id: 166364E2-E363-11E2-A6ED-42CB10BDE39D
  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: 166364E2-E363-11E2-A6ED-42CB10BDE39D
  credit_role:
  - first_author
  first_name: Geert
  last_name: Watson
  name: Geert Watson
  name_last_first: Watson, Geert
  orcid_id: 0000-0002-2324-4521
  ugent_id:
  - '979564449873'
- first_name: Yingrui
  last_name: Zhao
  name: Yingrui Zhao
  name_last_first: Zhao, Yingrui
- first_name: Maria
  last_name: Meledina
  name: Maria Meledina
  name_last_first: Meledina, Maria
- _id: 1664D8CC-E363-11E2-A6ED-42CB10BDE39D
  biblio_id: 1664D8CC-E363-11E2-A6ED-42CB10BDE39D
  first_name: Robbe
  last_name: Denis
  name: Robbe Denis
  name_last_first: Denis, Robbe
  ugent_id:
  - '000130097006'
  - '975924966831'
- _id: 04EA0726-6308-11E5-9D17-FB13B5D1D7B1
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 04EA0726-6308-11E5-9D17-FB13B5D1D7B1
  first_name: Parviz
  last_name: Gohari Derakhshandeh
  name: Parviz Gohari Derakhshandeh
  name_last_first: Gohari Derakhshandeh, Parviz
  orcid_id: 0000-0001-9655-6019
  ugent_id:
  - '979103026230'
- _id: F80C8D06-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: WE06
  biblio_id: F80C8D06-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - conceptualization
  - resources
  - supervision
  - writing_review_editing
  first_name: Pascal
  last_name: Van Der Voort
  name: Pascal Van Der Voort
  name_last_first: Van Der Voort, Pascal
  orcid_id: 0000-0002-1248-479X
  ugent_id:
  - '801002082830'
  - '978164144941'
- _id: FA948A88-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: TW17
  - path:
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    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA948A88-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: Leus
  name: Karen Leus
  name_last_first: Leus, Karen
  ugent_id:
  - '802000257185'
  - '972695289991'
- first_name: Damien P.
  last_name: Debecker
  name: Damien P. Debecker
  name_last_first: Debecker, Damien P.
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8768522'
cite:
  apa: |2
      <div class="csl-entry">Loccufier, E., Watson, G., Zhao, Y., Meledina, M., Denis, R., Gohari Derakhshandeh, P., … De Clerck, K. (2023). CO2 methanation with Ru@MIL-101 nanoparticles fixated on silica nanofibrous veils as stand-alone structured catalytic carrier. <i>APPLIED CATALYSIS B-ENVIRONMENTAL</i>, <i>320</i>. https://doi.org/10.1016/j.apcatb.2022.121972</div>
  bof: |2-
      <div class="csl-entry">Loccufier, Eva, Geert Watson, Yingrui Zhao, Maria Meledina, Robbe Denis, Parviz Gohari Derakhshandeh, Pascal Van Der Voort, Karen Leus, Damien P. Debecker, Klaartje De Buysser, and Karen De Clerck. 2023. “CO2 Methanation with Ru@MIL-101 Nanoparticles Fixated on Silica Nanofibrous Veils as Stand-Alone Structured Catalytic Carrier.” <i>APPLIED CATALYSIS B-ENVIRONMENTAL</i> 320. doi:10.1016/j.apcatb.2022.121972.</div>
    <div><i>Impact factor: 20.2, category: ENGINEERING, ENVIRONMENTAL, rank: 1/81, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Loccufier, Eva, Geert Watson, Yingrui Zhao, Maria Meledina, Robbe Denis, Parviz Gohari Derakhshandeh, Pascal Van Der Voort, et al. 2023. “CO2 Methanation with Ru@MIL-101 Nanoparticles Fixated on Silica Nanofibrous Veils as Stand-Alone Structured Catalytic Carrier.” <i>APPLIED CATALYSIS B-ENVIRONMENTAL</i> 320. https://doi.org/10.1016/j.apcatb.2022.121972.</div>
  fwo: |2
      <div class="csl-entry">Loccufier, Eva, Geert Watson, Yingrui Zhao, Maria Meledina, Robbe Denis, Parviz Gohari Derakhshandeh, Pascal Van Der Voort, Karen Leus, Damien P. Debecker, Klaartje De Buysser, and Karen De Clerck. 2023. “CO2 Methanation with Ru@MIL-101 Nanoparticles Fixated on Silica Nanofibrous Veils as Stand-Alone Structured Catalytic Carrier.” <i>APPLIED CATALYSIS B-ENVIRONMENTAL</i> 320. doi:10.1016/j.apcatb.2022.121972.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Loccufier <i>et al.</i>, “CO2 methanation with Ru@MIL-101 nanoparticles fixated on silica nanofibrous veils as stand-alone structured catalytic carrier,” <i>APPLIED CATALYSIS B-ENVIRONMENTAL</i>, vol. 320, 2023.</div>
      </div>
  mla: |2
      <div class="csl-entry">Loccufier, Eva, et al. “CO2 Methanation with Ru@MIL-101 Nanoparticles Fixated on Silica Nanofibrous Veils as Stand-Alone Structured Catalytic Carrier.” <i>APPLIED CATALYSIS B-ENVIRONMENTAL</i>, vol. 320, 2023, doi:10.1016/j.apcatb.2022.121972.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Loccufier E, Watson G, Zhao Y, Meledina M, Denis R, Gohari Derakhshandeh P, et al. CO2 methanation with Ru@MIL-101 nanoparticles fixated on silica nanofibrous veils as stand-alone structured catalytic carrier. APPLIED CATALYSIS B-ENVIRONMENTAL. 2023;320.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
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  affiliation:
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    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: F80C8D06-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Pascal
  last_name: Van Der Voort
  name: Pascal Van Der Voort
  name_last_first: Van Der Voort, Pascal
  orcid_id: 0000-0002-1248-479X
  ugent_id:
  - '801002082830'
  - '978164144941'
date_created: 2022-10-02 18:39:25
date_updated: 2026-03-31 13:48:53
doi:
- 10.1016/j.apcatb.2022.121972
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-8768522
issn:
- 0926-3373
- 1873-3883
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  category: ENGINEERING, ENVIRONMENTAL
  category_decile: 1
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  total_cites: 162514
keyword:
- Process Chemistry and Technology
- General Environmental Science
- Catalysis
- Silica nanofibers
- Metal -organic frameworks
- Ruthenium nanoparticles
- Heterogeneous catalysis
- Structured catalyst
- METAL-ORGANIC FRAMEWORKS
- CARBON-DIOXIDE
- RU/TIO2 CATALYSTS
- SABATIER REACTION
- COMPOSITE MEMBRANES
- CERAMIC NANOFIBERS
- MOF
- FABRICATION
- ADSORPTION
- HYDROGENATION
language:
- eng
page:
  count: '11'
parent:
  short_title: Appl. Catal. B-Environ.
  title: APPLIED CATALYSIS B-ENVIRONMENTAL
publication_status: published
publication_status_sort: 2
status: public
subject:
- Chemistry
title: CO2 methanation with Ru@MIL-101 nanoparticles fixated on silica nanofibrous
  veils as stand-alone structured catalytic carrier
type: journalArticle
volume: '320'
wos_id: '000862870500006'
wos_type: Article
year: '2023'
...
---
_id: 01HEMWXV1H78WNWP4ME0QMM0H1
abstract:
- Fermentation processes offer a sustainable way for green organic acid production
  such as lactic acid (LA). However, the recovery and purification of LA from fermentation
  broths is typically very energy demanding. The in-situ recovery of LA via migration
  of its lactate anion through an anion-exchange membrane (AEM), combining electrochemical
  systems with fermentation, offers a viable solution for this. In this work, sustainable
  silica-based nanofiber AEMs were developed with excellent ionic properties and a
  strong selectivity for organic acids. Starting from a tetraethoxysilane/chloropropyltriethoxysilane
  (TEOS/CPTES) sol-gel system, anion conductive nanofiber membranes were obtained
  via the alkylation of the Csingle bondCl moieties on the electrospun nanofibers
  with 1-methylimidazole, resulting in an ion-exchange capacity (IEC) of 1.9 ± 0.3
  mmol g−1. Post-functionalization with octyltriethoxysilane (OTES) resulted in hydrophobic
  porous nanofiber AEMs with excellent separation properties. It was shown that the
  nanofiber AEM had an improved lactate selectivity compared to a commercially dense
  AEM in the presence of (selectivity of 8.8 vs. 1.1) with an energy consumption of
  1.6 kWh kg−1 vs. 3.0 kWh kg−1 for lactate migration, proving its potential as a
  sustainable material for industrial applications.
abstract_full:
- lang: eng
  text: Fermentation processes offer a sustainable way for green organic acid production
    such as lactic acid (LA). However, the recovery and purification of LA from fermentation
    broths is typically very energy demanding. The in-situ recovery of LA via migration
    of its lactate anion through an anion-exchange membrane (AEM), combining electrochemical
    systems with fermentation, offers a viable solution for this. In this work, sustainable
    silica-based nanofiber AEMs were developed with excellent ionic properties and
    a strong selectivity for organic acids. Starting from a tetraethoxysilane/chloropropyltriethoxysilane
    (TEOS/CPTES) sol-gel system, anion conductive nanofiber membranes were obtained
    via the alkylation of the Csingle bondCl moieties on the electrospun nanofibers
    with 1-methylimidazole, resulting in an ion-exchange capacity (IEC) of 1.9 ± 0.3
    mmol g−1. Post-functionalization with octyltriethoxysilane (OTES) resulted in
    hydrophobic porous nanofiber AEMs with excellent separation properties. It was
    shown that the nanofiber AEM had an improved lactate selectivity compared to a
    commercially dense AEM in the presence of (selectivity of 8.8 vs. 1.1) with an
    energy consumption of 1.6 kWh kg−1 vs. 3.0 kWh kg−1 for lactate migration, proving
    its potential as a sustainable material for industrial applications.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE06
  ugent_id: WE06
- name: Department of Biotechnology
  path:
  - ugent_id: UGent
  - ugent_id: LA
  - ugent_id: LA25
  ugent_id: LA25
article_number: e00758
article_type: original
author:
- _id: 9DBE7436-0234-11E4-8A54-7BF54B2F559A
  biblio_id: 9DBE7436-0234-11E4-8A54-7BF54B2F559A
  first_name: Bianca
  last_name: Swanckaert
  name: Bianca Swanckaert
  name_last_first: Swanckaert, Bianca
  orcid_id: 0000-0001-6036-6512
  ugent_id:
  - '978889457589'
- _id: 895557E4-6104-11E7-83C3-70DDAD28A064
  biblio_id: 895557E4-6104-11E7-83C3-70DDAD28A064
  first_name: Nele
  last_name: Vande Velde
  name: Nele Vande Velde
  name_last_first: Vande Velde, Nele
  ugent_id:
  - '975423503709'
- _id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  first_name: Eva
  last_name: Loccufier
  name: Eva Loccufier
  name_last_first: Loccufier, Eva
  orcid_id: 0000-0001-7045-2721
  ugent_id:
  - '802002671374'
  - '974161061035'
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: 8EA488C6-C5C8-11E8-8987-A2685607D3EF
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA25
    ugent_id: LA25
  biblio_id: 8EA488C6-C5C8-11E8-8987-A2685607D3EF
  first_name: Luiza
  last_name: Bonin
  name: Luiza Bonin
  name_last_first: Bonin, Luiza
  orcid_id: 0000-0001-7123-0012
  ugent_id:
  - '802002939944'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01HEMWXV1H78WNWP4ME0QMM0H1
cite:
  apa: |2
      <div class="csl-entry">Swanckaert, B., Vande Velde, N., Loccufier, E., De Buysser, K., Bonin, L., &#38; De Clerck, K. (2023). High capacity, silica-based anion-exchange nanofiber membranes for the selective recovery of lactic acid. <i>SUSTAINABLE MATERIALS AND TECHNOLOGIES</i>, <i>38</i>. https://doi.org/10.1016/j.susmat.2023.e00758</div>
  bof: |2-
      <div class="csl-entry">Swanckaert, Bianca, Nele Vande Velde, Eva Loccufier, Klaartje De Buysser, Luiza Bonin, and Karen De Clerck. 2023. “High Capacity, Silica-Based Anion-Exchange Nanofiber Membranes for the Selective Recovery of Lactic Acid.” <i>SUSTAINABLE MATERIALS AND TECHNOLOGIES</i> 38. doi:10.1016/j.susmat.2023.e00758.</div>
    <div><i>Impact factor: 8.6, category: MATERIALS SCIENCE, MULTIDISCIPLINARY, rank: 64/438, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Swanckaert, Bianca, Nele Vande Velde, Eva Loccufier, Klaartje De Buysser, Luiza Bonin, and Karen De Clerck. 2023. “High Capacity, Silica-Based Anion-Exchange Nanofiber Membranes for the Selective Recovery of Lactic Acid.” <i>SUSTAINABLE MATERIALS AND TECHNOLOGIES</i> 38. https://doi.org/10.1016/j.susmat.2023.e00758.</div>
  fwo: |2
      <div class="csl-entry">Swanckaert, Bianca, Nele Vande Velde, Eva Loccufier, Klaartje De Buysser, Luiza Bonin, and Karen De Clerck. 2023. “High Capacity, Silica-Based Anion-Exchange Nanofiber Membranes for the Selective Recovery of Lactic Acid.” <i>SUSTAINABLE MATERIALS AND TECHNOLOGIES</i> 38. doi:10.1016/j.susmat.2023.e00758.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. Swanckaert, N. Vande Velde, E. Loccufier, K. De Buysser, L. Bonin, and K. De Clerck, “High capacity, silica-based anion-exchange nanofiber membranes for the selective recovery of lactic acid,” <i>SUSTAINABLE MATERIALS AND TECHNOLOGIES</i>, vol. 38, 2023.</div>
      </div>
  mla: |2
      <div class="csl-entry">Swanckaert, Bianca, et al. “High Capacity, Silica-Based Anion-Exchange Nanofiber Membranes for the Selective Recovery of Lactic Acid.” <i>SUSTAINABLE MATERIALS AND TECHNOLOGIES</i>, vol. 38, Elsevier BV, 2023, doi:10.1016/j.susmat.2023.e00758.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Swanckaert B, Vande Velde N, Loccufier E, De Buysser K, Bonin L, De Clerck K. High capacity, silica-based anion-exchange nanofiber membranes for the selective recovery of lactic acid. SUSTAINABLE MATERIALS AND TECHNOLOGIES. 2023;38.</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution-NonCommercial-NoDerivatives 4.0
  International Public License (CC BY-NC-ND 4.0)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
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  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2023-11-07 12:43:12
date_updated: 2026-03-31 13:50:42
doi:
- 10.1016/j.susmat.2023.e00758
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handle: http://hdl.handle.net/1854/LU-01HEMWXV1H78WNWP4ME0QMM0H1
issn:
- 2214-9937
jcr:
  category: MATERIALS SCIENCE, MULTIDISCIPLINARY
  category_decile: 2
  category_quartile: 1
  category_rank: 64/438
  category_vigintile: 3
  eigenfactor: 0.00608
  immediacy_index: 1.9
  impact_factor: 8.6
  impact_factor_5yr: 9.5
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 4
  prev_impact_factor: 9.6
  total_cites: 5839
keyword:
- Industrial and Manufacturing Engineering
- Waste Management and Disposal
- General Materials Science
- Renewable Energy, Sustainability and the Environment
- silica
- nanofibers
- electrospinning
- anion-exchange membrane
- lactid acid recovery
- electrochemical treatment
language:
- eng
page:
  count: '11'
parent:
  short_title: Sustain Mater Technol
  title: SUSTAINABLE MATERIALS AND TECHNOLOGIES
project:
- _id: 3S009618
  abstract: <p>Nanofibres are fibres with a diameter that is 1000 times smaller than
    a human hair. This makes nanofibrous membranes very light and porous, ideally
    suited for advanced engineering applications in various sectors. By adding a specific
    functionality (for example hydrophobic groups, amines, thiol functions), the application
    field can even be extended. However, the material choice and design are crucial
    for optimal performance. Therefore, several bridged organosilanes, hybrid structures
    with organic and inorganic moieties, will be studied as an alternative starting
    product to make such nanofibrous membranes within this project. They allow for
    highly flexible materials with superior chemical and thermal stability for which,
    moreover, the hydrophobicity can be tuned. These functionalised nanofibers will
    be processed from water and ethanol, which is ecologically more friendly than
    most current nanofiber and membrane production techniques. Applications in the
    field of water purification and chemical conversion are targeted. These <br />applications
    require long-term stable materials and make use of the large specific surface
    area, high porosity and/or large pores of the nanofibrous membranes to target
    more efficient processes.</p>
  end_date: 2022-09-09
  gismo_id: d937d58c-be65-11e9-ace9-8bf558aeac68
  iweto_id: 3S009618
  start_date: 2018-01-01
  title: |-
    Long-term stable organosilica nanofibrous membranes
    functionalised for advanced engineering applications
- _id: 3S039119
  abstract: <p>Challenges in clean water availability have risen over the years, and
    especially third world countries are in great need of low-cost water purification
    techniques, such as separation membranes. By implementing functionalised organosilica
    nanofibrous membranes, an affinity-based separation mechanism at low energy-cost
    can be developed that withstands harsh environmental conditions. These membranes
    should have a desirable hydrophobicity to tune the affinity of different solvents
    towards the membrane. Additionally, their mechanical endurance should be optimised
    as to increase their life time. These goals are systematically addressed in this
    project. Organosilica nanofibrous membranes will be produced via electrospinning
    starting from a variety of bis-silane precursors. By implementing different functionalities,
    the wettability towards different solvents can be altered in view of separation
    applications. A thorough study on the behaviour of sol-gel systems will be conducted
    to create a comprehensive understanding of the influence of functionalities on
    the electrospinning process. Additionally, a mechanical study will reveal the
    link between the 3D-structure of the organosilica network and the mechanical behaviour.
    With this fundamental knowledge, it will be possible to develop affinity-based
    separation membranes for water purification. This application will even be extended
    towards solvent separation in view of process intensification of liquid-phase
    CO2 conversion to alcohols.</p>
  end_date: 2023-10-31
  gismo_id: 9cfd7b5f-f96d-11e9-b85e-e128f57a36f9
  iweto_id: 3S039119
  start_date: 2019-11-01
  title: Functionalised nanofibrous organosilica membranes for advanced affinity-based
    separation applications
- _id: 01P02520
  abstract: '<p>This research project, involving materials synthesis and electrochemical
    water treatments, will address a key limiting point for long term running of efficient
    electrochemical oxidation of contaminated water: the anodes. Research tasks will
    include: 1) the development of electrodes based on sol-gel materials with high
    surface area/controlled porosity; 2) the electrochemical performance of the electrodes
    on the oxidation of Per- and polyfluoroalkyl substances (PFASs) and As; and 3)
    the determination of the life-service of the anodes. First, the research will
    provide fundamental guidelines to the design of sol-gel TiO2 films, monolithic
    and nanoparticle products. The conversion from TiO2 to Ti4O7 without morphological
    alterations will be the first challenge addressed. A new anode configuration will
    be explored: composite coating (Ti4O7 nanoparticles embedded in Pani matrix) on
    porous additive manufactured Ti substrates. Next, the electrochemical activities
    of the anodes presenting variable configurations will be sensed using cyclic voltammetry
    (CV) and Electrochemical Impedance Spectroscopy (EIS). The electrochemical oxidation
    of As and PFAS will be validated in actual reactor systems. Finally, the long-life
    stability of the electrodes will be determined and erosion-corrosion tests will
    be introduced to the field. The successful completion of this project will have
    numerous benefits to the electrochemical water treatment fields and also to electrode
    materials in general.</p>'
  end_date: 2024-09-30
  gismo_id: dab10fe1-0253-11eb-85b3-6fc0ef18aead
  iweto_id: 01P02520
  start_date: 2020-10-01
  title: 'Development of sol-gel based Ti4O7 electrodes for electrochemical water
    oxidation: the influence of anode configuration on the performance and long term
    stability of the treatment.'
- _id: 01J10219
  abstract: <p>Membrane technology can offer an answer for today’s research challenges
    to solve environmental problems. These membranes are in need of an improved resistance
    to harsh environments. This will further broaden applications such as water recycling
    but will also open up very novel applications in a process intensification of
    CO2 conversion units. Within this project nanofibers are developed for these applications.</p>
  end_date: 2024-07-30
  gismo_id: 1e0c3a2d-9d90-11e9-83f9-d13d95d2d7be
  iweto_id: 01J10219
  start_date: 2019-10-01
  title: Nanofibrous membranes for today’s environmental research questions.
publication_status: published
publication_status_sort: 2
publisher:
  name: Elsevier BV
status: public
subject:
- Technology and Engineering
title: High capacity, silica-based anion-exchange nanofiber membranes for the selective
  recovery of lactic acid
type: journalArticle
volume: '38'
wos_id: '001149645900001'
wos_type: Article
year: '2023'
...
---
_id: 01H2WM9ZBP36BZ136NHBHN8D4N
abstract:
- |2-

  In recent years, ambient ionization mass spectrometry (AIMS) including laser ablation rapid evaporation IMS, has enabled direct biofluid metabolome analysis. AIMS procedures are, however, still hampered by both analytical, i.e., matrix effects, and practical, i.e., sample transport stability, drawbacks that impede metabolome coverage. In this study, we aimed at developing biofluid-specific metabolome sampling membranes (MetaSAMPs) that offer a directly applicable and stabilizing substrate for AIMS. Customized rectal, salivary, and urinary MetaSAMPs consisting of electrospun (nano)fibrous membranes of blended hydrophilic (polyvinylpyrrolidone and polyacrylonitrile) and lipophilic (polystyrene) polymers supported metabolite absorption, adsorption, and desorption. Moreover, MetaSAMP demonstrated superior metabolome coverage and transport stability compared to crude biofluid analysis and was successfully validated in two pediatric cohorts (MetaBEAse, n = 234 and OPERA, n = 101). By integrating anthropometric and (patho)physiological with MetaSAMP-AIMS metabolome data, we obtained substantial weight-driven predictions and clinical correlations. In conclusion, MetaSAMP holds great clinical application potential for on-the-spot metabolic health stratification.
abstract_full:
- lang: eng
  text: |2-

    In recent years, ambient ionization mass spectrometry (AIMS) including laser ablation rapid evaporation IMS, has enabled direct biofluid metabolome analysis. AIMS procedures are, however, still hampered by both analytical, i.e., matrix effects, and practical, i.e., sample transport stability, drawbacks that impede metabolome coverage. In this study, we aimed at developing biofluid-specific metabolome sampling membranes (MetaSAMPs) that offer a directly applicable and stabilizing substrate for AIMS. Customized rectal, salivary, and urinary MetaSAMPs consisting of electrospun (nano)fibrous membranes of blended hydrophilic (polyvinylpyrrolidone and polyacrylonitrile) and lipophilic (polystyrene) polymers supported metabolite absorption, adsorption, and desorption. Moreover, MetaSAMP demonstrated superior metabolome coverage and transport stability compared to crude biofluid analysis and was successfully validated in two pediatric cohorts (MetaBEAse, n = 234 and OPERA, n = 101). By integrating anthropometric and (patho)physiological with MetaSAMP-AIMS metabolome data, we obtained substantial weight-driven predictions and clinical correlations. In conclusion, MetaSAMP holds great clinical application potential for on-the-spot metabolic health stratification.
affiliation:
- name: Department of Translational Physiology, Infectiology and Public Health
  path:
  - ugent_id: UGent
  - ugent_id: DI
  - ugent_id: DI04
  ugent_id: DI04
- name: Department of Public Health and Primary Care
  path:
  - ugent_id: UGent
  - ugent_id: GE
  - ugent_id: GE39
  ugent_id: GE39
- name: Department of developmental, personality and social psychology
  path:
  - ugent_id: UGent
  - ugent_id: PP
  - ugent_id: PP07
  ugent_id: PP07
article_type: original
author:
- _id: A9239AE6-15AD-11E3-B408-FEAE10BDE39D
  affiliation:
  - name: Ghent University Hospital
    path:
    - ugent_id: UZGent
    ugent_id: UZGent
  biblio_id: A9239AE6-15AD-11E3-B408-FEAE10BDE39D
  credit_role:
  - first_author
  first_name: Margot
  last_name: De Spiegeleer
  name: Margot De Spiegeleer
  name_last_first: De Spiegeleer, Margot
  orcid_id: 0000-0002-1088-7245
  ugent_id:
  - '000130754582'
  - '974472127810'
- _id: CFD1E364-6721-11E6-9459-1DCEB4D1D7B1
  affiliation:
  - path:
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    - ugent_id: DI
    - ugent_id: DI04
    ugent_id: DI04
  biblio_id: CFD1E364-6721-11E6-9459-1DCEB4D1D7B1
  credit_role:
  - data_curation
  - investigation
  first_name: Vera
  last_name: Plekhova
  name: Vera Plekhova
  name_last_first: Plekhova, Vera
  orcid_id: 0000-0002-6109-7032
  ugent_id:
  - '802002994912'
  - '977915818675'
- _id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
  orcid_id: 0000-0002-1281-2968
  ugent_id:
  - '000070582957'
  - '975000449525'
- _id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
  ugent_id:
  - '000100318410'
  - '802002133935'
  - '975208259089'
- _id: 35D99368-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: DI
    - ugent_id: DI04
    ugent_id: DI04
  biblio_id: 35D99368-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Beata
  last_name: Pomian
  name: Beata Pomian
  name_last_first: Pomian, Beata
  ugent_id:
  - '802001060871'
  - '972405514922'
- first_name: Varoon
  last_name: Singh
  name: Varoon Singh
  name_last_first: Singh, Varoon
- _id: FDF66642-EFE4-11E6-BF8A-645DAE28A064
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: GE
    - ugent_id: GE38
    ugent_id: GE38
  - path:
    - ugent_id: UZGent
    ugent_id: UZGent
  biblio_id: FDF66642-EFE4-11E6-BF8A-645DAE28A064
  first_name: Kathleen
  last_name: Wijnant
  name: Kathleen Wijnant
  name_last_first: Wijnant, Kathleen
  orcid_id: 0000-0002-8242-4522
  ugent_id:
  - '802002558917'
  - '910004446134'
- _id: 5681F212-8AAA-11E7-994E-48E0AD28A064
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: DI
    - ugent_id: DI04
    ugent_id: DI04
  biblio_id: 5681F212-8AAA-11E7-994E-48E0AD28A064
  first_name: Kimberly
  last_name: De Windt
  name: Kimberly De Windt
  name_last_first: De Windt, Kimberly
  orcid_id: 0000-0002-9589-5112
  ugent_id:
  - '000170678267'
  - '802004133246'
  - '976434719514'
- _id: cc641777-95c5-11ec-b6d9-966e9a8e6530
  biblio_id: cc641777-95c5-11ec-b6d9-966e9a8e6530
  first_name: Volter
  last_name: Paukku
  name: Volter Paukku
  name_last_first: Paukku, Volter
  orcid_id: 0000-0003-1194-4122
  ugent_id:
  - '975400966363'
- first_name: Alexander
  last_name: De Loof
  name: Alexander De Loof
  name_last_first: De Loof, Alexander
- credit_role:
  - writing_review_editing
  first_name: Inge
  last_name: Gies
  name: Inge Gies
  name_last_first: Gies, Inge
- _id: 0410FFB0-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: PP
    - ugent_id: PP07
    ugent_id: PP07
  biblio_id: 0410FFB0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Nathalie
  last_name: Michels
  name: Nathalie Michels
  name_last_first: Michels, Nathalie
  orcid_id: 0000-0002-3069-7254
  ugent_id:
  - '802000659030'
  - '971022391922'
- _id: F47B132E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: GE
    - ugent_id: GE39
    ugent_id: GE39
  biblio_id: F47B132E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Stefaan
  last_name: De Henauw
  name: Stefaan De Henauw
  name_last_first: De Henauw, Stefaan
  orcid_id: 0000-0003-4141-5432
  ugent_id:
  - '801000760293'
  - '971658810740'
- _id: 137E2946-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 137E2946-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Marilyn
  last_name: De Graeve
  name: Marilyn De Graeve
  name_last_first: De Graeve, Marilyn
  orcid_id: 0000-0001-6916-401X
  ugent_id:
  - '971668236009'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F77AFAE4-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: DI
    - ugent_id: DI04
    ugent_id: DI04
  biblio_id: F77AFAE4-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - last_author
  first_name: Lynn
  last_name: Vanhaecke
  name: Lynn Vanhaecke
  name_last_first: Vanhaecke, Lynn
  orcid_id: 0000-0003-0400-2188
  ugent_id:
  - '801001950969'
  - '976961995245'
biblio_id: 01H2WM9ZBP36BZ136NHBHN8D4N
cite:
  apa: |2
      <div class="csl-entry">De Spiegeleer, M., Plekhova, V., Geltmeyer, J., Schoolaert, E., Pomian, B., Singh, V., … Vanhaecke, L. (2023). Point-of-care applicable metabotyping using biofluid-specific electrospun MetaSAMPs directly amenable to ambient LA-REIMS. <i>SCIENCE ADVANCES</i>, <i>9</i>(23). https://doi.org/10.1126/sciadv.ade9933</div>
  bof: |2-
      <div class="csl-entry">De Spiegeleer, Margot, Vera Plekhova, Jozefien Geltmeyer, Ella Schoolaert, Beata Pomian, Varoon Singh, Kathleen Wijnant, Kimberly De Windt, Volter Paukku, Alexander De Loof, Inge Gies, Nathalie Michels, Stefaan De Henauw, Marilyn De Graeve, Karen De Clerck, and Lynn Vanhaecke. 2023. “Point-of-Care Applicable Metabotyping Using Biofluid-Specific Electrospun MetaSAMPs Directly Amenable to Ambient LA-REIMS.” <i>SCIENCE ADVANCES</i> 9 (23). doi:10.1126/sciadv.ade9933.</div>
    <div><i>Impact factor: 11.7, category: MULTIDISCIPLINARY SCIENCES, rank: 11/134, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">De Spiegeleer, Margot, Vera Plekhova, Jozefien Geltmeyer, Ella Schoolaert, Beata Pomian, Varoon Singh, Kathleen Wijnant, et al. 2023. “Point-of-Care Applicable Metabotyping Using Biofluid-Specific Electrospun MetaSAMPs Directly Amenable to Ambient LA-REIMS.” <i>SCIENCE ADVANCES</i> 9 (23). https://doi.org/10.1126/sciadv.ade9933.</div>
  fwo: |2
      <div class="csl-entry">De Spiegeleer, Margot, Vera Plekhova, Jozefien Geltmeyer, Ella Schoolaert, Beata Pomian, Varoon Singh, Kathleen Wijnant, Kimberly De Windt, Volter Paukku, Alexander De Loof, Inge Gies, Nathalie Michels, Stefaan De Henauw, Marilyn De Graeve, Karen De Clerck, and Lynn Vanhaecke. 2023. “Point-of-Care Applicable Metabotyping Using Biofluid-Specific Electrospun MetaSAMPs Directly Amenable to Ambient LA-REIMS.” <i>SCIENCE ADVANCES</i> 9 (23). doi:10.1126/sciadv.ade9933.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">M. De Spiegeleer <i>et al.</i>, “Point-of-care applicable metabotyping using biofluid-specific electrospun MetaSAMPs directly amenable to ambient LA-REIMS,” <i>SCIENCE ADVANCES</i>, vol. 9, no. 23, 2023.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Spiegeleer, Margot, et al. “Point-of-Care Applicable Metabotyping Using Biofluid-Specific Electrospun MetaSAMPs Directly Amenable to Ambient LA-REIMS.” <i>SCIENCE ADVANCES</i>, vol. 9, no. 23, American Association for the Advancement of Science (AAAS), 2023, doi:10.1126/sciadv.ade9933.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Spiegeleer M, Plekhova V, Geltmeyer J, Schoolaert E, Pomian B, Singh V, et al. Point-of-care applicable metabotyping using biofluid-specific electrospun MetaSAMPs directly amenable to ambient LA-REIMS. SCIENCE ADVANCES. 2023;9(23).</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution-NonCommercial 4.0 International
  Public License (CC BY-NC 4.0)
created_by:
  _id: A9239AE6-15AD-11E3-B408-FEAE10BDE39D
  affiliation:
  - name: Ghent University Hospital
    path:
    - ugent_id: UZGent
    ugent_id: UZGent
  biblio_id: A9239AE6-15AD-11E3-B408-FEAE10BDE39D
  first_name: Margot
  last_name: De Spiegeleer
  name: Margot De Spiegeleer
  name_last_first: De Spiegeleer, Margot
  orcid_id: 0000-0002-1088-7245
  ugent_id:
  - '000130754582'
  - '974472127810'
date_created: 2023-06-14 09:38:06
date_updated: 2026-03-31 11:35:06
doi:
- 10.1126/sciadv.ade9933
external: 0
file:
- _id: 01H8P1S93JHSFV05DPAVQWTRJE
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  url: https://biblio.ugent.be/publication/01H2WM9ZBP36BZ136NHBHN8D4N/file/01H8P1S93JHSFV05DPAVQWTRJE.pdf
handle: http://hdl.handle.net/1854/LU-01H2WM9ZBP36BZ136NHBHN8D4N
issn:
- 2375-2548
issue: '23'
jcr:
  category: MULTIDISCIPLINARY SCIENCES
  category_decile: 2
  category_quartile: 1
  category_rank: 11/134
  category_vigintile: 3
  eigenfactor: 0.35454
  immediacy_index: 2.5
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  total_cites: 147104
keyword:
- Multidisciplinary
- ASSISTED LASER DESORPTION/IONIZATION
- IONIZATION MASS-SPECTROMETRY
- FECAL METABOLOME
- ION DESORPTION
- CHILDREN
- WEIGHT
- HUMANS
- INDEX
language:
- eng
page:
  count: '18'
parent:
  short_title: Sci. Adv.
  title: SCIENCE ADVANCES
project:
- _id: 3S034519
  abstract: <p>Today’s children are increasingly facing metabolic-related health issues,
    among which the worldwide prevalence of overweight and obesity is rising at an
    alarming pace. Childhood obesity is associated with the early onset of chronic
    diseases including an emergence of prediabetes and diabetes mellitus type 2. The
    decline of insulin sensitivity already years before puberty, exposes children
    to long-term complications prior the appearance of clinical symptoms and time
    of diagnosis. The shortened life expectancy and large economic burden imposed
    underlines the need for the identification of metabotypes at risk at an early
    stage. One’s genetics, microbial gut composition and every aspect of the environment
    in which children are raised have been implicated in diet-related obesity rendering
    metabolomics a very powerful tool towards precision medicine. Yet, the excellence
    of stool in reflecting the intertwining thereof is completely unexplored for pediatric
    purposes, whereas blood sampling causing pain and stress for child and parent
    only captures a narrow fraction of the metabolome. As such, I propose rectal sampling
    using a medical swab tailored with electrospun nanofibers for optimal gut metabolome
    coverage. Ambient laser desorption ionization will be hyphenated to high-resolution
    mass spectrometry-based metabolomics to provide a framework for elucidating predictive
    and/or prognostic biomarkers for ever-increasing pediatric metabolic diseases
    such as obesity and (pre)diabetes. </p>
  end_date: 2023-09-30
  gismo_id: 9c7697d7-f96d-11e9-b85e-e128f57a36f9
  iweto_id: 3S034519
  start_date: 2019-11-01
  title: Rectal sampler for metabotyping of overweight and obese children towards
    early prevention and prognosis of metabolic diseases
- _id: 3F012219
  abstract: <p>The high prevalence and treatment resistance of obesity urges further
    exploration into early diagnosis and prevention. This is especially important
    at young age, when metabolic and psychological development are ongoing. Psychological
    factors like stress can favor obesity, but researchers still struggle with the
    complex processes towards disease susceptibility. This project aims to elucidate
    pathways and identify potential clinical biomarkers in the stress-obesity relation
    via salivary metabolomics on two ongoing observational population-based studies
    in adolescents (OPERA n=140, 6-16y and Fin-HIT n=11000, 9-12y). Saliva can be
    non-invasively collected while its metabolic composition parallels that of blood.
    Hence, the associations between the metabolome from different matrices (plasma,
    feces, saliva) in the stress-obesity axis will be investigated using state-of-the-art
    high-resolution mass spectrometry. Studying metabolome differences between subgroups
    (low/high stress and healthy/overweight; including change over time) will explain
    why not all high stress adolescents develop obesity and why not all obese adolescents
    develop stress. Finally, potential salivary metabolite markers will be compared
    with existing clinical biomarkers of underlying pathways like stress physiology,
    appetite, energy balance, inflammation and microbial metabolites, thereby proving
    its potential as alternative clinical matrix and filling the gaps in our understanding
    of the stress-obesity axis.</p>
  end_date: 2024-03-04
  gismo_id: 9d6032b0-f64e-11e9-ae31-3be9d515fa23
  iweto_id: 3F012219
  start_date: 2019-11-01
  title: Salivary metabolomics as a new tool for unraveling stress obesity pathways
    in adolescents from a clinical public health perspective
- _id: 3G0G0119
  abstract: |-
    <p>While recent advent of hyphenated high-resolution mass spectrometry empowered the new analytical reality of holistic</p>
    <p>metabolite fingerprinting, there are at present no tools available for point-of-care minimally invasive sampling of the gut</p>
    <p>metabolome. The gut metabolome harbors a rich source of data that allows complex interactions between the diet, gut</p>
    <p>microbes and host to be studied. Numerous chronic conditions including food allergies, obesity, diabetes, inflammatory</p>
    <p>bowel disease etc. are intimately linked to imbalances of the gut microbiome. While metabolites, as the end products of our</p>
    <p>own and microbial inhabitant gene-transcript-protein cascade, provide the most revealing assessment of our biochemical</p>
    <p>state, there are currently no methods available for in-situ metabolic profiling of the gut. In RECSAMPROCHILD, I propose</p>
    <p>the development of a rectal swab with electrospun nanofibrous polymer tip surface, customized for maximal extraction of</p>
    <p>the gut metabolome in terms of chemical diversity and polarity (incl. lipidome) and direct ambient surface-assisted laser</p>
    <p>desorption ionization. I plan to combine this RECSAMP with HRMS-based untargeted discovery of biomarkers for</p>
    <p>unambiguous identification of a number of conditions in children including cow’s milk allergy and obesity/prediabetes.</p>
  end_date: 2023-01-31
  gismo_id: b6fbf4de-7f84-4ae3-b8cb-3d52ba2838a8
  iweto_id: 3G0G0119
  start_date: 2019-02-01
  title: |-
    Rectal sampling and ambient ionization based metabolomics for point-of-care precision
    medicine in children.
- _id: 01GB0217
  abstract: '<p>This multidisciplinary project aims to prove that studying emotion
    regulation for restoring the psychological and physiological homeostasis is a
    promising progress for a profound understanding of the obesity problem. We aim
    to exceed current expertise on obesity with various complementary study designs:
    longitudinal, case-control and a randomized-clinical-trial using emotion regulation
    training. Evidence will come from psychological and physiological outcome measures.</p>'
  end_date: 2023-12-31
  gismo_id: fc13ecf2-c6a3-4dfc-af18-9cd071dcd618
  iweto_id: 01GB0217
  start_date: 2017-01-01
  title: Emotion Regulation in the Prevention and Treatment of Obesity in Young Adolescents
- _id: 01J07519
  abstract: <p>Given the emerging evidence for the involvement of the gut microbiome
    in the onset of food allergy<br /> and its resolution, this project will rely
    on our metabolomics platform and microbial analysis of CMA patients' biofluids,
    for identifying prognostic biomarkers. Specific bacterial groups involved in the
    biomarker formation, will be manipulated or administered to mice to aid in biomarker
    qualification.</p>
  end_date: 2024-07-30
  gismo_id: 1dea5a38-9d90-11e9-83f9-d13d95d2d7be
  iweto_id: 01J07519
  start_date: 2019-10-01
  title: Metabolic fingerprinting towards diagnosis and prognosis of cow's milk allergy
    in children.
- _id: '319103418'
  abstract: <p> A fingerprint of the ‘metabolome’, documenting all metabolites from
    metabolic processes in an individual’s cells, tissues and organs, provides us
    with the most accurate assessment of the biological state of that individual.
    As such, in-depth assessment of the metabolome by means of ‘metabolomics’ provides
    a very powerful tool to study physiological as well as pathophysiological conditions.
    In a laboratory setting, mass spectrometry (MS) is the most favored tool for metabolomics,
    but in a more practical and/or clinical setting the use of MS-based applications
    is not that straightforward. Nevertheless, the introduction of Rapid Evaporative
    Ionisation MS (REIMS) offers compelling perspectives as REIMS can significantly
    reduce time and workload, but enhance research output and efficiency by eliminating
    sample preparation steps. In light of this, Prof. Lynn Vanhaecke and 19 co-supervisors
    wish to purchase the required infrastructure to develop a multi-matrix REIMS platform
    for ‘metabolomics in health and disease’ as this will enable the rapid on site
    or point of care translatable diagnosis, prognosis and prediction of a variety
    of in vitro and in vivo (patho)physiological changes in a large spectrum of matrices.
    In doing so, Ghent University would be the first Belgian and one of the first
    European institutes to house the REIMS platform, serving the consortium members,
    external partners as well as the wider scientific community. <br /> </p>
  end_date: 2022-04-30
  gismo_id: 110e1acb-0560-446c-8cb7-cdc20959e9d0
  iweto_id: '319103418'
  start_date: 2018-05-01
  title: Rapid Evaporative Ionisation Mass Spectrometry for metabolomics in health
    and disease
- _id: F2020/IOF-StarTT/066
  abstract: <p>There is an unmet need for samplers permitting rapid sample processing
    for a.o. precision medicine metabolomic fingerprinting. AIMS-based metabolomics
    allows to record mass spectra from samples in their native environment without
    the need for chromatographic separation. Existing samplers are not customized
    for this approach or matrix is burned along with the sample leading to interferences
    and contamination. In this StartTT we aim to deliver a functional prototype of
    a novel patented sampler. This sampler will be customized and finetuned to enable
    maximal extraction of any metabolome (liquid biopsies, food and environmental
    samples) while enabling direct AIMS-based metabolomics of captured molecules.
    Based on the aformentioned requirements, an optimized prototype sampler will be
    selected for upscaling. We intend to produce a large batch of the selected prototype
    through a collaboration with a CRO/CMO company and optimize the large batch production
    parameters in conjunction with that company. Finally, samplers will be evaluated
    for rapid metabolomics testing in a precision medicine pediatrics study.</p>
  end_date: 2022-07-31
  gismo_id: 55dc1171-bf61-11ea-8c04-77b709f2f7d3
  iweto_id: F2020/IOF-StarTT/066
  start_date: 2020-08-01
  title: Novel sampler for ambient ionization high-resolution mass spectrometry (AIMS)-based
    metabolomics and its application in pediatrics precision medicine.
publication_status: published
publication_status_sort: 2
publisher:
  name: American Association for the Advancement of Science (AAAS)
pubmed_id: '37294759'
status: public
subject:
- Medicine and Health Sciences
title: Point-of-care applicable metabotyping using biofluid-specific electrospun MetaSAMPs
  directly amenable to ambient LA-REIMS
type: journalArticle
vabb_approved: 0
vabb_id: c:vabb:554176
vabb_type: VABB-1
vabb_year:
- '2024'
volume: '9'
wos_id: '001009778100019'
wos_type: Article
year: '2023'
...
---
_id: 01H0MBDNBC3GVJ7DECF5ASA3ZG
abstract:
- 'Electrospun nanofiber membranes show high potential in various application fields
  (e.g., filtration, catalysis, and sensing). Nevertheless, knowledge of the mechanical
  behavior, and more specifically, the deformation of nanofiber membranes is still
  limited today which can complicate the appliance of nanofiber membranes in applications
  where they are mechanically loaded. In this paper, we, therefore, analyzed the mechanical
  behavior of polymeric nanofiber membranes with different fiber orientations (random
  and aligned) extensively. Polyamide 6 was used as a representative reference polymer
  for proof-of-concept. Mechanical tests show that all membranes have a coherent deformation
  behavior at the macroscale up to the point of fracture. Large variations in stiffness,
  ultimate strength, and ultimate strain were observed between membranes with different
  fiber orientations (Random: E-mod: 370 ± 34 MP; UTS: 38.5 ± 6.0 MPa; εmax: 30.0
  ± 2.8%; Parallel aligned: E-mod: 753 ± 11 MPa; UTS: 55.4 ± 0.8 MPa; εmax: 12.0 ±
  0.1%; Perpendicular aligned: E-mod: 24.1 ± 3.7 MPa; UTS:/; εmax: &gt;40%). This
  shows the versatility and tunability of the mechanical behavior of these nanofiber
  membranes. At the microscale, the fibrous structure results in deformation mechanisms
  that resist failure formation and progression when the membrane is mechanically
  loaded. This results in a high fracture resistance, even for pre-damaged membranes.
  Realignment of the fibers along the loading direction causes crack tip blunting,
  locally reinforcing the membrane.'
abstract_full:
- lang: eng
  text: 'Electrospun nanofiber membranes show high potential in various application
    fields (e.g., filtration, catalysis, and sensing). Nevertheless, knowledge of
    the mechanical behavior, and more specifically, the deformation of nanofiber membranes
    is still limited today which can complicate the appliance of nanofiber membranes
    in applications where they are mechanically loaded. In this paper, we, therefore,
    analyzed the mechanical behavior of polymeric nanofiber membranes with different
    fiber orientations (random and aligned) extensively. Polyamide 6 was used as a
    representative reference polymer for proof-of-concept. Mechanical tests show that
    all membranes have a coherent deformation behavior at the macroscale up to the
    point of fracture. Large variations in stiffness, ultimate strength, and ultimate
    strain were observed between membranes with different fiber orientations (Random:
    E-mod: 370 ± 34 MP; UTS: 38.5 ± 6.0 MPa; εmax: 30.0 ± 2.8%; Parallel aligned:
    E-mod: 753 ± 11 MPa; UTS: 55.4 ± 0.8 MPa; εmax: 12.0 ± 0.1%; Perpendicular aligned:
    E-mod: 24.1 ± 3.7 MPa; UTS:/; εmax: &gt;40%). This shows the versatility and tunability
    of the mechanical behavior of these nanofiber membranes. At the microscale, the
    fibrous structure results in deformation mechanisms that resist failure formation
    and progression when the membrane is mechanically loaded. This results in a high
    fracture resistance, even for pre-damaged membranes. Realignment of the fibers
    along the loading direction causes crack tip blunting, locally reinforcing the
    membrane.'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
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article_number: '1630'
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  first_name: Olivier
  last_name: Verschatse
  name: Olivier Verschatse
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  first_name: Eva
  last_name: Loccufier
  name: Eva Loccufier
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  first_name: Bianca
  last_name: Swanckaert
  name: Bianca Swanckaert
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cite:
  apa: |2
      <div class="csl-entry">Verschatse, O., Loccufier, E., Swanckaert, B., De Clerck, K., &#38; Daelemans, L. (2023). Microscale and macroscale deformation behavior of electrospun polymeric nanofiber membranes using in situ SEM during mechanical testing. <i>POLYMERS</i>, <i>15</i>(7). https://doi.org/10.3390/polym15071630</div>
  bof: |2-
      <div class="csl-entry">Verschatse, Olivier, Eva Loccufier, Bianca Swanckaert, Karen De Clerck, and Lode Daelemans. 2023. “Microscale and Macroscale Deformation Behavior of Electrospun Polymeric Nanofiber Membranes Using in Situ SEM during Mechanical Testing.” <i>POLYMERS</i> 15 (7). doi:10.3390/polym15071630.</div>
    <div><i>Impact factor: 4.7, category: POLYMER SCIENCE, rank: 18/94, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Verschatse, Olivier, Eva Loccufier, Bianca Swanckaert, Karen De Clerck, and Lode Daelemans. 2023. “Microscale and Macroscale Deformation Behavior of Electrospun Polymeric Nanofiber Membranes Using in Situ SEM during Mechanical Testing.” <i>POLYMERS</i> 15 (7). https://doi.org/10.3390/polym15071630.</div>
  fwo: |2
      <div class="csl-entry">Verschatse, Olivier, Eva Loccufier, Bianca Swanckaert, Karen De Clerck, and Lode Daelemans. 2023. “Microscale and Macroscale Deformation Behavior of Electrospun Polymeric Nanofiber Membranes Using in Situ SEM during Mechanical Testing.” <i>POLYMERS</i> 15 (7). doi:10.3390/polym15071630.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">O. Verschatse, E. Loccufier, B. Swanckaert, K. De Clerck, and L. Daelemans, “Microscale and macroscale deformation behavior of electrospun polymeric nanofiber membranes using in situ SEM during mechanical testing,” <i>POLYMERS</i>, vol. 15, no. 7, 2023.</div>
      </div>
  mla: |2
      <div class="csl-entry">Verschatse, Olivier, et al. “Microscale and Macroscale Deformation Behavior of Electrospun Polymeric Nanofiber Membranes Using in Situ SEM during Mechanical Testing.” <i>POLYMERS</i>, vol. 15, no. 7, 2023, doi:10.3390/polym15071630.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Verschatse O, Loccufier E, Swanckaert B, De Clerck K, Daelemans L. Microscale and macroscale deformation behavior of electrospun polymeric nanofiber membranes using in situ SEM during mechanical testing. POLYMERS. 2023;15(7).</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution 4.0 International Public License
  (CC-BY 4.0)
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  name: Sigrid Vanraes
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  ugent_id:
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  - '971075574089'
date_created: 2023-05-17 07:57:30
date_updated: 2026-03-31 14:59:23
doi:
- 10.3390/polym15071630
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handle: http://hdl.handle.net/1854/LU-01H0MBDNBC3GVJ7DECF5ASA3ZG
issn:
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issue: '7'
issue_title: Electrospinning Techniques and Advanced Textile Materials
jcr:
  category: POLYMER SCIENCE
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  category_quartile: 1
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keyword:
- Polymers and Plastics
- General Chemistry
- mechanical behavior
- polymeric nanofiber membranes
- electrospinning
- in situ SEM analysis
language:
- eng
page:
  count: '14'
parent:
  short_title: Polymers
  title: POLYMERS
project:
- _id: 3S009618
  abstract: <p>Nanofibres are fibres with a diameter that is 1000 times smaller than
    a human hair. This makes nanofibrous membranes very light and porous, ideally
    suited for advanced engineering applications in various sectors. By adding a specific
    functionality (for example hydrophobic groups, amines, thiol functions), the application
    field can even be extended. However, the material choice and design are crucial
    for optimal performance. Therefore, several bridged organosilanes, hybrid structures
    with organic and inorganic moieties, will be studied as an alternative starting
    product to make such nanofibrous membranes within this project. They allow for
    highly flexible materials with superior chemical and thermal stability for which,
    moreover, the hydrophobicity can be tuned. These functionalised nanofibers will
    be processed from water and ethanol, which is ecologically more friendly than
    most current nanofiber and membrane production techniques. Applications in the
    field of water purification and chemical conversion are targeted. These <br />applications
    require long-term stable materials and make use of the large specific surface
    area, high porosity and/or large pores of the nanofibrous membranes to target
    more efficient processes.</p>
  end_date: 2022-09-09
  gismo_id: d937d58c-be65-11e9-ace9-8bf558aeac68
  iweto_id: 3S009618
  start_date: 2018-01-01
  title: |-
    Long-term stable organosilica nanofibrous membranes
    functionalised for advanced engineering applications
- _id: 3S039119
  abstract: <p>Challenges in clean water availability have risen over the years, and
    especially third world countries are in great need of low-cost water purification
    techniques, such as separation membranes. By implementing functionalised organosilica
    nanofibrous membranes, an affinity-based separation mechanism at low energy-cost
    can be developed that withstands harsh environmental conditions. These membranes
    should have a desirable hydrophobicity to tune the affinity of different solvents
    towards the membrane. Additionally, their mechanical endurance should be optimised
    as to increase their life time. These goals are systematically addressed in this
    project. Organosilica nanofibrous membranes will be produced via electrospinning
    starting from a variety of bis-silane precursors. By implementing different functionalities,
    the wettability towards different solvents can be altered in view of separation
    applications. A thorough study on the behaviour of sol-gel systems will be conducted
    to create a comprehensive understanding of the influence of functionalities on
    the electrospinning process. Additionally, a mechanical study will reveal the
    link between the 3D-structure of the organosilica network and the mechanical behaviour.
    With this fundamental knowledge, it will be possible to develop affinity-based
    separation membranes for water purification. This application will even be extended
    towards solvent separation in view of process intensification of liquid-phase
    CO2 conversion to alcohols.</p>
  end_date: 2023-10-31
  gismo_id: 9cfd7b5f-f96d-11e9-b85e-e128f57a36f9
  iweto_id: 3S039119
  start_date: 2019-11-01
  title: Functionalised nanofibrous organosilica membranes for advanced affinity-based
    separation applications
- _id: '3E016519'
  abstract: |-
    <p>
    Textiles are ideally suited for technical engineering applications thanks to their unique combination of lightness, flexibility and strength. Especially, fibre reinforced composites are seeing a tremendous growth for designing light-weight structural components. The fibres, the building blocks of any textile, and their arrangement in the textile and the composite (microstructure) determine the macroscopic properties. It is thus of utmost importance that this micro-macro relation is fundamentally understood. The complexity of textiles (complex hierarchical microstructure, highly non-linear behaviour) makes this a challenging problem. By following a multiscale analysis, combining both advanced experimental and numerical techniques, starting with individual fibres and building up till complete nano-interleaved preforms, we get a fundamental understanding of the micro-macro relationships that govern the mechanical behaviour of textile materials. These insights are of crucial importance for the further development of high-end nano-enabled composites and are extendable to many other technical textile applications as well.

    </p>
  end_date: 2022-09-30
  gismo_id: 3c0a4b92-b36f-11e9-9b22-19a03077e1f4
  iweto_id: '3E016519'
  start_date: 2019-10-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
- _id: BOF/STA/202009/046
  abstract: <p>Every textile material, be it for low-end consumer goods or high-end
    technical products, is exploited for the properties resulting from its multi-scale
    nature (fibres -&gt; yarns -&gt; textiles -&gt; derivatives). Understanding this
    multi-scale nature is thus key to improving this materials. Textiles are, for
    example, well suited for technical applications thanks to their unique combination
    of lightness, flexibility and strength. Yet such applications often require a
    thorough understanding of the mechanical performance, which in itself is quite
    challenging due to the complex microstructure. By following a multiscale analysis,
    combining both experimental and numerical techniques, starting with individual
    fibres and building up till complete textile materials and derivatives such as
    composites, we underpin the micro-macro relationships that govern the mechanical
    behaviour of textiles. This project combines both advanced testing methods with
    in-situ measurement of the deformation mechanisms at microscale, and novel finite
    element modelling tools that allow simulations at the microscale.</p>
  deleted: 1
  end_date: 2025-06-30
  gismo_id: 25182d45-ccf4-11eb-9f0b-e5cd0f711fbd
  iweto_id: BOF/STA/202009/046
  publication_count: 1
  start_date: 2021-07-01
  title: Multi-scale analysis of textile and derived materials
- _id: 01P03418
  abstract: <p>The unique combination of light and flexible, but strong structures,
    makes textile materials well suited for technical engineering applications. Especially,
    fibre reinforced composites are seeing a tremendous growth for designing light-weight
    structural components. The fibres, the building blocks of any textile, and their
    arrangement in the composite (microstructure) determine the obtainable mechanical
    properties. It is thus of utmost importance that the formation of this microstructure
    is fundamentally understood. This enables the optimization of current materials,
    but also the development of advanced, nano-enabled composites by the novel technique
    of interleaving nanofibrous textiles. It is more complex than one would think
    at first sight due to the complicated nature of textiles. For example, composites
    are made by stacking layers of fabrics, whose interaction with each other and
    the tooling can result in unwanted defects or misalignments. This is related to
    the mechanics of the textile material. By following a multi-scale analysis, combining
    both experimental and numerical techniques, starting with individual fibres and
    building up till complete nano-interleaved preforms, we will get a fundamental
    understanding of the micro-macro relationships that govern the mechanics of textile
    materials. These insights are of crucial importance for further development of
    high-end nano-enabled composites, and extendable to many other technical textile
    applications as well.</p>
  end_date: 2019-09-30
  gismo_id: b2c0136d-5a95-11e9-b3e1-37a68b033e1d
  iweto_id: 01P03418
  start_date: 2019-01-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
- _id: 01B03518
  abstract: <p>The requested table top SEM with integrated micromechanical testing,
    combines a large sample chamber to accommodate a sensitive micromechanical set-up
    with a high magnification and easy sampling. This is highly novel and only recently
    available at moderate costs. The in-situ visualization of material performance
    under load at high magnification will boost the academic research of the applicants
    and their collaborators.</p>
  end_date: 2020-05-31
  gismo_id: 320e7057-5b7c-11e9-ac93-1bffacd2a7e2
  iweto_id: 01B03518
  publication_count: 1
  start_date: 2018-06-01
  title: Table top SEM with integrated in-situ micromechanical testing for fiber,
    polymer and composite materials
- _id: 01J10219
  abstract: <p>Membrane technology can offer an answer for today’s research challenges
    to solve environmental problems. These membranes are in need of an improved resistance
    to harsh environments. This will further broaden applications such as water recycling
    but will also open up very novel applications in a process intensification of
    CO2 conversion units. Within this project nanofibers are developed for these applications.</p>
  end_date: 2024-07-30
  gismo_id: 1e0c3a2d-9d90-11e9-83f9-d13d95d2d7be
  iweto_id: 01J10219
  start_date: 2019-10-01
  title: Nanofibrous membranes for today’s environmental research questions.
publication_status: published
publication_status_sort: 2
pubmed_id: '37050245'
status: public
subject:
- Technology and Engineering
title: Microscale and macroscale deformation behavior of electrospun polymeric nanofiber
  membranes using in situ SEM during mechanical testing
type: journalArticle
volume: '15'
wos_id: '000970151000001'
wos_type: Article
year: '2023'
...
---
_id: 01GPJZY6YJZ4FEDGFG3CYS1R86
abstract:
- |-
  Electrochemical treatments in (waste)water management show high potential in the global water resource crisis, but are often limited by the ion-exchange membrane (IEM) performance. Low chemical resistance and fouling are major issues in the development of next-generation IEMs. Sulfonated silica-based nanofiber cation-exchange membranes (CEMs) offer a promising solution to these issues due to their superior chemical resistance and self-cleaning properties. Via the direct electrospinning of a sol–gel solution starting from tetraethyl orthosilicate (TEOS) and 3-mercaptopropyl triethoxysilane (MPTES), nanofiber membranes with an ion-exchange capacity (IEC) of 1.3 mmol g−1 can be produced without the need of an additional matrix. The produced nanofiber CEM performs excellent in lab-scale electrochemical tests, with a resistance of 3.2 ± 0.4 *10-3 Ω m2 and a Coulombic efficiency of ± 70 % for the transport of Na+ using a current density of either 128 or 256 A/m−2.

  Furthermore, the nanofiber CEM shows outstanding resistance against strong acidic solutions and chlorine. After fouling of the membrane with CaCO3, the nanofiber CEM shows self-cleaning properties, eliminating the need for an additional cleaning step during usage. These results illustrate the excellent performance of the silica-based nanofiber CEM for industrial water treatment applications.
abstract_full:
- lang: eng
  text: |-
    Electrochemical treatments in (waste)water management show high potential in the global water resource crisis, but are often limited by the ion-exchange membrane (IEM) performance. Low chemical resistance and fouling are major issues in the development of next-generation IEMs. Sulfonated silica-based nanofiber cation-exchange membranes (CEMs) offer a promising solution to these issues due to their superior chemical resistance and self-cleaning properties. Via the direct electrospinning of a sol–gel solution starting from tetraethyl orthosilicate (TEOS) and 3-mercaptopropyl triethoxysilane (MPTES), nanofiber membranes with an ion-exchange capacity (IEC) of 1.3 mmol g−1 can be produced without the need of an additional matrix. The produced nanofiber CEM performs excellent in lab-scale electrochemical tests, with a resistance of 3.2 ± 0.4 *10-3 Ω m2 and a Coulombic efficiency of ± 70 % for the transport of Na+ using a current density of either 128 or 256 A/m−2.

    Furthermore, the nanofiber CEM shows outstanding resistance against strong acidic solutions and chlorine. After fouling of the membrane with CaCO3, the nanofiber CEM shows self-cleaning properties, eliminating the need for an additional cleaning step during usage. These results illustrate the excellent performance of the silica-based nanofiber CEM for industrial water treatment applications.
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cite:
  apa: |2
      <div class="csl-entry">Swanckaert, B., Loccufier, E., Geltmeyer, J., Rabaey, K., De Buysser, K., Bonin, L., &#38; De Clerck, K. (2023). Sulfonated silica-based cation-exchange nanofiber membranes with superior self-cleaning abilities for electrochemical water treatment applications. <i>SEPARATION AND PURIFICATION TECHNOLOGY</i>, <i>309</i>. https://doi.org/10.1016/j.seppur.2022.123001</div>
  chicago-author-date: |2
      <div class="csl-entry">Swanckaert, Bianca, Eva Loccufier, Jozefien Geltmeyer, Korneel Rabaey, Klaartje De Buysser, Luiza Bonin, and Karen De Clerck. 2023. “Sulfonated Silica-Based Cation-Exchange Nanofiber Membranes with Superior Self-Cleaning Abilities for Electrochemical Water Treatment Applications.” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i> 309. https://doi.org/10.1016/j.seppur.2022.123001.</div>
  fwo: |2
      <div class="csl-entry">Swanckaert, Bianca, Eva Loccufier, Jozefien Geltmeyer, Korneel Rabaey, Klaartje De Buysser, Luiza Bonin, and Karen De Clerck. 2023. “Sulfonated Silica-Based Cation-Exchange Nanofiber Membranes with Superior Self-Cleaning Abilities for Electrochemical Water Treatment Applications.” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i> 309. doi:10.1016/j.seppur.2022.123001.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. Swanckaert <i>et al.</i>, “Sulfonated silica-based cation-exchange nanofiber membranes with superior self-cleaning abilities for electrochemical water treatment applications,” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i>, vol. 309, 2023.</div>
      </div>
  mla: |2
      <div class="csl-entry">Swanckaert, Bianca, et al. “Sulfonated Silica-Based Cation-Exchange Nanofiber Membranes with Superior Self-Cleaning Abilities for Electrochemical Water Treatment Applications.” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i>, vol. 309, 2023, doi:10.1016/j.seppur.2022.123001.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Swanckaert B, Loccufier E, Geltmeyer J, Rabaey K, De Buysser K, Bonin L, et al. Sulfonated silica-based cation-exchange nanofiber membranes with superior self-cleaning abilities for electrochemical water treatment applications. SEPARATION AND PURIFICATION TECHNOLOGY. 2023;309.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2023-01-12 12:40:37
date_updated: 2026-03-31 14:59:32
doi:
- 10.1016/j.seppur.2022.123001
external: 0
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  url: https://biblio.ugent.be/publication/01GPJZY6YJZ4FEDGFG3CYS1R86/file/01GPK143G37DJPFQ0BPH3GMTVG.pdf
- _id: 01GR3Z0PPWC0GZJ0S62R69HMHS
  access: open
  content_type: application/pdf
  kind: fullText
  name: Research paper nanofiber CEM_accepted version.pdf
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  url: https://biblio.ugent.be/publication/01GPJZY6YJZ4FEDGFG3CYS1R86/file/01GR3Z0PPWC0GZJ0S62R69HMHS.pdf
handle: http://hdl.handle.net/1854/LU-01GPJZY6YJZ4FEDGFG3CYS1R86
issn:
- 1383-5866
- 1873-3794
jcr:
  category: ENGINEERING, CHEMICAL
  category_decile: 1
  category_quartile: 1
  category_rank: 15/170
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  eigenfactor: 0.07461
  immediacy_index: 2
  impact_factor: 8.1
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  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 2
  prev_impact_factor: 8.6
  total_cites: 89199
keyword:
- Filtration and Separation
- Analytical Chemistry
- Silica nanofibers
- Cation-exchange membrane
- Self-cleaning
- Fouling
- Electrochemical water treatment
- ADVANCED OXIDATION PROCESSES
- ION-EXCHANGE
- CERAMIC NANOFIBERS
- FUEL-CELL
- ELECTRODIALYSIS
- PERFORMANCE
- SELECTIVITY
- ENERGY
- TECHNOLOGIES
- TEMPERATURE
language:
- eng
page:
  count: '13'
parent:
  short_title: Sep. Purif. Technol.
  title: SEPARATION AND PURIFICATION TECHNOLOGY
project:
- _id: 3S039119
  abstract: <p>Challenges in clean water availability have risen over the years, and
    especially third world countries are in great need of low-cost water purification
    techniques, such as separation membranes. By implementing functionalised organosilica
    nanofibrous membranes, an affinity-based separation mechanism at low energy-cost
    can be developed that withstands harsh environmental conditions. These membranes
    should have a desirable hydrophobicity to tune the affinity of different solvents
    towards the membrane. Additionally, their mechanical endurance should be optimised
    as to increase their life time. These goals are systematically addressed in this
    project. Organosilica nanofibrous membranes will be produced via electrospinning
    starting from a variety of bis-silane precursors. By implementing different functionalities,
    the wettability towards different solvents can be altered in view of separation
    applications. A thorough study on the behaviour of sol-gel systems will be conducted
    to create a comprehensive understanding of the influence of functionalities on
    the electrospinning process. Additionally, a mechanical study will reveal the
    link between the 3D-structure of the organosilica network and the mechanical behaviour.
    With this fundamental knowledge, it will be possible to develop affinity-based
    separation membranes for water purification. This application will even be extended
    towards solvent separation in view of process intensification of liquid-phase
    CO2 conversion to alcohols.</p>
  end_date: 2023-10-31
  gismo_id: 9cfd7b5f-f96d-11e9-b85e-e128f57a36f9
  iweto_id: 3S039119
  start_date: 2019-11-01
  title: Functionalised nanofibrous organosilica membranes for advanced affinity-based
    separation applications
- _id: 01J10219
  abstract: <p>Membrane technology can offer an answer for today’s research challenges
    to solve environmental problems. These membranes are in need of an improved resistance
    to harsh environments. This will further broaden applications such as water recycling
    but will also open up very novel applications in a process intensification of
    CO2 conversion units. Within this project nanofibers are developed for these applications.</p>
  end_date: 2024-07-30
  gismo_id: 1e0c3a2d-9d90-11e9-83f9-d13d95d2d7be
  iweto_id: 01J10219
  start_date: 2019-10-01
  title: Nanofibrous membranes for today’s environmental research questions.
- _id: 01P02520
  abstract: '<p>This research project, involving materials synthesis and electrochemical
    water treatments, will address a key limiting point for long term running of efficient
    electrochemical oxidation of contaminated water: the anodes. Research tasks will
    include: 1) the development of electrodes based on sol-gel materials with high
    surface area/controlled porosity; 2) the electrochemical performance of the electrodes
    on the oxidation of Per- and polyfluoroalkyl substances (PFASs) and As; and 3)
    the determination of the life-service of the anodes. First, the research will
    provide fundamental guidelines to the design of sol-gel TiO2 films, monolithic
    and nanoparticle products. The conversion from TiO2 to Ti4O7 without morphological
    alterations will be the first challenge addressed. A new anode configuration will
    be explored: composite coating (Ti4O7 nanoparticles embedded in Pani matrix) on
    porous additive manufactured Ti substrates. Next, the electrochemical activities
    of the anodes presenting variable configurations will be sensed using cyclic voltammetry
    (CV) and Electrochemical Impedance Spectroscopy (EIS). The electrochemical oxidation
    of As and PFAS will be validated in actual reactor systems. Finally, the long-life
    stability of the electrodes will be determined and erosion-corrosion tests will
    be introduced to the field. The successful completion of this project will have
    numerous benefits to the electrochemical water treatment fields and also to electrode
    materials in general.</p>'
  end_date: 2024-09-30
  gismo_id: dab10fe1-0253-11eb-85b3-6fc0ef18aead
  iweto_id: 01P02520
  start_date: 2020-10-01
  title: 'Development of sol-gel based Ti4O7 electrodes for electrochemical water
    oxidation: the influence of anode configuration on the performance and long term
    stability of the treatment.'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
- Chemistry
title: Sulfonated silica-based cation-exchange nanofiber membranes with superior self-cleaning
  abilities for electrochemical water treatment applications
type: journalArticle
volume: '309'
wos_id: '000915828500001'
wos_type: Article
year: '2023'
...
---
_id: 01H83X216DE0QB0N98CDXHR419
abstract:
- Digital image correlation (DIC) in combination with Scanning Electron Microscopy
  (SEM) and in-situ mechanical testing has great potential to study the micro-mechanical
  behavior of materials. Yet, the application of a high-quality speckle pattern for
  DIC remains challenging at this scale. Here, we present a versatile polymer particle-based
  speckle pattern with adjustable speckle size (0.17–1.04 μm) to cover a wide range
  of magnifications (500x to 5000x) in SEM. This speckle does not completely cover
  the surface, ensuring the visibility of deformations taking place in the studied
  object. The quality of the pattern is analyzed to determine the precision, noise,
  and correctness of the results obtained by SEM-DIC. Out-of-plane displacements are
  also considered. Depending on the choice of speckle size and imaging parameters,
  high quality SEM-DIC patterns were obtained. The measurable strain with this method
  ranges between 0.05% up to 100%. To illustrate the versatility of the speckling
  method, three different micromechanical test cases on polymer materials are presented.
  These showed that global and local deformation can clearly be visualized at different
  magnifications.
abstract_full:
- lang: eng
  text: Digital image correlation (DIC) in combination with Scanning Electron Microscopy
    (SEM) and in-situ mechanical testing has great potential to study the micro-mechanical
    behavior of materials. Yet, the application of a high-quality speckle pattern
    for DIC remains challenging at this scale. Here, we present a versatile polymer
    particle-based speckle pattern with adjustable speckle size (0.17–1.04 μm) to
    cover a wide range of magnifications (500x to 5000x) in SEM. This speckle does
    not completely cover the surface, ensuring the visibility of deformations taking
    place in the studied object. The quality of the pattern is analyzed to determine
    the precision, noise, and correctness of the results obtained by SEM-DIC. Out-of-plane
    displacements are also considered. Depending on the choice of speckle size and
    imaging parameters, high quality SEM-DIC patterns were obtained. The measurable
    strain with this method ranges between 0.05% up to 100%. To illustrate the versatility
    of the speckling method, three different micromechanical test cases on polymer
    materials are presented. These showed that global and local deformation can clearly
    be visualized at different magnifications.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: '108134'
article_type: original
author:
- _id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  biblio_id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  credit_role:
  - conceptualization
  - methodology
  - validation
  - formal_analysis
  - investigation
  - data_curation
  - writing_original_draft
  - writing_review_editing
  - visualization
  first_name: Olivier
  last_name: Verschatse
  name: Olivier Verschatse
  name_last_first: Verschatse, Olivier
  orcid_id: 0000-0001-7732-6007
  ugent_id:
  - '974442908376'
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - conceptualization
  - methodology
  - writing_review_editing
  - supervision
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - conceptualization
  - methodology
  - resources
  - writing_review_editing
  - supervision
  - project_administration
  - funding_acquisition
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  credit_role:
  - conceptualization
  - methodology
  - writing_original_draft
  - writing_review_editing
  - visualization
  - supervision
  - funding_acquisition
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
biblio_id: 01H83X216DE0QB0N98CDXHR419
cite:
  apa: |2
      <div class="csl-entry">Verschatse, O., Van Paepegem, W., De Clerck, K., &#38; Daelemans, L. (2023). Development of a versatile speckle pattern of nano-sized polymer particles for high-resolution SEM-DIC. <i>POLYMER TESTING</i>, <i>125</i>. https://doi.org/10.1016/j.polymertesting.2023.108134</div>
  chicago-author-date: |2
      <div class="csl-entry">Verschatse, Olivier, Wim Van Paepegem, Karen De Clerck, and Lode Daelemans. 2023. “Development of a Versatile Speckle Pattern of Nano-Sized Polymer Particles for High-Resolution SEM-DIC.” <i>POLYMER TESTING</i> 125. https://doi.org/10.1016/j.polymertesting.2023.108134.</div>
  fwo: |2
      <div class="csl-entry">Verschatse, Olivier, Wim Van Paepegem, Karen De Clerck, and Lode Daelemans. 2023. “Development of a Versatile Speckle Pattern of Nano-Sized Polymer Particles for High-Resolution SEM-DIC.” <i>POLYMER TESTING</i> 125. doi:10.1016/j.polymertesting.2023.108134.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">O. Verschatse, W. Van Paepegem, K. De Clerck, and L. Daelemans, “Development of a versatile speckle pattern of nano-sized polymer particles for high-resolution SEM-DIC,” <i>POLYMER TESTING</i>, vol. 125, 2023.</div>
      </div>
  mla: |2
      <div class="csl-entry">Verschatse, Olivier, et al. “Development of a Versatile Speckle Pattern of Nano-Sized Polymer Particles for High-Resolution SEM-DIC.” <i>POLYMER TESTING</i>, vol. 125, 2023, doi:10.1016/j.polymertesting.2023.108134.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Verschatse O, Van Paepegem W, De Clerck K, Daelemans L. Development of a versatile speckle pattern of nano-sized polymer particles for high-resolution SEM-DIC. POLYMER TESTING. 2023;125.</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution-NonCommercial-NoDerivatives 4.0
  International Public License (CC BY-NC-ND 4.0)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2023-08-18 08:44:13
date_updated: 2026-03-31 15:07:36
doi:
- 10.1016/j.polymertesting.2023.108134
external: 0
file:
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  access: open
  content_type: application/pdf
  kind: fullText
  name: 1-s2.0-S0142941823002143-main.pdf
  publication_version: publishedVersion
  sha256: b22779dc6b71e2697cbf68fccd73b60a36a7f008f313302fd19f221ca80dcf94
  size: '17963747'
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  url: https://biblio.ugent.be/publication/01H83X216DE0QB0N98CDXHR419/file/01H83XVGAJNQPFW9WQHTW3BX8P.pdf
handle: http://hdl.handle.net/1854/LU-01H83X216DE0QB0N98CDXHR419
issn:
- 0142-9418
- 1873-2348
jcr:
  category: MATERIALS SCIENCE, CHARACTERIZATION & TESTING
  category_decile: 1
  category_quartile: 1
  category_rank: 1/38
  category_vigintile: 1
  eigenfactor: 0.01348
  immediacy_index: 1.3
  impact_factor: 5
  impact_factor_5yr: 4.7
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 1
  prev_impact_factor: 5.1
  total_cites: 18475
keyword:
- Polymers and Plastics
- Organic Chemistry
- SEM-DIC
- Micromechanical testing
- Polymers
- Epoxy
language:
- eng
page:
  count: '13'
parent:
  short_title: Polym. Test
  title: POLYMER TESTING
project:
- _id: BOF/STA/202009/046
  abstract: <p>Every textile material, be it for low-end consumer goods or high-end
    technical products, is exploited for the properties resulting from its multi-scale
    nature (fibres -&gt; yarns -&gt; textiles -&gt; derivatives). Understanding this
    multi-scale nature is thus key to improving this materials. Textiles are, for
    example, well suited for technical applications thanks to their unique combination
    of lightness, flexibility and strength. Yet such applications often require a
    thorough understanding of the mechanical performance, which in itself is quite
    challenging due to the complex microstructure. By following a multiscale analysis,
    combining both experimental and numerical techniques, starting with individual
    fibres and building up till complete textile materials and derivatives such as
    composites, we underpin the micro-macro relationships that govern the mechanical
    behaviour of textiles. This project combines both advanced testing methods with
    in-situ measurement of the deformation mechanisms at microscale, and novel finite
    element modelling tools that allow simulations at the microscale.</p>
  deleted: 1
  end_date: 2025-06-30
  gismo_id: 25182d45-ccf4-11eb-9f0b-e5cd0f711fbd
  iweto_id: BOF/STA/202009/046
  publication_count: 1
  start_date: 2021-07-01
  title: Multi-scale analysis of textile and derived materials
- _id: 01B03518
  abstract: <p>The requested table top SEM with integrated micromechanical testing,
    combines a large sample chamber to accommodate a sensitive micromechanical set-up
    with a high magnification and easy sampling. This is highly novel and only recently
    available at moderate costs. The in-situ visualization of material performance
    under load at high magnification will boost the academic research of the applicants
    and their collaborators.</p>
  end_date: 2020-05-31
  gismo_id: 320e7057-5b7c-11e9-ac93-1bffacd2a7e2
  iweto_id: 01B03518
  publication_count: 1
  start_date: 2018-06-01
  title: Table top SEM with integrated in-situ micromechanical testing for fiber,
    polymer and composite materials
- _id: 01P03418
  abstract: <p>The unique combination of light and flexible, but strong structures,
    makes textile materials well suited for technical engineering applications. Especially,
    fibre reinforced composites are seeing a tremendous growth for designing light-weight
    structural components. The fibres, the building blocks of any textile, and their
    arrangement in the composite (microstructure) determine the obtainable mechanical
    properties. It is thus of utmost importance that the formation of this microstructure
    is fundamentally understood. This enables the optimization of current materials,
    but also the development of advanced, nano-enabled composites by the novel technique
    of interleaving nanofibrous textiles. It is more complex than one would think
    at first sight due to the complicated nature of textiles. For example, composites
    are made by stacking layers of fabrics, whose interaction with each other and
    the tooling can result in unwanted defects or misalignments. This is related to
    the mechanics of the textile material. By following a multi-scale analysis, combining
    both experimental and numerical techniques, starting with individual fibres and
    building up till complete nano-interleaved preforms, we will get a fundamental
    understanding of the micro-macro relationships that govern the mechanics of textile
    materials. These insights are of crucial importance for further development of
    high-end nano-enabled composites, and extendable to many other technical textile
    applications as well.</p>
  end_date: 2019-09-30
  gismo_id: b2c0136d-5a95-11e9-b3e1-37a68b033e1d
  iweto_id: 01P03418
  start_date: 2019-01-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
- _id: 01J10219
  abstract: <p>Membrane technology can offer an answer for today’s research challenges
    to solve environmental problems. These membranes are in need of an improved resistance
    to harsh environments. This will further broaden applications such as water recycling
    but will also open up very novel applications in a process intensification of
    CO2 conversion units. Within this project nanofibers are developed for these applications.</p>
  end_date: 2024-07-30
  gismo_id: 1e0c3a2d-9d90-11e9-83f9-d13d95d2d7be
  iweto_id: 01J10219
  start_date: 2019-10-01
  title: Nanofibrous membranes for today’s environmental research questions.
- _id: '3E016519'
  abstract: |-
    <p>
    Textiles are ideally suited for technical engineering applications thanks to their unique combination of lightness, flexibility and strength. Especially, fibre reinforced composites are seeing a tremendous growth for designing light-weight structural components. The fibres, the building blocks of any textile, and their arrangement in the textile and the composite (microstructure) determine the macroscopic properties. It is thus of utmost importance that this micro-macro relation is fundamentally understood. The complexity of textiles (complex hierarchical microstructure, highly non-linear behaviour) makes this a challenging problem. By following a multiscale analysis, combining both advanced experimental and numerical techniques, starting with individual fibres and building up till complete nano-interleaved preforms, we get a fundamental understanding of the micro-macro relationships that govern the mechanical behaviour of textile materials. These insights are of crucial importance for the further development of high-end nano-enabled composites and are extendable to many other technical textile applications as well.

    </p>
  end_date: 2022-09-30
  gismo_id: 3c0a4b92-b36f-11e9-9b22-19a03077e1f4
  iweto_id: '3E016519'
  start_date: 2019-10-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Development of a versatile speckle pattern of nano-sized polymer particles
  for high-resolution SEM-DIC
type: journalArticle
volume: '125'
wos_id: '001031917800001'
wos_type: Article
year: '2023'
...
---
_id: 01GTBNMWFSAPBGCTD45HE8XXKG
abstract:
- Organosilica sol–gel synthesis is an important chemical process to deliver advanced
  functional network materials with applications such as wound dressings, solar cells
  and membranes. The chemical kinetics are although poorly understood, due to a lack
  of Arrhenius parameters and a focus on kinetic data mainly recorded at 298 K. The
  present work overcomes these shortcomings by reporting Arrhenius parameters for
  the most important reactions (hydrolysis and condensation), selecting tetraethyl
  orthosilicate (TEOS) crosslinking with hydrochloric acid (HCl) as reference case.
  A dedicated 29Si nuclear magnetic resonance (NMR) protocol applicable at any process
  temperature, with better relaxation delay optimization, peak identification, and
  an automated correction for further reaction during analysis at 298 K, is put forward.
  NMR is the analysis technique of choice to quantitatively follow the reactions in
  time due to its high specificity. This novel NMR-based protocol enables a more reliable
  quantification of the contribution of species that have been crosslinked i times
  (Q1-Q4). The tuned Arrhenius parameters, employing coupled matrixbased Monte Carlo
  simulations, can describe the isothermal kinetics for temperatures ranging from
  298 to 328 K well. Moreover, these Arrhenius parameters are used to better understand
  the non-isothermal kinetics as utilized to synthesize sol/gel-like precursor solutions
  for applications including membrane production. Successful model validation under
  both isothermal and non-isothermal conditions is demonstrated, unlocking the door
  to a better understanding of orthosilicate crosslinking kinetics and associated
  material properties.
abstract_full:
- lang: eng
  text: Organosilica sol–gel synthesis is an important chemical process to deliver
    advanced functional network materials with applications such as wound dressings,
    solar cells and membranes. The chemical kinetics are although poorly understood,
    due to a lack of Arrhenius parameters and a focus on kinetic data mainly recorded
    at 298 K. The present work overcomes these shortcomings by reporting Arrhenius
    parameters for the most important reactions (hydrolysis and condensation), selecting
    tetraethyl orthosilicate (TEOS) crosslinking with hydrochloric acid (HCl) as reference
    case. A dedicated 29Si nuclear magnetic resonance (NMR) protocol applicable at
    any process temperature, with better relaxation delay optimization, peak identification,
    and an automated correction for further reaction during analysis at 298 K, is
    put forward. NMR is the analysis technique of choice to quantitatively follow
    the reactions in time due to its high specificity. This novel NMR-based protocol
    enables a more reliable quantification of the contribution of species that have
    been crosslinked i times (Q1-Q4). The tuned Arrhenius parameters, employing coupled
    matrixbased Monte Carlo simulations, can describe the isothermal kinetics for
    temperatures ranging from 298 to 328 K well. Moreover, these Arrhenius parameters
    are used to better understand the non-isothermal kinetics as utilized to synthesize
    sol/gel-like precursor solutions for applications including membrane production.
    Successful model validation under both isothermal and non-isothermal conditions
    is demonstrated, unlocking the door to a better understanding of orthosilicate
    crosslinking kinetics and associated material properties.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE06
  ugent_id: WE06
article_number: '141701'
article_type: original
author:
- _id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  first_name: Sofie
  last_name: Verschraegen
  name: Sofie Verschraegen
  name_last_first: Verschraegen, Sofie
  orcid_id: 0000-0002-6164-3662
  ugent_id:
  - '000150868746'
  - '802003501534'
  - '919029486586'
  - '975200255882'
- _id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  first_name: Eva
  last_name: Loccufier
  name: Eva Loccufier
  name_last_first: Loccufier, Eva
  orcid_id: 0000-0001-7045-2721
  ugent_id:
  - '802002671374'
  - '974161061035'
- _id: 28DB1308-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 28DB1308-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lies
  last_name: De Keer
  name: Lies De Keer
  name_last_first: De Keer, Lies
  orcid_id: 0000-0003-2620-0046
  ugent_id:
  - '000100481791'
  - '802002106754'
  - '971930032541'
- _id: F99156E8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F99156E8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Paul
  last_name: Van Steenberge
  name: Paul Van Steenberge
  name_last_first: Van Steenberge, Paul
  orcid_id: 0000-0001-6244-1299
  ugent_id:
  - '802000264461'
  - '975633424843'
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
biblio_id: 01GTBNMWFSAPBGCTD45HE8XXKG
cite:
  apa: |2
      <div class="csl-entry">Verschraegen, S., Loccufier, E., De Keer, L., Van Steenberge, P., De Buysser, K., De Clerck, K., &#38; D’hooge, D. (2023). A dedicated protocol to capture orthosilicate crosslinking kinetics and Arrhenius parameters. <i>CHEMICAL ENGINEERING JOURNAL</i>, <i>461</i>. https://doi.org/10.1016/j.cej.2023.141701</div>
  chicago-author-date: |2
      <div class="csl-entry">Verschraegen, Sofie, Eva Loccufier, Lies De Keer, Paul Van Steenberge, Klaartje De Buysser, Karen De Clerck, and Dagmar D’hooge. 2023. “A Dedicated Protocol to Capture Orthosilicate Crosslinking Kinetics and Arrhenius Parameters.” <i>CHEMICAL ENGINEERING JOURNAL</i> 461. https://doi.org/10.1016/j.cej.2023.141701.</div>
  fwo: |2
      <div class="csl-entry">Verschraegen, Sofie, Eva Loccufier, Lies De Keer, Paul Van Steenberge, Klaartje De Buysser, Karen De Clerck, and Dagmar D’hooge. 2023. “A Dedicated Protocol to Capture Orthosilicate Crosslinking Kinetics and Arrhenius Parameters.” <i>CHEMICAL ENGINEERING JOURNAL</i> 461. doi:10.1016/j.cej.2023.141701.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. Verschraegen <i>et al.</i>, “A dedicated protocol to capture orthosilicate crosslinking kinetics and Arrhenius parameters,” <i>CHEMICAL ENGINEERING JOURNAL</i>, vol. 461, 2023.</div>
      </div>
  mla: |2
      <div class="csl-entry">Verschraegen, Sofie, et al. “A Dedicated Protocol to Capture Orthosilicate Crosslinking Kinetics and Arrhenius Parameters.” <i>CHEMICAL ENGINEERING JOURNAL</i>, vol. 461, 2023, doi:10.1016/j.cej.2023.141701.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Verschraegen S, Loccufier E, De Keer L, Van Steenberge P, De Buysser K, De Clerck K, et al. A dedicated protocol to capture orthosilicate crosslinking kinetics and Arrhenius parameters. CHEMICAL ENGINEERING JOURNAL. 2023;461.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2023-02-28 09:28:52
date_updated: 2026-03-31 15:06:08
doi:
- 10.1016/j.cej.2023.141701
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-01GTBNMWFSAPBGCTD45HE8XXKG
issn:
- 1385-8947
- 1873-3212
jcr:
  category: ENGINEERING, ENVIRONMENTAL
  category_decile: 1
  category_quartile: 1
  category_rank: 3/81
  category_vigintile: 1
  eigenfactor: 0.37715
  immediacy_index: 2.6
  impact_factor: 13.3
  impact_factor_5yr: 13.2
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 1
  prev_impact_factor: 15.1
  total_cites: 379191
keyword:
- Industrial and Manufacturing Engineering
- General Chemical Engineering
- Environmental Chemistry
- General Chemistry
language:
- eng
page:
  count: '11'
parent:
  short_title: Chem. Eng. J.
  title: CHEMICAL ENGINEERING JOURNAL
project:
- _id: 3F006621
  abstract: '<p>Today the high potential of (organo)silica branched/crosslinked/network
    polymers in nanofibrous membranes cannot be exploited to the fullest due to the
    lack of a straightforward way to produce them. To solve this, a fundamental understanding
    of how sol-gel synthesis and electrospinning are related via rheology is required.
    The main bottleneck remains that the viscosity evolution, as the network develops
    during synthesis, cannot be fully interpreted at the molecular level. For this,
    it is essential to fundamentally link the different steps in the electrospinning
    production process: from network formation of (organo)silica precursor molecules
    over electrospinning toward nanofibrous membranes. Both experimental (e.g. 29Si
    NMR, rheology) and kinetic modelling techniques will be used for this purpose.
    The morphology of the resulting nanofibrous membranes will be determined and linked
    back to the chemical building blocks, sol-gel synthesis and the electrospinning
    process as to enable the tuning of these (organo)silica nanofibers for advanced
    applications. The fiber diameter and the wettability will be studied as key model
    properties at respectively the fiber and material membrane level. This generic
    methodology can in the future be expanded toward other material properties to
    allow for molecular scale-driven material property tuning.</p>'
  end_date: 2025-10-31
  gismo_id: 190fbf11-2a82-11ec-95aa-05ef7abe0c3c
  iweto_id: 3F006621
  start_date: 2021-11-01
  title: 'Connecting (organo)silica sol-gel synthesis and membrane electrospinning:
    pushing toward molecular scale-driven property tuning'
- _id: 01J10219
  abstract: <p>Membrane technology can offer an answer for today’s research challenges
    to solve environmental problems. These membranes are in need of an improved resistance
    to harsh environments. This will further broaden applications such as water recycling
    but will also open up very novel applications in a process intensification of
    CO2 conversion units. Within this project nanofibers are developed for these applications.</p>
  end_date: 2024-07-30
  gismo_id: 1e0c3a2d-9d90-11e9-83f9-d13d95d2d7be
  iweto_id: 01J10219
  start_date: 2019-10-01
  title: Nanofibrous membranes for today’s environmental research questions.
- _id: 3G0H5216N
  abstract: <p>A multi-scale model is developed for the design of network polymers
    for high-tech applications.</p>
  end_date: 2020-04-30
  gismo_id: 81ae10a4-560e-42f3-811a-d3ce6f4e3d53
  iweto_id: 3G0H5216N
  start_date: 2016-05-01
  title: In-silico design of functional advanced macromolecules
- _id: 3G0H5216
  abstract: <br />The abstract for &quot;In-silico design of functional advanced macromolecules.&quot;
    is missing. Please contact the promotor for more information.
  end_date: 2020-04-30
  gismo_id: 059703ae-9e91-49c6-979a-5d2166f181db
  iweto_id: 3G0H5216
  start_date: 2016-05-01
  title: In-silico design of functional advanced macromolecules.
publication_status: published
publication_status_sort: 2
status: public
subject:
- Chemistry
- Technology and Engineering
title: A dedicated protocol to capture orthosilicate crosslinking kinetics and Arrhenius
  parameters
type: journalArticle
volume: '461'
wos_id: '000998974200001'
wos_type: Article
year: '2023'
...
---
_id: 01H9G348R6MCXQFG8P2Y3593Y4
abstract:
- The development of intelligent photonic systems made of stimuli-responsive materials,
  i.e., with features tunable and switchable by environmental signals, is gaining
  increasing attention. Here, the study reports on switchable optical gain based on
  complex arrays of nanofibers made of thermo-responsive poly(2-n-propyl-2-oxazoline),
  incorporating a blue-emitting chromophore. The fluorescent component endows the
  nanofibers with optical gain in addition to the moisture absorption capability of
  the polymer. Light amplification is found with temperature- and humidity-dependent
  excitation threshold. The threshold value is halved close to the polymer cloud point
  temperature, enabling reversible switching of the emission intensity upon temperature
  change. Waveguiding analysis by back-focal plane imaging on individual fibers allows
  the switching mechanisms to be rationalized, in terms of moisture sorption swelling-induced
  morphological changes. These responsive light-emitting nanofibers may find application
  in a novel class of lasers with dynamically-controlled properties, environmentally-switchable
  optoelectronics, and smart sensors.
abstract_full:
- lang: eng
  text: The development of intelligent photonic systems made of stimuli-responsive
    materials, i.e., with features tunable and switchable by environmental signals,
    is gaining increasing attention. Here, the study reports on switchable optical
    gain based on complex arrays of nanofibers made of thermo-responsive poly(2-n-propyl-2-oxazoline),
    incorporating a blue-emitting chromophore. The fluorescent component endows the
    nanofibers with optical gain in addition to the moisture absorption capability
    of the polymer. Light amplification is found with temperature- and humidity-dependent
    excitation threshold. The threshold value is halved close to the polymer cloud
    point temperature, enabling reversible switching of the emission intensity upon
    temperature change. Waveguiding analysis by back-focal plane imaging on individual
    fibers allows the switching mechanisms to be rationalized, in terms of moisture
    sorption swelling-induced morphological changes. These responsive light-emitting
    nanofibers may find application in a novel class of lasers with dynamically-controlled
    properties, environmentally-switchable optoelectronics, and smart sensors.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
article_number: '2202056'
article_type: original
author:
- first_name: Matteo
  last_name: Archimi
  name: Matteo Archimi
  name_last_first: Archimi, Matteo
- _id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
  ugent_id:
  - '000100318410'
  - '802002133935'
  - '975208259089'
- _id: 39CBE44E-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 39CBE44E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jana
  last_name: Becelaere
  name: Jana Becelaere
  name_last_first: Becelaere, Jana
  orcid_id: 0000-0001-5024-3308
  ugent_id:
  - '977861082888'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- first_name: Andrea
  last_name: ' Camposeo'
  name: Andrea  Camposeo
  name_last_first: ' Camposeo, Andrea'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- first_name: Dario
  last_name: ' Pisignano'
  name: Dario  Pisignano
  name_last_first: ' Pisignano, Dario'
biblio_id: 01H9G348R6MCXQFG8P2Y3593Y4
cite:
  apa: |2
      <div class="csl-entry">Archimi, M., Schoolaert, E., Becelaere, J., Hoogenboom, R.,  Camposeo, A., De Clerck, K., &#38;  Pisignano, D. (2023). Optical gain switching by thermo-responsive light-emitting nanofibers through moisture sorption swelling. <i>ADVANCED OPTICAL MATERIALS</i>, <i>11</i>(13). https://doi.org/10.1002/adom.202202056</div>
  chicago-author-date: |2
      <div class="csl-entry">Archimi, Matteo, Ella Schoolaert, Jana Becelaere, Richard Hoogenboom, Andrea  Camposeo, Karen De Clerck, and Dario  Pisignano. 2023. “Optical Gain Switching by Thermo-Responsive Light-Emitting Nanofibers through Moisture Sorption Swelling.” <i>ADVANCED OPTICAL MATERIALS</i> 11 (13). https://doi.org/10.1002/adom.202202056.</div>
  fwo: |2
      <div class="csl-entry">Archimi, Matteo, Ella Schoolaert, Jana Becelaere, Richard Hoogenboom, Andrea  Camposeo, Karen De Clerck, and Dario  Pisignano. 2023. “Optical Gain Switching by Thermo-Responsive Light-Emitting Nanofibers through Moisture Sorption Swelling.” <i>ADVANCED OPTICAL MATERIALS</i> 11 (13). doi:10.1002/adom.202202056.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">M. Archimi <i>et al.</i>, “Optical gain switching by thermo-responsive light-emitting nanofibers through moisture sorption swelling,” <i>ADVANCED OPTICAL MATERIALS</i>, vol. 11, no. 13, 2023.</div>
      </div>
  mla: |2
      <div class="csl-entry">Archimi, Matteo, et al. “Optical Gain Switching by Thermo-Responsive Light-Emitting Nanofibers through Moisture Sorption Swelling.” <i>ADVANCED OPTICAL MATERIALS</i>, vol. 11, no. 13, 2023, doi:10.1002/adom.202202056.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Archimi M, Schoolaert E, Becelaere J, Hoogenboom R,  Camposeo A, De Clerck K, et al. Optical gain switching by thermo-responsive light-emitting nanofibers through moisture sorption swelling. ADVANCED OPTICAL MATERIALS. 2023;11(13).</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution 4.0 International Public License
  (CC-BY 4.0)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2023-09-04 12:36:53
date_updated: 2026-03-31 15:08:35
doi:
- 10.1002/adom.202202056
external: 0
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handle: http://hdl.handle.net/1854/LU-01H9G348R6MCXQFG8P2Y3593Y4
issn:
- 2195-1071
issue: '13'
jcr:
  category: OPTICS
  category_decile: 1
  category_quartile: 1
  category_rank: 10/119
  category_vigintile: 2
  eigenfactor: 0.05321
  immediacy_index: 1.5
  impact_factor: 8
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  total_cites: 38352
keyword:
- ELECTROSPUN NANOFIBERS
- HUMIDITY
- LASER
- POLY(2-OXAZOLINE)S
- TEMPERATURE
- EMISSION
- POLYMERS
- DESIGN
- hygroscopic polymers
- light-emitting nanofibers
- nanofiber networks
- nanofibers
- optical gain
- stimuli-responsive materials
- thermo-responsive polymers
language:
- eng
page:
  count: '9'
parent:
  short_title: Adv. Opt. Mater.
  title: ADVANCED OPTICAL MATERIALS
project:
- _id: 3S013517
  abstract: <p>Nanofibers are fibers with a diameter that is 1000 times smaller than
    a human hair. This makes<br /> nanofiber membranes very light and porous, making
    them ideally suited for sensor applications. By<br /> adding an indicator dye,
    that is a dye that changes color or fluorescence in reponse to a specific<br />
    chemical substance, to the nanofiber membrane, an ultrasensitive optical, chemical
    sensor is<br /> created. However, to design an optimal sensor, it is important
    to understand how the synthesis<br /> and production of the nanofibers influence
    the behavior and performance of the sensor.<br /> Therefore, in this project,
    different poly(2-oxazoline)s, which are very versatile polymers with<br /> tunable
    water solubility, will be covalently linked to pyrene, i.e. a fluorescent dye
    that is used for<br /> visualization. These functionalized polymers will then
    be processed into nanofibers from water,<br /> which is ecologically more friendly
    than the current nanofiber production techniques. The<br /> microstructure and
    behavior of the nanofibers and, thus, the sensor performance, can now be<br />
    analyzed as pyrene will function as a probe in visualization techniques. The produced
    nanofibrous<br /> sensors can be used in many applications, such as the detection
    of explosives and metal cations.<br /> Moreover, the pyrene-system will be used
    as a model to efficiently design optimal, optical sensors<br /> that change color
    in response to pH-changes. These sensors are suited for many applications such<br
    /> as wound healing, safety equipment and food inspection.</p>
  end_date: 2021-03-31
  gismo_id: 4c4bb546-8208-11e9-8dbc-f3943d565b0b
  iweto_id: 3S013517
  publication_count: 1
  start_date: 2017-01-01
  title: |-
    Development of easy read-out, ultrasensitive and reversible optical
    nanofibrous sensors based on waterborne electrospinning of dyefunctionalized
    copoly(2-oxazoline)s.
- _id: 3S000718
  abstract: <p>Today, over 60%, of all newly developed drugs are discarded due to
    low water-solubility. This low water-solubility is due to both the chemical makeup
    and the high degree of crystallinity of the drug. The current formulation techniques
    to produce tablets today cannot circumvent this problem, which means that the
    produced product cannot be absorbed by our body and will, hence, have a very low
    efficacy. With solvent electrospinning as a new formulation technique it is aimed
    to homogeneously disperse the drug in a polymer matrix. In first proof of principle
    experiments on the drug flubendazole it has already been shown that this can prevent
    crystallization, which enhances the solubility of the drug inside aqueous environments,
    such as the body. In other words, by formulating highly crystalline drugs with
    low water-solubility via solvent electrospinning, the drug's bioavailability is
    increased. However, this phenomenon is not fully understood and, hence, far from
    optimized and for sure not yet widely applicable. Thus, the influence of different
    process parameters on the final drug delivery should be studied. Also different
    polymers and different drugs should be examined. In this project, these topics
    will be dealt with and finally the formulation of highly crystalline drugs that
    are insoluble in aqueous environments will be made viable. The technique will
    be well understood and optimized in order to design new polymer-drug systems that
    increase the bioavailability of the drug.</p>
  end_date: 2022-12-31
  gismo_id: d89c7f90-be65-11e9-ace9-8bf558aeac68
  iweto_id: 3S000718
  start_date: 2018-01-01
  title: |-
    Solvent electrospinning nanofibers as a novel material for improved
    polymer-API solid dispersions.
- _id: 3G060518
  abstract: <p> Due to their high relative surface area, nanofibrous materials obtained
    via electrospinning have shown to be ideal candidates for high-quality sensors
    in many sectors, including environmental monitoring, food inspection and biomedicine.
    The key challenges remain (i) the controlled incorporation of analyte-sensitive
    dye molecules in the nanofibers via chemical linkage without leaching upon application
    and (ii) the identification of environmentally friendly electrospinning conditions,
    aiming at the production of sensor materials with a long-term water stability.
    In view of these challenges and benefiting from the joint expertise of the applicants
    in material science, chemical engineering, and polymer chemistry, in this project,
    electrospinning of copoly(2-oxazoline) s (PAOx) with immobilized indicator dye
    molecules is explored. Ultimately, large-scale production of water-stable PAOx-based
    nanofibrous sensors will be realized by (i) applying model-based design to control
    the microstructure of individual PAOx chains during the synthesis step and (ii)
    tuning the electrospinning conditions upon nanofiber production with respect to
    water stability and sensor accessibility. Advanced characterization techniques
    will be used to showcase the controlled dye incorporation and to confirm the superior
    behaviour of the obtained sensors, starting from pyrenebased reference dyes opening
    up a wide range of potential indicator dyes and relevant applications. </p>
  end_date: 2021-12-31
  gismo_id: 68c7d40e-8a7e-479e-8231-436053702888
  iweto_id: 3G060518
  publication_count: 2
  start_date: 2018-01-01
  title: Combining material science and chemical engineering design for novel and
    fast optical nanostructured sensors.
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Optical gain switching by thermo-responsive light-emitting nanofibers through
  moisture sorption swelling
type: journalArticle
volume: '11'
wos_id: '000990628800001'
wos_type: Article
year: '2023'
...
---
_id: 01H95WH9WSP8NSXSS1NNGBZD5D
abstract:
- Nanofibrous scaffolds are widely investigated for tendon tissue engineering due
  to their porous structure, high flexibility, and the ability to guide cells in a
  preferred direction. Previous research has shown that providing a microenvironment
  similar to in vivo settings improves tissue regeneration. Therefore, in this work,
  ingenious multicomponent nanoyarn scaffolds that mimic the fibrillar and tubular
  structures of tendons are developed for the first time through electrospinning and
  bundling nanoyarns followed by electrospinning of a nanofibrous shell around the
  bundle. Multicomponent nanoyarn scaffolds out of poly(ε-caprolactone) with varying
  porosity, density, and diameter were successfully produced by coelectrospinning
  with water-soluble poly(2-ethyl-2-oxazoline) as a sacrificial component. The diameter
  and fiber orientation of the nanoyarns were successfully tuned based on parameter-morphology
  models obtained by the design of experiments. Cyclic bending tests were performed,
  indicating that the flexibility of the multicomponent nanoyarn scaffolds depends
  on the morphology and can be tuned through controlling the number of nanoyarns in
  the bundle and the porosity. Indirect and direct cell culture tests using mouse
  and equine tendon cells revealed excellent cytocompatibility of the nanofibrous
  products and demonstrated the potential of the nanoyarns to guide the growing cells
  along the nanofiber direction, which is crucial for tendon tissue engineering.
abstract_full:
- lang: eng
  text: Nanofibrous scaffolds are widely investigated for tendon tissue engineering
    due to their porous structure, high flexibility, and the ability to guide cells
    in a preferred direction. Previous research has shown that providing a microenvironment
    similar to in vivo settings improves tissue regeneration. Therefore, in this work,
    ingenious multicomponent nanoyarn scaffolds that mimic the fibrillar and tubular
    structures of tendons are developed for the first time through electrospinning
    and bundling nanoyarns followed by electrospinning of a nanofibrous shell around
    the bundle. Multicomponent nanoyarn scaffolds out of poly(ε-caprolactone) with
    varying porosity, density, and diameter were successfully produced by coelectrospinning
    with water-soluble poly(2-ethyl-2-oxazoline) as a sacrificial component. The diameter
    and fiber orientation of the nanoyarns were successfully tuned based on parameter-morphology
    models obtained by the design of experiments. Cyclic bending tests were performed,
    indicating that the flexibility of the multicomponent nanoyarn scaffolds depends
    on the morphology and can be tuned through controlling the number of nanoyarns
    in the bundle and the porosity. Indirect and direct cell culture tests using mouse
    and equine tendon cells revealed excellent cytocompatibility of the nanofibrous
    products and demonstrated the potential of the nanoyarns to guide the growing
    cells along the nanofiber direction, which is crucial for tendon tissue engineering.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
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  ugent_id: TW11
- name: Department of Organic and Macromolecular Chemistry
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  - ugent_id: WE07
  ugent_id: WE07
- name: Department of Translational Physiology, Infectiology and Public Health
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  - ugent_id: DI
  - ugent_id: DI04
  ugent_id: DI04
article_type: original
author:
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    ugent_id: TW11
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  credit_role:
  - data_curation
  - formal_analysis
  - investigation
  - methodology
  - writing_original_draft
  first_name: Lucas
  last_name: Schynkel
  name: Lucas Schynkel
  name_last_first: Schynkel, Lucas
  orcid_id: 0000-0003-2488-2303
  ugent_id:
  - '000170347659'
  - '802004139815'
  - '971311457679'
- _id: 99ED24CC-1E7E-11E4-B0FC-3B54B5D1D7B1
  affiliation:
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    - ugent_id: DI
    - ugent_id: DI04
    ugent_id: DI04
  biblio_id: 99ED24CC-1E7E-11E4-B0FC-3B54B5D1D7B1
  credit_role:
  - data_curation
  - formal_analysis
  - investigation
  - writing_original_draft
  first_name: Marguerite
  last_name: Meeremans
  name: Marguerite Meeremans
  name_last_first: Meeremans, Marguerite
  orcid_id: 0000-0003-1521-3378
  ugent_id:
  - '000140353643'
  - '802003490622'
  - '978088211826'
- credit_role:
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  - formal_analysis
  - investigation
  - methodology
  - writing_review_editing
  first_name: Anna A.
  last_name: Meyer
  name: Anna A. Meyer
  name_last_first: Meyer, Anna A.
- _id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  credit_role:
  - conceptualization
  - investigation
  - methodology
  - writing_original_draft
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
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  - '000100318410'
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- _id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
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  credit_role:
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  - writing_review_editing
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
  orcid_id: 0000-0002-1281-2968
  ugent_id:
  - '000070582957'
  - '975000449525'
- credit_role:
  - supervision
  - writing_review_editing
  first_name: Abdolrahman
  last_name: Omidinia-Anarkoli
  name: Abdolrahman Omidinia-Anarkoli
  name_last_first: Omidinia-Anarkoli, Abdolrahman
- _id: F6EFF23C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: F6EFF23C-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - supervision
  - writing_review_editing
  first_name: Sandra
  last_name: Van Vlierberghe
  name: Sandra Van Vlierberghe
  name_last_first: Van Vlierberghe, Sandra
  orcid_id: 0000-0001-7688-1682
  ugent_id:
  - '801001801429'
  - '971159275288'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  credit_role:
  - methodology
  - writing_review_editing
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- credit_role:
  - supervision
  - writing_review_editing
  first_name: Laura
  last_name: De Laporte
  name: Laura De Laporte
  name_last_first: De Laporte, Laura
- _id: F7AF8B88-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: DI
    - ugent_id: DI04
    ugent_id: DI04
  biblio_id: F7AF8B88-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - supervision
  - writing_review_editing
  first_name: Catharina
  last_name: De Schauwer
  name: Catharina De Schauwer
  name_last_first: De Schauwer, Catharina
  orcid_id: 0000-0002-4475-7094
  ugent_id:
  - '801002007957'
  - '972920684043'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  credit_role:
  - conceptualization
  - funding_acquisition
  - methodology
  - supervision
  - writing_review_editing
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
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    ugent_id: TW11
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  credit_role:
  - conceptualization
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  - writing_review_editing
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01H95WH9WSP8NSXSS1NNGBZD5D
cite:
  apa: |2
      <div class="csl-entry">Schynkel, L., Meeremans, M., Meyer, A. A., Schoolaert, E., Geltmeyer, J., Omidinia-Anarkoli, A., … De Clerck, K. (2023). Cell guiding multicomponent nanoyarn tendon scaffolds with tunable morphology and flexibility. <i>ACS APPLIED MATERIALS &#38; INTERFACES</i>, <i>15</i>(36), 42113–43218. https://doi.org/10.1021/acsami.3c08241</div>
  bof: |2-
      <div class="csl-entry">Schynkel, Lucas, Marguerite Meeremans, Anna A. Meyer, Ella Schoolaert, Jozefien Geltmeyer, Abdolrahman Omidinia-Anarkoli, Sandra Van Vlierberghe, Lode Daelemans, Laura De Laporte, Catharina De Schauwer, Richard Hoogenboom, and Karen De Clerck. 2023. “Cell Guiding Multicomponent Nanoyarn Tendon Scaffolds with Tunable Morphology and Flexibility.” <i>ACS APPLIED MATERIALS &#38; INTERFACES</i> 15 (36): 42113–43218. doi:10.1021/acsami.3c08241.</div>
    <div><i>Impact factor: 8.3, category: MATERIALS SCIENCE, MULTIDISCIPLINARY, rank: 69/438, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Schynkel, Lucas, Marguerite Meeremans, Anna A. Meyer, Ella Schoolaert, Jozefien Geltmeyer, Abdolrahman Omidinia-Anarkoli, Sandra Van Vlierberghe, et al. 2023. “Cell Guiding Multicomponent Nanoyarn Tendon Scaffolds with Tunable Morphology and Flexibility.” <i>ACS APPLIED MATERIALS &#38; INTERFACES</i> 15 (36): 42113–218. https://doi.org/10.1021/acsami.3c08241.</div>
  fwo: |2
      <div class="csl-entry">Schynkel, Lucas, Marguerite Meeremans, Anna A. Meyer, Ella Schoolaert, Jozefien Geltmeyer, Abdolrahman Omidinia-Anarkoli, Sandra Van Vlierberghe, Lode Daelemans, Laura De Laporte, Catharina De Schauwer, Richard Hoogenboom, and Karen De Clerck. 2023. “Cell Guiding Multicomponent Nanoyarn Tendon Scaffolds with Tunable Morphology and Flexibility.” <i>ACS APPLIED MATERIALS &#38; INTERFACES</i> 15 (36): 42113–43218. doi:10.1021/acsami.3c08241.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Schynkel <i>et al.</i>, “Cell guiding multicomponent nanoyarn tendon scaffolds with tunable morphology and flexibility,” <i>ACS APPLIED MATERIALS &#38; INTERFACES</i>, vol. 15, no. 36, pp. 42113–43218, 2023.</div>
      </div>
  mla: |2
      <div class="csl-entry">Schynkel, Lucas, et al. “Cell Guiding Multicomponent Nanoyarn Tendon Scaffolds with Tunable Morphology and Flexibility.” <i>ACS APPLIED MATERIALS &#38; INTERFACES</i>, vol. 15, no. 36, 2023, pp. 42113–3218, doi:10.1021/acsami.3c08241.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Schynkel L, Meeremans M, Meyer AA, Schoolaert E, Geltmeyer J, Omidinia-Anarkoli A, et al. Cell guiding multicomponent nanoyarn tendon scaffolds with tunable morphology and flexibility. ACS APPLIED MATERIALS &#38; INTERFACES. 2023;15(36):42113–3218.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
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    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2023-08-31 13:29:15
date_updated: 2026-03-31 15:12:08
doi:
- 10.1021/acsami.3c08241
external: 0
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handle: http://hdl.handle.net/1854/LU-01H95WH9WSP8NSXSS1NNGBZD5D
issn:
- 1944-8244
- 1944-8252
issue: '36'
jcr:
  category: MATERIALS SCIENCE, MULTIDISCIPLINARY
  category_decile: 2
  category_quartile: 1
  category_rank: 69/438
  category_vigintile: 4
  eigenfactor: 0.36083
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  impact_factor_5yr: 8.7
  prev_category_decile: 2
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  total_cites: 364612
keyword:
- poly(2-ethyl-2-oxazoline)
- poly(ε-caprolactone)
- yarn electrospinning
- multicomponent nanoyarn scaffold
- bending behavior
- cell guidance
- nerve regeneration
- tendon tissue engineering
- TISSUE
- ALIGNMENT
- COLLAGEN
- INJURY
- FIBERS
- YARNS
language:
- eng
page:
  first: '42113'
  last: '43218'
parent:
  short_title: ACS Appl. Mater. Interfaces
  title: ACS APPLIED MATERIALS & INTERFACES
project:
- _id: 3G060518
  abstract: <p> Due to their high relative surface area, nanofibrous materials obtained
    via electrospinning have shown to be ideal candidates for high-quality sensors
    in many sectors, including environmental monitoring, food inspection and biomedicine.
    The key challenges remain (i) the controlled incorporation of analyte-sensitive
    dye molecules in the nanofibers via chemical linkage without leaching upon application
    and (ii) the identification of environmentally friendly electrospinning conditions,
    aiming at the production of sensor materials with a long-term water stability.
    In view of these challenges and benefiting from the joint expertise of the applicants
    in material science, chemical engineering, and polymer chemistry, in this project,
    electrospinning of copoly(2-oxazoline) s (PAOx) with immobilized indicator dye
    molecules is explored. Ultimately, large-scale production of water-stable PAOx-based
    nanofibrous sensors will be realized by (i) applying model-based design to control
    the microstructure of individual PAOx chains during the synthesis step and (ii)
    tuning the electrospinning conditions upon nanofiber production with respect to
    water stability and sensor accessibility. Advanced characterization techniques
    will be used to showcase the controlled dye incorporation and to confirm the superior
    behaviour of the obtained sensors, starting from pyrenebased reference dyes opening
    up a wide range of potential indicator dyes and relevant applications. </p>
  end_date: 2021-12-31
  gismo_id: 68c7d40e-8a7e-479e-8231-436053702888
  iweto_id: 3G060518
  publication_count: 2
  start_date: 2018-01-01
  title: Combining material science and chemical engineering design for novel and
    fast optical nanostructured sensors.
- _id: 3S013517
  abstract: <p>Nanofibers are fibers with a diameter that is 1000 times smaller than
    a human hair. This makes<br /> nanofiber membranes very light and porous, making
    them ideally suited for sensor applications. By<br /> adding an indicator dye,
    that is a dye that changes color or fluorescence in reponse to a specific<br />
    chemical substance, to the nanofiber membrane, an ultrasensitive optical, chemical
    sensor is<br /> created. However, to design an optimal sensor, it is important
    to understand how the synthesis<br /> and production of the nanofibers influence
    the behavior and performance of the sensor.<br /> Therefore, in this project,
    different poly(2-oxazoline)s, which are very versatile polymers with<br /> tunable
    water solubility, will be covalently linked to pyrene, i.e. a fluorescent dye
    that is used for<br /> visualization. These functionalized polymers will then
    be processed into nanofibers from water,<br /> which is ecologically more friendly
    than the current nanofiber production techniques. The<br /> microstructure and
    behavior of the nanofibers and, thus, the sensor performance, can now be<br />
    analyzed as pyrene will function as a probe in visualization techniques. The produced
    nanofibrous<br /> sensors can be used in many applications, such as the detection
    of explosives and metal cations.<br /> Moreover, the pyrene-system will be used
    as a model to efficiently design optimal, optical sensors<br /> that change color
    in response to pH-changes. These sensors are suited for many applications such<br
    /> as wound healing, safety equipment and food inspection.</p>
  end_date: 2021-03-31
  gismo_id: 4c4bb546-8208-11e9-8dbc-f3943d565b0b
  iweto_id: 3S013517
  publication_count: 1
  start_date: 2017-01-01
  title: |-
    Development of easy read-out, ultrasensitive and reversible optical
    nanofibrous sensors based on waterborne electrospinning of dyefunctionalized
    copoly(2-oxazoline)s.
- _id: 01B03518
  abstract: <p>The requested table top SEM with integrated micromechanical testing,
    combines a large sample chamber to accommodate a sensitive micromechanical set-up
    with a high magnification and easy sampling. This is highly novel and only recently
    available at moderate costs. The in-situ visualization of material performance
    under load at high magnification will boost the academic research of the applicants
    and their collaborators.</p>
  end_date: 2020-05-31
  gismo_id: 320e7057-5b7c-11e9-ac93-1bffacd2a7e2
  iweto_id: 01B03518
  publication_count: 1
  start_date: 2018-06-01
  title: Table top SEM with integrated in-situ micromechanical testing for fiber,
    polymer and composite materials
- _id: BOF/STA/202009/046
  abstract: <p>Every textile material, be it for low-end consumer goods or high-end
    technical products, is exploited for the properties resulting from its multi-scale
    nature (fibres -&gt; yarns -&gt; textiles -&gt; derivatives). Understanding this
    multi-scale nature is thus key to improving this materials. Textiles are, for
    example, well suited for technical applications thanks to their unique combination
    of lightness, flexibility and strength. Yet such applications often require a
    thorough understanding of the mechanical performance, which in itself is quite
    challenging due to the complex microstructure. By following a multiscale analysis,
    combining both experimental and numerical techniques, starting with individual
    fibres and building up till complete textile materials and derivatives such as
    composites, we underpin the micro-macro relationships that govern the mechanical
    behaviour of textiles. This project combines both advanced testing methods with
    in-situ measurement of the deformation mechanisms at microscale, and novel finite
    element modelling tools that allow simulations at the microscale.</p>
  deleted: 1
  end_date: 2025-06-30
  gismo_id: 25182d45-ccf4-11eb-9f0b-e5cd0f711fbd
  iweto_id: BOF/STA/202009/046
  publication_count: 1
  start_date: 2021-07-01
  title: Multi-scale analysis of textile and derived materials
- _id: 3S008621
  abstract: <p>The regenerative capacities of mesenchymal stem cells (MSCs) are multifaceted,
    and the insights into their trophic mechanisms in context of tendon therapies
    are scarce. In vitro models serve as important biological tools to study cell
    behavior under specific, controlled, and reproducible conditions. Unfortunately,
    no generally accepted in vitro model exists to date. In the current PhD project,
    additive manufacturing will be applied in which cells and biomaterials will be
    combined in order to develop a physiologically representative in vitro tendon
    injury model. As biomaterial, gelatin, isolated from collagen, the most abundant
    protein in tendon, will be applied. The 3D-printed gelatin constructs, composed
    of a shell containing equine tenocytes and an angiogenic core containing equine
    endothelial cells, will be cultured and subjected to mechanical stimulation. Next,
    metabolites and their pathways involved in tendon (patho-)physiology will be identified
    using metabolomics/lipidomics. The regenerative effect of the MSC secretome in
    the tendon injury model will be verified by evaluating the identified pathways.
    Different MSC sources will be evaluated to identify the most appropriate MSC source
    to treat tendon injuries. The insights acquired in this research project will
    initiate the development of targeted tendon injury therapies, based on metabolic
    pathway identification, which will be beneficial for both equine veterinary and
    human medicine.</p>
  end_date: 2025-10-31
  gismo_id: 4b72b88a-2a81-11ec-a6b4-cd4eac00b947
  iweto_id: 3S008621
  publication_count: 15
  start_date: 2021-11-01
  title: Unraveling the regenerative potential of (equine) mesenchymal stem cells
    in a representative in vitro tendon injury model.
publication_status: published
publication_status_sort: 2
pubmed_id: '37650520'
status: public
subject:
- Technology and Engineering
- Biology and Life Sciences
title: Cell guiding multicomponent nanoyarn tendon scaffolds with tunable morphology
  and flexibility
type: journalArticle
volume: '15'
wos_id: '001061535500001'
wos_type: Article
year: '2023'
...
---
_id: 01HMXJ84F1Z7V71KJMX1APM5EF
abstract:
- Colour is often not a static trait but can change over time either through biotic
  or abiotic factors. Humidity-dependent colour change can occur through either morphological
  change (e.g. to feather barbules in birds) or by the replacement of air bywater
  causing a shift in refractive index, as seen in arthropod multi-layer cuticles or
  scales. The scaled springtail Lepidocyrtus cyaneus has scales that produce colour
  largely via thin film interference from their lamina. We observed a marked colour
  change from golden to violet/purple coloration in humid conditions. Light microscopy,
  micro-spectrophotometry, contact angle goniometry and optical modelling indicate
  that the formation of a thin film of water on top of the hydrophilic scales increases
  their laminar thin film thickness, causing a shift towards violet/purple colour.
  Evaporation of thewater film causes the metallic golden colour to return. This constitutes
  a remarkably rapid colour change (in the order of seconds), only limited by the
  speed of water film condensation and evaporation, that may serve as inspiration
  for new dynamically coloured materials and sensors.
abstract_full:
- lang: eng
  text: Colour is often not a static trait but can change over time either through
    biotic or abiotic factors. Humidity-dependent colour change can occur through
    either morphological change (e.g. to feather barbules in birds) or by the replacement
    of air bywater causing a shift in refractive index, as seen in arthropod multi-layer
    cuticles or scales. The scaled springtail Lepidocyrtus cyaneus has scales that
    produce colour largely via thin film interference from their lamina. We observed
    a marked colour change from golden to violet/purple coloration in humid conditions.
    Light microscopy, micro-spectrophotometry, contact angle goniometry and optical
    modelling indicate that the formation of a thin film of water on top of the hydrophilic
    scales increases their laminar thin film thickness, causing a shift towards violet/purple
    colour. Evaporation of thewater film causes the metallic golden colour to return.
    This constitutes a remarkably rapid colour change (in the order of seconds), only
    limited by the speed of water film condensation and evaporation, that may serve
    as inspiration for new dynamically coloured materials and sensors.
affiliation:
- name: Department of Biology
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE11
  ugent_id: WE11
article_number: '20230228'
article_type: original
author:
- _id: F9F2171C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: F9F2171C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Bram
  last_name: Vanthournout
  name: Bram Vanthournout
  name_last_first: Vanthournout, Bram
  ugent_id:
  - '975403013164'
- first_name: Frans
  last_name: Janssens
  name: Frans Janssens
  name_last_first: Janssens, Frans
- _id: 703A0548-BAC7-11E8-A22B-3DF65607D3EF
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: 703A0548-BAC7-11E8-A22B-3DF65607D3EF
  first_name: Gerben
  last_name: Debruyn
  name: Gerben Debruyn
  name_last_first: Debruyn, Gerben
  ugent_id:
  - '802003560037'
- _id: F382C624-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: F382C624-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Johan
  last_name: Mertens
  name: Johan Mertens
  name_last_first: Mertens, Johan
  ugent_id:
  - '978235956061'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
- _id: F89F3E88-A37F-11E5-95B9-D7FEB4D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: F89F3E88-A37F-11E5-95B9-D7FEB4D1D7B1
  first_name: Liliana
  last_name: D'Alba Altamirano
  name: Liliana D'Alba Altamirano
  name_last_first: D'Alba Altamirano, Liliana
  orcid_id: 0000-0002-2478-3455
  ugent_id:
  - '802002269634'
- _id: 25D6054A-6888-11E5-AD70-3415B5D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: 25D6054A-6888-11E5-AD70-3415B5D1D7B1
  first_name: Matthew
  last_name: Shawkey
  name: Matthew Shawkey
  name_last_first: Shawkey, Matthew
  orcid_id: 0000-0002-5131-8209
  ugent_id:
  - '802002093216'
biblio_id: 01HMXJ84F1Z7V71KJMX1APM5EF
cite:
  apa: |2
      <div class="csl-entry">Vanthournout, B., Janssens, F., Debruyn, G., Mertens, J., De Clerck, K., D’Alba Altamirano, L., &#38; Shawkey, M. (2023). Rapid and reversible humidity-dependent colour change by water film formation in a scaled springtail. <i>JOURNAL OF THE ROYAL SOCIETY INTERFACE</i>, <i>20</i>(207). https://doi.org/10.1098/rsif.2023.0228</div>
  bof: |2-
      <div class="csl-entry">Vanthournout, Bram, Frans Janssens, Gerben Debruyn, Johan Mertens, Karen De Clerck, Liliana D’Alba Altamirano, and Matthew Shawkey. 2023. “Rapid and Reversible Humidity-Dependent Colour Change by Water Film Formation in a Scaled Springtail.” <i>JOURNAL OF THE ROYAL SOCIETY INTERFACE</i> 20 (207). doi:10.1098/rsif.2023.0228.</div>
    <div><i>Impact factor: 3.7, category: MULTIDISCIPLINARY SCIENCES, rank: 26/134, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Vanthournout, Bram, Frans Janssens, Gerben Debruyn, Johan Mertens, Karen De Clerck, Liliana D’Alba Altamirano, and Matthew Shawkey. 2023. “Rapid and Reversible Humidity-Dependent Colour Change by Water Film Formation in a Scaled Springtail.” <i>JOURNAL OF THE ROYAL SOCIETY INTERFACE</i> 20 (207). https://doi.org/10.1098/rsif.2023.0228.</div>
  fwo: |2
      <div class="csl-entry">Vanthournout, Bram, Frans Janssens, Gerben Debruyn, Johan Mertens, Karen De Clerck, Liliana D’Alba Altamirano, and Matthew Shawkey. 2023. “Rapid and Reversible Humidity-Dependent Colour Change by Water Film Formation in a Scaled Springtail.” <i>JOURNAL OF THE ROYAL SOCIETY INTERFACE</i> 20 (207). doi:10.1098/rsif.2023.0228.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. Vanthournout <i>et al.</i>, “Rapid and reversible humidity-dependent colour change by water film formation in a scaled springtail,” <i>JOURNAL OF THE ROYAL SOCIETY INTERFACE</i>, vol. 20, no. 207, 2023.</div>
      </div>
  mla: |2
      <div class="csl-entry">Vanthournout, Bram, et al. “Rapid and Reversible Humidity-Dependent Colour Change by Water Film Formation in a Scaled Springtail.” <i>JOURNAL OF THE ROYAL SOCIETY INTERFACE</i>, vol. 20, no. 207, 2023, doi:10.1098/rsif.2023.0228.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Vanthournout B, Janssens F, Debruyn G, Mertens J, De Clerck K, D’Alba Altamirano L, et al. Rapid and reversible humidity-dependent colour change by water film formation in a scaled springtail. JOURNAL OF THE ROYAL SOCIETY INTERFACE. 2023;20(207).</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: 25D6054A-6888-11E5-AD70-3415B5D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE11
    ugent_id: WE11
  biblio_id: 25D6054A-6888-11E5-AD70-3415B5D1D7B1
  first_name: Matthew
  last_name: Shawkey
  name: Matthew Shawkey
  name_last_first: Shawkey, Matthew
  orcid_id: 0000-0002-5131-8209
  ugent_id:
  - '802002093216'
date_created: 2024-01-24 11:03:56
date_updated: 2026-06-15 07:59:16
doi:
- 10.1098/rsif.2023.0228
external: 0
file:
- _id: 01KV54MK2T96ADW4CYWWMW1827
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issn:
- 1742-5689
- 1742-5662
issue: '207'
jcr:
  category: MULTIDISCIPLINARY SCIENCES
  category_decile: 4
  category_quartile: 1
  category_rank: 26/134
  category_vigintile: 7
  eigenfactor: 0.01451
  immediacy_index: 0.9
  impact_factor: 3.7
  impact_factor_5yr: 4
  prev_category_decile: 4
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  prev_category_vigintile: 7
  prev_impact_factor: 3.9
  total_cites: 17349
keyword:
- Biomedical Engineering
- Biochemistry
- Biomaterials
- Bioengineering
- Biophysics
- Biotechnology
- Collembola
- humidity-dependent colour
- change
- scale
- spectrophotometry
- optical modelling
- MORPHOLOGY
- SPIDERS
- CUTICLE
language:
- eng
page:
  count: '8'
parent:
  short_title: J. R. Soc. Interface.
  title: JOURNAL OF THE ROYAL SOCIETY INTERFACE
project:
- _id: 3G0A7921
  abstract: "<p>Eggs are multifunctional structures that enabled vertebrates to colonize
    the land millions of years ago. Eggshell morphology is at the core of animal survival
    and has evolved into a massive diversity of forms and functions in modern reptiles.
    These functions may also serve as models for new antimicrobial and/or breathable
    membranes.\nBut we still lack critical data on the chemical composition, ultrastructure,
    and material properties of reptile eggs. These data are critically needed to understand
    their effects on vertebrate evolution and successfully use them as biomimetic
    models.\nIn this project we will use a highly integrative approach including functional
    morphology, evolution, biomechanics and biomimicry to test hypotheses on form-function
    relationships in eggs and their potential as models for biomimetic materials.
    Specifically, we will address the following questions: How does egg morphology
    affect biomechanical function? Do nesting ecology and life history drive the evolution
    of eggshell design? Do bioinspired replicas retain functional properties comparable
    to natural eggs? \nTo answer these questions we will use state-of-the-art μCT,
    electron microscopy, chemical and biomechanical tests, phylogenetic comparative
    methods and materials science techniques to experimentally test form-function
    relationships and produce novel, bioinspired multifunctional membranes.</p>"
  end_date: 2024-12-31
  gismo_id: ae3ff06f-4420-11eb-809b-01df1efbbcb6
  iweto_id: 3G0A7921
  publication_count: 11
  start_date: 2021-01-01
  title: 'Biomechanics and Biomimicry of Reptile Eggs: Insights into their functions
    and evolution'
publication_status: published
publication_status_sort: 2
pubmed_id: '37788712'
status: public
subject:
- Biology and Life Sciences
title: Rapid and reversible humidity-dependent colour change by water film formation
  in a scaled springtail
type: journalArticle
volume: '20'
wos_id: '001183798800001'
wos_type: Article
year: '2023'
...
---
_id: '8755131'
abstract:
- "Challenges in clean water availability have risen over the years, and especially
  third world countries are in great need of localised, low-cost water purification
  techniques, that make use of separation membranes. Electrochemical treatments in
  (waste)water management show high potential in the global water resource crisis,
  but are often limited by the performance of the ion-exchange membrane (IEM)[1].
  Low chemical resistance and fouling are major issues in the development of the next
  generation IEMs.\r\nAn interesting choice of material for IEMs is the use of nanofibers
  due to their outstanding ionic properties as a result of their specific morphology.
  Nanofiber membranes are known to have a large specific surface area, flexibility,
  high porosity and interconnected pores. Different strategies are applied for the
  production and structural design of these ion-exchange nanofiber membranes. Nanofibers
  with an ion-exchange functionality can be produced by either pre- or post-functionalization
  methods, combined with electrospinning. Depending on the application, these nanofiber
  mats can be used as such, or further membrane processing is possible to improve
  the dimensional stability, typically by adding a pore-filling matrix in between
  the nanofibers.\r\nBy producing IEMs from hybrid nanofibrous membranes containing
  both organic and inorganic parts, a wide range of different membrane properties
  can be obtained by altering the molecular structure. This results in IEMs with high
  thermal and chemical resistance as well as tunability towards a.o. mechanical properties
  and hydrophobicity for the use in harsh environmental conditions. For example, sulfonated
  silica-based nanofiber cation-exchange membranes (CEMs) offer a promising solution
  to the current issues of IEMs, due to their superior chemical resistance and self-cleaning
  properties."
abstract_full:
- lang: eng
  text: "Challenges in clean water availability have risen over the years, and especially
    third world countries are in great need of localised, low-cost water purification
    techniques, that make use of separation membranes. Electrochemical treatments
    in (waste)water management show high potential in the global water resource crisis,
    but are often limited by the performance of the ion-exchange membrane (IEM)[1].
    Low chemical resistance and fouling are major issues in the development of the
    next generation IEMs.\r\nAn interesting choice of material for IEMs is the use
    of nanofibers due to their outstanding ionic properties as a result of their specific
    morphology. Nanofiber membranes are known to have a large specific surface area,
    flexibility, high porosity and interconnected pores. Different strategies are
    applied for the production and structural design of these ion-exchange nanofiber
    membranes. Nanofibers with an ion-exchange functionality can be produced by either
    pre- or post-functionalization methods, combined with electrospinning. Depending
    on the application, these nanofiber mats can be used as such, or further membrane
    processing is possible to improve the dimensional stability, typically by adding
    a pore-filling matrix in between the nanofibers.\r\nBy producing IEMs from hybrid
    nanofibrous membranes containing both organic and inorganic parts, a wide range
    of different membrane properties can be obtained by altering the molecular structure.
    This results in IEMs with high thermal and chemical resistance as well as tunability
    towards a.o. mechanical properties and hydrophobicity for the use in harsh environmental
    conditions. For example, sulfonated silica-based nanofiber cation-exchange membranes
    (CEMs) offer a promising solution to the current issues of IEMs, due to their
    superior chemical resistance and self-cleaning properties."
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Biotechnology
  path:
  - ugent_id: UGent
  - ugent_id: LA
  - ugent_id: LA25
  ugent_id: LA25
- name: Department of Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE06
  ugent_id: WE06
alternative_location:
- access: open
  kind: fullText
  url: https://www.mtm.kuleuven.be/english/events/fiber-society-conference-22
author:
- _id: 9DBE7436-0234-11E4-8A54-7BF54B2F559A
  biblio_id: 9DBE7436-0234-11E4-8A54-7BF54B2F559A
  first_name: Bianca
  last_name: Swanckaert
  name: Bianca Swanckaert
  name_last_first: Swanckaert, Bianca
  orcid_id: 0000-0001-6036-6512
  ugent_id:
  - '978889457589'
- _id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
  orcid_id: 0000-0002-1281-2968
  ugent_id:
  - '000070582957'
  - '975000449525'
- _id: 3610282E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA25
    ugent_id: LA25
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  first_name: Korneel
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    - ugent_id: WE06
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  first_name: Klaartje
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  first_name: Luiza
  last_name: Bonin
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  orcid_id: 0000-0001-7123-0012
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  - '802002939944'
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  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
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biblio_id: '8755131'
cite:
  apa: |2
      <div class="csl-entry">Swanckaert, B., Geltmeyer, J., Rabaey, K., De Buysser, K., Bonin, L., &#38; De Clerck, K. (2022). Ion-exchange nanofiber membranes for advanced water treatment applications. <i>The Fiber Society’s Spring 2022 Conference, Abstracts</i>. Presented at the The Fiber Society’s spring 2022 Conference, Leuven, Belgium.</div>
  chicago-author-date: |2
      <div class="csl-entry">Swanckaert, Bianca, Jozefien Geltmeyer, Korneel Rabaey, Klaartje De Buysser, Luiza Bonin, and Karen De Clerck. 2022. “Ion-Exchange Nanofiber Membranes for Advanced Water Treatment Applications.” In <i>The Fiber Society’s Spring 2022 Conference, Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">Swanckaert, Bianca, Jozefien Geltmeyer, Korneel Rabaey, Klaartje De Buysser, Luiza Bonin, and Karen De Clerck. 2022. “Ion-Exchange Nanofiber Membranes for Advanced Water Treatment Applications.” In <i>The Fiber Society’s Spring 2022 Conference, Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. Swanckaert, J. Geltmeyer, K. Rabaey, K. De Buysser, L. Bonin, and K. De Clerck, “Ion-exchange nanofiber membranes for advanced water treatment applications,” in <i>The Fiber Society’s spring 2022 Conference, Abstracts</i>, Leuven, Belgium, 2022.</div>
      </div>
  mla: |2
      <div class="csl-entry">Swanckaert, Bianca, et al. “Ion-Exchange Nanofiber Membranes for Advanced Water Treatment Applications.” <i>The Fiber Society’s Spring 2022 Conference, Abstracts</i>, 2022.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Swanckaert B, Geltmeyer J, Rabaey K, De Buysser K, Bonin L, De Clerck K. Ion-exchange nanofiber membranes for advanced water treatment applications. In: The Fiber Society’s spring 2022 Conference, Abstracts. 2022.</div>
       </div>
classification: C3
conference:
  end_date: 2022-06-01
  location: Leuven, Belgium
  name: The Fiber Society's spring 2022 Conference
  organizer: Fiber Society ; KU Leuven
  start_date: 2022-05-30
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
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  ugent_id:
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date_created: 2022-06-02 14:06:13
date_updated: 2026-03-31 13:24:29
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language:
- eng
page:
  count: '1'
parent:
  title: The Fiber Society's spring 2022 Conference, Abstracts
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Ion-exchange nanofiber membranes for advanced water treatment applications
type: conference
year: '2022'
...
---
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  first_name: Daniele
  last_name: Finazzi
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  - '971313003619'
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  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: 71BBD8CE-7FCB-11E3-B98E-C68310BDE39D
  first_name: Ruben
  last_name: Sevenois
  name: Ruben Sevenois
  name_last_first: Sevenois, Ruben
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  first_name: Lode
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  affiliation:
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  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
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    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
biblio_id: 01GJJ60MZE5SXVPMX7EBW5M7RY
cite:
  apa: |2
      <div class="csl-entry">Finazzi, D., Sevenois, R., Daelemans, L., De Clerck, K., &#38; Van Paepegem, W. (2022). Effect of fibre orientation, temperature, moisture content and strain rate on the tensile behaviour of short glass fibre-reinforced polyamide 6. In A. P. Vassilopoulos &#38; V. Michaud (Eds.), <i>Proceedings of the 20th European Conference on Composite Materials : Composites Meet Sustainability : volume 1 : Materials</i> (pp. 1167–1174). Composite Construction Laboratory (CCLab).</div>
  chicago-author-date: |2
      <div class="csl-entry">Finazzi, Daniele, Ruben Sevenois, Lode Daelemans, Karen De Clerck, and Wim Van Paepegem. 2022. “Effect of Fibre Orientation, Temperature, Moisture Content and Strain Rate on the Tensile Behaviour of Short Glass Fibre-Reinforced Polyamide 6.” In <i>Proceedings of the 20th European Conference on Composite Materials : Composites Meet Sustainability : Volume 1 : Materials</i>, edited by Anastasios P. Vassilopoulos and Véronique Michaud, 1167–74. Composite Construction Laboratory (CCLab).</div>
  fwo: |2
      <div class="csl-entry">Finazzi, Daniele, Ruben Sevenois, Lode Daelemans, Karen De Clerck, and Wim Van Paepegem. 2022. “Effect of Fibre Orientation, Temperature, Moisture Content and Strain Rate on the Tensile Behaviour of Short Glass Fibre-Reinforced Polyamide 6.” In <i>Proceedings of the 20th European Conference on Composite Materials : Composites Meet Sustainability : Volume 1 : Materials</i>, ed by. Anastasios P. Vassilopoulos and Véronique Michaud, 1167–1174. Composite Construction Laboratory (CCLab).</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">D. Finazzi, R. Sevenois, L. Daelemans, K. De Clerck, and W. Van Paepegem, “Effect of fibre orientation, temperature, moisture content and strain rate on the tensile behaviour of short glass fibre-reinforced polyamide 6,” in <i>Proceedings of the 20th European Conference on Composite Materials : Composites Meet Sustainability : volume 1 : Materials</i>, Lausanne, Switzerland, 2022, pp. 1167–1174.</div>
      </div>
  mla: |2
      <div class="csl-entry">Finazzi, Daniele, et al. “Effect of Fibre Orientation, Temperature, Moisture Content and Strain Rate on the Tensile Behaviour of Short Glass Fibre-Reinforced Polyamide 6.” <i>Proceedings of the 20th European Conference on Composite Materials : Composites Meet Sustainability : Volume 1 : Materials</i>, edited by Anastasios P. Vassilopoulos and Véronique Michaud, Composite Construction Laboratory (CCLab), 2022, pp. 1167–74.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Finazzi D, Sevenois R, Daelemans L, De Clerck K, Van Paepegem W. Effect of fibre orientation, temperature, moisture content and strain rate on the tensile behaviour of short glass fibre-reinforced polyamide 6. In: Vassilopoulos AP, Michaud V, editors. Proceedings of the 20th European Conference on Composite Materials : Composites Meet Sustainability : volume 1 : Materials. Composite Construction Laboratory (CCLab); 2022. p. 1167–74.</div>
       </div>
classification: C1
conference:
  end_date: 2022-06-30
  location: Lausanne, Switzerland
  name: 'Composites Meet Sustainability : 20th European Conference on Composite Materials
    (ECCM20)'
  start_date: 2022-06-26
conference_type: proceedingsPaper
copyright_statement: Creative Commons Attribution-NonCommercial 4.0 International
  Public License (CC BY-NC 4.0)
created_by:
  _id: bf54bd2b-bd78-11ea-9edd-e723f25734e4
  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: bf54bd2b-bd78-11ea-9edd-e723f25734e4
  first_name: Daniele
  last_name: Finazzi
  name: Daniele Finazzi
  name_last_first: Finazzi, Daniele
  orcid_id: 0000-0002-6418-6823
  ugent_id:
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date_created: 2022-11-23 12:04:47
date_updated: 2026-03-31 13:21:05
editor:
- first_name: Anastasios P.
  last_name: Vassilopoulos
  name: Anastasios P. Vassilopoulos
  name_last_first: Vassilopoulos, Anastasios P.
- first_name: Véronique
  last_name: Michaud
  name: Véronique Michaud
  name_last_first: Michaud, Véronique
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-01GJJ60MZE5SXVPMX7EBW5M7RY
isbn:
- '9782970161400'
keyword:
- thermoplastic composites
- SFRP
- glass/PA6
- tensile tests
- DIC
language:
- eng
page:
  first: '1167'
  last: '1174'
parent:
  title: 'Proceedings of the 20th European Conference on Composite Materials : Composites
    Meet Sustainability : volume 1 : Materials'
project:
- _id: '3E016519'
  abstract: |-
    <p>
    Textiles are ideally suited for technical engineering applications thanks to their unique combination of lightness, flexibility and strength. Especially, fibre reinforced composites are seeing a tremendous growth for designing light-weight structural components. The fibres, the building blocks of any textile, and their arrangement in the textile and the composite (microstructure) determine the macroscopic properties. It is thus of utmost importance that this micro-macro relation is fundamentally understood. The complexity of textiles (complex hierarchical microstructure, highly non-linear behaviour) makes this a challenging problem. By following a multiscale analysis, combining both advanced experimental and numerical techniques, starting with individual fibres and building up till complete nano-interleaved preforms, we get a fundamental understanding of the micro-macro relationships that govern the mechanical behaviour of textile materials. These insights are of crucial importance for the further development of high-end nano-enabled composites and are extendable to many other technical textile applications as well.

    </p>
  end_date: 2022-09-30
  gismo_id: 3c0a4b92-b36f-11e9-9b22-19a03077e1f4
  iweto_id: '3E016519'
  start_date: 2019-10-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
- _id: BOF/STA/202009/046
  abstract: <p>Every textile material, be it for low-end consumer goods or high-end
    technical products, is exploited for the properties resulting from its multi-scale
    nature (fibres -&gt; yarns -&gt; textiles -&gt; derivatives). Understanding this
    multi-scale nature is thus key to improving this materials. Textiles are, for
    example, well suited for technical applications thanks to their unique combination
    of lightness, flexibility and strength. Yet such applications often require a
    thorough understanding of the mechanical performance, which in itself is quite
    challenging due to the complex microstructure. By following a multiscale analysis,
    combining both experimental and numerical techniques, starting with individual
    fibres and building up till complete textile materials and derivatives such as
    composites, we underpin the micro-macro relationships that govern the mechanical
    behaviour of textiles. This project combines both advanced testing methods with
    in-situ measurement of the deformation mechanisms at microscale, and novel finite
    element modelling tools that allow simulations at the microscale.</p>
  deleted: 1
  end_date: 2025-06-30
  gismo_id: 25182d45-ccf4-11eb-9f0b-e5cd0f711fbd
  iweto_id: BOF/STA/202009/046
  publication_count: 1
  start_date: 2021-07-01
  title: Multi-scale analysis of textile and derived materials
publication_status: published
publication_status_sort: 2
publisher:
  name: Composite Construction Laboratory (CCLab)
status: public
subject:
- Technology and Engineering
title: Effect of fibre orientation, temperature, moisture content and strain rate
  on the tensile behaviour of short glass fibre-reinforced polyamide 6
type: conference
year: '2022'
...
---
_id: '8760447'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
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  biblio_id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  first_name: Olivier
  last_name: Verschatse
  name: Olivier Verschatse
  name_last_first: Verschatse, Olivier
  orcid_id: 0000-0001-7732-6007
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  - '974442908376'
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  affiliation:
  - path:
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    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
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    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8760447'
cite:
  apa: |2
      <div class="csl-entry">Verschatse, O., Daelemans, L., Van Paepegem, W., &#38; De Clerck, K. (2022). Micro-scale measurements on epoxy using in-situ microscopic techniques. In A. P. Vassilopoulos &#38; V. Michaud (Eds.), <i>Composites meet sustainability : proceedings of the 20th European Conference on Composite Materials (ECCM20) : vol. 1 : materials</i> (pp. 1550–1557). Composite Construction Laboratory (CCLab).</div>
  chicago-author-date: |2
      <div class="csl-entry">Verschatse, Olivier, Lode Daelemans, Wim Van Paepegem, and Karen De Clerck. 2022. “Micro-Scale Measurements on Epoxy Using in-Situ Microscopic Techniques.” In <i>Composites Meet Sustainability : Proceedings of the 20th European Conference on Composite Materials (ECCM20) : Vol. 1 : Materials</i>, edited by Anastasios P. Vassilopoulos and Véronique Michaud, 1550–57. Composite Construction Laboratory (CCLab).</div>
  fwo: |2
      <div class="csl-entry">Verschatse, Olivier, Lode Daelemans, Wim Van Paepegem, and Karen De Clerck. 2022. “Micro-Scale Measurements on Epoxy Using in-Situ Microscopic Techniques.” In <i>Composites Meet Sustainability : Proceedings of the 20th European Conference on Composite Materials (ECCM20) : Vol. 1 : Materials</i>, ed by. Anastasios P. Vassilopoulos and Véronique Michaud, 1550–1557. Composite Construction Laboratory (CCLab).</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">O. Verschatse, L. Daelemans, W. Van Paepegem, and K. De Clerck, “Micro-scale measurements on epoxy using in-situ microscopic techniques,” in <i>Composites meet sustainability : proceedings of the 20th European Conference on Composite Materials (ECCM20) : vol. 1 : materials</i>, Lausanne, Zwitzerland, 2022, pp. 1550–1557.</div>
      </div>
  mla: |2
      <div class="csl-entry">Verschatse, Olivier, et al. “Micro-Scale Measurements on Epoxy Using in-Situ Microscopic Techniques.” <i>Composites Meet Sustainability : Proceedings of the 20th European Conference on Composite Materials (ECCM20) : Vol. 1 : Materials</i>, edited by Anastasios P. Vassilopoulos and Véronique Michaud, Composite Construction Laboratory (CCLab), 2022, pp. 1550–57.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Verschatse O, Daelemans L, Van Paepegem W, De Clerck K. Micro-scale measurements on epoxy using in-situ microscopic techniques. In: Vassilopoulos AP, Michaud V, editors. Composites meet sustainability : proceedings of the 20th European Conference on Composite Materials (ECCM20) : vol 1 : materials. Composite Construction Laboratory (CCLab); 2022. p. 1550–7.</div>
       </div>
classification: C1
conference:
  end_date: 2022-06-30
  location: Lausanne, Zwitzerland
  name: The 20th European Conference on Composite Materials (ECCM20)
  organizer: EPFL
  start_date: 2022-06-26
conference_type: proceedingsPaper
copyright_statement: Creative Commons Attribution-NonCommercial 4.0 International
  Public License (CC BY-NC 4.0)
created_by:
  _id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  biblio_id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  first_name: Olivier
  last_name: Verschatse
  name: Olivier Verschatse
  name_last_first: Verschatse, Olivier
  orcid_id: 0000-0001-7732-6007
  ugent_id:
  - '974442908376'
date_created: 2022-07-04 13:03:34
date_updated: 2026-03-31 13:21:07
editor:
- first_name: Anastasios P.
  last_name: Vassilopoulos
  name: Anastasios P. Vassilopoulos
  name_last_first: Vassilopoulos, Anastasios P.
- first_name: Véronique
  last_name: Michaud
  name: Véronique Michaud
  name_last_first: Michaud, Véronique
external: 0
file:
- _id: '8760452'
  access: open
  content_type: application/pdf
  kind: fullText
  name: 61937_Fullpaper_Verschatse_Olivier.pdf
  publication_version: publishedVersion
  sha256: cbbc044cb08bf2a6e86ebed8229bb0a713469c55fbe960aa37becf3edcd2f9ea
  size: '1300724'
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  url: https://biblio.ugent.be/publication/8760447/file/8760452.pdf
handle: http://hdl.handle.net/1854/LU-8760447
isbn:
- '9782970161400'
language:
- eng
page:
  first: '1550'
  last: '1557'
parent:
  title: 'Composites meet sustainability : proceedings of the 20th European Conference
    on Composite Materials (ECCM20) : vol. 1 : materials'
project:
- _id: 001D05703
  abstract: <p>Research of urban and rural occupation and trade via pottery analysis.</p>
  end_date: 2005-09-30
  gismo_id: d73db4b9-21d4-4a57-b31f-62c79ca4304d
  iweto_id: 001D05703
  publication_count: 1
  start_date: 2003-10-01
  title: Late antiquity in the northern adriatic region
- _id: BOF/STA/202009/046
  abstract: <p>Every textile material, be it for low-end consumer goods or high-end
    technical products, is exploited for the properties resulting from its multi-scale
    nature (fibres -&gt; yarns -&gt; textiles -&gt; derivatives). Understanding this
    multi-scale nature is thus key to improving this materials. Textiles are, for
    example, well suited for technical applications thanks to their unique combination
    of lightness, flexibility and strength. Yet such applications often require a
    thorough understanding of the mechanical performance, which in itself is quite
    challenging due to the complex microstructure. By following a multiscale analysis,
    combining both experimental and numerical techniques, starting with individual
    fibres and building up till complete textile materials and derivatives such as
    composites, we underpin the micro-macro relationships that govern the mechanical
    behaviour of textiles. This project combines both advanced testing methods with
    in-situ measurement of the deformation mechanisms at microscale, and novel finite
    element modelling tools that allow simulations at the microscale.</p>
  deleted: 1
  end_date: 2025-06-30
  gismo_id: 25182d45-ccf4-11eb-9f0b-e5cd0f711fbd
  iweto_id: BOF/STA/202009/046
  publication_count: 1
  start_date: 2021-07-01
  title: Multi-scale analysis of textile and derived materials
publication_status: published
publication_status_sort: 2
publisher:
  name: Composite Construction Laboratory (CCLab)
status: public
subject:
- Technology and Engineering
title: Micro-scale measurements on epoxy using in-situ microscopic techniques
type: conference
year: '2022'
...
---
_id: '8755066'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
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  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
alternative_location:
- access: open
  kind: fullText
  url: https://www.emmc18.org/event/4327a13b-b53e-4c7e-bd98-7b346b02b599/summary
author:
- _id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  biblio_id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  first_name: Olivier
  last_name: Verschatse
  name: Olivier Verschatse
  name_last_first: Verschatse, Olivier
  orcid_id: 0000-0001-7732-6007
  ugent_id:
  - '974442908376'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8755066'
cite:
  apa: |2
      <div class="csl-entry">Verschatse, O., Daelemans, L., Van Paepegem, W., &#38; De Clerck, K. (2022). Mechanical study of the tensile prperties of epoxy at the microscale level. <i>18th European Mechanics of Materials Conference (EMMC18), Abstracts</i>. Presented at the 18th European Mechanics of Materials Conference (EMMC18), Oxford, UK.</div>
  chicago-author-date: |2
      <div class="csl-entry">Verschatse, Olivier, Lode Daelemans, Wim Van Paepegem, and Karen De Clerck. 2022. “Mechanical Study of the Tensile Prperties of Epoxy at the Microscale Level.” In <i>18th European Mechanics of Materials Conference (EMMC18), Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">Verschatse, Olivier, Lode Daelemans, Wim Van Paepegem, and Karen De Clerck. 2022. “Mechanical Study of the Tensile Prperties of Epoxy at the Microscale Level.” In <i>18th European Mechanics of Materials Conference (EMMC18), Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">O. Verschatse, L. Daelemans, W. Van Paepegem, and K. De Clerck, “Mechanical study of the tensile prperties of epoxy at the microscale level,” in <i>18th European Mechanics of Materials Conference (EMMC18), Abstracts</i>, Oxford, UK, 2022.</div>
      </div>
  mla: |2
      <div class="csl-entry">Verschatse, Olivier, et al. “Mechanical Study of the Tensile Prperties of Epoxy at the Microscale Level.” <i>18th European Mechanics of Materials Conference (EMMC18), Abstracts</i>, 2022.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Verschatse O, Daelemans L, Van Paepegem W, De Clerck K. Mechanical study of the tensile prperties of epoxy at the microscale level. In: 18th European Mechanics of Materials Conference (EMMC18), Abstracts. 2022.</div>
       </div>
classification: C3
conference:
  end_date: 2022-04-06
  location: Oxford, UK
  name: 18th European Mechanics of Materials Conference (EMMC18)
  organizer: European Mechanics Society
  start_date: 2022-04-04
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
  _id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  biblio_id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  first_name: Olivier
  last_name: Verschatse
  name: Olivier Verschatse
  name_last_first: Verschatse, Olivier
  orcid_id: 0000-0001-7732-6007
  ugent_id:
  - '974442908376'
date_created: 2022-06-02 10:14:56
date_updated: 2026-03-31 13:20:38
external: 0
file:
- _id: '8755067'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: Abstract_EMMC_Olivier_Verschatse.pdf
  publication_version: publishedVersion
  sha256: 1b0c2e50f2b953ea232acc42b1a1b6efbb2f4d4613c89c554ee131fa7457f708
  size: '207353'
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  url: https://biblio.ugent.be/publication/8755066/file/8755067.pdf
handle: http://hdl.handle.net/1854/LU-8755066
language:
- eng
page:
  count: '1'
parent:
  title: 18th European Mechanics of Materials Conference (EMMC18), Abstracts
project:
- _id: '3E016519'
  abstract: |-
    <p>
    Textiles are ideally suited for technical engineering applications thanks to their unique combination of lightness, flexibility and strength. Especially, fibre reinforced composites are seeing a tremendous growth for designing light-weight structural components. The fibres, the building blocks of any textile, and their arrangement in the textile and the composite (microstructure) determine the macroscopic properties. It is thus of utmost importance that this micro-macro relation is fundamentally understood. The complexity of textiles (complex hierarchical microstructure, highly non-linear behaviour) makes this a challenging problem. By following a multiscale analysis, combining both advanced experimental and numerical techniques, starting with individual fibres and building up till complete nano-interleaved preforms, we get a fundamental understanding of the micro-macro relationships that govern the mechanical behaviour of textile materials. These insights are of crucial importance for the further development of high-end nano-enabled composites and are extendable to many other technical textile applications as well.

    </p>
  end_date: 2022-09-30
  gismo_id: 3c0a4b92-b36f-11e9-9b22-19a03077e1f4
  iweto_id: '3E016519'
  start_date: 2019-10-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
- _id: BOF/STA/202009/046
  abstract: <p>Every textile material, be it for low-end consumer goods or high-end
    technical products, is exploited for the properties resulting from its multi-scale
    nature (fibres -&gt; yarns -&gt; textiles -&gt; derivatives). Understanding this
    multi-scale nature is thus key to improving this materials. Textiles are, for
    example, well suited for technical applications thanks to their unique combination
    of lightness, flexibility and strength. Yet such applications often require a
    thorough understanding of the mechanical performance, which in itself is quite
    challenging due to the complex microstructure. By following a multiscale analysis,
    combining both experimental and numerical techniques, starting with individual
    fibres and building up till complete textile materials and derivatives such as
    composites, we underpin the micro-macro relationships that govern the mechanical
    behaviour of textiles. This project combines both advanced testing methods with
    in-situ measurement of the deformation mechanisms at microscale, and novel finite
    element modelling tools that allow simulations at the microscale.</p>
  deleted: 1
  end_date: 2025-06-30
  gismo_id: 25182d45-ccf4-11eb-9f0b-e5cd0f711fbd
  iweto_id: BOF/STA/202009/046
  publication_count: 1
  start_date: 2021-07-01
  title: Multi-scale analysis of textile and derived materials
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Mechanical study of the tensile prperties of epoxy at the microscale level
type: conference
year: '2022'
...
---
_id: 01GPJXP9DSZX9QRBTYW16K5M2F
abstract:
- |-
  Personal radiative heat regulation by photonic engineered textiles can contribute to a decreased energy
  consumption in buildings by expanding the range of comfortable ambient conditions. Here, we propose
  dual-mode photonic designs (a static and a dynamic one), which modulate the emissivity to provide thermal
  regulation in both cold and hot environments. The first design is a Janus-yarn fabric that tunes statically via
  fabric flipping, while the second design is dynamic by utilizing a shape-memory polymer.
abstract_full:
- lang: eng
  text: |-
    Personal radiative heat regulation by photonic engineered textiles can contribute to a decreased energy
    consumption in buildings by expanding the range of comfortable ambient conditions. Here, we propose
    dual-mode photonic designs (a static and a dynamic one), which modulate the emissivity to provide thermal
    regulation in both cold and hot environments. The first design is a Janus-yarn fabric that tunes statically via
    fabric flipping, while the second design is dynamic by utilizing a shape-memory polymer.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
alternative_location:
- access: open
  kind: fullText
  url: https://metaconferences.org/META/files/meta22_proceedings.pdf
author:
- first_name: Muluneh G.
  last_name: Abebe
  name: Muluneh G. Abebe
  name_last_first: Abebe, Muluneh G.
- first_name: Alice
  last_name: De Corte
  name: Alice De Corte
  name_last_first: De Corte, Alice
- first_name: Gilles
  last_name: Rosolen
  name: Gilles Rosolen
  name_last_first: Rosolen, Gilles
- _id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
  orcid_id: 0000-0002-1281-2968
  ugent_id:
  - '000070582957'
  - '975000449525'
- _id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
  ugent_id:
  - '000100318410'
  - '802002133935'
  - '975208259089'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- first_name: Bjorn
  last_name: Maes
  name: Bjorn Maes
  name_last_first: Maes, Bjorn
biblio_id: 01GPJXP9DSZX9QRBTYW16K5M2F
cite:
  apa: |2
      <div class="csl-entry">Abebe, M. G., De Corte, A., Rosolen, G., Geltmeyer, J., Schoolaert, E., De Clerck, K., &#38; Maes, B. (2022). Photonic enhancements to tailor the comfort of radiative textiles. In S. Zouhdi (Ed.), <i>META 2022 : the 12th International Conference on Metamaterials, Photonic Crystals and Plasmonics</i> (pp. 742–743).</div>
  chicago-author-date: |2
      <div class="csl-entry">Abebe, Muluneh G., Alice De Corte, Gilles Rosolen, Jozefien Geltmeyer, Ella Schoolaert, Karen De Clerck, and Bjorn Maes. 2022. “Photonic Enhancements to Tailor the Comfort of Radiative Textiles.” In <i>META 2022 : The 12th International Conference on Metamaterials, Photonic Crystals and Plasmonics</i>, edited by Said Zouhdi, 742–43.</div>
  fwo: |2
      <div class="csl-entry">Abebe, Muluneh G., Alice De Corte, Gilles Rosolen, Jozefien Geltmeyer, Ella Schoolaert, Karen De Clerck, and Bjorn Maes. 2022. “Photonic Enhancements to Tailor the Comfort of Radiative Textiles.” In <i>META 2022 : The 12th International Conference on Metamaterials, Photonic Crystals and Plasmonics</i>, ed by. Said Zouhdi, 742–743.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">M. G. Abebe <i>et al.</i>, “Photonic enhancements to tailor the comfort of radiative textiles,” in <i>META 2022 : the 12th International Conference on Metamaterials, Photonic Crystals and Plasmonics</i>, Torremolinos, Spain, 2022, pp. 742–743.</div>
      </div>
  mla: |2
      <div class="csl-entry">Abebe, Muluneh G., et al. “Photonic Enhancements to Tailor the Comfort of Radiative Textiles.” <i>META 2022 : The 12th International Conference on Metamaterials, Photonic Crystals and Plasmonics</i>, edited by Said Zouhdi, 2022, pp. 742–43.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Abebe MG, De Corte A, Rosolen G, Geltmeyer J, Schoolaert E, De Clerck K, et al. Photonic enhancements to tailor the comfort of radiative textiles. In: Zouhdi S, editor. META 2022 : the 12th International Conference on Metamaterials, Photonic Crystals and Plasmonics. 2022. p. 742–3.</div>
       </div>
classification: C1
conference:
  end_date: 2022-07-22
  location: Torremolinos, Spain
  name: The 12th International Conference on Metamaterials, Photonic Crystals and
    Plasmonics  (META 2022)
  start_date: 2022-07-19
conference_type: proceedingsPaper
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2023-01-12 12:01:20
date_updated: 2026-03-31 13:20:18
editor:
- first_name: Said
  last_name: Zouhdi
  name: Said Zouhdi
  name_last_first: Zouhdi, Said
external: 0
file:
- _id: 01GPJYK57C80J21ZXW0FTZ4VQ7
  access: open
  content_type: application/pdf
  kind: fullText
  name: META_2022_summary_Maes.pdf
  publication_version: acceptedVersion
  sha256: 68a8f36e788663fe19875d30589a9abcc9c40bdea56f4ab4353219cedb95f136
  size: '227117'
  thumbnail_url: https://biblio.ugent.be/publication/01GPJXP9DSZX9QRBTYW16K5M2F/file/01GPJYK57C80J21ZXW0FTZ4VQ7/thumbnail.png
  url: https://biblio.ugent.be/publication/01GPJXP9DSZX9QRBTYW16K5M2F/file/01GPJYK57C80J21ZXW0FTZ4VQ7.pdf
handle: http://hdl.handle.net/1854/LU-01GPJXP9DSZX9QRBTYW16K5M2F
issn:
- 2429-1390
language:
- eng
page:
  first: '742'
  last: '743'
parent:
  title: 'META 2022 : the 12th International Conference on Metamaterials, Photonic
    Crystals and Plasmonics'
project:
- _id: 41I03418W
  abstract: "<p> Het ontwerp en de implementatie van dit nieuwe textiel met aanpasbare
    stralingseigenschappen vereist een benadering waarbij de kennis en knowhow in
    gevarieerde domeinen moet worden gecombineerd. Daarom moet een multidisciplinair
    consortium worden gevormd met deelname van meerdere teams aan beide zijden van
    de grens. </p> \n<p> In Wallonië brengen de betrokken partners hun competenties
    betreffende de materialen die de bouwstenen vormen van de eindproducten in: de
    zelfstructurering van de membranen, de vormgeving van de geladen polymeren, synthese
    van polymeren met vormgeheugen om de thermische regeling mogelijk te maken in
    functie van de omgevingsomstandigheden. </p> \n<p> De Vlaamse partner verrijkt
    het consortium door een originele benadering voor de structurering van membranen
    gebaseerd op elektrovezels. Van Franse kant biedt de regio Hauts de France een
    uitgebreid R&amp;D-platform betreffende textielprocessen. Hier worden enkele bijzondere
    onderzoeksstructuren verzameld om de procedés van zelfgeïnduceerde structurering
    (elastische instabiliteit, migratie van de belasting in de bifasige mengsels of
    elektrovezels) met elkaar in overeenstemming te brengen met het spinproces dat
    op industriële schaal wordt gebruikt. </p> \n<p> &#160;In het kader van de grensoverschrijdende
    initiatieven zullen de teams met theoretici deze werkzaamheden richting geven
    door hun voorspellende berekeningen over de stralingsprestaties van de beoogde
    oplossingen. Algemeen hebben de structureringseffecten in een eerder beperkt spectraal
    domein een optisch effect dat overeenstemt met de schaalgrootte van de motieven.
    In PHOTOTEX zullen meerdere benaderingen parallel worden onderzocht en uitgewerkt
    om te komen tot een structurering op vezelschaal naar een structurering op membraanschaal.
    Deze benaderingen zullen uiteindelijk worden gecombineerd om efficiënte oplossingen
    voor te stellen over een breed spectraal infraroodgamma. De realisatie van het
    project zal een stijging van de competenties van de betrokken partners in deze
    domeinen voor gevolg hebben. </p> \n<p> Daarnaast biedt het INTERREG-programma
    de mogelijkheid om de promotie van innovaties naar de regionale bedrijven te financieren
    die deze innovaties zullen kunnen integreren in hun productieproces. Hiervoor
    vormen de regio's Hauts de France en België de ideale kweekvijver met een sterk
    ontwikkelingspotentieel in het domein van het technische textiel (270 bedrijven
    zijn betrokken). De deelname van CETI en UPTEX aan het project zullen dit initiatief
    nog verder vergemakkelijken. </p>"
  end_date: 2022-03-31
  gismo_id: 0a55dea9-a722-46b4-af0e-6863cedb580b
  iweto_id: 41I03418W
  start_date: 2018-04-01
  title: 'Phototex: Ontwikkeling van microgestructureerde TEXtiles voor stimuli-dynamische
    FOTOnische filters'
publication_status: published
publication_status_sort: 2
series_title: META
status: public
subject:
- Technology and Engineering
title: Photonic enhancements to tailor the comfort of radiative textiles
type: conference
year: '2022'
...
---
_id: 01GMVB30NQ8WSC1CQYA0881359
abstract:
- An important challenge in the valorization of CO2 and H2 into fuels is the development
  of a stable, reusable and easy to handle heterogeneous catalyst. Here, a silica
  nanofibrous membrane is investigated as carrier for Ru nanoparticles, themselves
  encapsulated inside the metal organic framework Cr-MIL-101. The catalytic membrane
  is investigated for the Sabatier methanation reaction. The direct electrospinning
  of a tetraorthosilicate sol-gel system results in a highly thermal resistant silica
  nanofibrous structure (up to 1100°C) with a large amount of pores between the fibers
  in the µm-range, allowing a high gas throughput with low pressure requirements.
  A straightforward dip-coating procedure of the carrier was used to obtain a Ru@MIL-101
  functionalized silica nanofibrous veil, avoiding Ru clustering. The obtained catalytic
  membrane exhibited an apparent turnover frequency of 3257 h-1 at 250°C. This system
  therefore paves the way towards structured reactors for efficient CO2 hydrogenation
  processes.
abstract_full:
- lang: eng
  text: An important challenge in the valorization of CO2 and H2 into fuels is the
    development of a stable, reusable and easy to handle heterogeneous catalyst. Here,
    a silica nanofibrous membrane is investigated as carrier for Ru nanoparticles,
    themselves encapsulated inside the metal organic framework Cr-MIL-101. The catalytic
    membrane is investigated for the Sabatier methanation reaction. The direct electrospinning
    of a tetraorthosilicate sol-gel system results in a highly thermal resistant silica
    nanofibrous structure (up to 1100°C) with a large amount of pores between the
    fibers in the µm-range, allowing a high gas throughput with low pressure requirements.
    A straightforward dip-coating procedure of the carrier was used to obtain a Ru@MIL-101
    functionalized silica nanofibrous veil, avoiding Ru clustering. The obtained catalytic
    membrane exhibited an apparent turnover frequency of 3257 h-1 at 250°C. This system
    therefore paves the way towards structured reactors for efficient CO2 hydrogenation
    processes.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE06
  ugent_id: WE06
author:
- _id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  first_name: Eva
  last_name: Loccufier
  name: Eva Loccufier
  name_last_first: Loccufier, Eva
  orcid_id: 0000-0001-7045-2721
  ugent_id:
  - '802002671374'
  - '974161061035'
- _id: 166364E2-E363-11E2-A6ED-42CB10BDE39D
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 166364E2-E363-11E2-A6ED-42CB10BDE39D
  first_name: Geert
  last_name: Watson
  name: Geert Watson
  name_last_first: Watson, Geert
  orcid_id: 0000-0002-2324-4521
  ugent_id:
  - '979564449873'
- first_name: Yingrui
  last_name: Zhao
  name: Yingrui Zhao
  name_last_first: Zhao, Yingrui
- first_name: Maria
  last_name: Meledina
  name: Maria Meledina
  name_last_first: Meledina, Maria
- _id: F80C8D06-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: F80C8D06-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Pascal
  last_name: Van Der Voort
  name: Pascal Van Der Voort
  name_last_first: Van Der Voort, Pascal
  orcid_id: 0000-0002-1248-479X
  ugent_id:
  - '801002082830'
  - '978164144941'
- first_name: Damien
  last_name: Debecker
  name: Damien Debecker
  name_last_first: Debecker, Damien
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01GMVB30NQ8WSC1CQYA0881359
cite:
  apa: |2
      <div class="csl-entry">Loccufier, E., Watson, G., Zhao, Y., Meledina, M., Van Der Voort, P., Debecker, D., … De Clerck, K. (2022). Inorganic membranes allow for a more clever use of nanoparticles as CO2 conversion catalyst. <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>. Presented at the Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Ghent, Belgium. https://doi.org/10.5281/zenodo.7406152</div>
  bof: |2
      <div class="csl-entry">Loccufier, Eva, Geert Watson, Yingrui Zhao, Maria Meledina, Pascal Van Der Voort, Damien Debecker, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2022. “Inorganic Membranes Allow for a More Clever Use of Nanoparticles as CO2 Conversion Catalyst.” In <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>. doi:10.5281/zenodo.7406152.</div>
  chicago-author-date: |2
      <div class="csl-entry">Loccufier, Eva, Geert Watson, Yingrui Zhao, Maria Meledina, Pascal Van Der Voort, Damien Debecker, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2022. “Inorganic Membranes Allow for a More Clever Use of Nanoparticles as CO2 Conversion Catalyst.” In <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>. https://doi.org/10.5281/zenodo.7406152.</div>
  fwo: |2
      <div class="csl-entry">Loccufier, Eva, Geert Watson, Yingrui Zhao, Maria Meledina, Pascal Van Der Voort, Damien Debecker, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2022. “Inorganic Membranes Allow for a More Clever Use of Nanoparticles as CO2 Conversion Catalyst.” In <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>. doi:10.5281/zenodo.7406152.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Loccufier <i>et al.</i>, “Inorganic membranes allow for a more clever use of nanoparticles as CO2 conversion catalyst,” in <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>, Ghent, Belgium, 2022.</div>
      </div>
  mla: |2
      <div class="csl-entry">Loccufier, Eva, et al. “Inorganic Membranes Allow for a More Clever Use of Nanoparticles as CO2 Conversion Catalyst.” <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>, 2022, doi:10.5281/zenodo.7406152.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Loccufier E, Watson G, Zhao Y, Meledina M, Van Der Voort P, Debecker D, et al. Inorganic membranes allow for a more clever use of nanoparticles as CO2 conversion catalyst. In: Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts. 2022.</div>
       </div>
classification: C3
conference:
  end_date: 2022-10-28
  location: Ghent, Belgium
  name: Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022)
  start_date: 2022-10-28
conference_type: poster
copyright_statement: Creative Commons Attribution 4.0 International Public License
  (CC-BY 4.0)
created_by:
  _id: 202C3D36-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: CA
    - ugent_id: CA10
    ugent_id: CA10
  biblio_id: 202C3D36-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jeroen
  last_name: van der Hooft
  name: Jeroen van der Hooft
  name_last_first: van der Hooft, Jeroen
  orcid_id: 0000-0002-9416-9661
  ugent_id:
  - '802001581237'
  - '973676930395'
date_created: 2022-12-21 21:58:01
date_updated: 2026-03-31 05:46:47
doi:
- 10.5281/zenodo.7406152
external: 0
file:
- _id: 01GMXFTCQQ5TXSBCXY39W66JSH
  access: open
  content_type: application/pdf
  kind: fullText
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  size: '1299448'
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  url: https://biblio.ugent.be/publication/01GMVB30NQ8WSC1CQYA0881359/file/01GMXFTCQQ5TXSBCXY39W66JSH.pdf
handle: http://hdl.handle.net/1854/LU-01GMVB30NQ8WSC1CQYA0881359
jcr: {}
language:
- eng
page:
  count: '1'
parent:
  title: Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022),
    Abstracts
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Inorganic membranes allow for a more clever use of nanoparticles as CO2 conversion
  catalyst
type: conference
year: '2022'
...
---
_id: 01GMVB3AEXSKFSQX7AK4SGHAHR
abstract:
- Challenges in clean water availability have risen over the years, and especially
  third world countries are in great need of localised, low-cost water purification
  techniques, that make use of separation membranes. Electrochemical treatments in
  (waste)water management show high potential in the global water resource crisis,
  but are often limited by the performance of the ion-exchange membrane (IEM). Low
  chemical resistance and fouling are major issues in the development of the next
  generation IEMs. An interesting choice of material for IEMs is the use of nanofibers
  due to their outstanding ionic properties as a result of their specific morphology.
  Nanofiber membranes are known to have a large specific surface area, flexibility,
  high porosity and interconnected pores. Different strategies are applied for the
  production and structural design of these ion-exchange nanofiber membranes. Nanofibers
  with an ion-exchange functionality can be produced by either pre- or post-functionalization
  methods, combined with electrospinning. Depending on the application, these nanofiber
  mats can be used as such, or further membrane processing is possible to improve
  the dimensional stability, typically by adding a pore-filling matrix in between
  the nanofibers. By producing IEMs from hybrid nanofibrous membranes containing both
  organic and inorganic parts, a wide range of different membrane properties can be
  obtained by altering the molecular structure. This results in IEMs with high thermal
  and chemical resistance as well as tunability towards a.o. mechanical properties
  and hydrophobicity for the use in harsh environmental conditions. For example, sulfonated
  silica-based nanofiber cation-exchange membranes (CEMs) offer a promising solution
  to the current issues of IEMs, due to their superior chemical resistance and self-cleaning
  properties.
abstract_full:
- lang: eng
  text: Challenges in clean water availability have risen over the years, and especially
    third world countries are in great need of localised, low-cost water purification
    techniques, that make use of separation membranes. Electrochemical treatments
    in (waste)water management show high potential in the global water resource crisis,
    but are often limited by the performance of the ion-exchange membrane (IEM). Low
    chemical resistance and fouling are major issues in the development of the next
    generation IEMs. An interesting choice of material for IEMs is the use of nanofibers
    due to their outstanding ionic properties as a result of their specific morphology.
    Nanofiber membranes are known to have a large specific surface area, flexibility,
    high porosity and interconnected pores. Different strategies are applied for the
    production and structural design of these ion-exchange nanofiber membranes. Nanofibers
    with an ion-exchange functionality can be produced by either pre- or post-functionalization
    methods, combined with electrospinning. Depending on the application, these nanofiber
    mats can be used as such, or further membrane processing is possible to improve
    the dimensional stability, typically by adding a pore-filling matrix in between
    the nanofibers. By producing IEMs from hybrid nanofibrous membranes containing
    both organic and inorganic parts, a wide range of different membrane properties
    can be obtained by altering the molecular structure. This results in IEMs with
    high thermal and chemical resistance as well as tunability towards a.o. mechanical
    properties and hydrophobicity for the use in harsh environmental conditions. For
    example, sulfonated silica-based nanofiber cation-exchange membranes (CEMs) offer
    a promising solution to the current issues of IEMs, due to their superior chemical
    resistance and self-cleaning properties.
affiliation:
- name: Department of Biotechnology
  path:
  - ugent_id: UGent
  - ugent_id: LA
  - ugent_id: LA25
  ugent_id: LA25
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE06
  ugent_id: WE06
author:
- _id: 9DBE7436-0234-11E4-8A54-7BF54B2F559A
  biblio_id: 9DBE7436-0234-11E4-8A54-7BF54B2F559A
  first_name: Bianca
  last_name: Swanckaert
  name: Bianca Swanckaert
  name_last_first: Swanckaert, Bianca
  orcid_id: 0000-0001-6036-6512
  ugent_id:
  - '978889457589'
- _id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
  orcid_id: 0000-0002-1281-2968
  ugent_id:
  - '000070582957'
  - '975000449525'
- _id: 3610282E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA25
    ugent_id: LA25
  biblio_id: 3610282E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Korneel
  last_name: Rabaey
  name: Korneel Rabaey
  name_last_first: Rabaey, Korneel
  orcid_id: 0000-0001-8738-7778
  ugent_id:
  - '801001551956'
  - '972717941111'
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: 8EA488C6-C5C8-11E8-8987-A2685607D3EF
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA25
    ugent_id: LA25
  biblio_id: 8EA488C6-C5C8-11E8-8987-A2685607D3EF
  first_name: Luiza
  last_name: Bonin
  name: Luiza Bonin
  name_last_first: Bonin, Luiza
  orcid_id: 0000-0001-7123-0012
  ugent_id:
  - '802002939944'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01GMVB3AEXSKFSQX7AK4SGHAHR
cite:
  apa: |2
      <div class="csl-entry">Swanckaert, B., Geltmeyer, J., Rabaey, K., De Buysser, K., Bonin, L., &#38; De Clerck, K. (2022). Ion-exchange nanofiber membranes for advanced water treatment applications. <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>. Presented at the Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Ghent, Belgium. https://doi.org/10.5281/zenodo.7406026</div>
  bof: |2
      <div class="csl-entry">Swanckaert, Bianca, Jozefien Geltmeyer, Korneel Rabaey, Klaartje De Buysser, Luiza Bonin, and Karen De Clerck. 2022. “Ion-Exchange Nanofiber Membranes for Advanced Water Treatment Applications.” In <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>. doi:10.5281/zenodo.7406026.</div>
  chicago-author-date: |2
      <div class="csl-entry">Swanckaert, Bianca, Jozefien Geltmeyer, Korneel Rabaey, Klaartje De Buysser, Luiza Bonin, and Karen De Clerck. 2022. “Ion-Exchange Nanofiber Membranes for Advanced Water Treatment Applications.” In <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>. https://doi.org/10.5281/zenodo.7406026.</div>
  fwo: |2
      <div class="csl-entry">Swanckaert, Bianca, Jozefien Geltmeyer, Korneel Rabaey, Klaartje De Buysser, Luiza Bonin, and Karen De Clerck. 2022. “Ion-Exchange Nanofiber Membranes for Advanced Water Treatment Applications.” In <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>. doi:10.5281/zenodo.7406026.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. Swanckaert, J. Geltmeyer, K. Rabaey, K. De Buysser, L. Bonin, and K. De Clerck, “Ion-exchange nanofiber membranes for advanced water treatment applications,” in <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>, Ghent, Belgium, 2022.</div>
      </div>
  mla: |2
      <div class="csl-entry">Swanckaert, Bianca, et al. “Ion-Exchange Nanofiber Membranes for Advanced Water Treatment Applications.” <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>, 2022, doi:10.5281/zenodo.7406026.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Swanckaert B, Geltmeyer J, Rabaey K, De Buysser K, Bonin L, De Clerck K. Ion-exchange nanofiber membranes for advanced water treatment applications. In: Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts. 2022.</div>
       </div>
classification: C3
conference:
  end_date: 2022-10-28
  location: Ghent, Belgium
  name: Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022)
  start_date: 2022-10-28
conference_type: poster
copyright_statement: Creative Commons Attribution 4.0 International Public License
  (CC-BY 4.0)
created_by:
  _id: 202C3D36-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: CA
    - ugent_id: CA10
    ugent_id: CA10
  biblio_id: 202C3D36-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jeroen
  last_name: van der Hooft
  name: Jeroen van der Hooft
  name_last_first: van der Hooft, Jeroen
  orcid_id: 0000-0002-9416-9661
  ugent_id:
  - '802001581237'
  - '973676930395'
date_created: 2022-12-21 21:58:11
date_updated: 2026-03-31 05:46:47
doi:
- 10.5281/zenodo.7406026
external: 0
file:
- _id: 01GMXFFM2YTHKXGTV1Z66F9DMN
  access: open
  content_type: application/pdf
  kind: fullText
  name: fears_2022_poster.pdf
  publication_version: authorVersion
  sha256: 754d0361f2581911698b2dcd6cba6f6b5b50e813b3be7528ea4f0710a5396858
  size: '483382'
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  url: https://biblio.ugent.be/publication/01GMVB3AEXSKFSQX7AK4SGHAHR/file/01GMXFFM2YTHKXGTV1Z66F9DMN.pdf
handle: http://hdl.handle.net/1854/LU-01GMVB3AEXSKFSQX7AK4SGHAHR
jcr: {}
language:
- eng
page:
  count: '1'
parent:
  title: Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022),
    Abstracts
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Ion-exchange nanofiber membranes for advanced water treatment applications
type: conference
year: '2022'
...
---
_id: 01GMVB2VRSG40997DK22NHW2WK
abstract:
- Over 2/3rd of all newly developed drugs are rendered useless because they don't
  dissolve in our stomach. Their high crystallinity prevents any active ingredients
  from entering our system. For this reason, increasing the aqueous solubility of
  poorly soluble drugs is highly researched. Solvent electrospinning of a solution
  of the flubendazole and poly(2-ethyl-2-oxazoline) is demonstrated to be a viable
  strategy to produce stable nanofibrous amorphous solid dispersions with ultrahigh
  drug-loadings (up to 55 wt\% flubendazole). Importantly, at such high drug loadings,
  the concentration of the polymer in the electrospinning solution has to be lowered
  below the concentration where it can be spun in absence of the drug as the interactions
  between the polymer and the drug result in increased solution viscosity. X-ray diffraction
  results and in vitro drug release studies confirm the remarkable amorphous stability
  and potential of this electrospinning formulation strategy by significantly increased
  drug solubility values and dissolution rates even after storing the formulation
  for one year.
abstract_full:
- lang: eng
  text: Over 2/3rd of all newly developed drugs are rendered useless because they
    don't dissolve in our stomach. Their high crystallinity prevents any active ingredients
    from entering our system. For this reason, increasing the aqueous solubility of
    poorly soluble drugs is highly researched. Solvent electrospinning of a solution
    of the flubendazole and poly(2-ethyl-2-oxazoline) is demonstrated to be a viable
    strategy to produce stable nanofibrous amorphous solid dispersions with ultrahigh
    drug-loadings (up to 55 wt\% flubendazole). Importantly, at such high drug loadings,
    the concentration of the polymer in the electrospinning solution has to be lowered
    below the concentration where it can be spun in absence of the drug as the interactions
    between the polymer and the drug result in increased solution viscosity. X-ray
    diffraction results and in vitro drug release studies confirm the remarkable amorphous
    stability and potential of this electrospinning formulation strategy by significantly
    increased drug solubility values and dissolution rates even after storing the
    formulation for one year.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Applied physics
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW17
  ugent_id: TW17
- name: Department of Pharmaceutics
  path:
  - ugent_id: UGent
  - ugent_id: FW
  - ugent_id: FW01
  ugent_id: FW01
- name: Department of Organic and Macromolecular Chemistry
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author:
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  first_name: Jana
  last_name: Becelaere
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    ugent_id: UGent
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  first_name: Elias
  last_name: Van Den Broeck
  name: Elias Van Den Broeck
  name_last_first: Van Den Broeck, Elias
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    ugent_id: TW17
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    - ugent_id: WE05
    ugent_id: WE05
  biblio_id: F542886E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Veronique
  last_name: Van Speybroeck
  name: Veronique Van Speybroeck
  name_last_first: Van Speybroeck, Veronique
  orcid_id: 0000-0003-2206-178X
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  - '919016668139'
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- _id: F4A465E4-F0ED-11E1-A9DE-61C894A0A6B4
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    - ugent_id: FW01
    ugent_id: FW01
  biblio_id: F4A465E4-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Chris
  last_name: Vervaet
  name: Chris Vervaet
  name_last_first: Vervaet, Chris
  orcid_id: 0000-0002-1291-6054
  ugent_id:
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  - '973325837380'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01GMVB2VRSG40997DK22NHW2WK
cite:
  apa: |2
      <div class="csl-entry">Becelaere, J., Van Den Broeck, E., Van Speybroeck, V., Vervaet, C., Hoogenboom, R., &#38; De Clerck, K. (2022). Improving flubendazole efficiency through time-stable electrospun amorphous solid dispersions. <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>. Presented at the Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Ghent, Belgium. https://doi.org/10.5281/zenodo.7406006</div>
  bof: |2
      <div class="csl-entry">Becelaere, Jana, Elias Van Den Broeck, Veronique Van Speybroeck, Chris Vervaet, Richard Hoogenboom, and Karen De Clerck. 2022. “Improving Flubendazole Efficiency through Time-Stable Electrospun Amorphous Solid Dispersions.” In <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>. doi:10.5281/zenodo.7406006.</div>
  chicago-author-date: |2
      <div class="csl-entry">Becelaere, Jana, Elias Van Den Broeck, Veronique Van Speybroeck, Chris Vervaet, Richard Hoogenboom, and Karen De Clerck. 2022. “Improving Flubendazole Efficiency through Time-Stable Electrospun Amorphous Solid Dispersions.” In <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>. https://doi.org/10.5281/zenodo.7406006.</div>
  fwo: |2
      <div class="csl-entry">Becelaere, Jana, Elias Van Den Broeck, Veronique Van Speybroeck, Chris Vervaet, Richard Hoogenboom, and Karen De Clerck. 2022. “Improving Flubendazole Efficiency through Time-Stable Electrospun Amorphous Solid Dispersions.” In <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>. doi:10.5281/zenodo.7406006.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">J. Becelaere, E. Van Den Broeck, V. Van Speybroeck, C. Vervaet, R. Hoogenboom, and K. De Clerck, “Improving flubendazole efficiency through time-stable electrospun amorphous solid dispersions,” in <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>, Ghent, Belgium, 2022.</div>
      </div>
  mla: |2
      <div class="csl-entry">Becelaere, Jana, et al. “Improving Flubendazole Efficiency through Time-Stable Electrospun Amorphous Solid Dispersions.” <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>, 2022, doi:10.5281/zenodo.7406006.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Becelaere J, Van Den Broeck E, Van Speybroeck V, Vervaet C, Hoogenboom R, De Clerck K. Improving flubendazole efficiency through time-stable electrospun amorphous solid dispersions. In: Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts. 2022.</div>
       </div>
classification: C3
conference:
  end_date: 2022-10-28
  location: Ghent, Belgium
  name: Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022)
  start_date: 2022-10-28
conference_type: poster
copyright_statement: Creative Commons Attribution 4.0 International Public License
  (CC-BY 4.0)
created_by:
  _id: 202C3D36-F0EE-11E1-A9DE-61C894A0A6B4
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    - ugent_id: CA
    - ugent_id: CA10
    ugent_id: CA10
  biblio_id: 202C3D36-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jeroen
  last_name: van der Hooft
  name: Jeroen van der Hooft
  name_last_first: van der Hooft, Jeroen
  orcid_id: 0000-0002-9416-9661
  ugent_id:
  - '802001581237'
  - '973676930395'
date_created: 2022-12-21 21:57:56
date_updated: 2026-03-31 06:53:17
doi:
- 10.5281/zenodo.7406006
external: 0
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  kind: fullText
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handle: http://hdl.handle.net/1854/LU-01GMVB2VRSG40997DK22NHW2WK
jcr: {}
language:
- eng
page:
  count: '1'
parent:
  title: Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022),
    Abstracts
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Improving flubendazole efficiency through time-stable electrospun amorphous
  solid dispersions
type: conference
year: '2022'
...
---
_id: 01GSSEWPWEM0F5HNB4VDH4VBZ4
abstract:
- "INTRODUCTION \n\nWith the current development of ambient ionization platforms,
  sample analysis procedures are becoming faster and easier. And yet, sacrificing
  sample preparation and separation techniques in favor of short analytical run times
  allows matrix effects to resurface unabated, leading to a decrease in sensitivity
  accompanied by repeatability and reproducibility issues. In this study, we introduce
  electrospun polymeric fibrous membranes (MetaSAMPs) for the sampling and direct
  analysis of biofluids using the established laser-assisted rapid evaporative mass
  spectrometry (LA-REIMS) methodology (Plekhova et al., Nat.Prot., 2021). By applying
  customized MetaSAMPs® as a sampling tool and direct substrate for LA-REIMS analysis,
  we aim to increase the short- and long-term preservation of the metabolome, reduce
  the impact of macromolecules during analysis while improving metabolome coverage
  and reproducibility.\n\nMETHODS\n\nPolymeric fibrous sampling membranes (MetaSAMP)
  were developed by electrospinning  with their composition individually optimized
  for three commonly addressed in light of clinical biochemistry biofluids, i.e. stool,
  urine and saliva.  During validation experiments, pooled biological samples were
  analyzed as such or impregnated on the MetaSAMP® membranes to compare LA-REIMS signal
  intensity, metabolome coverage, and reproducibility. Next, the short- and long-term
  stability were examined by storing the impregnated MetaSAMP® membranes and crude
  biofluids at 4°C and 20° for 48 hours, or at -20°C and -80°C for up to six weeks.
  Finally, the clinical applicability of the three biofluid-specific MetaSAMPs® was
  verified in different pediatric cohorts, i.e. OPERA (n = 95, saliva, 6-16y) and
  MetaBEAse (n = 76, stool, 6-12y) studying adolescent and childhood obesity and CMA
  (n = 70, urine, 6 months-3y) studying infant food allergy.\n\nPRELIMINARY DATA\n\nBased
  on metabolome coverage, reproducibility and fiber network quality, the optimal urinary
  MetaSAMP® composition was determined to be a blend of 70/20/10 Polystyrene (PS)/Polyvinylpyrrolidone(PVP)/Polyacrylonitrile(PAN)%,
  \ enabling extraction of a broad range of metabolites (log P = -5 to 13). The addition
  of an outer 10% (w/w) nanofiber PAN  coating promoted urine absorption while simultaneously
  acting as a filter to reduce macromolecule biofouling. Similarly, the optimal compositions
  of the salivary and rectal MetaSAMPs® were determined as 90/10 PS/PVP and 60/40
  PVP/PS, respectively, both with PAN coating. \nIn subsequent validation experiments,
  impregnated MetaSAMPs showed a higher number of detected metabolic features compared
  to the crude biofluids whilst maintaining good repeatability with 97%, 66% and 65%
  of features ≤ 30% CV threshold for the urinary, salivary and rectal MetaSAMP®. After
  48h storage, mimicking the maximum transportation time from the patient's home or
  physician’s office to the laboratory, more metabolic features showed better stability
  when stored impregnated on the samplers as compared to the raw biofluids, as estimated
  by the interclass correlation coefficients (ICC). For example, 107 and 732 features
  detected in urine after storage at 20°C and 4°C, respectively, correlated well between
  0 and 48h (ICC > 0.4), while urine impregnated on the MetaSAMP stored at the same
  conditions generated 1597 and 1851 features with ICCs > 0.4. A similar trend was
  observed following 6 weeks of storage, as urinary MetaSAMPs still retained 1206
  highly correlated features at -20°C, while in urine only 780 remained stable.\nLastly,
  the clinical validation in three independent cohorts showed better predictive power
  of multivariate OPLS-DA models based on metabolic fingerprints obtained with the
  MetaSAMPs® , e.g. Q2Y= 0.65 and p-value = 1.3e-11 for urinary MetaSAMP® whereas
  Q2 Y = 0.52 and p-value  = 3.6e-7 for the analysis of crude urinary samples. \n\nNOVEL
  ASPECT\nPolymeric nanofibrous samplers (MetaSAMPs®) promote biofluid metabolome
  stability during storage while increasing metabolome coverage and reproducibility
  following LA-REIMS-based metabotyping."
abstract_full:
- lang: eng
  text: "INTRODUCTION \n\nWith the current development of ambient ionization platforms,
    sample analysis procedures are becoming faster and easier. And yet, sacrificing
    sample preparation and separation techniques in favor of short analytical run
    times allows matrix effects to resurface unabated, leading to a decrease in sensitivity
    accompanied by repeatability and reproducibility issues. In this study, we introduce
    electrospun polymeric fibrous membranes (MetaSAMPs) for the sampling and direct
    analysis of biofluids using the established laser-assisted rapid evaporative mass
    spectrometry (LA-REIMS) methodology (Plekhova et al., Nat.Prot., 2021). By applying
    customized MetaSAMPs® as a sampling tool and direct substrate for LA-REIMS analysis,
    we aim to increase the short- and long-term preservation of the metabolome, reduce
    the impact of macromolecules during analysis while improving metabolome coverage
    and reproducibility.\n\nMETHODS\n\nPolymeric fibrous sampling membranes (MetaSAMP)
    were developed by electrospinning  with their composition individually optimized
    for three commonly addressed in light of clinical biochemistry biofluids, i.e.
    stool, urine and saliva.  During validation experiments, pooled biological samples
    were analyzed as such or impregnated on the MetaSAMP® membranes to compare LA-REIMS
    signal intensity, metabolome coverage, and reproducibility. Next, the short- and
    long-term stability were examined by storing the impregnated MetaSAMP® membranes
    and crude biofluids at 4°C and 20° for 48 hours, or at -20°C and -80°C for up
    to six weeks. Finally, the clinical applicability of the three biofluid-specific
    MetaSAMPs® was verified in different pediatric cohorts, i.e. OPERA (n = 95, saliva,
    6-16y) and MetaBEAse (n = 76, stool, 6-12y) studying adolescent and childhood
    obesity and CMA (n = 70, urine, 6 months-3y) studying infant food allergy.\n\nPRELIMINARY
    DATA\n\nBased on metabolome coverage, reproducibility and fiber network quality,
    the optimal urinary MetaSAMP® composition was determined to be a blend of 70/20/10
    Polystyrene (PS)/Polyvinylpyrrolidone(PVP)/Polyacrylonitrile(PAN)%,  enabling
    extraction of a broad range of metabolites (log P = -5 to 13). The addition of
    an outer 10% (w/w) nanofiber PAN  coating promoted urine absorption while simultaneously
    acting as a filter to reduce macromolecule biofouling. Similarly, the optimal
    compositions of the salivary and rectal MetaSAMPs® were determined as 90/10 PS/PVP
    and 60/40 PVP/PS, respectively, both with PAN coating. \nIn subsequent validation
    experiments, impregnated MetaSAMPs showed a higher number of detected metabolic
    features compared to the crude biofluids whilst maintaining good repeatability
    with 97%, 66% and 65% of features ≤ 30% CV threshold for the urinary, salivary
    and rectal MetaSAMP®. After 48h storage, mimicking the maximum transportation
    time from the patient's home or physician’s office to the laboratory, more metabolic
    features showed better stability when stored impregnated on the samplers as compared
    to the raw biofluids, as estimated by the interclass correlation coefficients
    (ICC). For example, 107 and 732 features detected in urine after storage at 20°C
    and 4°C, respectively, correlated well between 0 and 48h (ICC > 0.4), while urine
    impregnated on the MetaSAMP stored at the same conditions generated 1597 and 1851
    features with ICCs > 0.4. A similar trend was observed following 6 weeks of storage,
    as urinary MetaSAMPs still retained 1206 highly correlated features at -20°C,
    while in urine only 780 remained stable.\nLastly, the clinical validation in three
    independent cohorts showed better predictive power of multivariate OPLS-DA models
    based on metabolic fingerprints obtained with the MetaSAMPs® , e.g. Q2Y= 0.65
    and p-value = 1.3e-11 for urinary MetaSAMP® whereas Q2 Y = 0.52 and p-value  =
    3.6e-7 for the analysis of crude urinary samples. \n\nNOVEL ASPECT\nPolymeric
    nanofibrous samplers (MetaSAMPs®) promote biofluid metabolome stability during
    storage while increasing metabolome coverage and reproducibility following LA-REIMS-based
    metabotyping."
affiliation:
- name: Department of Translational Physiology, Infectiology and Public Health
  path:
  - ugent_id: UGent
  - ugent_id: DI
  - ugent_id: DI04
  ugent_id: DI04
- name: Department of Materials, Textiles and Chemical Engineering
  path:
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  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Public Health and Primary Care
  path:
  - ugent_id: UGent
  - ugent_id: GE
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  - first_author
  first_name: Vera
  last_name: Plekhova
  name: Vera Plekhova
  name_last_first: Plekhova, Vera
  orcid_id: 0000-0002-6109-7032
  ugent_id:
  - '802002994912'
  - '977915818675'
- _id: A9239AE6-15AD-11E3-B408-FEAE10BDE39D
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  - name: Ghent University Hospital
    path:
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    ugent_id: UZGent
  biblio_id: A9239AE6-15AD-11E3-B408-FEAE10BDE39D
  first_name: Margot
  last_name: De Spiegeleer
  name: Margot De Spiegeleer
  name_last_first: De Spiegeleer, Margot
  orcid_id: 0000-0002-1088-7245
  ugent_id:
  - '000130754582'
  - '974472127810'
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  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
  orcid_id: 0000-0002-1281-2968
  ugent_id:
  - '000070582957'
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- _id: 35D99368-F0EE-11E1-A9DE-61C894A0A6B4
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    ugent_id: DI04
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  first_name: Beata
  last_name: Pomian
  name: Beata Pomian
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  first_name: Varoon
  last_name: Singh
  name: Varoon Singh
  name_last_first: Singh, Varoon
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  - '802003406352'
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  first_name: Ellen
  last_name: De Paepe
  name: Ellen De Paepe
  name_last_first: De Paepe, Ellen
  orcid_id: 0000-0002-6197-5384
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    ugent_id: GE38
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  first_name: Kathleen
  last_name: Wijnant
  name: Kathleen Wijnant
  name_last_first: Wijnant, Kathleen
  orcid_id: 0000-0002-8242-4522
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  - '802002558917'
  - '910004446134'
- first_name: Inge
  last_name: Gies
  name: Inge Gies
  name_last_first: Gies, Inge
- _id: 0410FFB0-F0EE-11E1-A9DE-61C894A0A6B4
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    ugent_id: PP07
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  first_name: Nathalie
  last_name: Michels
  name: Nathalie Michels
  name_last_first: Michels, Nathalie
  orcid_id: 0000-0002-3069-7254
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  - '971022391922'
- _id: 137E2946-F0EE-11E1-A9DE-61C894A0A6B4
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  - name: Ghent University
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    ugent_id: UGent
  biblio_id: 137E2946-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Marilyn
  last_name: De Graeve
  name: Marilyn De Graeve
  name_last_first: De Graeve, Marilyn
  orcid_id: 0000-0001-6916-401X
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  - '971668236009'
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    ugent_id: TW11
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  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
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    ugent_id: DI04
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  credit_role:
  - last_author
  first_name: Lynn
  last_name: Vanhaecke
  name: Lynn Vanhaecke
  name_last_first: Vanhaecke, Lynn
  orcid_id: 0000-0003-0400-2188
  ugent_id:
  - '801001950969'
  - '976961995245'
biblio_id: 01GSSEWPWEM0F5HNB4VDH4VBZ4
cite:
  apa: |2
      <div class="csl-entry">Plekhova, V., De Spiegeleer, M., Geltmeyer, J., Pomian, B., Singh, V., De Paepe, E., … Vanhaecke, L. (2022). Electrospun nanofibrous samplers (MetaSAMP) provide superior biofluid metabolome stability and coverage following direct laser-assisted rapid evaporative ionization mass spectrometry. <i>70th ASMS Conference on Mass Spectrometry and Allied Topics, Abstracts</i>. Presented at the The 70th ASMS Conference, Minneapolis, MN, USA.</div>
  bof: |2
      <div class="csl-entry">Plekhova, Vera, Margot De Spiegeleer, Jozefien Geltmeyer, Beata Pomian, Varoon Singh, Ellen De Paepe, Kathleen Wijnant, Inge Gies, Nathalie Michels, Marilyn De Graeve, Karen De Clerck, and Lynn Vanhaecke. 2022. “Electrospun Nanofibrous Samplers (MetaSAMP) Provide Superior Biofluid Metabolome Stability and Coverage Following Direct Laser-Assisted Rapid Evaporative Ionization Mass Spectrometry.” In <i>70th ASMS Conference on Mass Spectrometry and Allied Topics, Abstracts</i>. Minneapolis, MN, USA.</div>
  chicago-author-date: |2
      <div class="csl-entry">Plekhova, Vera, Margot De Spiegeleer, Jozefien Geltmeyer, Beata Pomian, Varoon Singh, Ellen De Paepe, Kathleen Wijnant, et al. 2022. “Electrospun Nanofibrous Samplers (MetaSAMP) Provide Superior Biofluid Metabolome Stability and Coverage Following Direct Laser-Assisted Rapid Evaporative Ionization Mass Spectrometry.” In <i>70th ASMS Conference on Mass Spectrometry and Allied Topics, Abstracts</i>. Minneapolis, MN, USA.</div>
  fwo: |2
      <div class="csl-entry">Plekhova, Vera, Margot De Spiegeleer, Jozefien Geltmeyer, Beata Pomian, Varoon Singh, Ellen De Paepe, Kathleen Wijnant, Inge Gies, Nathalie Michels, Marilyn De Graeve, Karen De Clerck, and Lynn Vanhaecke. 2022. “Electrospun Nanofibrous Samplers (MetaSAMP) Provide Superior Biofluid Metabolome Stability and Coverage Following Direct Laser-Assisted Rapid Evaporative Ionization Mass Spectrometry.” In <i>70th ASMS Conference on Mass Spectrometry and Allied Topics, Abstracts</i>. Minneapolis, MN, USA.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">V. Plekhova <i>et al.</i>, “Electrospun nanofibrous samplers (MetaSAMP) provide superior biofluid metabolome stability and coverage following direct laser-assisted rapid evaporative ionization mass spectrometry,” in <i>70th ASMS Conference on Mass Spectrometry and Allied Topics, Abstracts</i>, Minneapolis, MN, USA, 2022.</div>
      </div>
  mla: |2
      <div class="csl-entry">Plekhova, Vera, et al. “Electrospun Nanofibrous Samplers (MetaSAMP) Provide Superior Biofluid Metabolome Stability and Coverage Following Direct Laser-Assisted Rapid Evaporative Ionization Mass Spectrometry.” <i>70th ASMS Conference on Mass Spectrometry and Allied Topics, Abstracts</i>, 2022.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Plekhova V, De Spiegeleer M, Geltmeyer J, Pomian B, Singh V, De Paepe E, et al. Electrospun nanofibrous samplers (MetaSAMP) provide superior biofluid metabolome stability and coverage following direct laser-assisted rapid evaporative ionization mass spectrometry. In: 70th ASMS Conference on Mass Spectrometry and Allied Topics, Abstracts. Minneapolis, MN, USA; 2022.</div>
       </div>
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      <div class="csl-entry">Loccufier, E., Van Hulle, S., Debecker, D., D’hooge, D., De Buysser, K., &#38; De Clerck, K. (2022). Stand-alone silica nanofibrous membranes for advanced catalytic and purification applications. <i>The Fiber Society’s Spring 2022 Conference, Abstracts</i>. Presented at the The Fiber Society’s spring 2022 Conference, Leuven, Belgium.</div>
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      <div class="csl-entry">Loccufier, Eva, Stijn Van Hulle, Damien Debecker, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2022. “Stand-Alone Silica Nanofibrous Membranes for Advanced Catalytic and Purification Applications.” In <i>The Fiber Society’s Spring 2022 Conference, Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">Loccufier, Eva, Stijn Van Hulle, Damien Debecker, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2022. “Stand-Alone Silica Nanofibrous Membranes for Advanced Catalytic and Purification Applications.” In <i>The Fiber Society’s Spring 2022 Conference, Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Loccufier, S. Van Hulle, D. Debecker, D. D’hooge, K. De Buysser, and K. De Clerck, “Stand-alone silica nanofibrous membranes for advanced catalytic and purification applications,” in <i>The Fiber Society’s spring 2022 Conference, Abstracts</i>, Leuven, Belgium, 2022.</div>
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  mla: |2
      <div class="csl-entry">Loccufier, Eva, et al. “Stand-Alone Silica Nanofibrous Membranes for Advanced Catalytic and Purification Applications.” <i>The Fiber Society’s Spring 2022 Conference, Abstracts</i>, 2022.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Loccufier E, Van Hulle S, Debecker D, D’hooge D, De Buysser K, De Clerck K. Stand-alone silica nanofibrous membranes for advanced catalytic and purification applications. In: The Fiber Society’s spring 2022 Conference, Abstracts. 2022.</div>
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  apa: |2
      <div class="csl-entry">Loccufier, E., Swanckaert, B., Geltmeyer, J., Deventer, K., Van Hulle, S., D’hooge, D., … De Clerck, K. (2022). Tunable silica nanofibrous structures in view of resolving challenging purification and separation obstacles. <i>Autex 2022 Conference, Proceedings</i>, 301–305. https://doi.org/10.34658/9788366741751.63</div>
  bof: |2
      <div class="csl-entry">Loccufier, Eva, Bianca Swanckaert, Jozefien Geltmeyer, Koen Deventer, Stijn Van Hulle, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2022. “Tunable Silica Nanofibrous Structures in View of Resolving Challenging Purification and Separation Obstacles.” In <i>Autex 2022 Conference, Proceedings</i>, 301–305. Lodz University of Technology Press. doi:10.34658/9788366741751.63.</div>
  chicago-author-date: |2
      <div class="csl-entry">Loccufier, Eva, Bianca Swanckaert, Jozefien Geltmeyer, Koen Deventer, Stijn Van Hulle, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2022. “Tunable Silica Nanofibrous Structures in View of Resolving Challenging Purification and Separation Obstacles.” In <i>Autex 2022 Conference, Proceedings</i>, 301–5. Lodz University of Technology Press. https://doi.org/10.34658/9788366741751.63.</div>
  fwo: |2
      <div class="csl-entry">Loccufier, Eva, Bianca Swanckaert, Jozefien Geltmeyer, Koen Deventer, Stijn Van Hulle, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2022. “Tunable Silica Nanofibrous Structures in View of Resolving Challenging Purification and Separation Obstacles.” In <i>Autex 2022 Conference, Proceedings</i>, 301–305. Lodz University of Technology Press. doi:10.34658/9788366741751.63.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Loccufier <i>et al.</i>, “Tunable silica nanofibrous structures in view of resolving challenging purification and separation obstacles,” in <i>Autex 2022 Conference, Proceedings</i>, Lodz, Poland, 2022, pp. 301–305.</div>
      </div>
  mla: |2
      <div class="csl-entry">Loccufier, Eva, et al. “Tunable Silica Nanofibrous Structures in View of Resolving Challenging Purification and Separation Obstacles.” <i>Autex 2022 Conference, Proceedings</i>, Lodz University of Technology Press, 2022, pp. 301–05, doi:10.34658/9788366741751.63.</div>
  vancouver: |2
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        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Loccufier E, Swanckaert B, Geltmeyer J, Deventer K, Van Hulle S, D’hooge D, et al. Tunable silica nanofibrous structures in view of resolving challenging purification and separation obstacles. In: Autex 2022 Conference, Proceedings. Lodz University of Technology Press; 2022. p. 301–5.</div>
       </div>
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  url: https://biblio.ugent.be/publication/8759717/file/8759719.pdf
handle: http://hdl.handle.net/1854/LU-8759717
isbn:
- '9788366741751'
jcr: {}
language:
- eng
page:
  first: '301'
  last: '305'
parent:
  title: Autex 2022 Conference, Proceedings
publication_status: published
publication_status_sort: 2
publisher:
  name: Lodz University of Technology Press
status: public
subject:
- Technology and Engineering
title: Tunable silica nanofibrous structures in view of resolving challenging purification
  and separation obstacles
type: conference
year: '2022'
...
---
_id: '8733959'
abstract:
- Recent development in the field of additive manufacturing, also known as three-dimensional
  (3D) printing, has allowed for the incorporation of continuous fiber reinforcement
  into 3D-printed polymer parts. These fiber reinforcements allow for the improvement
  of the mechanical properties, but compared to traditionally produced composite materials,
  the fiber volume fraction often remains low. This study aims to evaluate the in-nozzle
  impregnation of continuous aramid fiber reinforcement with glycol-modified polyethylene
  terephthalate (PETG) using a modified, low-cost, tabletop 3D printer. We analyze
  how dimensional printing parameters such as layer height and line width affect the
  fiber volume fraction and fiber dispersion in printed composites. By varying these
  parameters, unidirectional specimens are printed that have an inner structure going
  from an array-like to a continuous layered-like structure with fiber loading between
  20 and 45 vol%. The inner structure was analyzed by optical microscopy and Computed
  Tomography (µCT), achieving new insights into the structural composition of printed
  composites. The printed composites show good fiber alignment and the tensile modulus
  in the fiber direction increased from 2.2 GPa (non-reinforced) to 33 GPa (45 vol%),
  while the flexural modulus in the fiber direction increased from 1.6 GPa (non-reinforced)
  to 27 GPa (45 vol%). The continuous 3D reinforced specimens have quality and properties
  in the range of traditional composite materials produced by hand lay-up techniques,
  far exceeding the performance of typical bulk 3D-printed polymers. Hence, this technique
  has potential for the low-cost additive manufacturing of small, intricate parts
  with substantial mechanical performance, or parts of which only a small number is
  needed.
abstract_full:
- lang: eng
  text: Recent development in the field of additive manufacturing, also known as three-dimensional
    (3D) printing, has allowed for the incorporation of continuous fiber reinforcement
    into 3D-printed polymer parts. These fiber reinforcements allow for the improvement
    of the mechanical properties, but compared to traditionally produced composite
    materials, the fiber volume fraction often remains low. This study aims to evaluate
    the in-nozzle impregnation of continuous aramid fiber reinforcement with glycol-modified
    polyethylene terephthalate (PETG) using a modified, low-cost, tabletop 3D printer.
    We analyze how dimensional printing parameters such as layer height and line width
    affect the fiber volume fraction and fiber dispersion in printed composites. By
    varying these parameters, unidirectional specimens are printed that have an inner
    structure going from an array-like to a continuous layered-like structure with
    fiber loading between 20 and 45 vol%. The inner structure was analyzed by optical
    microscopy and Computed Tomography (µCT), achieving new insights into the structural
    composition of printed composites. The printed composites show good fiber alignment
    and the tensile modulus in the fiber direction increased from 2.2 GPa (non-reinforced)
    to 33 GPa (45 vol%), while the flexural modulus in the fiber direction increased
    from 1.6 GPa (non-reinforced) to 27 GPa (45 vol%). The continuous 3D reinforced
    specimens have quality and properties in the range of traditional composite materials
    produced by hand lay-up techniques, far exceeding the performance of typical bulk
    3D-printed polymers. Hence, this technique has potential for the low-cost additive
    manufacturing of small, intricate parts with substantial mechanical performance,
    or parts of which only a small number is needed.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Physics and astronomy
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE05
  ugent_id: WE05
article_number: '298'
article_type: original
author:
- _id: EE9A9EBA-F0EE-11E1-A197-91C894A0A6B4
  biblio_id: EE9A9EBA-F0EE-11E1-A197-91C894A0A6B4
  first_name: Sander
  last_name: Rijckaert
  name: Sander Rijckaert
  name_last_first: Rijckaert, Sander
  orcid_id: 0000-0003-4447-0867
  ugent_id:
  - '977613653975'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: F8DDCF06-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F8DDCF06-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Ludwig
  last_name: Cardon
  name: Ludwig Cardon
  name_last_first: Cardon, Ludwig
  orcid_id: 0000-0002-4019-612X
  ugent_id:
  - '802000179080'
  - '972410561043'
- _id: F9AC5FA6-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE05
    ugent_id: WE05
  biblio_id: F9AC5FA6-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Matthieu
  last_name: Boone
  name: Matthieu Boone
  name_last_first: Boone, Matthieu
  orcid_id: 0000-0002-5478-4141
  ugent_id:
  - '802000287093'
  - '972712227609'
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8733959'
cite:
  apa: |2
      <div class="csl-entry">Rijckaert, S., Daelemans, L., Cardon, L., Boone, M., Van Paepegem, W., &#38; De Clerck, K. (2022). Continuous fiber-reinforced aramid/PETG 3D-printed composites with high fiber loading through fused filament fabrication. <i>POLYMERS</i>, <i>14</i>(2). https://doi.org/10.3390/polym14020298</div>
  bof: |2-
      <div class="csl-entry">Rijckaert, Sander, Lode Daelemans, Ludwig Cardon, Matthieu Boone, Wim Van Paepegem, and Karen De Clerck. 2022. “Continuous Fiber-Reinforced Aramid/PETG 3D-Printed Composites with High Fiber Loading through Fused Filament Fabrication.” <i>POLYMERS</i> 14 (2). doi:10.3390/polym14020298.</div>
    <div><i>Impact factor: 5, category: POLYMER SCIENCE, rank: 16/86, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Rijckaert, Sander, Lode Daelemans, Ludwig Cardon, Matthieu Boone, Wim Van Paepegem, and Karen De Clerck. 2022. “Continuous Fiber-Reinforced Aramid/PETG 3D-Printed Composites with High Fiber Loading through Fused Filament Fabrication.” <i>POLYMERS</i> 14 (2). https://doi.org/10.3390/polym14020298.</div>
  fwo: |2
      <div class="csl-entry">Rijckaert, Sander, Lode Daelemans, Ludwig Cardon, Matthieu Boone, Wim Van Paepegem, and Karen De Clerck. 2022. “Continuous Fiber-Reinforced Aramid/PETG 3D-Printed Composites with High Fiber Loading through Fused Filament Fabrication.” <i>POLYMERS</i> 14 (2). doi:10.3390/polym14020298.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. Rijckaert, L. Daelemans, L. Cardon, M. Boone, W. Van Paepegem, and K. De Clerck, “Continuous fiber-reinforced aramid/PETG 3D-printed composites with high fiber loading through fused filament fabrication,” <i>POLYMERS</i>, vol. 14, no. 2, 2022.</div>
      </div>
  mla: |2
      <div class="csl-entry">Rijckaert, Sander, et al. “Continuous Fiber-Reinforced Aramid/PETG 3D-Printed Composites with High Fiber Loading through Fused Filament Fabrication.” <i>POLYMERS</i>, vol. 14, no. 2, 2022, doi:10.3390/polym14020298.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Rijckaert S, Daelemans L, Cardon L, Boone M, Van Paepegem W, De Clerck K. Continuous fiber-reinforced aramid/PETG 3D-printed composites with high fiber loading through fused filament fabrication. POLYMERS. 2022;14(2).</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution 4.0 International Public License
  (CC-BY 4.0)
created_by:
  _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
date_created: 2022-01-13 08:38:14
date_updated: 2026-03-31 12:57:57
doi:
- 10.3390/polym14020298
external: 0
file:
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  name: Full_paper_PETG-aramid_printed_composites.pdf
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  name: Supporting_info.pdf
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handle: http://hdl.handle.net/1854/LU-8733959
issn:
- 2073-4360
issue: '2'
issue_title: Polymer Composites for 3D Printing
jcr:
  category: POLYMER SCIENCE
  category_decile: 2
  category_quartile: 1
  category_rank: 16/86
  category_vigintile: 4
  eigenfactor: 0.06233
  immediacy_index: 1.3
  impact_factor: 5
  impact_factor_5yr: 5
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 4
  prev_impact_factor: 4.967
  total_cites: 71416
keyword:
- Polymers and Plastics
- General Chemistry
- additive manufacturing
- FFF
- FDM
- mechanical testing
- microscopy
- low-cost
- CONTINUOUS CARBON-FIBER
- MECHANICAL-PROPERTIES
- PLY THICKNESS
- SURFACE-TREATMENT
- ACID COMPOSITES
- STRENGTH
- TENSILE
- GLASS
- IMPREGNATION
- PERFORMANCE
language:
- eng
page:
  count: '16'
parent:
  short_title: Polymers
  title: POLYMERS
project:
- _id: '3E016519'
  abstract: |-
    <p>
    Textiles are ideally suited for technical engineering applications thanks to their unique combination of lightness, flexibility and strength. Especially, fibre reinforced composites are seeing a tremendous growth for designing light-weight structural components. The fibres, the building blocks of any textile, and their arrangement in the textile and the composite (microstructure) determine the macroscopic properties. It is thus of utmost importance that this micro-macro relation is fundamentally understood. The complexity of textiles (complex hierarchical microstructure, highly non-linear behaviour) makes this a challenging problem. By following a multiscale analysis, combining both advanced experimental and numerical techniques, starting with individual fibres and building up till complete nano-interleaved preforms, we get a fundamental understanding of the micro-macro relationships that govern the mechanical behaviour of textile materials. These insights are of crucial importance for the further development of high-end nano-enabled composites and are extendable to many other technical textile applications as well.

    </p>
  end_date: 2022-09-30
  gismo_id: 3c0a4b92-b36f-11e9-9b22-19a03077e1f4
  iweto_id: '3E016519'
  start_date: 2019-10-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
- _id: 01XP1717
  abstract: <p>UGCT is a research/user facility offering external research groups
    and companies access to its unique combination of state-of-the-art in-house developed
    high-resolution X-ray CT systems and its CT expertise. The flexibility of the
    systems and the knowledge of the researchers involved allows to perform challenging
    experiments in various research fields, continuously pushing the limits of what
    is currently possible with CT.</p>
  end_date: 2024-01-31
  gismo_id: c007e1ff-1de1-43a1-8ef5-573ce37d58c1
  iweto_id: 01XP1717
  publication_count: 24
  start_date: 2017-02-01
  title: UGCT – Ghent University Centre for X-ray Tomography
- _id: 01J02013
  abstract: '<p>The project focuses on the use and functionalization of nanofibres
    to improve the toughness of epoxy matrix composites. The project consist of 5
    packages:<br /><br /><br /><br />WP1: nanofibre properties with respect to composite
    applications<br /><br />WP2: functionalization of nanofbibrous structures<br /><br
    />WP3: effect of nanofibres on the curing behavior of epoxy resins<br /><br />WP4:
    Tougning of nf-epoxy systems<br /><br />WP5: mechanical properties of GF/nf composites</p>'
  end_date: 2017-12-31
  gismo_id: 23e0ac1b-2d66-4695-b51c-6f6965e4da3d
  iweto_id: 01J02013
  start_date: 2013-03-01
  title: Epoxy resin composites reinforced with functionalized electrospun nanofibres
- _id: BOF/STA/202009/046
  abstract: <p>Every textile material, be it for low-end consumer goods or high-end
    technical products, is exploited for the properties resulting from its multi-scale
    nature (fibres -&gt; yarns -&gt; textiles -&gt; derivatives). Understanding this
    multi-scale nature is thus key to improving this materials. Textiles are, for
    example, well suited for technical applications thanks to their unique combination
    of lightness, flexibility and strength. Yet such applications often require a
    thorough understanding of the mechanical performance, which in itself is quite
    challenging due to the complex microstructure. By following a multiscale analysis,
    combining both experimental and numerical techniques, starting with individual
    fibres and building up till complete textile materials and derivatives such as
    composites, we underpin the micro-macro relationships that govern the mechanical
    behaviour of textiles. This project combines both advanced testing methods with
    in-situ measurement of the deformation mechanisms at microscale, and novel finite
    element modelling tools that allow simulations at the microscale.</p>
  deleted: 1
  end_date: 2025-06-30
  gismo_id: 25182d45-ccf4-11eb-9f0b-e5cd0f711fbd
  iweto_id: BOF/STA/202009/046
  publication_count: 1
  start_date: 2021-07-01
  title: Multi-scale analysis of textile and derived materials
publication_status: published
publication_status_sort: 2
pubmed_id: '35054704'
status: public
subject:
- Technology and Engineering
title: Continuous fiber-reinforced aramid/PETG 3D-printed composites with high fiber
  loading through fused filament fabrication
type: journalArticle
volume: '14'
wos_id: '000760433900001'
wos_type: Article
year: '2022'
...
---
_id: '8735807'
abstract:
- In view of today's challenges in clean water depletion and wastewater management,
  electrochemical water treatment processes are increasingly applied for e.g. desalination
  of brackish water, recovery of resources and energy production from waste streams,
  and disinfection of wastewater. These electrochemical processes typically make use
  of an ion-exchange membrane in between the anode and cathode. The choice of material
  for this membrane is crucial for the performance of the cell and often its performance
  is the key bottleneck. Over the last decade, research has been focused on the production
  of ion-exchange nanofibers as membrane material due to their outstanding ionic properties
  as a result of their specific morphology. Nanofiber membranes are known to have
  a large specific surface area, flexibility, high porosity and interconnected pores.
  Different strategies are applied for the production and structural design of these
  ion-exchange nanofiber membranes, which are discussed in this review. Nanofibers
  with an ion-exchange functionality can be produced by either pre-or postfunctionalization
  methods, combined with electrospinning. Depending on the application, these nanofiber
  mats can be used as such, or further membrane processing is possible to improve
  the dimensional stability, typically by adding a pore-filling matrix in between
  the nanofibers. Eventually, the current state of research on ion-exchange nanofibers
  in electrochemical separation and degradation applications is discussed. The many
  examples highlighted in this review prove the potential of nanofibers as ion-exchangers
  and provide insights for future research in this area.
abstract_full:
- lang: eng
  text: In view of today's challenges in clean water depletion and wastewater management,
    electrochemical water treatment processes are increasingly applied for e.g. desalination
    of brackish water, recovery of resources and energy production from waste streams,
    and disinfection of wastewater. These electrochemical processes typically make
    use of an ion-exchange membrane in between the anode and cathode. The choice of
    material for this membrane is crucial for the performance of the cell and often
    its performance is the key bottleneck. Over the last decade, research has been
    focused on the production of ion-exchange nanofibers as membrane material due
    to their outstanding ionic properties as a result of their specific morphology.
    Nanofiber membranes are known to have a large specific surface area, flexibility,
    high porosity and interconnected pores. Different strategies are applied for the
    production and structural design of these ion-exchange nanofiber membranes, which
    are discussed in this review. Nanofibers with an ion-exchange functionality can
    be produced by either pre-or postfunctionalization methods, combined with electrospinning.
    Depending on the application, these nanofiber mats can be used as such, or further
    membrane processing is possible to improve the dimensional stability, typically
    by adding a pore-filling matrix in between the nanofibers. Eventually, the current
    state of research on ion-exchange nanofibers in electrochemical separation and
    degradation applications is discussed. The many examples highlighted in this review
    prove the potential of nanofibers as ion-exchangers and provide insights for future
    research in this area.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Biotechnology
  path:
  - ugent_id: UGent
  - ugent_id: LA
  - ugent_id: LA25
  ugent_id: LA25
- name: Department of Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE06
  ugent_id: WE06
article_number: '120529'
article_type: review
author:
- _id: 9DBE7436-0234-11E4-8A54-7BF54B2F559A
  biblio_id: 9DBE7436-0234-11E4-8A54-7BF54B2F559A
  first_name: Bianca
  last_name: Swanckaert
  name: Bianca Swanckaert
  name_last_first: Swanckaert, Bianca
  orcid_id: 0000-0001-6036-6512
  ugent_id:
  - '978889457589'
- _id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
  orcid_id: 0000-0002-1281-2968
  ugent_id:
  - '000070582957'
  - '975000449525'
- _id: 3610282E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA25
    ugent_id: LA25
  biblio_id: 3610282E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Korneel
  last_name: Rabaey
  name: Korneel Rabaey
  name_last_first: Rabaey, Korneel
  orcid_id: 0000-0001-8738-7778
  ugent_id:
  - '801001551956'
  - '972717941111'
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: 8EA488C6-C5C8-11E8-8987-A2685607D3EF
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA25
    ugent_id: LA25
  biblio_id: 8EA488C6-C5C8-11E8-8987-A2685607D3EF
  first_name: Luiza
  last_name: Bonin
  name: Luiza Bonin
  name_last_first: Bonin, Luiza
  orcid_id: 0000-0001-7123-0012
  ugent_id:
  - '802002939944'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8735807'
cite:
  apa: |2
      <div class="csl-entry">Swanckaert, B., Geltmeyer, J., Rabaey, K., De Buysser, K., Bonin, L., &#38; De Clerck, K. (2022). A review on ion-exchange nanofiber membranes : properties, structure and application in electrochemical (waste)water treatment. <i>SEPARATION AND PURIFICATION TECHNOLOGY</i>, <i>287</i>. https://doi.org/10.1016/j.seppur.2022.120529</div>
  bof: |2-
      <div class="csl-entry">Swanckaert, Bianca, Jozefien Geltmeyer, Korneel Rabaey, Klaartje De Buysser, Luiza Bonin, and Karen De Clerck. 2022. “A Review on Ion-Exchange Nanofiber Membranes : Properties, Structure and Application in Electrochemical (Waste)Water Treatment.” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i> 287. doi:10.1016/j.seppur.2022.120529.</div>
    <div><i>Impact factor: 8.6, category: ENGINEERING, CHEMICAL, rank: 12/140, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Swanckaert, Bianca, Jozefien Geltmeyer, Korneel Rabaey, Klaartje De Buysser, Luiza Bonin, and Karen De Clerck. 2022. “A Review on Ion-Exchange Nanofiber Membranes : Properties, Structure and Application in Electrochemical (Waste)Water Treatment.” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i> 287. https://doi.org/10.1016/j.seppur.2022.120529.</div>
  fwo: |2
      <div class="csl-entry">Swanckaert, Bianca, Jozefien Geltmeyer, Korneel Rabaey, Klaartje De Buysser, Luiza Bonin, and Karen De Clerck. 2022. “A Review on Ion-Exchange Nanofiber Membranes : Properties, Structure and Application in Electrochemical (Waste)Water Treatment.” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i> 287. doi:10.1016/j.seppur.2022.120529.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. Swanckaert, J. Geltmeyer, K. Rabaey, K. De Buysser, L. Bonin, and K. De Clerck, “A review on ion-exchange nanofiber membranes : properties, structure and application in electrochemical (waste)water treatment,” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i>, vol. 287, 2022.</div>
      </div>
  mla: |2
      <div class="csl-entry">Swanckaert, Bianca, et al. “A Review on Ion-Exchange Nanofiber Membranes : Properties, Structure and Application in Electrochemical (Waste)Water Treatment.” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i>, vol. 287, 2022, doi:10.1016/j.seppur.2022.120529.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Swanckaert B, Geltmeyer J, Rabaey K, De Buysser K, Bonin L, De Clerck K. A review on ion-exchange nanofiber membranes : properties, structure and application in electrochemical (waste)water treatment. SEPARATION AND PURIFICATION TECHNOLOGY. 2022;287.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2022-01-26 08:14:28
date_updated: 2026-03-31 13:45:22
doi:
- 10.1016/j.seppur.2022.120529
external: 0
file:
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  content_type: application/pdf
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  name: Accepted_version_Review_paper_ion-exchange_nanofibers.pdf
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handle: http://hdl.handle.net/1854/LU-8735807
issn:
- 1383-5866
- 1873-3794
jcr:
  category: ENGINEERING, CHEMICAL
  category_decile: 1
  category_quartile: 1
  category_rank: 12/140
  category_vigintile: 2
  eigenfactor: 0.0558
  immediacy_index: 2.3
  impact_factor: 8.6
  impact_factor_5yr: 7.8
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 2
  prev_impact_factor: 9.136
  total_cites: 76726
keyword:
- Ion-exchange membranes
- Nanofibers
- Electrospinning
- Electrochemical separation
- Wastewater treatment
- WASTE-WATER TREATMENT
- MICROBIAL FUEL-CELL
- ADVANCED OXIDATION PROCESSES
- COMPOSITE MEMBRANES
- BIOELECTROCHEMICAL SYSTEMS
- ELECTROLYTE MEMBRANES
- POLYMER NANOFIBERS
- BIPOLAR MEMBRANE
- ELECTROSPUN NANOFIBERS
- SCALE ELECTRODIALYSIS
language:
- eng
page:
  count: '26'
parent:
  short_title: Sep. Purif. Technol.
  title: SEPARATION AND PURIFICATION TECHNOLOGY
project:
- _id: 3S039119
  abstract: <p>Challenges in clean water availability have risen over the years, and
    especially third world countries are in great need of low-cost water purification
    techniques, such as separation membranes. By implementing functionalised organosilica
    nanofibrous membranes, an affinity-based separation mechanism at low energy-cost
    can be developed that withstands harsh environmental conditions. These membranes
    should have a desirable hydrophobicity to tune the affinity of different solvents
    towards the membrane. Additionally, their mechanical endurance should be optimised
    as to increase their life time. These goals are systematically addressed in this
    project. Organosilica nanofibrous membranes will be produced via electrospinning
    starting from a variety of bis-silane precursors. By implementing different functionalities,
    the wettability towards different solvents can be altered in view of separation
    applications. A thorough study on the behaviour of sol-gel systems will be conducted
    to create a comprehensive understanding of the influence of functionalities on
    the electrospinning process. Additionally, a mechanical study will reveal the
    link between the 3D-structure of the organosilica network and the mechanical behaviour.
    With this fundamental knowledge, it will be possible to develop affinity-based
    separation membranes for water purification. This application will even be extended
    towards solvent separation in view of process intensification of liquid-phase
    CO2 conversion to alcohols.</p>
  end_date: 2023-10-31
  gismo_id: 9cfd7b5f-f96d-11e9-b85e-e128f57a36f9
  iweto_id: 3S039119
  start_date: 2019-11-01
  title: Functionalised nanofibrous organosilica membranes for advanced affinity-based
    separation applications
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
- Chemistry
title: 'A review on ion-exchange nanofiber membranes : properties, structure and application
  in electrochemical (waste)water treatment'
type: journalArticle
vabb_approved: 0
vabb_id: c:vabb:537325
vabb_type: VABB-1
vabb_year:
- '2023'
volume: '287'
wos_id: '000780699500001'
wos_type: Review
year: '2022'
...
---
_id: '8719362'
abstract:
- Colorimetric nanofibers provide visual, easy-to-interpret sensors for personal use
  as well as advanced applications. The potential of 2-n-butyl-2-oxazoline (B) and
  2-ethyl-2-oxazoline (E) statistical copolymers as a universal, versatile support
  platform for nanofibrous halochromic sensor design is demonstrated. These polymers
  are electrospinnable from eco-friendly solvent systems, while wettability, moist
  adsorption capacity, and water-solubility of the membranes can be easily tuned by
  changing the B/E monomer ratio, ensuring wide applicability. The halochromic sensing
  functionality is introduced by incorporating the alizarin yellow R (AYR) chromophore,
  which is covalently modified with an ethyl ester-group or a short poly(2-n-butyl-2-oxazoline)
  chain, which is demonstrated to simultaneously prevent dye-leaching and allows tuning
  of the halochromic pH-sensing window. The colorimetric nanofibrous sensors reversibly
  respond toward aqueous solutions of different pH, (hydrochloric) acid and alkaline
  (ammonia) vapors, and several biogenic amines with detection limits as low as 5
  ppb. Tunability of sensor responsivity, sensitivity, and pKa via manipulation of
  dye–polymer interactions, determined by support polymer structure and semi-crystallinity,
  as well as the chain length of the AYR-modified polymer, are discussed. Preliminary
  proof-of-principle studies indicate the potential of the developed sensors for sub-ppm
  biogenic amine vapor detection, which may serve as the basis for future applications
  in food packaging or breath analysis.
abstract_full:
- lang: eng
  text: Colorimetric nanofibers provide visual, easy-to-interpret sensors for personal
    use as well as advanced applications. The potential of 2-n-butyl-2-oxazoline (B)
    and 2-ethyl-2-oxazoline (E) statistical copolymers as a universal, versatile support
    platform for nanofibrous halochromic sensor design is demonstrated. These polymers
    are electrospinnable from eco-friendly solvent systems, while wettability, moist
    adsorption capacity, and water-solubility of the membranes can be easily tuned
    by changing the B/E monomer ratio, ensuring wide applicability. The halochromic
    sensing functionality is introduced by incorporating the alizarin yellow R (AYR)
    chromophore, which is covalently modified with an ethyl ester-group or a short
    poly(2-n-butyl-2-oxazoline) chain, which is demonstrated to simultaneously prevent
    dye-leaching and allows tuning of the halochromic pH-sensing window. The colorimetric
    nanofibrous sensors reversibly respond toward aqueous solutions of different pH,
    (hydrochloric) acid and alkaline (ammonia) vapors, and several biogenic amines
    with detection limits as low as 5 ppb. Tunability of sensor responsivity, sensitivity,
    and pKa via manipulation of dye–polymer interactions, determined by support polymer
    structure and semi-crystallinity, as well as the chain length of the AYR-modified
    polymer, are discussed. Preliminary proof-of-principle studies indicate the potential
    of the developed sensors for sub-ppm biogenic amine vapor detection, which may
    serve as the basis for future applications in food packaging or breath analysis.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
article_number: '2106859'
article_type: original
author:
- _id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
  ugent_id:
  - '000100318410'
  - '802002133935'
  - '975208259089'
- _id: D031A838-F0EE-11E1-A197-91C894A0A6B4
  biblio_id: D031A838-F0EE-11E1-A197-91C894A0A6B4
  first_name: Ronald
  last_name: Merckx
  name: Ronald Merckx
  name_last_first: Merckx, Ronald
  orcid_id: 0000-0002-2867-0888
  ugent_id:
  - '974260040744'
- _id: 39CBE44E-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 39CBE44E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jana
  last_name: Becelaere
  name: Jana Becelaere
  name_last_first: Becelaere, Jana
  orcid_id: 0000-0001-5024-3308
  ugent_id:
  - '977861082888'
- _id: C2B1B6A4-1676-11E3-8020-67D810BDE39D
  biblio_id: C2B1B6A4-1676-11E3-8020-67D810BDE39D
  first_name: Serge
  last_name: Rijssegem
  name: Serge Rijssegem
  name_last_first: Rijssegem, Serge
  ugent_id:
  - '000130778228'
  - '975985389242'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8719362'
cite:
  apa: |2
      <div class="csl-entry">Schoolaert, E., Merckx, R., Becelaere, J., Rijssegem, S., Hoogenboom, R., &#38; De Clerck, K. (2022). Eco-friendly colorimetric nanofiber design : halochromic sensors with tunable pH-sensing regime based on 2-ethyl-2-oxazoline and 2-n-butyl-2-oxazoline statistical copolymers functionalized with alizarin yellow R. <i>ADVANCED FUNCTIONAL MATERIALS</i>, <i>32</i>(1). https://doi.org/10.1002/adfm.202106859</div>
  bof: |2-
      <div class="csl-entry">Schoolaert, Ella, Ronald Merckx, Jana Becelaere, Serge Rijssegem, Richard Hoogenboom, and Karen De Clerck. 2022. “Eco-Friendly Colorimetric Nanofiber Design : Halochromic Sensors with Tunable PH-Sensing Regime Based on 2-Ethyl-2-Oxazoline and 2-n-Butyl-2-Oxazoline Statistical Copolymers Functionalized with Alizarin Yellow R.” <i>ADVANCED FUNCTIONAL MATERIALS</i> 32 (1). doi:10.1002/adfm.202106859.</div>
    <div><i>Impact factor: 19, category: CHEMISTRY, MULTIDISCIPLINARY, rank: 8/178, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Schoolaert, Ella, Ronald Merckx, Jana Becelaere, Serge Rijssegem, Richard Hoogenboom, and Karen De Clerck. 2022. “Eco-Friendly Colorimetric Nanofiber Design : Halochromic Sensors with Tunable PH-Sensing Regime Based on 2-Ethyl-2-Oxazoline and 2-n-Butyl-2-Oxazoline Statistical Copolymers Functionalized with Alizarin Yellow R.” <i>ADVANCED FUNCTIONAL MATERIALS</i> 32 (1). https://doi.org/10.1002/adfm.202106859.</div>
  fwo: |2
      <div class="csl-entry">Schoolaert, Ella, Ronald Merckx, Jana Becelaere, Serge Rijssegem, Richard Hoogenboom, and Karen De Clerck. 2022. “Eco-Friendly Colorimetric Nanofiber Design : Halochromic Sensors with Tunable PH-Sensing Regime Based on 2-Ethyl-2-Oxazoline and 2-n-Butyl-2-Oxazoline Statistical Copolymers Functionalized with Alizarin Yellow R.” <i>ADVANCED FUNCTIONAL MATERIALS</i> 32 (1). doi:10.1002/adfm.202106859.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Schoolaert, R. Merckx, J. Becelaere, S. Rijssegem, R. Hoogenboom, and K. De Clerck, “Eco-friendly colorimetric nanofiber design : halochromic sensors with tunable pH-sensing regime based on 2-ethyl-2-oxazoline and 2-n-butyl-2-oxazoline statistical copolymers functionalized with alizarin yellow R,” <i>ADVANCED FUNCTIONAL MATERIALS</i>, vol. 32, no. 1, 2022.</div>
      </div>
  mla: |2
      <div class="csl-entry">Schoolaert, Ella, et al. “Eco-Friendly Colorimetric Nanofiber Design : Halochromic Sensors with Tunable PH-Sensing Regime Based on 2-Ethyl-2-Oxazoline and 2-n-Butyl-2-Oxazoline Statistical Copolymers Functionalized with Alizarin Yellow R.” <i>ADVANCED FUNCTIONAL MATERIALS</i>, vol. 32, no. 1, 2022, doi:10.1002/adfm.202106859.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Schoolaert E, Merckx R, Becelaere J, Rijssegem S, Hoogenboom R, De Clerck K. Eco-friendly colorimetric nanofiber design : halochromic sensors with tunable pH-sensing regime based on 2-ethyl-2-oxazoline and 2-n-butyl-2-oxazoline statistical copolymers functionalized with alizarin yellow R. ADVANCED FUNCTIONAL MATERIALS. 2022;32(1).</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2021-09-06 14:02:31
date_updated: 2026-03-31 13:48:49
doi:
- 10.1002/adfm.202106859
external: 0
file:
- _id: '8719364'
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  kind: fullText
  name: Manuscript_ES.pdf
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- _id: '8734683'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: Publisher_version.pdf
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  sha256: d02a02458f6cf9cbaea49ab6287eeaf8b7e6df390b79115aaa0363eef4f9ae80
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  url: https://biblio.ugent.be/publication/8719362/file/8734683.pdf
handle: http://hdl.handle.net/1854/LU-8719362
issn:
- 1616-301X
- 1616-3028
issue: '1'
jcr:
  category: CHEMISTRY, MULTIDISCIPLINARY
  category_decile: 1
  category_quartile: 1
  category_rank: 8/178
  category_vigintile: 1
  eigenfactor: 0.28927
  immediacy_index: 3.5
  impact_factor: 19
  impact_factor_5yr: 19.2
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 1
  prev_impact_factor: 19.924
  total_cites: 219990
keyword:
- alizarin yellow R
- colorimetric sensors
- eco-friendly electrospinning
- poly(2-oxazoline)s
- statistical copolymers
- INDUCED PKA SHIFTS
- PHOTOPHYSICAL PROPERTIES
- COLOR
- PK(A)
- POLY(2-OXAZOLINE)S
- RED
- POLYPENTAPEPTIDES
- SPECTRA
- PROTEIN
- PROBES
language:
- eng
page:
  count: '14'
parent:
  short_title: Adv. Funct. Mater.
  title: ADVANCED FUNCTIONAL MATERIALS
project:
- _id: 3G060518
  abstract: <p> Due to their high relative surface area, nanofibrous materials obtained
    via electrospinning have shown to be ideal candidates for high-quality sensors
    in many sectors, including environmental monitoring, food inspection and biomedicine.
    The key challenges remain (i) the controlled incorporation of analyte-sensitive
    dye molecules in the nanofibers via chemical linkage without leaching upon application
    and (ii) the identification of environmentally friendly electrospinning conditions,
    aiming at the production of sensor materials with a long-term water stability.
    In view of these challenges and benefiting from the joint expertise of the applicants
    in material science, chemical engineering, and polymer chemistry, in this project,
    electrospinning of copoly(2-oxazoline) s (PAOx) with immobilized indicator dye
    molecules is explored. Ultimately, large-scale production of water-stable PAOx-based
    nanofibrous sensors will be realized by (i) applying model-based design to control
    the microstructure of individual PAOx chains during the synthesis step and (ii)
    tuning the electrospinning conditions upon nanofiber production with respect to
    water stability and sensor accessibility. Advanced characterization techniques
    will be used to showcase the controlled dye incorporation and to confirm the superior
    behaviour of the obtained sensors, starting from pyrenebased reference dyes opening
    up a wide range of potential indicator dyes and relevant applications. </p>
  end_date: 2021-12-31
  gismo_id: 68c7d40e-8a7e-479e-8231-436053702888
  iweto_id: 3G060518
  publication_count: 2
  start_date: 2018-01-01
  title: Combining material science and chemical engineering design for novel and
    fast optical nanostructured sensors.
- _id: 3GA01014
  abstract: <p>The aim of GreenRice is to reveal determining factors controlling the
    rate of change of soil redox potential and greenhouse gas balances under alternative
    irrigation management of young floodplain paddy soils. <br /></p>
  end_date: 2020-02-29
  gismo_id: bb43e08f-d2c3-4f7d-922e-a8c0a105dfb3
  iweto_id: 3GA01014
  start_date: 2014-01-01
  title: GreenRice - Greenhouse gas emissions from paddy soils under alternative irrigation
    management
- _id: 3S012019
  abstract: |-
    <p>This proposal addresses one of the most important challenges of our society the food loss and food waste around the globe. The main sector contributing to food waste are the consumers. Most consumers mistakenly believe that expiration dates on food indicate how safe the food is to consume, however these dates are not related to the risk of food poisoning or foodborne illness. These dates solely indicate freshness used by manufacturers to convey when the product is at its peak. Although most food is still edible after the expiration date, it is disposed prematurely. In addition, most of the household food is discarded even before the expiration date is reached, due to an uncertainty of its freshness. Within this project a sensor will be designed to provide an easy-to-read, objective measurement on food edibility. The inedibility of food originates from the growth of bacteria. These microorganisms produce volatile organic compounds (VOCs) resulting in a foul odour. The sensor will consist of organic dyes placed on polymer nanofibers and when the threshold is exceeded the sensor will change its color indicating that the organic compounds in the food are exceeding the predetermined limits.



    </p>
  end_date: 2022-12-31
  gismo_id: 4b38d931-60d8-11e9-aa53-555acf89d448
  iweto_id: 3S012019
  start_date: 2019-01-01
  title: 'How polymeric sensors can prevent food waste: expiration date reinvented.'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: 'Eco-friendly colorimetric nanofiber design : halochromic sensors with tunable
  pH-sensing regime based on 2-ethyl-2-oxazoline and 2-n-butyl-2-oxazoline statistical
  copolymers functionalized with alizarin yellow R'
type: journalArticle
volume: '32'
wos_id: '000693572100001'
wos_type: Article
year: '2022'
...
---
_id: '8739151'
affiliation:
- name: Department of Green Chemistry and Technology
  path:
  - ugent_id: UGent
  - ugent_id: LA
  - ugent_id: LA24
  ugent_id: LA24
- name: Department of Applied physics
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- name: Department of Materials, Textiles and Chemical Engineering
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  ugent_id: TW11
article_number: '118606'
article_type: original
author:
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  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 1D7D45A8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Kim
  last_name: Phan
  name: Kim Phan
  name_last_first: Phan, Kim
  orcid_id: 0000-0001-8660-5251
  ugent_id:
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  affiliation:
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    ugent_id: UGent
  biblio_id: E6DAAB84-24F3-11E5-AB25-64A3B5D1D7B1
  first_name: Elias
  last_name: Van Den Broeck
  name: Elias Van Den Broeck
  name_last_first: Van Den Broeck, Elias
  orcid_id: 0000-0002-9609-4333
  ugent_id:
  - '971635909747'
- _id: F587F796-F0ED-11E1-A9DE-61C894A0A6B4
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    - ugent_id: LA
    - ugent_id: LA23
    ugent_id: LA23
  biblio_id: F587F796-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Katleen
  last_name: Raes
  name: Katleen Raes
  name_last_first: Raes, Katleen
  orcid_id: 0000-0003-2382-120X
  ugent_id:
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  - '973092298160'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F542886E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW17
    ugent_id: TW17
  - path:
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    - ugent_id: WE05
    ugent_id: WE05
  biblio_id: F542886E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Veronique
  last_name: Van Speybroeck
  name: Veronique Van Speybroeck
  name_last_first: Van Speybroeck, Veronique
  orcid_id: 0000-0003-2206-178X
  ugent_id:
  - '801001153549'
  - '919016668139'
  - '976495757166'
- _id: FBC5C354-F0ED-11E1-A9DE-61C894A0A6B4
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    - ugent_id: LA24
    ugent_id: LA24
  biblio_id: FBC5C354-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Steven
  last_name: De Meester
  name: Steven De Meester
  name_last_first: De Meester, Steven
  orcid_id: 0000-0002-5246-3918
  ugent_id:
  - '802000481497'
  - '973680737243'
biblio_id: '8739151'
cite:
  apa: |2
      <div class="csl-entry">Phan, K., Van Den Broeck, E., Raes, K., De Clerck, K., Van Speybroeck, V., &#38; De Meester, S. (2022). A comparative theoretical study on the solvent dependency of anthocyanin extraction profiles. <i>JOURNAL OF MOLECULAR LIQUIDS</i>, <i>351</i>. https://doi.org/10.1016/j.molliq.2022.118606</div>
  bof: |2-
      <div class="csl-entry">Phan, Kim, Elias Van Den Broeck, Katleen Raes, Karen De Clerck, Veronique Van Speybroeck, and Steven De Meester. 2022. “A Comparative Theoretical Study on the Solvent Dependency of Anthocyanin Extraction Profiles.” <i>JOURNAL OF MOLECULAR LIQUIDS</i> 351. doi:10.1016/j.molliq.2022.118606.</div>
    <div><i>Impact factor: 6, category: PHYSICS, ATOMIC, MOLECULAR & CHEMICAL, rank: 4/35, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Phan, Kim, Elias Van Den Broeck, Katleen Raes, Karen De Clerck, Veronique Van Speybroeck, and Steven De Meester. 2022. “A Comparative Theoretical Study on the Solvent Dependency of Anthocyanin Extraction Profiles.” <i>JOURNAL OF MOLECULAR LIQUIDS</i> 351. https://doi.org/10.1016/j.molliq.2022.118606.</div>
  fwo: |2
      <div class="csl-entry">Phan, Kim, Elias Van Den Broeck, Katleen Raes, Karen De Clerck, Veronique Van Speybroeck, and Steven De Meester. 2022. “A Comparative Theoretical Study on the Solvent Dependency of Anthocyanin Extraction Profiles.” <i>JOURNAL OF MOLECULAR LIQUIDS</i> 351. doi:10.1016/j.molliq.2022.118606.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. Phan, E. Van Den Broeck, K. Raes, K. De Clerck, V. Van Speybroeck, and S. De Meester, “A comparative theoretical study on the solvent dependency of anthocyanin extraction profiles,” <i>JOURNAL OF MOLECULAR LIQUIDS</i>, vol. 351, 2022.</div>
      </div>
  mla: |2
      <div class="csl-entry">Phan, Kim, et al. “A Comparative Theoretical Study on the Solvent Dependency of Anthocyanin Extraction Profiles.” <i>JOURNAL OF MOLECULAR LIQUIDS</i>, vol. 351, 2022, doi:10.1016/j.molliq.2022.118606.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Phan K, Van Den Broeck E, Raes K, De Clerck K, Van Speybroeck V, De Meester S. A comparative theoretical study on the solvent dependency of anthocyanin extraction profiles. JOURNAL OF MOLECULAR LIQUIDS. 2022;351.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: 1D7D45A8-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 1D7D45A8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Kim
  last_name: Phan
  name: Kim Phan
  name_last_first: Phan, Kim
  orcid_id: 0000-0001-8660-5251
  ugent_id:
  - '000090124821'
  - '802002578620'
  - '971260175395'
date_created: 2022-02-04 15:18:41
date_updated: 2026-03-31 11:31:47
doi:
- 10.1016/j.molliq.2022.118606
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-8739151
issn:
- 0167-7322
- 1873-3166
jcr:
  category: PHYSICS, ATOMIC, MOLECULAR & CHEMICAL
  category_decile: 1
  category_quartile: 1
  category_rank: 4/35
  category_vigintile: 2
  eigenfactor: 0.06141
  immediacy_index: 1.7
  impact_factor: 6
  impact_factor_5yr: 5.6
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 4
  prev_impact_factor: 6.633
  total_cites: 76302
keyword:
- Materials Chemistry
- Physical and Theoretical Chemistry
- Spectroscopy
- Condensed Matter Physics
- Atomic and Molecular Physics
- and Optics
- Electronic
- Optical and Magnetic Materials
- Anthocyanins
- COSMO-RS
- Density Functional Theory (DFT)
- Extraction
- Solvent
- ULTRASOUND-ASSISTED EXTRACTION
- FREE-ENERGIES
- RED CABBAGE
- COSMO-RS
- SOLUBILITY
- OPTIMIZATION
language:
- eng
page:
  count: '12'
parent:
  short_title: J. Mol. Liq.
  title: JOURNAL OF MOLECULAR LIQUIDS
project:
- _id: HPC-UGent
  abstract: The central High Performance Computing infrastructure of Ghent University
    is part of the Flemish Supercomputer Center and is built and maintained with the
    support of Ghent University, the Hercules Foundation and the department of Economy,
    Science and Innovation of the Flemish Government. Thanks to this support, use
    of the infrastructure is free of charge for researchers of Ghent University.
  iweto_id: HPC-UGent
  publication_count: 144
  start_date: 01-JAN-08
  title: 'HPC-UGent: the central High Performance Computing infrastructure of Ghent
    University'
  ugent_id:
  - '801001384834'
  - '801001682908'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Earth and Environmental Sciences
- Chemistry
title: A comparative theoretical study on the solvent dependency of anthocyanin extraction
  profiles
type: journalArticle
vabb_approved: 0
vabb_id: c:vabb:536926
vabb_type: VABB-1
vabb_year:
- '2023'
volume: '351'
wos_id: '000754540700019'
wos_type: Article
year: '2022'
...
---
_id: 01GMVB42YZ7M41FSKMW0A8VYYD
abstract:
- For every project or application, it is important to select a material that exhibits
  the desired mechanical properties. To be able to do so, the performance of multiple
  materials needs to be determined via mechanical testing. Here, we present the ability
  to combine mechanical tests with microstructural observations, which gives new insight
  into the microscale deformation and fracture mechanisms present in materials. Thanks
  to Scanning Electron Microscopy (SEM) during testing, we are able to perform in-situ
  visualization of the microstructure of the material and how it responds to mechanical
  loads. SEM offers a high resolution, a wide range of magnification, and a higher
  field of depth than traditional optical microscopic techniques. With these new insights,
  materials can be tuned more efficiently towards their specific applications.
abstract_full:
- lang: eng
  text: For every project or application, it is important to select a material that
    exhibits the desired mechanical properties. To be able to do so, the performance
    of multiple materials needs to be determined via mechanical testing. Here, we
    present the ability to combine mechanical tests with microstructural observations,
    which gives new insight into the microscale deformation and fracture mechanisms
    present in materials. Thanks to Scanning Electron Microscopy (SEM) during testing,
    we are able to perform in-situ visualization of the microstructure of the material
    and how it responds to mechanical loads. SEM offers a high resolution, a wide
    range of magnification, and a higher field of depth than traditional optical microscopic
    techniques. With these new insights, materials can be tuned more efficiently towards
    their specific applications.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
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  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
author:
- _id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  biblio_id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  first_name: Olivier
  last_name: Verschatse
  name: Olivier Verschatse
  name_last_first: Verschatse, Olivier
  orcid_id: 0000-0001-7732-6007
  ugent_id:
  - '974442908376'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: TW11
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  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
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  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
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- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
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    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01GMVB42YZ7M41FSKMW0A8VYYD
cite:
  apa: |2
      <div class="csl-entry">Verschatse, O., Daelemans, L., Van Paepegem, W., &#38; De Clerck, K. (2022). Observing deformation mechanisms at microscale. <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>. Presented at the Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Ghent, Belgium. https://doi.org/10.5281/zenodo.7405881</div>
  chicago-author-date: |2
      <div class="csl-entry">Verschatse, Olivier, Lode Daelemans, Wim Van Paepegem, and Karen De Clerck. 2022. “Observing Deformation Mechanisms at Microscale.” In <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>. https://doi.org/10.5281/zenodo.7405881.</div>
  fwo: |2
      <div class="csl-entry">Verschatse, Olivier, Lode Daelemans, Wim Van Paepegem, and Karen De Clerck. 2022. “Observing Deformation Mechanisms at Microscale.” In <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>. doi:10.5281/zenodo.7405881.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">O. Verschatse, L. Daelemans, W. Van Paepegem, and K. De Clerck, “Observing deformation mechanisms at microscale,” in <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>, Ghent, Belgium, 2022.</div>
      </div>
  mla: |2
      <div class="csl-entry">Verschatse, Olivier, et al. “Observing Deformation Mechanisms at Microscale.” <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>, 2022, doi:10.5281/zenodo.7405881.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Verschatse O, Daelemans L, Van Paepegem W, De Clerck K. Observing deformation mechanisms at microscale. In: Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts. 2022.</div>
       </div>
classification: C3
conference:
  end_date: 2022-10-28
  location: Ghent, Belgium
  name: Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022)
  start_date: 2022-10-28
conference_type: poster
copyright_statement: Creative Commons Attribution 4.0 International Public License
  (CC-BY 4.0)
created_by:
  _id: 202C3D36-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: CA10
    ugent_id: CA10
  biblio_id: 202C3D36-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jeroen
  last_name: van der Hooft
  name: Jeroen van der Hooft
  name_last_first: van der Hooft, Jeroen
  orcid_id: 0000-0002-9416-9661
  ugent_id:
  - '802001581237'
  - '973676930395'
date_created: 2022-12-21 21:58:36
date_updated: 2026-03-31 14:57:11
doi:
- 10.5281/zenodo.7405881
external: 0
file:
- _id: 01GMX60QGTNKBT0MEZ5DQV3EB9
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  kind: fullText
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handle: http://hdl.handle.net/1854/LU-01GMVB42YZ7M41FSKMW0A8VYYD
language:
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page:
  count: '1'
parent:
  title: Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022),
    Abstracts
project:
- _id: '3E016519'
  abstract: |-
    <p>
    Textiles are ideally suited for technical engineering applications thanks to their unique combination of lightness, flexibility and strength. Especially, fibre reinforced composites are seeing a tremendous growth for designing light-weight structural components. The fibres, the building blocks of any textile, and their arrangement in the textile and the composite (microstructure) determine the macroscopic properties. It is thus of utmost importance that this micro-macro relation is fundamentally understood. The complexity of textiles (complex hierarchical microstructure, highly non-linear behaviour) makes this a challenging problem. By following a multiscale analysis, combining both advanced experimental and numerical techniques, starting with individual fibres and building up till complete nano-interleaved preforms, we get a fundamental understanding of the micro-macro relationships that govern the mechanical behaviour of textile materials. These insights are of crucial importance for the further development of high-end nano-enabled composites and are extendable to many other technical textile applications as well.

    </p>
  end_date: 2022-09-30
  gismo_id: 3c0a4b92-b36f-11e9-9b22-19a03077e1f4
  iweto_id: '3E016519'
  start_date: 2019-10-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
- _id: BOF/STA/202009/046
  abstract: <p>Every textile material, be it for low-end consumer goods or high-end
    technical products, is exploited for the properties resulting from its multi-scale
    nature (fibres -&gt; yarns -&gt; textiles -&gt; derivatives). Understanding this
    multi-scale nature is thus key to improving this materials. Textiles are, for
    example, well suited for technical applications thanks to their unique combination
    of lightness, flexibility and strength. Yet such applications often require a
    thorough understanding of the mechanical performance, which in itself is quite
    challenging due to the complex microstructure. By following a multiscale analysis,
    combining both experimental and numerical techniques, starting with individual
    fibres and building up till complete textile materials and derivatives such as
    composites, we underpin the micro-macro relationships that govern the mechanical
    behaviour of textiles. This project combines both advanced testing methods with
    in-situ measurement of the deformation mechanisms at microscale, and novel finite
    element modelling tools that allow simulations at the microscale.</p>
  deleted: 1
  end_date: 2025-06-30
  gismo_id: 25182d45-ccf4-11eb-9f0b-e5cd0f711fbd
  iweto_id: BOF/STA/202009/046
  publication_count: 1
  start_date: 2021-07-01
  title: Multi-scale analysis of textile and derived materials
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Observing deformation mechanisms at microscale
type: conference
year: '2022'
...
---
_id: '8755068'
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author:
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  biblio_id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  first_name: Olivier
  last_name: Verschatse
  name: Olivier Verschatse
  name_last_first: Verschatse, Olivier
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    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8755068'
cite:
  apa: |2
      <div class="csl-entry">Verschatse, O., Daelemans, L., Van Paepegem, W., &#38; De Clerck, K. (2022). In-Situ SEM analysis of the tensile properties of microscale epoxy specimens. <i>The Fiber Society’s Spring 2022 Conference : Abstracts</i>. Presented at the The Fiber Society spring 2022 conference, Leuven, Belgium.</div>
  bof: |2
      <div class="csl-entry">Verschatse, Olivier, Lode Daelemans, Wim Van Paepegem, and Karen De Clerck. 2022. “In-Situ SEM Analysis of the Tensile Properties of Microscale Epoxy Specimens.” In <i>The Fiber Society’s Spring 2022 Conference : Abstracts</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">Verschatse, Olivier, Lode Daelemans, Wim Van Paepegem, and Karen De Clerck. 2022. “In-Situ SEM Analysis of the Tensile Properties of Microscale Epoxy Specimens.” In <i>The Fiber Society’s Spring 2022 Conference : Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">Verschatse, Olivier, Lode Daelemans, Wim Van Paepegem, and Karen De Clerck. 2022. “In-Situ SEM Analysis of the Tensile Properties of Microscale Epoxy Specimens.” In <i>The Fiber Society’s Spring 2022 Conference : Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">O. Verschatse, L. Daelemans, W. Van Paepegem, and K. De Clerck, “In-Situ SEM analysis of the tensile properties of microscale epoxy specimens,” in <i>The Fiber Society’s spring 2022 conference : abstracts</i>, Leuven, Belgium, 2022.</div>
      </div>
  mla: |2
      <div class="csl-entry">Verschatse, Olivier, et al. “In-Situ SEM Analysis of the Tensile Properties of Microscale Epoxy Specimens.” <i>The Fiber Society’s Spring 2022 Conference : Abstracts</i>, 2022.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Verschatse O, Daelemans L, Van Paepegem W, De Clerck K. In-Situ SEM analysis of the tensile properties of microscale epoxy specimens. In: The Fiber Society’s spring 2022 conference : abstracts. 2022.</div>
       </div>
classification: C3
conference:
  end_date: 2022-06-01
  location: Leuven, Belgium
  name: The Fiber Society spring 2022 conference
  organizer: The Fiber Society
  start_date: 2022-05-30
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
  _id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  biblio_id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  first_name: Olivier
  last_name: Verschatse
  name: Olivier Verschatse
  name_last_first: Verschatse, Olivier
  orcid_id: 0000-0001-7732-6007
  ugent_id:
  - '974442908376'
date_created: 2022-06-02 10:19:13
date_updated: 2026-03-31 14:57:11
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handle: http://hdl.handle.net/1854/LU-8755068
jcr: {}
language:
- eng
page:
  count: '1'
parent:
  title: 'The Fiber Society''s spring 2022 conference : abstracts'
project:
- _id: '3E016519'
  abstract: |-
    <p>
    Textiles are ideally suited for technical engineering applications thanks to their unique combination of lightness, flexibility and strength. Especially, fibre reinforced composites are seeing a tremendous growth for designing light-weight structural components. The fibres, the building blocks of any textile, and their arrangement in the textile and the composite (microstructure) determine the macroscopic properties. It is thus of utmost importance that this micro-macro relation is fundamentally understood. The complexity of textiles (complex hierarchical microstructure, highly non-linear behaviour) makes this a challenging problem. By following a multiscale analysis, combining both advanced experimental and numerical techniques, starting with individual fibres and building up till complete nano-interleaved preforms, we get a fundamental understanding of the micro-macro relationships that govern the mechanical behaviour of textile materials. These insights are of crucial importance for the further development of high-end nano-enabled composites and are extendable to many other technical textile applications as well.

    </p>
  end_date: 2022-09-30
  gismo_id: 3c0a4b92-b36f-11e9-9b22-19a03077e1f4
  iweto_id: '3E016519'
  start_date: 2019-10-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
- _id: BOF/STA/202009/046
  abstract: <p>Every textile material, be it for low-end consumer goods or high-end
    technical products, is exploited for the properties resulting from its multi-scale
    nature (fibres -&gt; yarns -&gt; textiles -&gt; derivatives). Understanding this
    multi-scale nature is thus key to improving this materials. Textiles are, for
    example, well suited for technical applications thanks to their unique combination
    of lightness, flexibility and strength. Yet such applications often require a
    thorough understanding of the mechanical performance, which in itself is quite
    challenging due to the complex microstructure. By following a multiscale analysis,
    combining both experimental and numerical techniques, starting with individual
    fibres and building up till complete textile materials and derivatives such as
    composites, we underpin the micro-macro relationships that govern the mechanical
    behaviour of textiles. This project combines both advanced testing methods with
    in-situ measurement of the deformation mechanisms at microscale, and novel finite
    element modelling tools that allow simulations at the microscale.</p>
  deleted: 1
  end_date: 2025-06-30
  gismo_id: 25182d45-ccf4-11eb-9f0b-e5cd0f711fbd
  iweto_id: BOF/STA/202009/046
  publication_count: 1
  start_date: 2021-07-01
  title: Multi-scale analysis of textile and derived materials
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: In-Situ SEM analysis of the tensile properties of microscale epoxy specimens
type: conference
year: '2022'
...
---
_id: '8768650'
abstract:
- In this work, an important step is taken towards the bioavailability improvement
  of poorly water-soluble drugs, such as flubendazole (Flu), posing a challenge in
  the current development of many novel oral-administrable therapeutics. Solvent electrospinning
  of a solution of the drug and poly (2-ethyl-2-oxazoline) (PEtOx) is demonstrated
  to be a viable strategy to produce stable nanofibrous amorphous solid dispersions
  (ASDs) with ultrahigh drug-loadings (up to 55 wt% Flu) and long-term stability (at
  least one year). Importantly, at such high drug loadings, the concentration of the
  polymer in the electrospinning solution has to be lowered below the concentration
  where it can be spun in absence of the drug as the interactions between the polymer
  and the drug result in increased solution viscosity. A combination of experimental
  analysis and molecular dynamics simula- tions revealed that this formulation strategy
  provides strong, dominant and highly stable hydrogen bonds be- tween the polymer
  and the drug, which is crucial to obtain the high drug-loadings and to preserve
  the long-term amorphous character of the ASDs upon storage. In vitro drug release
  studies confirm the remarkable potential of this electrospinning formulation strategy
  by significantly increased drug solubility values and dissolution rates (respectively
  tripled and quadrupled compared to the crystalline drug), even after storing the
  formulation for one year.
abstract_full:
- lang: eng
  text: In this work, an important step is taken towards the bioavailability improvement
    of poorly water-soluble drugs, such as flubendazole (Flu), posing a challenge
    in the current development of many novel oral-administrable therapeutics. Solvent
    electrospinning of a solution of the drug and poly (2-ethyl-2-oxazoline) (PEtOx)
    is demonstrated to be a viable strategy to produce stable nanofibrous amorphous
    solid dispersions (ASDs) with ultrahigh drug-loadings (up to 55 wt% Flu) and long-term
    stability (at least one year). Importantly, at such high drug loadings, the concentration
    of the polymer in the electrospinning solution has to be lowered below the concentration
    where it can be spun in absence of the drug as the interactions between the polymer
    and the drug result in increased solution viscosity. A combination of experimental
    analysis and molecular dynamics simula- tions revealed that this formulation strategy
    provides strong, dominant and highly stable hydrogen bonds be- tween the polymer
    and the drug, which is crucial to obtain the high drug-loadings and to preserve
    the long-term amorphous character of the ASDs upon storage. In vitro drug release
    studies confirm the remarkable potential of this electrospinning formulation strategy
    by significantly increased drug solubility values and dissolution rates (respectively
    tripled and quadrupled compared to the crystalline drug), even after storing the
    formulation for one year.
additional_info: JB and EVDB contributed equally.
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article_type: original
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  first_name: Sander
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  first_name: Karolien
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  name_last_first: Creemers, Karolien
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  first_name: Veronique
  last_name: Van Speybroeck
  name: Veronique Van Speybroeck
  name_last_first: Van Speybroeck, Veronique
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  first_name: Chris
  last_name: Vervaet
  name: Chris Vervaet
  name_last_first: Vervaet, Chris
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  first_name: Richard
  last_name: Hoogenboom
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  name_last_first: De Clerck, Karen
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biblio_id: '8768650'
cite:
  apa: |2
      <div class="csl-entry">Becelaere, J., Van Den Broeck, E., Schoolaert, E., Vanhoorne, V., Van Guyse, J., Vergaelen, M., … De Clerck, K. (2022). Stable amorphous solid dispersion of flubendazole with high loading via electrospinning. <i>JOURNAL OF CONTROLLED RELEASE</i>, <i>351</i>, 123–136. https://doi.org/10.1016/j.jconrel.2022.09.028</div>
  bof: |2-
      <div class="csl-entry">Becelaere, Jana, Elias Van Den Broeck, Ella Schoolaert, Valérie Vanhoorne, Joachim Van Guyse, Maarten Vergaelen, Sander Borgmans, Karolien Creemers, Veronique Van Speybroeck, Chris Vervaet, Richard Hoogenboom, and Karen De Clerck. 2022. “Stable Amorphous Solid Dispersion of Flubendazole with High Loading via Electrospinning.” <i>JOURNAL OF CONTROLLED RELEASE</i> 351: 123–136. doi:10.1016/j.jconrel.2022.09.028.</div>
    <div><i>Impact factor: 10.8, category: PHARMACOLOGY & PHARMACY, rank: 12/277, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Becelaere, Jana, Elias Van Den Broeck, Ella Schoolaert, Valérie Vanhoorne, Joachim Van Guyse, Maarten Vergaelen, Sander Borgmans, et al. 2022. “Stable Amorphous Solid Dispersion of Flubendazole with High Loading via Electrospinning.” <i>JOURNAL OF CONTROLLED RELEASE</i> 351: 123–36. https://doi.org/10.1016/j.jconrel.2022.09.028.</div>
  fwo: |2
      <div class="csl-entry">Becelaere, Jana, Elias Van Den Broeck, Ella Schoolaert, Valérie Vanhoorne, Joachim Van Guyse, Maarten Vergaelen, Sander Borgmans, Karolien Creemers, Veronique Van Speybroeck, Chris Vervaet, Richard Hoogenboom, and Karen De Clerck. 2022. “Stable Amorphous Solid Dispersion of Flubendazole with High Loading via Electrospinning.” <i>JOURNAL OF CONTROLLED RELEASE</i> 351: 123–136. doi:10.1016/j.jconrel.2022.09.028.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">J. Becelaere <i>et al.</i>, “Stable amorphous solid dispersion of flubendazole with high loading via electrospinning,” <i>JOURNAL OF CONTROLLED RELEASE</i>, vol. 351, pp. 123–136, 2022.</div>
      </div>
  mla: |2
      <div class="csl-entry">Becelaere, Jana, et al. “Stable Amorphous Solid Dispersion of Flubendazole with High Loading via Electrospinning.” <i>JOURNAL OF CONTROLLED RELEASE</i>, vol. 351, 2022, pp. 123–36, doi:10.1016/j.jconrel.2022.09.028.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Becelaere J, Van Den Broeck E, Schoolaert E, Vanhoorne V, Van Guyse J, Vergaelen M, et al. Stable amorphous solid dispersion of flubendazole with high loading via electrospinning. JOURNAL OF CONTROLLED RELEASE. 2022;351:123–36.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
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  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2022-10-03 14:17:18
date_updated: 2026-03-31 14:24:31
doi:
- 10.1016/j.jconrel.2022.09.028
external: 0
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handle: http://hdl.handle.net/1854/LU-8768650
issn:
- 0168-3659
- 1873-4995
jcr:
  category: PHARMACOLOGY & PHARMACY
  category_decile: 1
  category_quartile: 1
  category_rank: 12/277
  category_vigintile: 1
  eigenfactor: 0.03455
  immediacy_index: 2.2
  impact_factor: 10.8
  impact_factor_5yr: 10.2
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 1
  prev_impact_factor: 11.467
  total_cites: 63562
keyword:
- Amorphous solid dispersions
- Solvent electrospinning
- Molecular dynamics
- Computational chemistry
- Poly(2-ethyl-2-oxazoline)
- Flubendazole
language:
- eng
page:
  first: '123'
  last: '136'
parent:
  short_title: J. Control. Release
  title: JOURNAL OF CONTROLLED RELEASE
project:
- _id: 3G060518
  abstract: <p> Due to their high relative surface area, nanofibrous materials obtained
    via electrospinning have shown to be ideal candidates for high-quality sensors
    in many sectors, including environmental monitoring, food inspection and biomedicine.
    The key challenges remain (i) the controlled incorporation of analyte-sensitive
    dye molecules in the nanofibers via chemical linkage without leaching upon application
    and (ii) the identification of environmentally friendly electrospinning conditions,
    aiming at the production of sensor materials with a long-term water stability.
    In view of these challenges and benefiting from the joint expertise of the applicants
    in material science, chemical engineering, and polymer chemistry, in this project,
    electrospinning of copoly(2-oxazoline) s (PAOx) with immobilized indicator dye
    molecules is explored. Ultimately, large-scale production of water-stable PAOx-based
    nanofibrous sensors will be realized by (i) applying model-based design to control
    the microstructure of individual PAOx chains during the synthesis step and (ii)
    tuning the electrospinning conditions upon nanofiber production with respect to
    water stability and sensor accessibility. Advanced characterization techniques
    will be used to showcase the controlled dye incorporation and to confirm the superior
    behaviour of the obtained sensors, starting from pyrenebased reference dyes opening
    up a wide range of potential indicator dyes and relevant applications. </p>
  end_date: 2021-12-31
  gismo_id: 68c7d40e-8a7e-479e-8231-436053702888
  iweto_id: 3G060518
  publication_count: 2
  start_date: 2018-01-01
  title: Combining material science and chemical engineering design for novel and
    fast optical nanostructured sensors.
- _id: 3S013517
  abstract: <p>Nanofibers are fibers with a diameter that is 1000 times smaller than
    a human hair. This makes<br /> nanofiber membranes very light and porous, making
    them ideally suited for sensor applications. By<br /> adding an indicator dye,
    that is a dye that changes color or fluorescence in reponse to a specific<br />
    chemical substance, to the nanofiber membrane, an ultrasensitive optical, chemical
    sensor is<br /> created. However, to design an optimal sensor, it is important
    to understand how the synthesis<br /> and production of the nanofibers influence
    the behavior and performance of the sensor.<br /> Therefore, in this project,
    different poly(2-oxazoline)s, which are very versatile polymers with<br /> tunable
    water solubility, will be covalently linked to pyrene, i.e. a fluorescent dye
    that is used for<br /> visualization. These functionalized polymers will then
    be processed into nanofibers from water,<br /> which is ecologically more friendly
    than the current nanofiber production techniques. The<br /> microstructure and
    behavior of the nanofibers and, thus, the sensor performance, can now be<br />
    analyzed as pyrene will function as a probe in visualization techniques. The produced
    nanofibrous<br /> sensors can be used in many applications, such as the detection
    of explosives and metal cations.<br /> Moreover, the pyrene-system will be used
    as a model to efficiently design optimal, optical sensors<br /> that change color
    in response to pH-changes. These sensors are suited for many applications such<br
    /> as wound healing, safety equipment and food inspection.</p>
  end_date: 2021-03-31
  gismo_id: 4c4bb546-8208-11e9-8dbc-f3943d565b0b
  iweto_id: 3S013517
  publication_count: 1
  start_date: 2017-01-01
  title: |-
    Development of easy read-out, ultrasensitive and reversible optical
    nanofibrous sensors based on waterborne electrospinning of dyefunctionalized
    copoly(2-oxazoline)s.
- _id: 3S000718
  abstract: <p>Today, over 60%, of all newly developed drugs are discarded due to
    low water-solubility. This low water-solubility is due to both the chemical makeup
    and the high degree of crystallinity of the drug. The current formulation techniques
    to produce tablets today cannot circumvent this problem, which means that the
    produced product cannot be absorbed by our body and will, hence, have a very low
    efficacy. With solvent electrospinning as a new formulation technique it is aimed
    to homogeneously disperse the drug in a polymer matrix. In first proof of principle
    experiments on the drug flubendazole it has already been shown that this can prevent
    crystallization, which enhances the solubility of the drug inside aqueous environments,
    such as the body. In other words, by formulating highly crystalline drugs with
    low water-solubility via solvent electrospinning, the drug's bioavailability is
    increased. However, this phenomenon is not fully understood and, hence, far from
    optimized and for sure not yet widely applicable. Thus, the influence of different
    process parameters on the final drug delivery should be studied. Also different
    polymers and different drugs should be examined. In this project, these topics
    will be dealt with and finally the formulation of highly crystalline drugs that
    are insoluble in aqueous environments will be made viable. The technique will
    be well understood and optimized in order to design new polymer-drug systems that
    increase the bioavailability of the drug.</p>
  end_date: 2022-12-31
  gismo_id: d89c7f90-be65-11e9-ace9-8bf558aeac68
  iweto_id: 3S000718
  start_date: 2018-01-01
  title: |-
    Solvent electrospinning nanofibers as a novel material for improved
    polymer-API solid dispersions.
- _id: HPC-UGent
  abstract: The central High Performance Computing infrastructure of Ghent University
    is part of the Flemish Supercomputer Center and is built and maintained with the
    support of Ghent University, the Hercules Foundation and the department of Economy,
    Science and Innovation of the Flemish Government. Thanks to this support, use
    of the infrastructure is free of charge for researchers of Ghent University.
  iweto_id: HPC-UGent
  publication_count: 144
  start_date: 01-JAN-08
  title: 'HPC-UGent: the central High Performance Computing infrastructure of Ghent
    University'
  ugent_id:
  - '801001384834'
  - '801001682908'
publication_status: published
publication_status_sort: 2
pubmed_id: '36122898'
status: public
subject:
- Technology and Engineering
- Chemistry
- Medicine and Health Sciences
title: Stable amorphous solid dispersion of flubendazole with high loading via electrospinning
type: journalArticle
volume: '351'
wos_id: '000877018500001'
wos_type: Article
year: '2022'
...
---
_id: 01GMVB2854B8827YKTB6VNSYM7
abstract:
- Silica nanofibrous membranes are flexible, light-weight and porous materials that
  showcase excellent thermal and chemical resistance. However, the production via
  a combination of sol-gel synthesis and electrospinning depends on many factors of
  which the influence is not completely understood. In this work, we investigate the
  link between the viscosity and the electrospinnability of the tetraethylorthosilicate
  (TEOS) based spinning solution as a first step in linking the different scales in
  the process. The viscosity of the silica sol has a clear effect on the behavior
  of the Taylor cone and hence on the stability of the electrospinning process. Exploiting
  these insights is of great importance for future chemically driven tuning of silica
  nanofibrous membranes.
abstract_full:
- lang: eng
  text: Silica nanofibrous membranes are flexible, light-weight and porous materials
    that showcase excellent thermal and chemical resistance. However, the production
    via a combination of sol-gel synthesis and electrospinning depends on many factors
    of which the influence is not completely understood. In this work, we investigate
    the link between the viscosity and the electrospinnability of the tetraethylorthosilicate
    (TEOS) based spinning solution as a first step in linking the different scales
    in the process. The viscosity of the silica sol has a clear effect on the behavior
    of the Taylor cone and hence on the stability of the electrospinning process.
    Exploiting these insights is of great importance for future chemically driven
    tuning of silica nanofibrous membranes.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE06
  ugent_id: WE06
author:
- _id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  first_name: Sofie
  last_name: Verschraegen
  name: Sofie Verschraegen
  name_last_first: Verschraegen, Sofie
  orcid_id: 0000-0002-6164-3662
  ugent_id:
  - '000150868746'
  - '802003501534'
  - '919029486586'
  - '975200255882'
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01GMVB2854B8827YKTB6VNSYM7
cite:
  apa: |2
      <div class="csl-entry">Verschraegen, S., De Buysser, K., D’hooge, D., &#38; De Clerck, K. (2022). Electrospinning of silica nanofibers : how the sol viscosity influences the Taylor cone. <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>. Presented at the Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Ghent, Belgium. https://doi.org/10.5281/zenodo.7400772</div>
  bof: |2
      <div class="csl-entry">Verschraegen, Sofie, Klaartje De Buysser, Dagmar D’hooge, and Karen De Clerck. 2022. “Electrospinning of Silica Nanofibers : How the Sol Viscosity Influences the Taylor Cone.” In <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>. doi:10.5281/zenodo.7400772.</div>
  chicago-author-date: |2
      <div class="csl-entry">Verschraegen, Sofie, Klaartje De Buysser, Dagmar D’hooge, and Karen De Clerck. 2022. “Electrospinning of Silica Nanofibers : How the Sol Viscosity Influences the Taylor Cone.” In <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>. https://doi.org/10.5281/zenodo.7400772.</div>
  fwo: |2
      <div class="csl-entry">Verschraegen, Sofie, Klaartje De Buysser, Dagmar D’hooge, and Karen De Clerck. 2022. “Electrospinning of Silica Nanofibers : How the Sol Viscosity Influences the Taylor Cone.” In <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>. doi:10.5281/zenodo.7400772.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. Verschraegen, K. De Buysser, D. D’hooge, and K. De Clerck, “Electrospinning of silica nanofibers : how the sol viscosity influences the Taylor cone,” in <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>, Ghent, Belgium, 2022.</div>
      </div>
  mla: |2
      <div class="csl-entry">Verschraegen, Sofie, et al. “Electrospinning of Silica Nanofibers : How the Sol Viscosity Influences the Taylor Cone.” <i>Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts</i>, 2022, doi:10.5281/zenodo.7400772.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Verschraegen S, De Buysser K, D’hooge D, De Clerck K. Electrospinning of silica nanofibers : how the sol viscosity influences the Taylor cone. In: Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022), Abstracts. 2022.</div>
       </div>
classification: C3
conference:
  end_date: 2022-10-28
  location: Ghent, Belgium
  name: Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022)
  start_date: 2022-10-28
conference_type: poster
copyright_statement: Creative Commons Attribution 4.0 International Public License
  (CC-BY 4.0)
created_by:
  _id: 202C3D36-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: UGent
    - ugent_id: CA
    - ugent_id: CA10
    ugent_id: CA10
  biblio_id: 202C3D36-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jeroen
  last_name: van der Hooft
  name: Jeroen van der Hooft
  name_last_first: van der Hooft, Jeroen
  orcid_id: 0000-0002-9416-9661
  ugent_id:
  - '802001581237'
  - '973676930395'
date_created: 2022-12-21 21:57:36
date_updated: 2026-03-31 15:13:27
doi:
- 10.5281/zenodo.7400772
external: 0
file:
- _id: 01GMXMEBX4JSJDC9QT9G9VJ6DK
  access: open
  content_type: application/pdf
  kind: fullText
  name: fears_2022_poster.pdf
  publication_version: authorVersion
  sha256: a00d86940c032e8b083f788dcae8ccbead319ab59b3ead03db946d64c85b2ca1
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  url: https://biblio.ugent.be/publication/01GMVB2854B8827YKTB6VNSYM7/file/01GMXMEBX4JSJDC9QT9G9VJ6DK.pdf
handle: http://hdl.handle.net/1854/LU-01GMVB2854B8827YKTB6VNSYM7
jcr: {}
language:
- eng
page:
  count: '1'
parent:
  title: Faculty of Engineering and Architecture Research Symposium 2022 (FEARS 2022),
    Abstracts
project:
- _id: 3F006621
  abstract: '<p>Today the high potential of (organo)silica branched/crosslinked/network
    polymers in nanofibrous membranes cannot be exploited to the fullest due to the
    lack of a straightforward way to produce them. To solve this, a fundamental understanding
    of how sol-gel synthesis and electrospinning are related via rheology is required.
    The main bottleneck remains that the viscosity evolution, as the network develops
    during synthesis, cannot be fully interpreted at the molecular level. For this,
    it is essential to fundamentally link the different steps in the electrospinning
    production process: from network formation of (organo)silica precursor molecules
    over electrospinning toward nanofibrous membranes. Both experimental (e.g. 29Si
    NMR, rheology) and kinetic modelling techniques will be used for this purpose.
    The morphology of the resulting nanofibrous membranes will be determined and linked
    back to the chemical building blocks, sol-gel synthesis and the electrospinning
    process as to enable the tuning of these (organo)silica nanofibers for advanced
    applications. The fiber diameter and the wettability will be studied as key model
    properties at respectively the fiber and material membrane level. This generic
    methodology can in the future be expanded toward other material properties to
    allow for molecular scale-driven material property tuning.</p>'
  end_date: 2025-10-31
  gismo_id: 190fbf11-2a82-11ec-95aa-05ef7abe0c3c
  iweto_id: 3F006621
  start_date: 2021-11-01
  title: 'Connecting (organo)silica sol-gel synthesis and membrane electrospinning:
    pushing toward molecular scale-driven property tuning'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: 'Electrospinning of silica nanofibers : how the sol viscosity influences the
  Taylor cone'
type: conference
year: '2022'
...
---
_id: 01K2MN0EKX9GM6AH2NVS29368N
abstract:
- |-
  Electrospinning of silica sols into nanofibers is not straightforward as the effect of multiple
  influencing synthesis and process factors is not completely understood. This limits the
  applicability of silica nanofibrous membranes in fields such as catalysis, sensors, filtration and
  separation. In this work, the link between an important solution parameter (viscosity) and the
  electrospinnability of the tetraethylorthosilicate (TEOS) based silica spinning solution is
  investigated as a first step in linking the different scales in the process. Sol-gel synthesis,
  electrospinning and state-of-the-art imaging techniques are combined leading to novel insights
  into the direct electrospinning of silica sols.
abstract_full:
- lang: eng
  text: |-
    Electrospinning of silica sols into nanofibers is not straightforward as the effect of multiple
    influencing synthesis and process factors is not completely understood. This limits the
    applicability of silica nanofibrous membranes in fields such as catalysis, sensors, filtration and
    separation. In this work, the link between an important solution parameter (viscosity) and the
    electrospinnability of the tetraethylorthosilicate (TEOS) based silica spinning solution is
    investigated as a first step in linking the different scales in the process. Sol-gel synthesis,
    electrospinning and state-of-the-art imaging techniques are combined leading to novel insights
    into the direct electrospinning of silica sols.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE06
  ugent_id: WE06
author:
- _id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  first_name: Sofie
  last_name: Verschraegen
  name: Sofie Verschraegen
  name_last_first: Verschraegen, Sofie
  orcid_id: 0000-0002-6164-3662
  ugent_id:
  - '000150868746'
  - '802003501534'
  - '919029486586'
  - '975200255882'
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01K2MN0EKX9GM6AH2NVS29368N
cite:
  apa: |2
      <div class="csl-entry">Verschraegen, S., De Buysser, K., D’hooge, D., &#38; De Clerck, K. (2022). Electrospinning of silica nanofibers : how the sol viscosity influences the Taylor cone. <i>CTS-2022, Chemical Technology Symposium, Proceedings</i>. Presented at the Chemical Technology Symposium 2022 (CTS-2022), Ghent, Belgium.</div>
  bof: |2
      <div class="csl-entry">Verschraegen, Sofie, Klaartje De Buysser, Dagmar D’hooge, and Karen De Clerck. 2022. “Electrospinning of Silica Nanofibers : How the Sol Viscosity Influences the Taylor Cone.” In <i>CTS-2022, Chemical Technology Symposium, Proceedings</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">Verschraegen, Sofie, Klaartje De Buysser, Dagmar D’hooge, and Karen De Clerck. 2022. “Electrospinning of Silica Nanofibers : How the Sol Viscosity Influences the Taylor Cone.” In <i>CTS-2022, Chemical Technology Symposium, Proceedings</i>.</div>
  fwo: |2
      <div class="csl-entry">Verschraegen, Sofie, Klaartje De Buysser, Dagmar D’hooge, and Karen De Clerck. 2022. “Electrospinning of Silica Nanofibers : How the Sol Viscosity Influences the Taylor Cone.” In <i>CTS-2022, Chemical Technology Symposium, Proceedings</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. Verschraegen, K. De Buysser, D. D’hooge, and K. De Clerck, “Electrospinning of silica nanofibers : how the sol viscosity influences the Taylor cone,” in <i>CTS-2022, Chemical Technology Symposium, Proceedings</i>, Ghent, Belgium, 2022.</div>
      </div>
  mla: |2
      <div class="csl-entry">Verschraegen, Sofie, et al. “Electrospinning of Silica Nanofibers : How the Sol Viscosity Influences the Taylor Cone.” <i>CTS-2022, Chemical Technology Symposium, Proceedings</i>, 2022.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Verschraegen S, De Buysser K, D’hooge D, De Clerck K. Electrospinning of silica nanofibers : how the sol viscosity influences the Taylor cone. In: CTS-2022, Chemical Technology Symposium, Proceedings. 2022.</div>
       </div>
classification: C1
conference:
  end_date: 2022-09-09
  location: Ghent, Belgium
  name: Chemical Technology Symposium 2022 (CTS-2022)
  organizer: LCT
  start_date: 2022-09-09
conference_type: proceedingsPaper
copyright_statement: No license (in copyright)
created_by:
  _id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: D2173492-5419-11E5-8C8B-ACAEB4D1D7B1
  first_name: Sofie
  last_name: Verschraegen
  name: Sofie Verschraegen
  name_last_first: Verschraegen, Sofie
  orcid_id: 0000-0002-6164-3662
  ugent_id:
  - '000150868746'
  - '802003501534'
  - '919029486586'
  - '975200255882'
date_created: 2025-08-14 16:01:04
date_updated: 2026-03-31 15:13:28
external: 0
file:
- _id: 01K2MN914E3QEC133RRSTZ88AX
  access: open
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  kind: fullText
  name: CTS.pdf
  publication_version: acceptedVersion
  sha256: cbbe054e0ee2566f8c007e901436cc81a0a01afd78c8b1562bc79a7dba5fbc1d
  size: '431292'
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handle: http://hdl.handle.net/1854/LU-01K2MN0EKX9GM6AH2NVS29368N
isbn:
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jcr: {}
language:
- eng
page:
  count: '5'
parent:
  title: CTS-2022, Chemical Technology Symposium, Proceedings
project:
- _id: 3F006621
  abstract: '<p>Today the high potential of (organo)silica branched/crosslinked/network
    polymers in nanofibrous membranes cannot be exploited to the fullest due to the
    lack of a straightforward way to produce them. To solve this, a fundamental understanding
    of how sol-gel synthesis and electrospinning are related via rheology is required.
    The main bottleneck remains that the viscosity evolution, as the network develops
    during synthesis, cannot be fully interpreted at the molecular level. For this,
    it is essential to fundamentally link the different steps in the electrospinning
    production process: from network formation of (organo)silica precursor molecules
    over electrospinning toward nanofibrous membranes. Both experimental (e.g. 29Si
    NMR, rheology) and kinetic modelling techniques will be used for this purpose.
    The morphology of the resulting nanofibrous membranes will be determined and linked
    back to the chemical building blocks, sol-gel synthesis and the electrospinning
    process as to enable the tuning of these (organo)silica nanofibers for advanced
    applications. The fiber diameter and the wettability will be studied as key model
    properties at respectively the fiber and material membrane level. This generic
    methodology can in the future be expanded toward other material properties to
    allow for molecular scale-driven material property tuning.</p>'
  end_date: 2025-10-31
  gismo_id: 190fbf11-2a82-11ec-95aa-05ef7abe0c3c
  iweto_id: 3F006621
  start_date: 2021-11-01
  title: 'Connecting (organo)silica sol-gel synthesis and membrane electrospinning:
    pushing toward molecular scale-driven property tuning'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
- Chemistry
title: 'Electrospinning of silica nanofibers : how the sol viscosity influences the
  Taylor cone'
type: conference
year: '2022'
...
---
_id: '8735806'
abstract:
- Recently, poly(nonamethylene terephthalate) (PAT((n=9))) and poly(decamethylene
  terephthalate) (PAT((n=10))) gained increasing interest since it was reported to
  exhibit enhanced endothelial cell adhesion and viability compared to other poly(alkylene
  terephthalate) (PAT) analogues. Enhanced endothelial cell interactivity is of particular
  interest when targeting cardiovascular applications, more specifically, for creating
  synthetic vascular bypass grafts. In this study, the potential of PAT((n=10)) to
  be applied as synthetic bypass graft has been further investigated. After a thorough
  physico-chemical characterization of the synthesized PAT((n=10)), microsized fibers
  were processed via electrospinning. In a first part, the polymer-related parameters
  were investigated and optimized to obtain uniform beadless fibers. By changing the
  solution composition and device set-up, various fiber morphologies (i.e. random,
  aligned and porous fibers) were obtained and subjected to an in vitro biological
  evaluation with Human Umbilical Vein Endothelial Cells (HUVECs), while exploiting
  a clinically used synthetic graft (i.e. Dacron (R)) as benchmark. It was shown that
  the cells seeded onto all PAT((n=10)) fibers exhibited a superior metabolic activity
  compared to Dacron after 7 days of culture, while aligned and porous fibers had
  a beneficial effect on the survival of HUVECs. This study is a first step towards
  the application of PATs as novel cardiovascular bypass graft, fabricated via electrospinning.
abstract_full:
- lang: eng
  text: Recently, poly(nonamethylene terephthalate) (PAT((n=9))) and poly(decamethylene
    terephthalate) (PAT((n=10))) gained increasing interest since it was reported
    to exhibit enhanced endothelial cell adhesion and viability compared to other
    poly(alkylene terephthalate) (PAT) analogues. Enhanced endothelial cell interactivity
    is of particular interest when targeting cardiovascular applications, more specifically,
    for creating synthetic vascular bypass grafts. In this study, the potential of
    PAT((n=10)) to be applied as synthetic bypass graft has been further investigated.
    After a thorough physico-chemical characterization of the synthesized PAT((n=10)),
    microsized fibers were processed via electrospinning. In a first part, the polymer-related
    parameters were investigated and optimized to obtain uniform beadless fibers.
    By changing the solution composition and device set-up, various fiber morphologies
    (i.e. random, aligned and porous fibers) were obtained and subjected to an in
    vitro biological evaluation with Human Umbilical Vein Endothelial Cells (HUVECs),
    while exploiting a clinically used synthetic graft (i.e. Dacron (R)) as benchmark.
    It was shown that the cells seeded onto all PAT((n=10)) fibers exhibited a superior
    metabolic activity compared to Dacron after 7 days of culture, while aligned and
    porous fibers had a beneficial effect on the survival of HUVECs. This study is
    a first step towards the application of PATs as novel cardiovascular bypass graft,
    fabricated via electrospinning.
affiliation:
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Human Structure and Repair
  path:
  - ugent_id: UGent
  - ugent_id: GE
  - ugent_id: GE38
  ugent_id: GE38
article_number: '111003'
article_type: original
author:
- _id: CD239250-F0EE-11E1-A197-91C894A0A6B4
  biblio_id: CD239250-F0EE-11E1-A197-91C894A0A6B4
  first_name: Babs
  last_name: Van de Voorde
  name: Babs Van de Voorde
  name_last_first: Van de Voorde, Babs
  ugent_id:
  - '973915189273'
- _id: 3CE90D40-DF17-11E9-A000-7D5A5707D3EF
  biblio_id: 3CE90D40-DF17-11E9-A000-7D5A5707D3EF
  first_name: Berna
  last_name: Şensu
  name: Berna Şensu
  name_last_first: Şensu, Berna
  ugent_id:
  - '000190304094'
  - '971758523609'
- _id: 60E01672-4D07-11E5-AC4F-AE11B5D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  - path:
    - ugent_id: UGent
    - ugent_id: FW
    - ugent_id: FW02
    ugent_id: FW02
  biblio_id: 60E01672-4D07-11E5-AC4F-AE11B5D1D7B1
  first_name: Lobke
  last_name: De Vos
  name: Lobke De Vos
  name_last_first: De Vos, Lobke
  ugent_id:
  - '000150666864'
  - '802003513355'
  - '979331383630'
- _id: E03A4E2E-FF80-11E1-9705-E1D010BDE39D
  biblio_id: E03A4E2E-FF80-11E1-9705-E1D010BDE39D
  first_name: Robin
  last_name: Colenbier
  name: Robin Colenbier
  name_last_first: Colenbier, Robin
  ugent_id:
  - '000120713971'
  - '802002726544'
  - '973942971992'
- _id: FD1D00E4-202C-11E9-BF9B-1E415707D3EF
  biblio_id: FD1D00E4-202C-11E9-BF9B-1E415707D3EF
  first_name: Havva
  last_name: Başkan
  name: Havva Başkan
  name_last_first: Başkan, Havva
  ugent_id:
  - '000181437082'
  - '978594688030'
- _id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
  orcid_id: 0000-0002-1281-2968
  ugent_id:
  - '000070582957'
  - '975000449525'
- _id: 0D371052-0947-11E4-AA83-18CA4B2F559A
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 0D371052-0947-11E4-AA83-18CA4B2F559A
  first_name: Laurens
  last_name: Parmentier
  name: Laurens Parmentier
  name_last_first: Parmentier, Laurens
  orcid_id: 0000-0002-5849-3042
  ugent_id:
  - '802003290659'
  - '974167330669'
- _id: 5CB5D150-0F64-11E3-B31C-DCAC10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA25
    ugent_id: LA25
  biblio_id: 5CB5D150-0F64-11E3-B31C-DCAC10BDE39D
  first_name: Lenny
  last_name: Van Daele
  name: Lenny Van Daele
  name_last_first: Van Daele, Lenny
  orcid_id: 0000-0002-6335-395X
  ugent_id:
  - '802002999962'
  - '977727816511'
- _id: e6afd71d-c2f8-11ea-a50b-fe955b4d8a79
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: GE
    - ugent_id: GE38
    ugent_id: GE38
  biblio_id: e6afd71d-c2f8-11ea-a50b-fe955b4d8a79
  first_name: Ruslan
  last_name: Dmitriev
  name: Ruslan Dmitriev
  name_last_first: Dmitriev, Ruslan
  orcid_id: 0000-0002-0347-8718
  ugent_id:
  - '802003468996'
  - '978749151739'
- first_name: Lincy
  last_name: Pyl
  name: Lincy Pyl
  name_last_first: Pyl, Lincy
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F6EFF23C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: F6EFF23C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Sandra
  last_name: Van Vlierberghe
  name: Sandra Van Vlierberghe
  name_last_first: Van Vlierberghe, Sandra
  orcid_id: 0000-0001-7688-1682
  ugent_id:
  - '801001801429'
  - '971159275288'
biblio_id: '8735806'
cite:
  apa: |2
      <div class="csl-entry">Van de Voorde, B., Şensu, B., De Vos, L., Colenbier, R., Başkan, H., Geltmeyer, J., … Van Vlierberghe, S. (2022). Electrospinning of poly(decamethylene terephthalate) to support vascular graft applications. <i>EUROPEAN POLYMER JOURNAL</i>, <i>165</i>. https://doi.org/10.1016/j.eurpolymj.2022.111003</div>
  bof: |2-
      <div class="csl-entry">Van de Voorde, Babs, Berna Şensu, Lobke De Vos, Robin Colenbier, Havva Başkan, Jozefien Geltmeyer, Laurens Parmentier, Lenny Van Daele, Ruslan Dmitriev, Lincy Pyl, Karen De Clerck, and Sandra Van Vlierberghe. 2022. “Electrospinning of Poly(Decamethylene Terephthalate) to Support Vascular Graft Applications.” <i>EUROPEAN POLYMER JOURNAL</i> 165. doi:10.1016/j.eurpolymj.2022.111003.</div>
    <div><i>Impact factor: 6, category: POLYMER SCIENCE, rank: 7/86, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Van de Voorde, Babs, Berna Şensu, Lobke De Vos, Robin Colenbier, Havva Başkan, Jozefien Geltmeyer, Laurens Parmentier, et al. 2022. “Electrospinning of Poly(Decamethylene Terephthalate) to Support Vascular Graft Applications.” <i>EUROPEAN POLYMER JOURNAL</i> 165. https://doi.org/10.1016/j.eurpolymj.2022.111003.</div>
  fwo: |2
      <div class="csl-entry">Van de Voorde, Babs, Berna Şensu, Lobke De Vos, Robin Colenbier, Havva Başkan, Jozefien Geltmeyer, Laurens Parmentier, Lenny Van Daele, Ruslan Dmitriev, Lincy Pyl, Karen De Clerck, and Sandra Van Vlierberghe. 2022. “Electrospinning of Poly(Decamethylene Terephthalate) to Support Vascular Graft Applications.” <i>EUROPEAN POLYMER JOURNAL</i> 165. doi:10.1016/j.eurpolymj.2022.111003.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. Van de Voorde <i>et al.</i>, “Electrospinning of poly(decamethylene terephthalate) to support vascular graft applications,” <i>EUROPEAN POLYMER JOURNAL</i>, vol. 165, 2022.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van de Voorde, Babs, et al. “Electrospinning of Poly(Decamethylene Terephthalate) to Support Vascular Graft Applications.” <i>EUROPEAN POLYMER JOURNAL</i>, vol. 165, 2022, doi:10.1016/j.eurpolymj.2022.111003.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van de Voorde B, Şensu B, De Vos L, Colenbier R, Başkan H, Geltmeyer J, et al. Electrospinning of poly(decamethylene terephthalate) to support vascular graft applications. EUROPEAN POLYMER JOURNAL. 2022;165.</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution-NonCommercial-NoDerivatives 4.0
  International Public License (CC BY-NC-ND 4.0)
created_by:
  _id: 5CB5D150-0F64-11E3-B31C-DCAC10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA25
    ugent_id: LA25
  biblio_id: 5CB5D150-0F64-11E3-B31C-DCAC10BDE39D
  first_name: Lenny
  last_name: Van Daele
  name: Lenny Van Daele
  name_last_first: Van Daele, Lenny
  orcid_id: 0000-0002-6335-395X
  ugent_id:
  - '802002999962'
  - '977727816511'
date_created: 2022-01-26 08:13:58
date_updated: 2026-03-31 15:13:30
doi:
- 10.1016/j.eurpolymj.2022.111003
external: 0
file:
- _id: '8747297'
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  kind: fullText
  name: 2022_Electrospinning_PAT_Babs-SVV.pdf
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handle: http://hdl.handle.net/1854/LU-8735806
issn:
- 0014-3057
- 1873-1945
jcr:
  category: POLYMER SCIENCE
  category_decile: 1
  category_quartile: 1
  category_rank: 7/86
  category_vigintile: 2
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  prev_category_decile: 2
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  total_cites: 29973
keyword:
- Organic Chemistry
- Polymers and Plastics
- General Physics and Astronomy
- Materials Chemistry
- Poly(decamethylene terephthalate)
- Electrospinning
- Human Umbilical Vein Endothelial Cells
- Live
- dead staining
- MOLECULAR-WEIGHT
- POLYMER NANOFIBERS
- SCAFFOLDS
- BIOCOMPATIBILITY
- DEGRADATION
- BEHAVIOR
- DENSITY
language:
- eng
page:
  count: '10'
parent:
  short_title: Eur. Polym. J.
  title: EUROPEAN POLYMER JOURNAL
project:
- _id: 179I01217
  abstract: |-
    <p>
    RELFICOM is part of the Nanoforce SIM program &quot;Next generation nano-engineered hybrids&quot; and wants to improve the reliability of fiber-reinforced composites, both through better material design and through a better understanding and control of variability

    </p>
  end_date: 2021-12-31
  gismo_id: f16f23c2-b9f8-41ae-896e-e004c8a0c50a
  iweto_id: 179I01217
  start_date: 2018-01-01
  title: 'RELFICOM: Reliability of fibre-reinforced composites: materials design and
    variability'
- _id: 41W08919
  abstract: '<p><br /> <br />De veroudering van de bevolking leidt tot een groeiende
    behoefte aan nieuwe technologieën om weefsels te herstellen om defecte organen
    te vervangen. Momenteel wordt weefselherstel ofwel uitgevoerd door autologe grafts
    ofwel door transplantatie van overleden donoren, wat problemen veroorzaakt met
    immuunafstoting van organen. Bovendien is de geringe beschikbaarheid van donororganen
    niet langer in lijn met de steeds toenemende vraag naar nieuwe weefsels. De belangrijkste
    uitdaging van weefseltechnologie is het oplossen van de problemen van orgaantekorten
    door chirurgen te voorzien van functionele substituten die in vitro zijn ontwikkeld.
    Het principe is gebaseerd op: <br /> <br />&#160; &#160; De gepersonaliseerde
    ontwikkeling van tijdelijke polymeermatrices die celkolonisatie en weefselontwikkeling
    mogelijk maken met minimale inflammatie; <br />&#160; &#160; De biocompatibiliteit
    van de polymeren die gebruikt worden bij de ontwikkeling van het weefsel; <br
    />&#160; &#160; De structurele kenmerken (porositeit/interconnectiviteit van de
    poriën) en de mechanische kenmerken (elasticiteit/weerstand) spelen een uiterst
    belangrijkerol in de celontwikkeling en weefselintegratie. <br /> <br /></p>'
  end_date: 2022-03-31
  gismo_id: 231a3a5c-4c12-42d6-af0d-3716b6e1fd8e
  iweto_id: 41W08919
  publication_count: 1
  start_date: 2019-04-01
  title: 'Patiënt-specifieke 3D-geprinte polymeerimplantaten met vorgevingsgeheugen
    Acronyme: 3D4Med'
- _id: 3S003621
  abstract: <p>The cornea is a multi-layered and transparent membrane that focusses
    incoming light on the lens. One of the layers is the endothelium, which is a monolayer
    of corneal endothelial cells (CEnCs) responsible for the clarity of the cornea.
    Several diseases can cause damage to this monolayer which might result in visual
    impairment or blindness. Corneal blindness is the 4th cause of blindness, affecting
    more than 10 million people worldwide. The main treatment comprises a corneal
    transplantation. However, there is a severe donor shortage since only 1 donor
    cornea is available for 70 people on the waiting list. The aim of this PhD proposal
    is to overcome the limitations regarding the low donor availability by developing
    a suitable donor tissue independent implant that can restore the endothelium.
    To this end, membranes will be produced on which lab-grown CEnCs will be seeded,
    after which the entire implant will be implanted into the cornea and restore its
    transparency. To develop a cell interactive and transparent scaffold that is strong
    enough for implantation, multiple approaches will be investigated and their performance
    will be compared. Single- and double-layered membranes that are cell interactive
    and mechanically strong enough will be produced. The required cell-interactivity
    will be provided by modified gelatines while poly(D,L-lactic acid) or poly(styrene-co-maleic
    anhydride) are chosen for their structural integrity.</p>
  end_date: 2025-11-23
  gismo_id: 4b0688fa-2a81-11ec-a6b4-cd4eac00b947
  iweto_id: 3S003621
  start_date: 2021-11-01
  title: Development of polymeric hybrid scaffolds for corneal tissue engineering
- _id: 3S013220
  abstract: |-
    <p>Do you know someone who suffered from a bone defect that had
    problems to heal? The answer is probably yes since bone is the
    second most commonly tissue transplanted worldwide and is
    primarily used in bone defects that are unable to heal. In order to
    develop a substitute material that guides bone formation and
    stimulates bone repair without commonly reported side-effects such
    as pain, infections and an enhanced immune response, this project
    looks at mimicking bone on three sides (composition, architecture
    and properties) and two scales (load-bearing scale of the scaffold
    and the non-load bearing scale of the hydrogels). Dual core-shell 3D-printing will be used to fabricate the scaffold consisting of an osteogenic and an angiogenic filament. Characterisation will be performed to target the incorporation of the bone mimicking biophysical cues into the bone substitute material. </p>
  end_date: 2024-10-31
  gismo_id: d3e42973-0fb3-11eb-89fc-81e15036b2fa
  iweto_id: 3S013220
  publication_count: 1
  start_date: 2020-11-01
  title: |-
    Capturing the biophysical cues of bone to stimulate bone
    regeneration in critical bone defects
- _id: 3S041519
  abstract: |-
    <p>Cardiovascular disease has been the number one cause of death worldwide for many years. Peripheral artery disease (PAD), in which the artery leading to a limb (e.g. superficial femoral artery) is occluded and blood flow obstructed, is one of the most common forms of cardiovascular diseases. Although many treatments are already available, such as balloon angioplasty (with or without stent deployment) and bypass surgery, a lot of research is conducted to improve procedures. The main problems associated with the existing treatments are the high rates of restenosis (recurrence of the occlusion) and thrombosis. Often drugs are used to prevent these complications, but these result in a high cost and adverse effects.
    In this project, we aim to eliminate most, and if possible all, shortcomings of current stents. To this end, we will use poly(alkylene terephthalate)s (PAT’s) as a base material for stents, as they have shown favourable biological properties. They will be modified into shape memory polymers, allowing for expansion of the stent inside the body without the use of balloon expansion, which damages the arterial wall. We will 3D-print the developed material on a rotating mandrel to produce the stent, allowing for easy personalization of the stent in terms of diameter and length. Finally, the stents will be functionalized with a peptide in order to obtain cell selectivity, which will result in a lower risk of restenosis and thrombosis to occur.</p>
  end_date: 2023-10-31
  gismo_id: 5794adb9-f98c-11e9-9191-7fc8fa7ad5b7
  iweto_id: 3S041519
  start_date: 2019-11-01
  title: Shape memory polymers based on poly(alkylene terephthalate)s for an improved
    cardiovascular stent
publication_status: published
publication_status_sort: 2
status: public
subject:
- Chemistry
title: Electrospinning of poly(decamethylene terephthalate) to support vascular graft
  applications
type: journalArticle
volume: '165'
wos_id: '000779651000005'
wos_type: Article
year: '2022'
...
---
_id: '8715793'
abstract:
- "A computational platform describing the spatial and temporal interactions of monomers
  during the formation of network polymers provides structure-property relationships
  that are used to synthesize 3D network polymers with tailored functionalities.\r\n\r\nThe
  three-dimensional arrangement of natural and synthetic network materials determines
  their application range. Control over the real-time incorporation of each building
  block and functional group is desired to regulate the macroscopic properties of
  the material from the molecular level onwards. Here we report an approach combining
  kinetic Monte Carlo and molecular dynamics simulations that chemically and physically
  predicts the interactions between building blocks in time and in space for the entire
  formation process of three-dimensional networks. This framework takes into account
  variations in inter- and intramolecular chemical reactivity, diffusivity, segmental
  compositions, branch/network point locations and defects. From the kinetic and three-dimensional
  structural information gathered, we construct structure-property relationships based
  on molecular descriptors such as pore size or dangling chain distribution and differentiate
  ideal from non-ideal structural elements. We validate such relationships by synthesizing
  organosilica, epoxy-amine and Diels-Alder networks with tailored properties and
  functions, further demonstrating the broad applicability of the platform."
abstract_full:
- lang: eng
  text: "A computational platform describing the spatial and temporal interactions
    of monomers during the formation of network polymers provides structure-property
    relationships that are used to synthesize 3D network polymers with tailored functionalities.\r\n\r\nThe
    three-dimensional arrangement of natural and synthetic network materials determines
    their application range. Control over the real-time incorporation of each building
    block and functional group is desired to regulate the macroscopic properties of
    the material from the molecular level onwards. Here we report an approach combining
    kinetic Monte Carlo and molecular dynamics simulations that chemically and physically
    predicts the interactions between building blocks in time and in space for the
    entire formation process of three-dimensional networks. This framework takes into
    account variations in inter- and intramolecular chemical reactivity, diffusivity,
    segmental compositions, branch/network point locations and defects. From the kinetic
    and three-dimensional structural information gathered, we construct structure-property
    relationships based on molecular descriptors such as pore size or dangling chain
    distribution and differentiate ideal from non-ideal structural elements. We validate
    such relationships by synthesizing organosilica, epoxy-amine and Diels-Alder networks
    with tailored properties and functions, further demonstrating the broad applicability
    of the platform."
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_type: original
author:
- _id: 28DB1308-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 28DB1308-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lies
  last_name: De Keer
  name: Lies De Keer
  name_last_first: De Keer, Lies
  orcid_id: 0000-0003-2620-0046
  ugent_id:
  - '000100481791'
  - '802002106754'
  - '971930032541'
- first_name: Karsu I.
  last_name: Kilic
  name: Karsu I. Kilic
  name_last_first: Kilic, Karsu I.
- _id: F99156E8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F99156E8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Paul
  last_name: Van Steenberge
  name: Paul Van Steenberge
  name_last_first: Van Steenberge, Paul
  orcid_id: 0000-0001-6244-1299
  ugent_id:
  - '802000264461'
  - '975633424843'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- first_name: Daniel
  last_name: Kodura
  name: Daniel Kodura
  name_last_first: Kodura, Daniel
- first_name: Hendrik
  last_name: Frisch
  name: Hendrik Frisch
  name_last_first: Frisch, Hendrik
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F429FA8E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F429FA8E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Marie-Françoise
  last_name: Reyniers
  name: Marie-Françoise Reyniers
  name_last_first: Reyniers, Marie-Françoise
  ugent_id:
  - '801000590040'
  - '001960946643'
- first_name: Christopher
  last_name: Barner-Kowollik
  name: Christopher Barner-Kowollik
  name_last_first: Barner-Kowollik, Christopher
- first_name: Reinhold H.
  last_name: Dauskardt
  name: Reinhold H. Dauskardt
  name_last_first: Dauskardt, Reinhold H.
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
biblio_id: '8715793'
cite:
  apa: |2
      <div class="csl-entry">De Keer, L., Kilic, K. I., Van Steenberge, P., Daelemans, L., Kodura, D., Frisch, H., … D’hooge, D. (2021). Computational prediction of the molecular configuration of three-dimensional network polymers. <i>NATURE MATERIALS</i>, <i>20</i>(10), 1422–1430. https://doi.org/10.1038/s41563-021-01040-0</div>
  chicago-author-date: |2
      <div class="csl-entry">De Keer, Lies, Karsu I. Kilic, Paul Van Steenberge, Lode Daelemans, Daniel Kodura, Hendrik Frisch, Karen De Clerck, et al. 2021. “Computational Prediction of the Molecular Configuration of Three-Dimensional Network Polymers.” <i>NATURE MATERIALS</i> 20 (10): 1422–30. https://doi.org/10.1038/s41563-021-01040-0.</div>
  fwo: |2
      <div class="csl-entry">De Keer, Lies, Karsu I. Kilic, Paul Van Steenberge, Lode Daelemans, Daniel Kodura, Hendrik Frisch, Karen De Clerck, Marie-Françoise Reyniers, Christopher Barner-Kowollik, Reinhold H. Dauskardt, and Dagmar D’hooge. 2021. “Computational Prediction of the Molecular Configuration of Three-Dimensional Network Polymers.” <i>NATURE MATERIALS</i> 20 (10): 1422–1430. doi:10.1038/s41563-021-01040-0.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. De Keer <i>et al.</i>, “Computational prediction of the molecular configuration of three-dimensional network polymers,” <i>NATURE MATERIALS</i>, vol. 20, no. 10, pp. 1422–1430, 2021.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Keer, Lies, et al. “Computational Prediction of the Molecular Configuration of Three-Dimensional Network Polymers.” <i>NATURE MATERIALS</i>, vol. 20, no. 10, 2021, pp. 1422–30, doi:10.1038/s41563-021-01040-0.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Keer L, Kilic KI, Van Steenberge P, Daelemans L, Kodura D, Frisch H, et al. Computational prediction of the molecular configuration of three-dimensional network polymers. NATURE MATERIALS. 2021;20(10):1422–30.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: 798BCFF0-0208-11E3-BADE-15C210BDE39D
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 798BCFF0-0208-11E3-BADE-15C210BDE39D
  first_name: Paulien
  last_name: Baeyens
  name: Paulien Baeyens
  name_last_first: Baeyens, Paulien
  ugent_id:
  - '802002698757'
  - '974253404530'
date_created: 2021-07-13 08:42:45
date_updated: 2026-03-31 13:19:32
doi:
- 10.1038/s41563-021-01040-0
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-8715793
issn:
- 1476-1122
- 1476-4660
issue: '10'
jcr:
  category: CHEMISTRY, PHYSICAL
  category_decile: 1
  category_quartile: 1
  category_rank: 1/163
  category_vigintile: 1
  eigenfactor: 0.12118
  immediacy_index: 9.005
  impact_factor: 47.656
  impact_factor_5yr: 49.937
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 1
  prev_impact_factor: 43.841
  total_cites: 119078
keyword:
- Mechanical Engineering
- General Materials Science
- Mechanics of Materials
- General Chemistry
- Condensed Matter Physics
language:
- eng
page:
  first: '1422'
  last: '1430'
parent:
  short_title: Nat. Mater.
  title: NATURE MATERIALS
project:
- _id: 179K04520
  abstract: "<p>\n\nThe aim of this project with acronym ReSet (recyclable thermosets)
    is to create dynamic chemical platforms to be implemented in two major industrially
    applied matrices in thermosets, named cross-linked \nepoxy and polyester resins,
    which find applications in composites, adhesives and coatings, among others, thus
    creating a circular economy paradigm in order to “be able to do the non-recyclable
    \nrecycle ”. \n\n    </p>"
  end_date: 2021-11-30
  gismo_id: a5398838-a6bb-4993-b0f6-9fa1a9be5f59
  iweto_id: 179K04520
  start_date: 2020-03-01
  title: 'ReSet: Circular Thermosets by Design: Recycling the Unrecyclable'
- _id: 3G0H5216
  abstract: <br />The abstract for &quot;In-silico design of functional advanced macromolecules.&quot;
    is missing. Please contact the promotor for more information.
  end_date: 2020-04-30
  gismo_id: 059703ae-9e91-49c6-979a-5d2166f181db
  iweto_id: 3G0H5216
  start_date: 2016-05-01
  title: In-silico design of functional advanced macromolecules.
- _id: '3E016519'
  abstract: |-
    <p>
    Textiles are ideally suited for technical engineering applications thanks to their unique combination of lightness, flexibility and strength. Especially, fibre reinforced composites are seeing a tremendous growth for designing light-weight structural components. The fibres, the building blocks of any textile, and their arrangement in the textile and the composite (microstructure) determine the macroscopic properties. It is thus of utmost importance that this micro-macro relation is fundamentally understood. The complexity of textiles (complex hierarchical microstructure, highly non-linear behaviour) makes this a challenging problem. By following a multiscale analysis, combining both advanced experimental and numerical techniques, starting with individual fibres and building up till complete nano-interleaved preforms, we get a fundamental understanding of the micro-macro relationships that govern the mechanical behaviour of textile materials. These insights are of crucial importance for the further development of high-end nano-enabled composites and are extendable to many other technical textile applications as well.

    </p>
  end_date: 2022-09-30
  gismo_id: 3c0a4b92-b36f-11e9-9b22-19a03077e1f4
  iweto_id: '3E016519'
  start_date: 2019-10-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
- _id: 3S003217
  abstract: |-
    <p>Improved microstructural control of star and network copolymers is indispensable to realize hightech
    applications such as viscosity modifiers and controlled drug delivery. A key challenge is the
    precision control of star copolymers with predefined arm len</p>
  end_date: 2020-12-31
  gismo_id: 4b913f7a-8208-11e9-8dbc-f3943d565b0b
  iweto_id: 3S003217
  start_date: 2017-01-01
  title: Model-guided design of complex macromolecular topologies
- _id: '3E025815'
  abstract: <p>The project aims at fundamental understanding and improvement of water-based
    radical emulsion polymerization processes for the synthesis of polymer nanoparticles,
    implying control over design parameters and a clear view on the interplay between
    chemistry and transport phenomena on the micro-, meso- and macro-scale. The model
    allows identification of optimal process parameters for the synthesis of core-shell
    nanoparticles at industrial scale.</p>
  end_date: 2021-09-30
  gismo_id: 5aff1333-3f0c-4e22-aaa9-548702ccb841
  iweto_id: '3E025815'
  start_date: 2015-10-01
  title: Design of water-based radical polymerization processes for nanoapplications
    using advanced kinetic modeling and reactor technology
- _id: HPC-UGent
  abstract: The central High Performance Computing infrastructure of Ghent University
    is part of the Flemish Supercomputer Center and is built and maintained with the
    support of Ghent University, the Hercules Foundation and the department of Economy,
    Science and Innovation of the Flemish Government. Thanks to this support, use
    of the infrastructure is free of charge for researchers of Ghent University.
  iweto_id: HPC-UGent
  publication_count: 144
  start_date: 01-JAN-08
  title: 'HPC-UGent: the central High Performance Computing infrastructure of Ghent
    University'
  ugent_id:
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  - '801001682908'
publication_status: published
publication_status_sort: 2
pubmed_id: '34183809'
status: public
subject:
- Technology and Engineering
title: Computational prediction of the molecular configuration of three-dimensional
  network polymers
type: journalArticle
volume: '20'
wos_id: '000667593300001'
wos_type: Article
year: '2021'
...
---
_id: '8720913'
abstract:
- "For ecological, economic, and health reasons, it is important to mechanically recycle
  waste acrylic fabrics originating from outdoor applications. These are not currently
  recycled due to the presence of harmful finishes on the waste fabrics, that interfere
  with the recycling process, reduce the quality of the recycled product, and pose
  health risks.\r\nThrough a combination of confidential washing, hydrolysis and physical
  treatments, all the finishing chemicals on waste, outdoor acrylic fabrics can be
  removed by at least 90%, thus enabling the mechanical recycling process."
abstract_full:
- lang: eng
  text: "For ecological, economic, and health reasons, it is important to mechanically
    recycle waste acrylic fabrics originating from outdoor applications. These are
    not currently recycled due to the presence of harmful finishes on the waste fabrics,
    that interfere with the recycling process, reduce the quality of the recycled
    product, and pose health risks.\r\nThrough a combination of confidential washing,
    hydrolysis and physical treatments, all the finishing chemicals on waste, outdoor
    acrylic fabrics can be removed by at least 90%, thus enabling the mechanical recycling
    process."
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Green Chemistry and Technology
  path:
  - ugent_id: UGent
  - ugent_id: LA
  - ugent_id: LA24
  ugent_id: LA24
alternative_location:
- access: open
  kind: fullText
  url: https://autex2021.org/home
article_number: '307'
author:
- _id: DD6903D4-F0EE-11E1-A197-91C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: DD6903D4-F0EE-11E1-A197-91C894A0A6B4
  first_name: Brecht
  last_name: Tomme
  name: Brecht Tomme
  name_last_first: Tomme, Brecht
  orcid_id: 0000-0001-7765-3059
  ugent_id:
  - '000120101558'
  - '802003221547'
  - '975685845663'
- first_name: Valentina
  last_name: Trovato
  name: Valentina Trovato
  name_last_first: Trovato, Valentina
- _id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
  orcid_id: 0000-0002-1281-2968
  ugent_id:
  - '000070582957'
  - '975000449525'
- first_name: Giuseppe
  last_name: Rosace
  name: Giuseppe Rosace
  name_last_first: Rosace, Giuseppe
- first_name: Daniele
  last_name: Piga
  name: Daniele Piga
  name_last_first: Piga, Daniele
- first_name: Barbara
  last_name: Ferrari
  name: Barbara Ferrari
  name_last_first: Ferrari, Barbara
- first_name: Andrea
  last_name: Cataldi
  name: Andrea Cataldi
  name_last_first: Cataldi, Andrea
- _id: FBC5C354-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA24
    ugent_id: LA24
  biblio_id: FBC5C354-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Steven
  last_name: De Meester
  name: Steven De Meester
  name_last_first: De Meester, Steven
  orcid_id: 0000-0002-5246-3918
  ugent_id:
  - '802000481497'
  - '973680737243'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8720913'
cite:
  apa: |2
      <div class="csl-entry">Tomme, B., Trovato, V., Geltmeyer, J., Rosace, G., Piga, D., Ferrari, B., … De Clerck, K. (2021). Removal of hazardous finishes to enable mechanical recycling of waste acrylic fabrics. In F. Ferreira, A. M. Rocha, R. Fangueiro, A. Marques, &#38; A. Zille (Eds.), <i>AUTEX 2021, 20th World Textile Conference, Abstracts</i> (pp. 496–497). AUTEX.</div>
  chicago-author-date: |2
      <div class="csl-entry">Tomme, Brecht, Valentina Trovato, Jozefien Geltmeyer, Giuseppe Rosace, Daniele Piga, Barbara Ferrari, Andrea Cataldi, Steven De Meester, and Karen De Clerck. 2021. “Removal of Hazardous Finishes to Enable Mechanical Recycling of Waste Acrylic Fabrics.” In <i>AUTEX 2021, 20th World Textile Conference, Abstracts</i>, edited by Fernando Ferreira, A. M. Rocha, R. Fangueiro, A. Marques, and A. Zille, 496–97. AUTEX.</div>
  fwo: |2
      <div class="csl-entry">Tomme, Brecht, Valentina Trovato, Jozefien Geltmeyer, Giuseppe Rosace, Daniele Piga, Barbara Ferrari, Andrea Cataldi, Steven De Meester, and Karen De Clerck. 2021. “Removal of Hazardous Finishes to Enable Mechanical Recycling of Waste Acrylic Fabrics.” In <i>AUTEX 2021, 20th World Textile Conference, Abstracts</i>, ed by. Fernando Ferreira, A. M. Rocha, R. Fangueiro, A. Marques, and A. Zille, 496–497. AUTEX.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. Tomme <i>et al.</i>, “Removal of hazardous finishes to enable mechanical recycling of waste acrylic fabrics,” in <i>AUTEX 2021, 20th World Textile Conference, Abstracts</i>, Guimarães, Portugal (online), 2021, pp. 496–497.</div>
      </div>
  mla: |2
      <div class="csl-entry">Tomme, Brecht, et al. “Removal of Hazardous Finishes to Enable Mechanical Recycling of Waste Acrylic Fabrics.” <i>AUTEX 2021, 20th World Textile Conference, Abstracts</i>, edited by Fernando Ferreira et al., AUTEX, 2021, pp. 496–97.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Tomme B, Trovato V, Geltmeyer J, Rosace G, Piga D, Ferrari B, et al. Removal of hazardous finishes to enable mechanical recycling of waste acrylic fabrics. In: Ferreira F, Rocha AM, Fangueiro R, Marques A, Zille A, editors. AUTEX 2021, 20th World Textile Conference, Abstracts. AUTEX; 2021. p. 496–7.</div>
       </div>
classification: C3
conference:
  end_date: 2021-09-09
  location: Guimarães, Portugal (online)
  name: AUTEX 2021 - 20th World Textile Conference
  organizer: AUTEX
  start_date: 2021-09-05
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
  _id: DD6903D4-F0EE-11E1-A197-91C894A0A6B4
  affiliation:
  - path:
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    ugent_id: TW11
  biblio_id: DD6903D4-F0EE-11E1-A197-91C894A0A6B4
  first_name: Brecht
  last_name: Tomme
  name: Brecht Tomme
  name_last_first: Tomme, Brecht
  orcid_id: 0000-0001-7765-3059
  ugent_id:
  - '000120101558'
  - '802003221547'
  - '975685845663'
date_created: 2021-09-21 14:19:16
date_updated: 2026-03-31 13:21:01
editor:
- first_name: Fernando
  last_name: Ferreira
  name: Fernando Ferreira
  name_last_first: Ferreira, Fernando
- first_name: A. M.
  last_name: Rocha
  name: A. M. Rocha
  name_last_first: Rocha, A. M.
- first_name: R.
  last_name: Fangueiro
  name: R. Fangueiro
  name_last_first: Fangueiro, R.
- first_name: A.
  last_name: Marques
  name: A. Marques
  name_last_first: Marques, A.
- first_name: A.
  last_name: Zille
  name: A. Zille
  name_last_first: Zille, A.
external: 0
file:
- _id: '8720957'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: Removal_of_hazardous_finishes_to_enable_mechanical_recycling_of_waste_acrylic_fabrics_-_Brecht_Tomme_-_AUTEX2021_Conference_Abstract_.pdf
  publication_version: publishedVersion
  sha256: 78521ed89e536fcbe7f3e72e9708d6db7e44dbdc7f80e775cc982ef6918cb0e7
  size: '188786'
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handle: http://hdl.handle.net/1854/LU-8720913
isbn:
- '9789895480869'
keyword:
- Acrylic
- outdoor fabrics
- mechanical recycling
- finishes
- hydrolysis
language:
- eng
page:
  first: '496'
  last: '497'
parent:
  title: AUTEX 2021, 20th World Textile Conference, Abstracts
project:
- _id: 41D08919
  abstract: <p>Extremely durable and able to repel water, acrylic fabrics are widely
    used for outdoor awnings and patio furniture. However, to have the required characteristics
    for such use, it is needed to apply chemical finishes to the acrylic fabrics,
    so as to increase the hydro and oil-repellency, the resistance to UV and to fire.
    This makes the management of acrylic textile waste tricky. The EU-funded REACT
    project is developing an eco-friendly process to remove the hazardous chemicals
    from the finishing substances (fluorocarbons, melamine and acrylic resins, anti-mould
    agents), which affect the secondary raw material purity and their management.
    A mechanical recycling process will follow to obtain second life fibre and fabrics.
    The goal is to reduce the amount of landfill and incineration of acrylic textiles
    by at least 30 % for the outdoor sector (awnings and furnishing).</p>
  end_date: 2022-09-30
  eu_acronym: REACT
  eu_framework_programme: H2020
  eu_id: '820869'
  gismo_id: 33e5665e-f621-4479-9128-81922feec34f
  iweto_id: 41D08919
  start_date: 2019-06-01
  title: REcycling of waste ACrylic Textiles
publication_status: published
publication_status_sort: 2
publisher:
  name: AUTEX
status: public
subject:
- Technology and Engineering
title: Removal of hazardous finishes to enable mechanical recycling of waste acrylic
  fabrics
type: conference
year: '2021'
...
---
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      <div class="csl-entry">Wang, S., Daelemans, L., Fiorio, R., D’hooge, D., De Clerck, K., &#38; Cardon, L. (2021). Exploring fused filament fabrication : from morphology control to commercial printing settings. <i>International Polymer Process Innovation Conference 2021 (PPI-2021), Proceedings</i>, 21–23. Ghent: Ghent University.</div>
  chicago-author-date: |2
      <div class="csl-entry">Wang, Sisi, Lode Daelemans, Rudinei Fiorio, Dagmar D’hooge, Karen De Clerck, and Ludwig Cardon. 2021. “Exploring Fused Filament Fabrication : From Morphology Control to Commercial Printing Settings.” In <i>International Polymer Process Innovation Conference 2021 (PPI-2021), Proceedings</i>, 21–23. Ghent: Ghent University.</div>
  fwo: |2
      <div class="csl-entry">Wang, Sisi, Lode Daelemans, Rudinei Fiorio, Dagmar D’hooge, Karen De Clerck, and Ludwig Cardon. 2021. “Exploring Fused Filament Fabrication : From Morphology Control to Commercial Printing Settings.” In <i>International Polymer Process Innovation Conference 2021 (PPI-2021), Proceedings</i>, 21–23. Ghent: Ghent University.</div>
  ieee: |2
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        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. Wang, L. Daelemans, R. Fiorio, D. D’hooge, K. De Clerck, and L. Cardon, “Exploring fused filament fabrication : from morphology control to commercial printing settings,” in <i>International Polymer Process Innovation Conference 2021 (PPI-2021), Proceedings</i>, online, 2021, pp. 21–23.</div>
      </div>
  mla: |2
      <div class="csl-entry">Wang, Sisi, et al. “Exploring Fused Filament Fabrication : From Morphology Control to Commercial Printing Settings.” <i>International Polymer Process Innovation Conference 2021 (PPI-2021), Proceedings</i>, Ghent University, 2021, pp. 21–23.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Wang S, Daelemans L, Fiorio R, D’hooge D, De Clerck K, Cardon L. Exploring fused filament fabrication : from morphology control to commercial printing settings. In: International Polymer Process Innovation Conference 2021 (PPI-2021), Proceedings. Ghent: Ghent University; 2021. p. 21–3.</div>
       </div>
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isbn:
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keyword:
- Bio-based blend
- annealing
- printing parameter
- morphology
- mechanical property
language:
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page:
  first: '21'
  last: '23'
parent:
  title: International Polymer Process Innovation Conference 2021 (PPI-2021), Proceedings
project:
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  abstract: |-
    <p>
    Textiles are ideally suited for technical engineering applications thanks to their unique combination of lightness, flexibility and strength. Especially, fibre reinforced composites are seeing a tremendous growth for designing light-weight structural components. The fibres, the building blocks of any textile, and their arrangement in the textile and the composite (microstructure) determine the macroscopic properties. It is thus of utmost importance that this micro-macro relation is fundamentally understood. The complexity of textiles (complex hierarchical microstructure, highly non-linear behaviour) makes this a challenging problem. By following a multiscale analysis, combining both advanced experimental and numerical techniques, starting with individual fibres and building up till complete nano-interleaved preforms, we get a fundamental understanding of the micro-macro relationships that govern the mechanical behaviour of textile materials. These insights are of crucial importance for the further development of high-end nano-enabled composites and are extendable to many other technical textile applications as well.

    </p>
  end_date: 2022-09-30
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  title: Multiscale experimental and numerical characterisation of textile reinforcements
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publication_status: published
publication_status_sort: 2
publisher:
  location: Ghent
  name: Ghent University
status: public
subject:
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- Technology and Engineering
title: 'Exploring fused filament fabrication : from morphology control to commercial
  printing settings'
type: conference
year: '2021'
...
---
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      <div class="csl-entry">Verschatse, O., Daelemans, L., Van Paepegem, W., &#38; De Clerck, K. (2021). Does size matter? In-situ SEM analysis of the tensile properties of epoxy at the microscale. <i>HyFiSyn Conference, Abstracts</i>. Presented at the HyFiSyn conference, Leuven, Belgium (and online).</div>
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      <div class="csl-entry">Verschatse, Olivier, Lode Daelemans, Wim Van Paepegem, and Karen De Clerck. 2021. “Does Size Matter? In-Situ SEM Analysis of the Tensile Properties of Epoxy at the Microscale.” In <i>HyFiSyn Conference, Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">Verschatse, Olivier, Lode Daelemans, Wim Van Paepegem, and Karen De Clerck. 2021. “Does Size Matter? In-Situ SEM Analysis of the Tensile Properties of Epoxy at the Microscale.” In <i>HyFiSyn Conference, Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">O. Verschatse, L. Daelemans, W. Van Paepegem, and K. De Clerck, “Does size matter? In-situ SEM analysis of the tensile properties of epoxy at the microscale,” in <i>HyFiSyn conference, Abstracts</i>, Leuven, Belgium (and online), 2021.</div>
      </div>
  mla: |2
      <div class="csl-entry">Verschatse, Olivier, et al. “Does Size Matter? In-Situ SEM Analysis of the Tensile Properties of Epoxy at the Microscale.” <i>HyFiSyn Conference, Abstracts</i>, 2021.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Verschatse O, Daelemans L, Van Paepegem W, De Clerck K. Does size matter? In-situ SEM analysis of the tensile properties of epoxy at the microscale. In: HyFiSyn conference, Abstracts. 2021.</div>
       </div>
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  abstract: |-
    <p>
    Textiles are ideally suited for technical engineering applications thanks to their unique combination of lightness, flexibility and strength. Especially, fibre reinforced composites are seeing a tremendous growth for designing light-weight structural components. The fibres, the building blocks of any textile, and their arrangement in the textile and the composite (microstructure) determine the macroscopic properties. It is thus of utmost importance that this micro-macro relation is fundamentally understood. The complexity of textiles (complex hierarchical microstructure, highly non-linear behaviour) makes this a challenging problem. By following a multiscale analysis, combining both advanced experimental and numerical techniques, starting with individual fibres and building up till complete nano-interleaved preforms, we get a fundamental understanding of the micro-macro relationships that govern the mechanical behaviour of textile materials. These insights are of crucial importance for the further development of high-end nano-enabled composites and are extendable to many other technical textile applications as well.

    </p>
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  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Does size matter? In-situ SEM analysis of the tensile properties of epoxy at
  the microscale
type: conference
year: '2021'
...
---
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      <div class="csl-entry">Verschatse, O., Daelemans, L., Van Paepegem, W., &#38; De Clerck, K. (2021). Does size matter? In-situ SEM analysis of the tensile properties of epoxy at the microscale. In F. Ferreira, A. M. Rocha, R. Fangueiro, A. Marques, &#38; A. Zille (Eds.), <i>AUTEX 2021, 20th World Textile Conference, Abstracts</i> (pp. 420–421). AUTEX.</div>
  chicago-author-date: |2
      <div class="csl-entry">Verschatse, Olivier, Lode Daelemans, Wim Van Paepegem, and Karen De Clerck. 2021. “Does Size Matter? In-Situ SEM Analysis of the Tensile Properties of Epoxy at the Microscale.” In <i>AUTEX 2021, 20th World Textile Conference, Abstracts</i>, edited by Fernando Ferreira, A. M. Rocha, R. Fangueiro, A. Marques, and A. Zille, 420–21. AUTEX.</div>
  fwo: |2
      <div class="csl-entry">Verschatse, Olivier, Lode Daelemans, Wim Van Paepegem, and Karen De Clerck. 2021. “Does Size Matter? In-Situ SEM Analysis of the Tensile Properties of Epoxy at the Microscale.” In <i>AUTEX 2021, 20th World Textile Conference, Abstracts</i>, ed by. Fernando Ferreira, A. M. Rocha, R. Fangueiro, A. Marques, and A. Zille, 420–421. AUTEX.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">O. Verschatse, L. Daelemans, W. Van Paepegem, and K. De Clerck, “Does size matter? In-situ SEM analysis of the tensile properties of epoxy at the microscale,” in <i>AUTEX 2021, 20th World Textile Conference, Abstracts</i>, Guimarães, Portugal (online), 2021, pp. 420–421.</div>
      </div>
  mla: |2
      <div class="csl-entry">Verschatse, Olivier, et al. “Does Size Matter? In-Situ SEM Analysis of the Tensile Properties of Epoxy at the Microscale.” <i>AUTEX 2021, 20th World Textile Conference, Abstracts</i>, edited by Fernando Ferreira et al., AUTEX, 2021, pp. 420–21.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Verschatse O, Daelemans L, Van Paepegem W, De Clerck K. Does size matter? In-situ SEM analysis of the tensile properties of epoxy at the microscale. In: Ferreira F, Rocha AM, Fangueiro R, Marques A, Zille A, editors. AUTEX 2021, 20th World Textile Conference, Abstracts. AUTEX; 2021. p. 420–1.</div>
       </div>
classification: C3
conference:
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  location: Guimarães, Portugal (online)
  name: AUTEX 2021 - 20th World Textile Conference
  organizer: AUTEX, Universidade do Minho
  start_date: 2021-09-05
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
  _id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  biblio_id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
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date_created: 2021-09-22 07:06:05
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  url: https://biblio.ugent.be/publication/8720995/file/8720999.pdf
handle: http://hdl.handle.net/1854/LU-8720995
isbn:
- '9789895480869'
language:
- eng
page:
  first: '420'
  last: '421'
parent:
  title: AUTEX 2021, 20th World Textile Conference, Abstracts
project:
- _id: '3E016519'
  abstract: |-
    <p>
    Textiles are ideally suited for technical engineering applications thanks to their unique combination of lightness, flexibility and strength. Especially, fibre reinforced composites are seeing a tremendous growth for designing light-weight structural components. The fibres, the building blocks of any textile, and their arrangement in the textile and the composite (microstructure) determine the macroscopic properties. It is thus of utmost importance that this micro-macro relation is fundamentally understood. The complexity of textiles (complex hierarchical microstructure, highly non-linear behaviour) makes this a challenging problem. By following a multiscale analysis, combining both advanced experimental and numerical techniques, starting with individual fibres and building up till complete nano-interleaved preforms, we get a fundamental understanding of the micro-macro relationships that govern the mechanical behaviour of textile materials. These insights are of crucial importance for the further development of high-end nano-enabled composites and are extendable to many other technical textile applications as well.

    </p>
  end_date: 2022-09-30
  gismo_id: 3c0a4b92-b36f-11e9-9b22-19a03077e1f4
  iweto_id: '3E016519'
  start_date: 2019-10-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
- _id: 01B03518
  abstract: <p>The requested table top SEM with integrated micromechanical testing,
    combines a large sample chamber to accommodate a sensitive micromechanical set-up
    with a high magnification and easy sampling. This is highly novel and only recently
    available at moderate costs. The in-situ visualization of material performance
    under load at high magnification will boost the academic research of the applicants
    and their collaborators.</p>
  end_date: 2020-05-31
  gismo_id: 320e7057-5b7c-11e9-ac93-1bffacd2a7e2
  iweto_id: 01B03518
  publication_count: 1
  start_date: 2018-06-01
  title: Table top SEM with integrated in-situ micromechanical testing for fiber,
    polymer and composite materials
- _id: 01J02013
  abstract: '<p>The project focuses on the use and functionalization of nanofibres
    to improve the toughness of epoxy matrix composites. The project consist of 5
    packages:<br /><br /><br /><br />WP1: nanofibre properties with respect to composite
    applications<br /><br />WP2: functionalization of nanofbibrous structures<br /><br
    />WP3: effect of nanofibres on the curing behavior of epoxy resins<br /><br />WP4:
    Tougning of nf-epoxy systems<br /><br />WP5: mechanical properties of GF/nf composites</p>'
  end_date: 2017-12-31
  gismo_id: 23e0ac1b-2d66-4695-b51c-6f6965e4da3d
  iweto_id: 01J02013
  start_date: 2013-03-01
  title: Epoxy resin composites reinforced with functionalized electrospun nanofibres
publication_status: published
publication_status_sort: 2
publisher:
  name: AUTEX
status: public
subject:
- Technology and Engineering
title: Does size matter? In-situ SEM analysis of the tensile properties of epoxy at
  the microscale
type: conference
year: '2021'
...
---
_id: '8703361'
affiliation:
- name: Department of Green Chemistry and Technology
  path:
  - ugent_id: UGent
  - ugent_id: LA
  - ugent_id: LA24
  ugent_id: LA24
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Food technology, Safety and Health
  path:
  - ugent_id: UGent
  - ugent_id: LA
  - ugent_id: LA23
  ugent_id: LA23
- name: Department of Applied physics
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW17
  ugent_id: TW17
- name: Department of Physics and astronomy
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE05
  ugent_id: WE05
article_number: '126920'
article_type: review
author:
- _id: 1D7D45A8-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 1D7D45A8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Kim
  last_name: Phan
  name: Kim Phan
  name_last_first: Phan, Kim
  orcid_id: 0000-0001-8660-5251
  ugent_id:
  - '000090124821'
  - '802002578620'
  - '971260175395'
- _id: F587F796-F0ED-11E1-A9DE-61C894A0A6B4
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  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA23
    ugent_id: LA23
  biblio_id: F587F796-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Katleen
  last_name: Raes
  name: Katleen Raes
  name_last_first: Raes, Katleen
  orcid_id: 0000-0003-2382-120X
  ugent_id:
  - '801001275508'
  - '973092298160'
- _id: F542886E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW17
    ugent_id: TW17
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE05
    ugent_id: WE05
  biblio_id: F542886E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Veronique
  last_name: Van Speybroeck
  name: Veronique Van Speybroeck
  name_last_first: Van Speybroeck, Veronique
  orcid_id: 0000-0003-2206-178X
  ugent_id:
  - '801001153549'
  - '919016668139'
  - '976495757166'
- _id: 60EFF916-4D07-11E5-AC4F-AE11B5D1D7B1
  biblio_id: 60EFF916-4D07-11E5-AC4F-AE11B5D1D7B1
  first_name: Martijn
  last_name: Roosen
  name: Martijn Roosen
  name_last_first: Roosen, Martijn
  orcid_id: 0000-0002-9551-4658
  ugent_id:
  - '974623612003'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: FBC5C354-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA24
    ugent_id: LA24
  biblio_id: FBC5C354-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Steven
  last_name: De Meester
  name: Steven De Meester
  name_last_first: De Meester, Steven
  orcid_id: 0000-0002-5246-3918
  ugent_id:
  - '802000481497'
  - '973680737243'
biblio_id: '8703361'
cite:
  apa: |2
      <div class="csl-entry">Phan, K., Raes, K., Van Speybroeck, V., Roosen, M., De Clerck, K., &#38; De Meester, S. (2021). Non-food applications of natural dyes extracted from agro-food residues : a critical review. <i>JOURNAL OF CLEANER PRODUCTION</i>, <i>301</i>. https://doi.org/10.1016/j.jclepro.2021.126920</div>
  bof: |2-
      <div class="csl-entry">Phan, Kim, Katleen Raes, Veronique Van Speybroeck, Martijn Roosen, Karen De Clerck, and Steven De Meester. 2021. “Non-Food Applications of Natural Dyes Extracted from Agro-Food Residues : A Critical Review.” <i>JOURNAL OF CLEANER PRODUCTION</i> 301. doi:10.1016/j.jclepro.2021.126920.</div>
    <div><i>Impact factor: 11.072, category: ENVIRONMENTAL SCIENCES, rank: 24/279, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Phan, Kim, Katleen Raes, Veronique Van Speybroeck, Martijn Roosen, Karen De Clerck, and Steven De Meester. 2021. “Non-Food Applications of Natural Dyes Extracted from Agro-Food Residues : A Critical Review.” <i>JOURNAL OF CLEANER PRODUCTION</i> 301. https://doi.org/10.1016/j.jclepro.2021.126920.</div>
  fwo: |2
      <div class="csl-entry">Phan, Kim, Katleen Raes, Veronique Van Speybroeck, Martijn Roosen, Karen De Clerck, and Steven De Meester. 2021. “Non-Food Applications of Natural Dyes Extracted from Agro-Food Residues : A Critical Review.” <i>JOURNAL OF CLEANER PRODUCTION</i> 301. doi:10.1016/j.jclepro.2021.126920.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. Phan, K. Raes, V. Van Speybroeck, M. Roosen, K. De Clerck, and S. De Meester, “Non-food applications of natural dyes extracted from agro-food residues : a critical review,” <i>JOURNAL OF CLEANER PRODUCTION</i>, vol. 301, 2021.</div>
      </div>
  mla: |2
      <div class="csl-entry">Phan, Kim, et al. “Non-Food Applications of Natural Dyes Extracted from Agro-Food Residues : A Critical Review.” <i>JOURNAL OF CLEANER PRODUCTION</i>, vol. 301, 2021, doi:10.1016/j.jclepro.2021.126920.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Phan K, Raes K, Van Speybroeck V, Roosen M, De Clerck K, De Meester S. Non-food applications of natural dyes extracted from agro-food residues : a critical review. JOURNAL OF CLEANER PRODUCTION. 2021;301.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: 1D7D45A8-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 1D7D45A8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Kim
  last_name: Phan
  name: Kim Phan
  name_last_first: Phan, Kim
  orcid_id: 0000-0001-8660-5251
  ugent_id:
  - '000090124821'
  - '802002578620'
  - '971260175395'
date_created: 2021-04-07 13:26:37
date_updated: 2026-03-31 13:38:04
doi:
- 10.1016/j.jclepro.2021.126920
external: 0
file:
- _id: '8704033'
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  content_type: application/pdf
  kind: fullText
  name: PhanNon-food_applications_of_natural_dyes_extracted_from_agro-foodresidues_A_critical_review.pdf
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  url: https://biblio.ugent.be/publication/8703361/file/8704033.pdf
handle: http://hdl.handle.net/1854/LU-8703361
issn:
- 0959-6526
- 1879-1786
jcr:
  category: ENVIRONMENTAL SCIENCES
  category_decile: 1
  category_quartile: 1
  category_rank: 24/279
  category_vigintile: 2
  eigenfactor: 0.22937
  immediacy_index: 3.436
  impact_factor: 11.072
  impact_factor_5yr: 11.016
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 2
  prev_impact_factor: 9.297
  total_cites: 250231
keyword:
- Natural Dye
- Anthocyanins
- Quinones
- Carotenoids
- Life Cycle Assessment (LCA)
- Organic Waste Valorization
- RUBIA-TINCTORUM-L.
- JUGLANS-REGIA L.
- CARBON-DIOXIDE EXTRACTION
- SOLID-PHASE EXTRACTION
- BY-PRODUCTS
- DYEING PROPERTIES
- COTTON FABRICS
- LIGHT FASTNESS
- ANTIBACTERIAL ACTIVITY
- ULTRASONIC EXTRACTION
language:
- eng
page:
  count: '26'
parent:
  short_title: J. Clean Prod.
  title: JOURNAL OF CLEANER PRODUCTION
publication_status: published
publication_status_sort: 2
status: public
subject:
- Agriculture and Food Sciences
- Chemistry
title: 'Non-food applications of natural dyes extracted from agro-food residues :
  a critical review'
type: journalArticle
vabb_approved: 0
vabb_id: c:vabb:533366
vabb_type: VABB-1
vabb_year:
- '2023'
volume: '301'
wos_id: '000646601400014'
wos_type: Review
year: '2021'
...
---
_id: '8693084'
abstract:
- Anthocyanins and pyranoanthocyanins are flavonoids that are present in various food
  products (e.g., fruit, vegetables, wine, etc.). The large chemical diversity amongst
  these molecules leads to compound-specific properties such as color and stability
  towards external conditions. These properties are also attractive for food and non-food
  applications. The photophysical experimental characterization is not easy as this
  generally demands advanced analytical techniques along with optimized separation
  procedures. Molecular modeling can provide insights into the fundamental understanding
  of the photophysical properties of these compounds in a uniform way for a broad
  set of compounds. However, the current literature is quite fragmented on this topic.
  Herein, a large set of 140 naturally derived anthocyanins was evaluated in a systematic
  way with three functionals (B3LYP, PBE0, and CAM-B3LYP). The accuracy of these functionals
  was determined with experimental literature lambda(max,vis) values. In addition
  to lambda(max,vis) values, time-dependent (TD)-DFT calculations also provided oscillator
  strengths, molar absorption coefficients, and orbital energies, which define whether
  specific natural anthocyanin-based compounds can be deployed in food and non-food
  applications such as food additives/colorants, textile dyeing, analytical standards,
  and dye-sensitized solar cells (DSSCs).
abstract_full:
- lang: eng
  text: Anthocyanins and pyranoanthocyanins are flavonoids that are present in various
    food products (e.g., fruit, vegetables, wine, etc.). The large chemical diversity
    amongst these molecules leads to compound-specific properties such as color and
    stability towards external conditions. These properties are also attractive for
    food and non-food applications. The photophysical experimental characterization
    is not easy as this generally demands advanced analytical techniques along with
    optimized separation procedures. Molecular modeling can provide insights into
    the fundamental understanding of the photophysical properties of these compounds
    in a uniform way for a broad set of compounds. However, the current literature
    is quite fragmented on this topic. Herein, a large set of 140 naturally derived
    anthocyanins was evaluated in a systematic way with three functionals (B3LYP,
    PBE0, and CAM-B3LYP). The accuracy of these functionals was determined with experimental
    literature lambda(max,vis) values. In addition to lambda(max,vis) values, time-dependent
    (TD)-DFT calculations also provided oscillator strengths, molar absorption coefficients,
    and orbital energies, which define whether specific natural anthocyanin-based
    compounds can be deployed in food and non-food applications such as food additives/colorants,
    textile dyeing, analytical standards, and dye-sensitized solar cells (DSSCs).
affiliation:
- name: Department of Green Chemistry and Technology
  path:
  - ugent_id: UGent
  - ugent_id: LA
  - ugent_id: LA24
  ugent_id: LA24
- name: Department of Food technology, Safety and Health
  path:
  - ugent_id: UGent
  - ugent_id: LA
  - ugent_id: LA23
  ugent_id: LA23
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Physics and astronomy
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE05
  ugent_id: WE05
article_type: original
author:
- _id: 1D7D45A8-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 1D7D45A8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Kim
  last_name: Phan
  name: Kim Phan
  name_last_first: Phan, Kim
  orcid_id: 0000-0001-8660-5251
  ugent_id:
  - '000090124821'
  - '802002578620'
  - '971260175395'
- _id: FBC5C354-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA24
    ugent_id: LA24
  biblio_id: FBC5C354-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Steven
  last_name: De Meester
  name: Steven De Meester
  name_last_first: De Meester, Steven
  orcid_id: 0000-0002-5246-3918
  ugent_id:
  - '802000481497'
  - '973680737243'
- _id: F587F796-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA23
    ugent_id: LA23
  biblio_id: F587F796-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Katleen
  last_name: Raes
  name: Katleen Raes
  name_last_first: Raes, Katleen
  orcid_id: 0000-0003-2382-120X
  ugent_id:
  - '801001275508'
  - '973092298160'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F542886E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW17
    ugent_id: TW17
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE05
    ugent_id: WE05
  biblio_id: F542886E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Veronique
  last_name: Van Speybroeck
  name: Veronique Van Speybroeck
  name_last_first: Van Speybroeck, Veronique
  orcid_id: 0000-0003-2206-178X
  ugent_id:
  - '801001153549'
  - '919016668139'
  - '976495757166'
biblio_id: '8693084'
cite:
  apa: |2
      <div class="csl-entry">Phan, K., De Meester, S., Raes, K., De Clerck, K., &#38; Van Speybroeck, V. (2021). A comparative study on the photophysical properties of anthocyanins and pyranoanthocyanins. <i>CHEMISTRY-A EUROPEAN JOURNAL</i>, <i>27</i>(19), 5956–5971. https://doi.org/10.1002/chem.202004639</div>
  bof: |2-
      <div class="csl-entry">Phan, Kim, Steven De Meester, Katleen Raes, Karen De Clerck, and Veronique Van Speybroeck. 2021. “A Comparative Study on the Photophysical Properties of Anthocyanins and Pyranoanthocyanins.” <i>CHEMISTRY-A EUROPEAN JOURNAL</i> 27 (19): 5956–5971. doi:10.1002/chem.202004639.</div>
    <div><i>Impact factor: 5.02, category: CHEMISTRY, MULTIDISCIPLINARY, rank: 64/179, quartile: 2.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Phan, Kim, Steven De Meester, Katleen Raes, Karen De Clerck, and Veronique Van Speybroeck. 2021. “A Comparative Study on the Photophysical Properties of Anthocyanins and Pyranoanthocyanins.” <i>CHEMISTRY-A EUROPEAN JOURNAL</i> 27 (19): 5956–71. https://doi.org/10.1002/chem.202004639.</div>
  fwo: |2
      <div class="csl-entry">Phan, Kim, Steven De Meester, Katleen Raes, Karen De Clerck, and Veronique Van Speybroeck. 2021. “A Comparative Study on the Photophysical Properties of Anthocyanins and Pyranoanthocyanins.” <i>CHEMISTRY-A EUROPEAN JOURNAL</i> 27 (19): 5956–5971. doi:10.1002/chem.202004639.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. Phan, S. De Meester, K. Raes, K. De Clerck, and V. Van Speybroeck, “A comparative study on the photophysical properties of anthocyanins and pyranoanthocyanins,” <i>CHEMISTRY-A EUROPEAN JOURNAL</i>, vol. 27, no. 19, pp. 5956–5971, 2021.</div>
      </div>
  mla: |2
      <div class="csl-entry">Phan, Kim, et al. “A Comparative Study on the Photophysical Properties of Anthocyanins and Pyranoanthocyanins.” <i>CHEMISTRY-A EUROPEAN JOURNAL</i>, vol. 27, no. 19, 2021, pp. 5956–71, doi:10.1002/chem.202004639.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Phan K, De Meester S, Raes K, De Clerck K, Van Speybroeck V. A comparative study on the photophysical properties of anthocyanins and pyranoanthocyanins. CHEMISTRY-A EUROPEAN JOURNAL. 2021;27(19):5956–71.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: FBC5C354-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA24
    ugent_id: LA24
  biblio_id: FBC5C354-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Steven
  last_name: De Meester
  name: Steven De Meester
  name_last_first: De Meester, Steven
  orcid_id: 0000-0002-5246-3918
  ugent_id:
  - '802000481497'
  - '973680737243'
date_created: 2021-02-11 07:51:29
date_updated: 2026-03-31 13:38:06
doi:
- 10.1002/chem.202004639
external: 0
file:
- _id: '8703423'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: published.pdf
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handle: http://hdl.handle.net/1854/LU-8693084
issn:
- 0947-6539
- 1521-3765
issue: '19'
jcr:
  category: CHEMISTRY, MULTIDISCIPLINARY
  category_decile: 4
  category_quartile: 2
  category_rank: 64/179
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  eigenfactor: 0.10352
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  prev_impact_factor: 5.236
  total_cites: 113811
keyword:
- General Chemistry
- anthocyanins
- pyranoanthocyanins
- time-dependent density functional theory
- UV
- Vis spectroscopy
language:
- eng
page:
  first: '5956'
  last: '5971'
parent:
  short_title: Chem.-Eur. J.
  title: CHEMISTRY-A EUROPEAN JOURNAL
publication_status: published
publication_status_sort: 2
pubmed_id: '33453093'
status: public
subject:
- Chemistry
title: A comparative study on the photophysical properties of anthocyanins and pyranoanthocyanins
type: journalArticle
vabb_approved: 0
vabb_id: c:vabb:533382
vabb_type: VABB-1
vabb_year:
- '2023'
volume: '27'
wos_id: '000624567100001'
wos_type: Article
year: '2021'
...
---
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affiliation:
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  biblio_id: 28DB1308-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lies
  last_name: De Keer
  name: Lies De Keer
  name_last_first: De Keer, Lies
  orcid_id: 0000-0003-2620-0046
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- first_name: Karsu I.
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  name: Karsu I. Kilic
  name_last_first: Kilic, Karsu I.
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  first_name: Paul
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  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- first_name: Daniel
  last_name: Kodura
  name: Daniel Kodura
  name_last_first: Kodura, Daniel
- first_name: Hendrik
  last_name: Frisch
  name: Hendrik Frisch
  name_last_first: Frisch, Hendrik
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    ugent_id: TW11
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  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
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    ugent_id: TW11
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  first_name: Marie-Françoise
  last_name: Reyniers
  name: Marie-Françoise Reyniers
  name_last_first: Reyniers, Marie-Françoise
  ugent_id:
  - '801000590040'
  - '001960946643'
- first_name: Christopher
  last_name: Barner-Kowollik
  name: Christopher Barner-Kowollik
  name_last_first: Barner-Kowollik, Christopher
- first_name: Reinhold H.
  last_name: Dauskardt
  name: Reinhold H. Dauskardt
  name_last_first: Dauskardt, Reinhold H.
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    ugent_id: TW11
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  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
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biblio_id: 01GTXZP31713VR4SAB2HRVN5Q0
cite:
  apa: |2
      <div class="csl-entry">De Keer, L., Kilic, K. I., Van Steenberge, P., Daelemans, L., Kodura, D., Frisch, H., … D’hooge, D. (2021). Computational prediction of the molecular configuration of three-dimensional network polymers.</div>
  bof: |2
      <div class="csl-entry">De Keer, Lies, Karsu I. Kilic, Paul Van Steenberge, Lode Daelemans, Daniel Kodura, Hendrik Frisch, Karen De Clerck, Marie-Françoise Reyniers, Christopher Barner-Kowollik, Reinhold H. Dauskardt, and Dagmar D’hooge. 2021. “Computational Prediction of the Molecular Configuration of Three-Dimensional Network Polymers.” <i>NATURE MATERIALS</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Keer, Lies, Karsu I. Kilic, Paul Van Steenberge, Lode Daelemans, Daniel Kodura, Hendrik Frisch, Karen De Clerck, et al. 2021. “Computational Prediction of the Molecular Configuration of Three-Dimensional Network Polymers.” <i>NATURE MATERIALS</i>.</div>
  fwo: |2
      <div class="csl-entry">De Keer, Lies, Karsu I. Kilic, Paul Van Steenberge, Lode Daelemans, Daniel Kodura, Hendrik Frisch, Karen De Clerck, Marie-Françoise Reyniers, Christopher Barner-Kowollik, Reinhold H. Dauskardt, and Dagmar D’hooge. 2021. “Computational Prediction of the Molecular Configuration of Three-Dimensional Network Polymers.” <i>NATURE MATERIALS</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. De Keer <i>et al.</i>, “Computational prediction of the molecular configuration of three-dimensional network polymers,” <i>NATURE MATERIALS</i>, vol. 20, no. 10. 2021.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Keer, Lies, et al. “Computational Prediction of the Molecular Configuration of Three-Dimensional Network Polymers.” <i>NATURE MATERIALS</i>, vol. 20, no. 10, 2021.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Keer L, Kilic KI, Van Steenberge P, Daelemans L, Kodura D, Frisch H, et al. Computational prediction of the molecular configuration of three-dimensional network polymers. Vol. 20, NATURE MATERIALS. 2021.</div>
       </div>
classification: V
copyright_statement: No license (in copyright)
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  _id: FA9ED9DE-F0ED-11E1-A9DE-61C894A0A6B4
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  first_name: Veerle
  last_name: Van Cauwenberghe
  name: Veerle Van Cauwenberghe
  name_last_first: Van Cauwenberghe, Veerle
  ugent_id:
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  - '971461632473'
date_created: 2023-03-07 12:10:37
date_updated: 2026-03-31 05:48:35
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handle: http://hdl.handle.net/1854/LU-01GTXZP31713VR4SAB2HRVN5Q0
issue: '10'
jcr: {}
keyword:
- Mechanical Engineering
- Mechanics of Materials
- Condensed Matter Physics
- General Materials Science
- General Chemistry
language:
- eng
misc_type: other
parent:
  short_title: Nat. Mater.
  title: NATURE MATERIALS
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Computational prediction of the molecular configuration of three-dimensional
  network polymers
type: misc
volume: '20'
year: '2021'
...
---
_id: '8723036'
abstract:
- 'The long-term service life of polymers can be estimated with much shorter experiments
  by applying the time temperature superposition principle (TTS). In this approach,
  data is obtained at different temperatures, usually through a stepped isothermal
  method (SIM) on the same sample. Dynamic mechanical analysis (DMA) instruments offer
  two different measurement methods to obtain SIM data: (i) static creep tests and
  (ii) dynamic frequency sweeps. This paper compares both methods on highly graphite
  filled polypropylene. Our studies on reproducibility of each method show that the
  uncertainty for 20 year prediction can be lower than 6% for both methods. While
  creep-based tests require a shorter experimental time, frequency sweep based tests
  show a lower scatter on the final result. The two main factors introducing uncertainty
  on the end results are related to (i) the reproducibility of the experimental raw
  data and (ii) the TTS optimisation using shift factors. The optimisation of the
  shift factors by a numerical method improves the accuracy of the master curve. By
  comparing creep and frequency sweep SIM, it shows that for predictions of one decade,
  the methods deliver very comparable results (less than 10% difference). For longer
  predictions, the methods differ and are not interchangeable. Furthermore, DMA was
  also effectively used as a three-point bending setup, providing information about
  strain rate sensitivity and the linear visco-elastic region using the same test
  setup and same sample dimensions as for TTS.'
abstract_full:
- lang: eng
  text: 'The long-term service life of polymers can be estimated with much shorter
    experiments by applying the time temperature superposition principle (TTS). In
    this approach, data is obtained at different temperatures, usually through a stepped
    isothermal method (SIM) on the same sample. Dynamic mechanical analysis (DMA)
    instruments offer two different measurement methods to obtain SIM data: (i) static
    creep tests and (ii) dynamic frequency sweeps. This paper compares both methods
    on highly graphite filled polypropylene. Our studies on reproducibility of each
    method show that the uncertainty for 20 year prediction can be lower than 6% for
    both methods. While creep-based tests require a shorter experimental time, frequency
    sweep based tests show a lower scatter on the final result. The two main factors
    introducing uncertainty on the end results are related to (i) the reproducibility
    of the experimental raw data and (ii) the TTS optimisation using shift factors.
    The optimisation of the shift factors by a numerical method improves the accuracy
    of the master curve. By comparing creep and frequency sweep SIM, it shows that
    for predictions of one decade, the methods deliver very comparable results (less
    than 10% difference). For longer predictions, the methods differ and are not interchangeable.
    Furthermore, DMA was also effectively used as a three-point bending setup, providing
    information about strain rate sensitivity and the linear visco-elastic region
    using the same test setup and same sample dimensions as for TTS.'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: '107368'
article_type: original
author:
- _id: A13EB19E-D8AF-11E6-A6EB-BE61AD28A064
  biblio_id: A13EB19E-D8AF-11E6-A6EB-BE61AD28A064
  first_name: Joanna
  last_name: Schalnat
  name: Joanna Schalnat
  name_last_first: Schalnat, Joanna
  ugent_id:
  - '976703632210'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Ives
  last_name: De Baere
  name: Ives De Baere
  name_last_first: De Baere, Ives
  orcid_id: 0000-0002-6846-0981
  ugent_id:
  - '801001866905'
  - '977854465771'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
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    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
biblio_id: '8723036'
cite:
  apa: |2
      <div class="csl-entry">Schalnat, J., Daelemans, L., De Baere, I., De Clerck, K., &#38; Van Paepegem, W. (2021). Long-term stiffness prediction of particle filled polymers by dynamic mechanical analysis : frequency sweep versus creep method. <i>POLYMER TESTING</i>, <i>103</i>. https://doi.org/10.1016/j.polymertesting.2021.107368</div>
  bof: |2-
      <div class="csl-entry">Schalnat, Joanna, Lode Daelemans, Ives De Baere, Karen De Clerck, and Wim Van Paepegem. 2021. “Long-Term Stiffness Prediction of Particle Filled Polymers by Dynamic Mechanical Analysis : Frequency Sweep versus Creep Method.” <i>POLYMER TESTING</i> 103. doi:10.1016/j.polymertesting.2021.107368.</div>
    <div><i>Impact factor: 4.931, category: MATERIALS SCIENCE, CHARACTERIZATION & TESTING, rank: 2/32, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Schalnat, Joanna, Lode Daelemans, Ives De Baere, Karen De Clerck, and Wim Van Paepegem. 2021. “Long-Term Stiffness Prediction of Particle Filled Polymers by Dynamic Mechanical Analysis : Frequency Sweep versus Creep Method.” <i>POLYMER TESTING</i> 103. https://doi.org/10.1016/j.polymertesting.2021.107368.</div>
  fwo: |2
      <div class="csl-entry">Schalnat, Joanna, Lode Daelemans, Ives De Baere, Karen De Clerck, and Wim Van Paepegem. 2021. “Long-Term Stiffness Prediction of Particle Filled Polymers by Dynamic Mechanical Analysis : Frequency Sweep versus Creep Method.” <i>POLYMER TESTING</i> 103. doi:10.1016/j.polymertesting.2021.107368.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">J. Schalnat, L. Daelemans, I. De Baere, K. De Clerck, and W. Van Paepegem, “Long-term stiffness prediction of particle filled polymers by dynamic mechanical analysis : frequency sweep versus creep method,” <i>POLYMER TESTING</i>, vol. 103, 2021.</div>
      </div>
  mla: |2
      <div class="csl-entry">Schalnat, Joanna, et al. “Long-Term Stiffness Prediction of Particle Filled Polymers by Dynamic Mechanical Analysis : Frequency Sweep versus Creep Method.” <i>POLYMER TESTING</i>, vol. 103, 2021, doi:10.1016/j.polymertesting.2021.107368.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Schalnat J, Daelemans L, De Baere I, De Clerck K, Van Paepegem W. Long-term stiffness prediction of particle filled polymers by dynamic mechanical analysis : frequency sweep versus creep method. POLYMER TESTING. 2021;103.</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution-NonCommercial-NoDerivatives 4.0
  International Public License (CC BY-NC-ND 4.0)
created_by:
  _id: A13EB19E-D8AF-11E6-A6EB-BE61AD28A064
  biblio_id: A13EB19E-D8AF-11E6-A6EB-BE61AD28A064
  first_name: Joanna
  last_name: Schalnat
  name: Joanna Schalnat
  name_last_first: Schalnat, Joanna
  ugent_id:
  - '976703632210'
date_created: 2021-10-12 06:17:28
date_updated: 2026-03-31 14:57:11
doi:
- 10.1016/j.polymertesting.2021.107368
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-8723036
issn:
- 0142-9418
- 1873-2348
jcr:
  category: MATERIALS SCIENCE, CHARACTERIZATION & TESTING
  category_decile: 1
  category_quartile: 1
  category_rank: 2/32
  category_vigintile: 1
  eigenfactor: 0.01233
  immediacy_index: 1.43
  impact_factor: 4.931
  impact_factor_5yr: 4.603
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 3
  prev_impact_factor: 4.282
  total_cites: 16928
keyword:
- Polymers and Plastics
- Organic Chemistry
- Time temperature superposition principle (TTS)
- Stepped isothermal method (SIM)
- Dynamic (thermo-) mechanical analysis (DMA DTMA)
- Graphite filled polymer
- Life time predictions
language:
- eng
page:
  count: '9'
parent:
  short_title: Polym. Test
  title: POLYMER TESTING
project:
- _id: '3E016519'
  abstract: |-
    <p>
    Textiles are ideally suited for technical engineering applications thanks to their unique combination of lightness, flexibility and strength. Especially, fibre reinforced composites are seeing a tremendous growth for designing light-weight structural components. The fibres, the building blocks of any textile, and their arrangement in the textile and the composite (microstructure) determine the macroscopic properties. It is thus of utmost importance that this micro-macro relation is fundamentally understood. The complexity of textiles (complex hierarchical microstructure, highly non-linear behaviour) makes this a challenging problem. By following a multiscale analysis, combining both advanced experimental and numerical techniques, starting with individual fibres and building up till complete nano-interleaved preforms, we get a fundamental understanding of the micro-macro relationships that govern the mechanical behaviour of textile materials. These insights are of crucial importance for the further development of high-end nano-enabled composites and are extendable to many other technical textile applications as well.

    </p>
  end_date: 2022-09-30
  gismo_id: 3c0a4b92-b36f-11e9-9b22-19a03077e1f4
  iweto_id: '3E016519'
  start_date: 2019-10-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: 'Long-term stiffness prediction of particle filled polymers by dynamic mechanical
  analysis : frequency sweep versus creep method'
type: journalArticle
volume: '103'
wos_id: '000703726800014'
wos_type: Article
year: '2021'
...
---
_id: '8678232'
abstract:
- Epoxy is a material of choice for demanding applications thanks to its high chemical
  stability, stiffness, and strength. Yet, its brittle fracture behavior is an important
  downside for many sectors. Here, we show that the addition of electrospun thermoplastic
  nanofibers is a viable toughening strategy to design nanofiber reinforced epoxy
  materials with excellent toughness. Moreover, the use of transparent film-like specimens
  allowed in-situ imaging during mechanical testing. Optical and scanning electron
  microscopy, digital image correlation and crack length measurements are used to
  analyze the toughening mechanisms responsible for high toughening efficiency in
  detail. The addition of polyamide and polycaprolactone nanofibers resulted in an
  increased plastic energy uptake up to 100%. In-situ observation of the crack tip
  showed that the main energy-absorbing mechanism was due to bridging nanofibers.
  There was a profound decrease in toughening efficiency when nanofibers lacked sufficient
  adhesion with the matrix only when they were oriented parallel with the crack growth
  direction. The profound understanding of such underlying mechanisms opens up material
  design in applications where high toughness is required like adhesives, coatings,
  and fiber-reinforced composite laminates.
abstract_full:
- lang: eng
  text: Epoxy is a material of choice for demanding applications thanks to its high
    chemical stability, stiffness, and strength. Yet, its brittle fracture behavior
    is an important downside for many sectors. Here, we show that the addition of
    electrospun thermoplastic nanofibers is a viable toughening strategy to design
    nanofiber reinforced epoxy materials with excellent toughness. Moreover, the use
    of transparent film-like specimens allowed in-situ imaging during mechanical testing.
    Optical and scanning electron microscopy, digital image correlation and crack
    length measurements are used to analyze the toughening mechanisms responsible
    for high toughening efficiency in detail. The addition of polyamide and polycaprolactone
    nanofibers resulted in an increased plastic energy uptake up to 100%. In-situ
    observation of the crack tip showed that the main energy-absorbing mechanism was
    due to bridging nanofibers. There was a profound decrease in toughening efficiency
    when nanofibers lacked sufficient adhesion with the matrix only when they were
    oriented parallel with the crack growth direction. The profound understanding
    of such underlying mechanisms opens up material design in applications where high
    toughness is required like adhesives, coatings, and fiber-reinforced composite
    laminates.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: '108504'
article_type: original
author:
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  biblio_id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  first_name: Olivier
  last_name: Verschatse
  name: Olivier Verschatse
  name_last_first: Verschatse, Olivier
  orcid_id: 0000-0001-7732-6007
  ugent_id:
  - '974442908376'
- first_name: Lisa
  last_name: Heirman
  name: Lisa Heirman
  name_last_first: Heirman, Lisa
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8678232'
cite:
  apa: |2
      <div class="csl-entry">Daelemans, L., Verschatse, O., Heirman, L., Van Paepegem, W., &#38; De Clerck, K. (2021). Toughening mechanisms responsible for excellent crack resistance in thermoplastic nanofiber reinforced epoxies through in-situ optical and scanning electron microscopy. <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, <i>201</i>. https://doi.org/10.1016/j.compscitech.2020.108504</div>
  chicago-author-date: |2
      <div class="csl-entry">Daelemans, Lode, Olivier Verschatse, Lisa Heirman, Wim Van Paepegem, and Karen De Clerck. 2021. “Toughening Mechanisms Responsible for Excellent Crack Resistance in Thermoplastic Nanofiber Reinforced Epoxies through In-Situ Optical and Scanning Electron Microscopy.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i> 201. https://doi.org/10.1016/j.compscitech.2020.108504.</div>
  fwo: |2
      <div class="csl-entry">Daelemans, Lode, Olivier Verschatse, Lisa Heirman, Wim Van Paepegem, and Karen De Clerck. 2021. “Toughening Mechanisms Responsible for Excellent Crack Resistance in Thermoplastic Nanofiber Reinforced Epoxies through In-Situ Optical and Scanning Electron Microscopy.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i> 201. doi:10.1016/j.compscitech.2020.108504.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Daelemans, O. Verschatse, L. Heirman, W. Van Paepegem, and K. De Clerck, “Toughening mechanisms responsible for excellent crack resistance in thermoplastic nanofiber reinforced epoxies through in-situ optical and scanning electron microscopy,” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, vol. 201, 2021.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daelemans, Lode, et al. “Toughening Mechanisms Responsible for Excellent Crack Resistance in Thermoplastic Nanofiber Reinforced Epoxies through In-Situ Optical and Scanning Electron Microscopy.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, vol. 201, 2021, doi:10.1016/j.compscitech.2020.108504.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daelemans L, Verschatse O, Heirman L, Van Paepegem W, De Clerck K. Toughening mechanisms responsible for excellent crack resistance in thermoplastic nanofiber reinforced epoxies through in-situ optical and scanning electron microscopy. COMPOSITES SCIENCE AND TECHNOLOGY. 2021;201.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
date_created: 2020-10-20 10:50:01
date_updated: 2026-03-31 14:57:11
doi:
- 10.1016/j.compscitech.2020.108504
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handle: http://hdl.handle.net/1854/LU-8678232
issn:
- 0266-3538
- 1879-1050
jcr:
  category: MATERIALS SCIENCE, COMPOSITES
  category_decile: 2
  category_quartile: 1
  category_rank: 4/28
  category_vigintile: 3
  eigenfactor: 0.02387
  immediacy_index: 2.288
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  prev_category_decile: 1
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  prev_category_vigintile: 2
  prev_impact_factor: 8.528
  total_cites: 46255
keyword:
- General Engineering
- Ceramics and Composites
- Nano composites
- Coating
- Fracture toughness
- Interfacial strength
- Damage mechanics
- Digital image correlation
language:
- eng
page:
  count: '14'
parent:
  short_title: Compos. Sci. Technol.
  title: COMPOSITES SCIENCE AND TECHNOLOGY
project:
- _id: '3E016519'
  abstract: |-
    <p>
    Textiles are ideally suited for technical engineering applications thanks to their unique combination of lightness, flexibility and strength. Especially, fibre reinforced composites are seeing a tremendous growth for designing light-weight structural components. The fibres, the building blocks of any textile, and their arrangement in the textile and the composite (microstructure) determine the macroscopic properties. It is thus of utmost importance that this micro-macro relation is fundamentally understood. The complexity of textiles (complex hierarchical microstructure, highly non-linear behaviour) makes this a challenging problem. By following a multiscale analysis, combining both advanced experimental and numerical techniques, starting with individual fibres and building up till complete nano-interleaved preforms, we get a fundamental understanding of the micro-macro relationships that govern the mechanical behaviour of textile materials. These insights are of crucial importance for the further development of high-end nano-enabled composites and are extendable to many other technical textile applications as well.

    </p>
  end_date: 2022-09-30
  gismo_id: 3c0a4b92-b36f-11e9-9b22-19a03077e1f4
  iweto_id: '3E016519'
  start_date: 2019-10-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
- _id: 01P03418
  abstract: <p>The unique combination of light and flexible, but strong structures,
    makes textile materials well suited for technical engineering applications. Especially,
    fibre reinforced composites are seeing a tremendous growth for designing light-weight
    structural components. The fibres, the building blocks of any textile, and their
    arrangement in the composite (microstructure) determine the obtainable mechanical
    properties. It is thus of utmost importance that the formation of this microstructure
    is fundamentally understood. This enables the optimization of current materials,
    but also the development of advanced, nano-enabled composites by the novel technique
    of interleaving nanofibrous textiles. It is more complex than one would think
    at first sight due to the complicated nature of textiles. For example, composites
    are made by stacking layers of fabrics, whose interaction with each other and
    the tooling can result in unwanted defects or misalignments. This is related to
    the mechanics of the textile material. By following a multi-scale analysis, combining
    both experimental and numerical techniques, starting with individual fibres and
    building up till complete nano-interleaved preforms, we will get a fundamental
    understanding of the micro-macro relationships that govern the mechanics of textile
    materials. These insights are of crucial importance for further development of
    high-end nano-enabled composites, and extendable to many other technical textile
    applications as well.</p>
  end_date: 2019-09-30
  gismo_id: b2c0136d-5a95-11e9-b3e1-37a68b033e1d
  iweto_id: 01P03418
  start_date: 2019-01-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Toughening mechanisms responsible for excellent crack resistance in thermoplastic
  nanofiber reinforced epoxies through in-situ optical and scanning electron microscopy
type: journalArticle
volume: '201'
wos_id: '000595953300005'
wos_type: Article
year: '2021'
...
---
_id: '8707503'
abstract:
- Flexible dielectric sensors received significant interest for real-time in situ
  cure monitoring of polymeric composites over the past decade. Currently, the state-of-the-art
  dielectric sensors mainly focus on detecting the distinct stages of the polymeric
  composite curing process. While low-cost and quantitative monitoring of the thermal,
  mechanical, and chemical properties of the materials during the cure is of great
  interest, to date, such a sensor system has not been realized because the existing
  devices excessively depend on external instrumentations, combined with a lack of
  an embedded reliable data processing module. Here, a fully integrated dielectric
  monitoring sensor system (DMS) incorporating dielectric and temperature sensors
  is developed, capable of monitoring in real-time the temperature, the degree of
  cure, and the glass transition temperature (T-g) of polymeric composites. An independent
  characterization of the cure kinetics was performed using differential scanning
  calorimetry and Raman spectroscopy. These data enabled associating the main physical
  and chemical transformations in the polymeric materials with particular features
  observed in the dielectric measurements. We demonstrate the accurate estimation
  of the degree of cure and T-g of an epoxy resin. The proposed system shows the potential
  for a new generation of intelligent manufacturing technology of composite materials.
abstract_full:
- lang: eng
  text: Flexible dielectric sensors received significant interest for real-time in
    situ cure monitoring of polymeric composites over the past decade. Currently,
    the state-of-the-art dielectric sensors mainly focus on detecting the distinct
    stages of the polymeric composite curing process. While low-cost and quantitative
    monitoring of the thermal, mechanical, and chemical properties of the materials
    during the cure is of great interest, to date, such a sensor system has not been
    realized because the existing devices excessively depend on external instrumentations,
    combined with a lack of an embedded reliable data processing module. Here, a fully
    integrated dielectric monitoring sensor system (DMS) incorporating dielectric
    and temperature sensors is developed, capable of monitoring in real-time the temperature,
    the degree of cure, and the glass transition temperature (T-g) of polymeric composites.
    An independent characterization of the cure kinetics was performed using differential
    scanning calorimetry and Raman spectroscopy. These data enabled associating the
    main physical and chemical transformations in the polymeric materials with particular
    features observed in the dielectric measurements. We demonstrate the accurate
    estimation of the degree of cure and T-g of an epoxy resin. The proposed system
    shows the potential for a new generation of intelligent manufacturing technology
    of composite materials.
affiliation:
- name: Department of Electronics and information systems
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW06
  ugent_id: TW06
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Imec
  path:
  - ugent_id: ResearchCenter
  - ugent_id: IMEC
  ugent_id: IMEC
article_number: '6004809'
article_type: original
author:
- first_name: Yang
  last_name: Yang
  name: Yang Yang
  name_last_first: Yang, Yang
- _id: AD14C8D6-64E7-11E2-AE1C-9E6310BDE39D
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: AD14C8D6-64E7-11E2-AE1C-9E6310BDE39D
  first_name: Bart
  last_name: Plovie
  name: Bart Plovie
  name_last_first: Plovie, Bart
  orcid_id: 0000-0002-3337-5955
  ugent_id:
  - '000120984662'
  - '802001686523'
  - '978920143743'
- _id: 2D64F1A0-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2D64F1A0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Gabriele
  last_name: Chiesura
  name: Gabriele Chiesura
  name_last_first: Chiesura, Gabriele
  ugent_id:
  - '000100191502'
  - '802001344797'
  - '977870335476'
- _id: F938B45C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW06
    ugent_id: TW06
  biblio_id: F938B45C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Thomas
  last_name: Vervust
  name: Thomas Vervust
  name_last_first: Vervust, Thomas
  orcid_id: 0000-0003-2771-3679
  ugent_id:
  - '802000228388'
  - '978214065989'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: 3B7077F6-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 3B7077F6-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Diana-Elena
  last_name: Mogosanu
  name: Diana-Elena Mogosanu
  name_last_first: Mogosanu, Diana-Elena
  ugent_id:
  - '000110887669'
  - '802001116950'
  - '977380651487'
- _id: 3B954482-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 3B954482-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Pieter
  last_name: Wuytens
  name: Pieter Wuytens
  name_last_first: Wuytens, Pieter
  ugent_id:
  - '000110911113'
  - '802001259319'
  - '976589178775'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F4529944-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW06
    ugent_id: TW06
  biblio_id: F4529944-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Jan
  last_name: Vanfleteren
  name: Jan Vanfleteren
  name_last_first: Vanfleteren, Jan
  orcid_id: 0000-0002-9654-7304
  ugent_id:
  - '801000674512'
  - '979431558156'
biblio_id: '8707503'
cite:
  apa: |2
      <div class="csl-entry">Yang, Y., Plovie, B., Chiesura, G., Vervust, T., Daelemans, L., Mogosanu, D.-E., … Vanfleteren, J. (2021). Fully integrated flexible dielectric monitoring sensor system for real-time in situ prediction of the degree of cure and glass transition temperature of an epoxy resin. <i>IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT</i>, <i>70</i>. https://doi.org/10.1109/TIM.2021.3057291</div>
  chicago-author-date: |2
      <div class="csl-entry">Yang, Yang, Bart Plovie, Gabriele Chiesura, Thomas Vervust, Lode Daelemans, Diana-Elena Mogosanu, Pieter Wuytens, Karen De Clerck, and Jan Vanfleteren. 2021. “Fully Integrated Flexible Dielectric Monitoring Sensor System for Real-Time in Situ Prediction of the Degree of Cure and Glass Transition Temperature of an Epoxy Resin.” <i>IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT</i> 70. https://doi.org/10.1109/TIM.2021.3057291.</div>
  fwo: |2
      <div class="csl-entry">Yang, Yang, Bart Plovie, Gabriele Chiesura, Thomas Vervust, Lode Daelemans, Diana-Elena Mogosanu, Pieter Wuytens, Karen De Clerck, and Jan Vanfleteren. 2021. “Fully Integrated Flexible Dielectric Monitoring Sensor System for Real-Time in Situ Prediction of the Degree of Cure and Glass Transition Temperature of an Epoxy Resin.” <i>IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT</i> 70. doi:10.1109/TIM.2021.3057291.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Y. Yang <i>et al.</i>, “Fully integrated flexible dielectric monitoring sensor system for real-time in situ prediction of the degree of cure and glass transition temperature of an epoxy resin,” <i>IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT</i>, vol. 70, 2021.</div>
      </div>
  mla: |2
      <div class="csl-entry">Yang, Yang, et al. “Fully Integrated Flexible Dielectric Monitoring Sensor System for Real-Time in Situ Prediction of the Degree of Cure and Glass Transition Temperature of an Epoxy Resin.” <i>IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT</i>, vol. 70, 2021, doi:10.1109/TIM.2021.3057291.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Yang Y, Plovie B, Chiesura G, Vervust T, Daelemans L, Mogosanu D-E, et al. Fully integrated flexible dielectric monitoring sensor system for real-time in situ prediction of the degree of cure and glass transition temperature of an epoxy resin. IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT. 2021;70.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F4529944-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW06
    ugent_id: TW06
  biblio_id: F4529944-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Jan
  last_name: Vanfleteren
  name: Jan Vanfleteren
  name_last_first: Vanfleteren, Jan
  orcid_id: 0000-0002-9654-7304
  ugent_id:
  - '801000674512'
  - '979431558156'
date_created: 2021-05-06 15:02:12
date_updated: 2026-03-31 14:57:12
doi:
- 10.1109/TIM.2021.3057291
external: 0
file:
- _id: '8707504'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: 09359661.pdf
  publication_version: publishedVersion
  sha256: f79ba13d12835924d1f43877509e9ba7ea15d4db3e814a3ca1493b11d2b1f372
  size: '3600126'
  thumbnail_url: https://biblio.ugent.be/publication/8707503/file/8707504/thumbnail.png
  url: https://biblio.ugent.be/publication/8707503/file/8707504.pdf
handle: http://hdl.handle.net/1854/LU-8707503
issn:
- 0018-9456
- 1557-9662
jcr:
  category: INSTRUMENTS & INSTRUMENTATION
  category_decile: 2
  category_quartile: 1
  category_rank: 10/64
  category_vigintile: 3
  eigenfactor: 0.01754
  immediacy_index: 1.215
  impact_factor: 5.332
  impact_factor_5yr: 5.219
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 4
  prev_impact_factor: 4.016
  total_cites: 25817
keyword:
- Cure monitoring
- dielectric sensor
- degree of cure
- fully integrated system
- glass transition temperature
language:
- eng
page:
  count: '9'
parent:
  short_title: IEEE Trans. Instrum. Meas.
  title: IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT
project:
- _id: '3E016519'
  abstract: |-
    <p>
    Textiles are ideally suited for technical engineering applications thanks to their unique combination of lightness, flexibility and strength. Especially, fibre reinforced composites are seeing a tremendous growth for designing light-weight structural components. The fibres, the building blocks of any textile, and their arrangement in the textile and the composite (microstructure) determine the macroscopic properties. It is thus of utmost importance that this micro-macro relation is fundamentally understood. The complexity of textiles (complex hierarchical microstructure, highly non-linear behaviour) makes this a challenging problem. By following a multiscale analysis, combining both advanced experimental and numerical techniques, starting with individual fibres and building up till complete nano-interleaved preforms, we get a fundamental understanding of the micro-macro relationships that govern the mechanical behaviour of textile materials. These insights are of crucial importance for the further development of high-end nano-enabled composites and are extendable to many other technical textile applications as well.

    </p>
  end_date: 2022-09-30
  gismo_id: 3c0a4b92-b36f-11e9-9b22-19a03077e1f4
  iweto_id: '3E016519'
  start_date: 2019-10-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Fully integrated flexible dielectric monitoring sensor system for real-time
  in situ prediction of the degree of cure and glass transition temperature of an
  epoxy resin
type: journalArticle
volume: '70'
wos_id: '000636274000123'
wos_type: Article
year: '2021'
...
---
_id: '8694251'
abstract:
- The development of well-designed polylactic acid (PLA) based composite filaments
  through fused filament fabrication (FFF) is crucial, as PLA printed parts are characterized
  by a high brittleness. Here we focus on FFF composite formation using ductile poly
  (butylene adipate-co-terephthalate) (PBAT), the nanoclay cloisite and the chain
  extender Joncryl. A high modulus, flexibility, toughness and notched impact strength
  result upon combining PLA/PBAT (80:20; mass basis) with a sufficiently high cloisite
  amount (1-5 phr) supported by a suited Joncryl amount (0.3 phr). A fine PBAT dispersion
  is then ensured, as confirmed by scanning and transmission electron microscopy.
  For high cloisite amounts (e.g. 10 phr) the crystallinity and vicat softening temperature
  enhance but cloisite aggregation is unavoidable, leading to a strong reduction in
  tensile strain and toughness. Annealing increases crystallinity thus material strength,
  rigidity and impact, at least partially overruling the need of a fine dispersion.
  Novel radar charts are also reported to select an optimal bio-based blend suitable
  for different end-user applications by adjusting the composition and possible post-annealing
  of printed products.
abstract_full:
- lang: eng
  text: The development of well-designed polylactic acid (PLA) based composite filaments
    through fused filament fabrication (FFF) is crucial, as PLA printed parts are
    characterized by a high brittleness. Here we focus on FFF composite formation
    using ductile poly (butylene adipate-co-terephthalate) (PBAT), the nanoclay cloisite
    and the chain extender Joncryl. A high modulus, flexibility, toughness and notched
    impact strength result upon combining PLA/PBAT (80:20; mass basis) with a sufficiently
    high cloisite amount (1-5 phr) supported by a suited Joncryl amount (0.3 phr).
    A fine PBAT dispersion is then ensured, as confirmed by scanning and transmission
    electron microscopy. For high cloisite amounts (e.g. 10 phr) the crystallinity
    and vicat softening temperature enhance but cloisite aggregation is unavoidable,
    leading to a strong reduction in tensile strain and toughness. Annealing increases
    crystallinity thus material strength, rigidity and impact, at least partially
    overruling the need of a fine dispersion. Novel radar charts are also reported
    to select an optimal bio-based blend suitable for different end-user applications
    by adjusting the composition and possible post-annealing of printed products.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Morphology (ceased 1-1-2022)
  path:
  - ugent_id: UGent
  - ugent_id: DI
  - ugent_id: DI03
  ugent_id: DI03
article_number: '108613'
article_type: original
author:
- _id: D11A4204-79FD-11E6-A1F1-3577B5D1D7B1
  biblio_id: D11A4204-79FD-11E6-A1F1-3577B5D1D7B1
  first_name: Sisi
  last_name: Wang
  name: Sisi Wang
  name_last_first: Wang, Sisi
  ugent_id:
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  - '802002436857'
  - '979929499370'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
- _id: 0F0B79D6-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: DI
    - ugent_id: DI11
    ugent_id: DI11
  biblio_id: 0F0B79D6-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Liesbeth
  last_name: Couck
  name: Liesbeth Couck
  name_last_first: Couck, Liesbeth
  orcid_id: 0000-0002-7965-4992
  ugent_id:
  - '802001945591'
  - '915273238883'
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- _id: F4D510AE-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: DI
    - ugent_id: DI11
    ugent_id: DI11
  biblio_id: F4D510AE-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Den Broeck
  name: Wim Van Den Broeck
  name_last_first: Van Den Broeck, Wim
  orcid_id: 0000-0001-6683-5658
  ugent_id:
  - '801000970865'
  - '975971404771'
- _id: F67E7CE2-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: DI
    - ugent_id: DI11
    ugent_id: DI11
  biblio_id: F67E7CE2-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Pieter
  last_name: Cornillie
  name: Pieter Cornillie
  name_last_first: Cornillie, Pieter
  orcid_id: 0000-0003-4412-3427
  ugent_id:
  - '801001653202'
  - '971128432019'
- first_name: Maling
  last_name: Gou
  name: Maling Gou
  name_last_first: Gou, Maling
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F8DDCF06-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F8DDCF06-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Ludwig
  last_name: Cardon
  name: Ludwig Cardon
  name_last_first: Cardon, Ludwig
  orcid_id: 0000-0002-4019-612X
  ugent_id:
  - '802000179080'
  - '972410561043'
biblio_id: '8694251'
cite:
  apa: |2
      <div class="csl-entry">Wang, S., Daelemans, L., D’hooge, D., Couck, L., Van Den Broeck, W., Cornillie, P., … Cardon, L. (2021). Lifting the quality of fused filament fabrication of polylactic acid based composites. <i>COMPOSITES PART B-ENGINEERING</i>, <i>210</i>. https://doi.org/10.1016/j.compositesb.2021.108613</div>
  chicago-author-date: |2
      <div class="csl-entry">Wang, Sisi, Lode Daelemans, Dagmar D’hooge, Liesbeth Couck, Wim Van Den Broeck, Pieter Cornillie, Maling Gou, Karen De Clerck, and Ludwig Cardon. 2021. “Lifting the Quality of Fused Filament Fabrication of Polylactic Acid Based Composites.” <i>COMPOSITES PART B-ENGINEERING</i> 210. https://doi.org/10.1016/j.compositesb.2021.108613.</div>
  fwo: |2
      <div class="csl-entry">Wang, Sisi, Lode Daelemans, Dagmar D’hooge, Liesbeth Couck, Wim Van Den Broeck, Pieter Cornillie, Maling Gou, Karen De Clerck, and Ludwig Cardon. 2021. “Lifting the Quality of Fused Filament Fabrication of Polylactic Acid Based Composites.” <i>COMPOSITES PART B-ENGINEERING</i> 210. doi:10.1016/j.compositesb.2021.108613.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. Wang <i>et al.</i>, “Lifting the quality of fused filament fabrication of polylactic acid based composites,” <i>COMPOSITES PART B-ENGINEERING</i>, vol. 210, 2021.</div>
      </div>
  mla: |2
      <div class="csl-entry">Wang, Sisi, et al. “Lifting the Quality of Fused Filament Fabrication of Polylactic Acid Based Composites.” <i>COMPOSITES PART B-ENGINEERING</i>, vol. 210, 2021, doi:10.1016/j.compositesb.2021.108613.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Wang S, Daelemans L, D’hooge D, Couck L, Van Den Broeck W, Cornillie P, et al. Lifting the quality of fused filament fabrication of polylactic acid based composites. COMPOSITES PART B-ENGINEERING. 2021;210.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: 798BCFF0-0208-11E3-BADE-15C210BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 798BCFF0-0208-11E3-BADE-15C210BDE39D
  first_name: Paulien
  last_name: Baeyens
  name: Paulien Baeyens
  name_last_first: Baeyens, Paulien
  ugent_id:
  - '802002698757'
  - '974253404530'
date_created: 2021-02-17 15:15:10
date_updated: 2026-03-31 14:57:12
doi:
- 10.1016/j.compositesb.2021.108613
external: 0
file:
- _id: '8694252'
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  content_type: application/pdf
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  publication_version: publishedVersion
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  url: https://biblio.ugent.be/publication/8694251/file/8694252.pdf
handle: http://hdl.handle.net/1854/LU-8694251
issn:
- 1359-8368
- 1879-1069
jcr:
  category: ENGINEERING, MULTIDISCIPLINARY
  category_decile: 1
  category_quartile: 1
  category_rank: 2/92
  category_vigintile: 1
  eigenfactor: 0.05986
  immediacy_index: 2.8
  impact_factor: 11.322
  impact_factor_5yr: 10.133
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 1
  prev_impact_factor: 9.078
  total_cites: 67575
keyword:
- Mechanical Engineering
- Industrial and Manufacturing Engineering
- Mechanics of Materials
- Ceramics and Composites
- Biopolymers
- Additive manufacturing
- Composites
- Thermo-mechanical properties
language:
- eng
page:
  count: '10'
parent:
  short_title: Compos. Pt. B-Eng.
  title: COMPOSITES PART B-ENGINEERING
project:
- _id: '3E016519'
  abstract: |-
    <p>
    Textiles are ideally suited for technical engineering applications thanks to their unique combination of lightness, flexibility and strength. Especially, fibre reinforced composites are seeing a tremendous growth for designing light-weight structural components. The fibres, the building blocks of any textile, and their arrangement in the textile and the composite (microstructure) determine the macroscopic properties. It is thus of utmost importance that this micro-macro relation is fundamentally understood. The complexity of textiles (complex hierarchical microstructure, highly non-linear behaviour) makes this a challenging problem. By following a multiscale analysis, combining both advanced experimental and numerical techniques, starting with individual fibres and building up till complete nano-interleaved preforms, we get a fundamental understanding of the micro-macro relationships that govern the mechanical behaviour of textile materials. These insights are of crucial importance for the further development of high-end nano-enabled composites and are extendable to many other technical textile applications as well.

    </p>
  end_date: 2022-09-30
  gismo_id: 3c0a4b92-b36f-11e9-9b22-19a03077e1f4
  iweto_id: '3E016519'
  start_date: 2019-10-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Lifting the quality of fused filament fabrication of polylactic acid based
  composites
type: journalArticle
volume: '210'
wos_id: '000632868200002'
wos_type: Article
year: '2021'
...
---
_id: '8721695'
abstract:
- Combining the dimensional freedom of additive manufacturing and the mechanical prowess
  of continuous fiber reinforced composites has been a highly anticipated object of
  study for the last years.
abstract_full:
- lang: eng
  text: Combining the dimensional freedom of additive manufacturing and the mechanical
    prowess of continuous fiber reinforced composites has been a highly anticipated
    object of study for the last years.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: '287'
author:
- _id: EE9A9EBA-F0EE-11E1-A197-91C894A0A6B4
  biblio_id: EE9A9EBA-F0EE-11E1-A197-91C894A0A6B4
  first_name: Sander
  last_name: Rijckaert
  name: Sander Rijckaert
  name_last_first: Rijckaert, Sander
  orcid_id: 0000-0003-4447-0867
  ugent_id:
  - '977613653975'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8721695'
cite:
  apa: |2
      <div class="csl-entry">Rijckaert, S., Daelemans, L., &#38; De Clerck, K. (2021). Building the third dimension : microstructure and mechanics of Additive Manufactured continuous Aramid fiber/PETG composites with variable fiber content through in-nozzle impregnation. In F. Ferreira, A. M. Rocha, R. Fangueiro, A. Marques, &#38; A. Zille (Eds.), <i>AUTEX 2021, 20th World Textile Conference, Abstracts</i> (pp. 463–464). AUTEX.</div>
  bof: |2
      <div class="csl-entry">Rijckaert, Sander, Lode Daelemans, and Karen De Clerck. 2021. “Building the Third Dimension : Microstructure and Mechanics of Additive Manufactured Continuous Aramid Fiber/PETG Composites with Variable Fiber Content through in-Nozzle Impregnation.” In <i>AUTEX 2021, 20th World Textile Conference, Abstracts</i>, ed by. Fernando Ferreira, A. M. Rocha, R. Fangueiro, A. Marques, and A. Zille, 463–464. AUTEX.</div>
  chicago-author-date: |2
      <div class="csl-entry">Rijckaert, Sander, Lode Daelemans, and Karen De Clerck. 2021. “Building the Third Dimension : Microstructure and Mechanics of Additive Manufactured Continuous Aramid Fiber/PETG Composites with Variable Fiber Content through in-Nozzle Impregnation.” In <i>AUTEX 2021, 20th World Textile Conference, Abstracts</i>, edited by Fernando Ferreira, A. M. Rocha, R. Fangueiro, A. Marques, and A. Zille, 463–64. AUTEX.</div>
  fwo: |2
      <div class="csl-entry">Rijckaert, Sander, Lode Daelemans, and Karen De Clerck. 2021. “Building the Third Dimension : Microstructure and Mechanics of Additive Manufactured Continuous Aramid Fiber/PETG Composites with Variable Fiber Content through in-Nozzle Impregnation.” In <i>AUTEX 2021, 20th World Textile Conference, Abstracts</i>, ed by. Fernando Ferreira, A. M. Rocha, R. Fangueiro, A. Marques, and A. Zille, 463–464. AUTEX.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. Rijckaert, L. Daelemans, and K. De Clerck, “Building the third dimension : microstructure and mechanics of Additive Manufactured continuous Aramid fiber/PETG composites with variable fiber content through in-nozzle impregnation,” in <i>AUTEX 2021, 20th World Textile Conference, Abstracts</i>, Guimarães, Portugal (online), 2021, pp. 463–464.</div>
      </div>
  mla: |2
      <div class="csl-entry">Rijckaert, Sander, et al. “Building the Third Dimension : Microstructure and Mechanics of Additive Manufactured Continuous Aramid Fiber/PETG Composites with Variable Fiber Content through in-Nozzle Impregnation.” <i>AUTEX 2021, 20th World Textile Conference, Abstracts</i>, edited by Fernando Ferreira et al., AUTEX, 2021, pp. 463–64.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Rijckaert S, Daelemans L, De Clerck K. Building the third dimension : microstructure and mechanics of Additive Manufactured continuous Aramid fiber/PETG composites with variable fiber content through in-nozzle impregnation. In: Ferreira F, Rocha AM, Fangueiro R, Marques A, Zille A, editors. AUTEX 2021, 20th World Textile Conference, Abstracts. AUTEX; 2021. p. 463–4.</div>
       </div>
classification: C3
conference:
  end_date: 2021-09-09
  location: Guimarães, Portugal (online)
  name: AUTEX 2021 - 20th World Textile Conference
  organizer: University of Minho
  start_date: 2021-09-05
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2021-09-28 12:55:17
date_updated: 2026-03-31 14:57:11
editor:
- first_name: Fernando
  last_name: Ferreira
  name: Fernando Ferreira
  name_last_first: Ferreira, Fernando
- first_name: A. M.
  last_name: Rocha
  name: A. M. Rocha
  name_last_first: Rocha, A. M.
- first_name: R.
  last_name: Fangueiro
  name: R. Fangueiro
  name_last_first: Fangueiro, R.
- first_name: A.
  last_name: Marques
  name: A. Marques
  name_last_first: Marques, A.
- first_name: A.
  last_name: Zille
  name: A. Zille
  name_last_first: Zille, A.
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-8721695
isbn:
- '9789895480869'
jcr: {}
language:
- eng
page:
  first: '463'
  last: '464'
parent:
  title: AUTEX 2021, 20th World Textile Conference, Abstracts
project:
- _id: '3E016519'
  abstract: |-
    <p>
    Textiles are ideally suited for technical engineering applications thanks to their unique combination of lightness, flexibility and strength. Especially, fibre reinforced composites are seeing a tremendous growth for designing light-weight structural components. The fibres, the building blocks of any textile, and their arrangement in the textile and the composite (microstructure) determine the macroscopic properties. It is thus of utmost importance that this micro-macro relation is fundamentally understood. The complexity of textiles (complex hierarchical microstructure, highly non-linear behaviour) makes this a challenging problem. By following a multiscale analysis, combining both advanced experimental and numerical techniques, starting with individual fibres and building up till complete nano-interleaved preforms, we get a fundamental understanding of the micro-macro relationships that govern the mechanical behaviour of textile materials. These insights are of crucial importance for the further development of high-end nano-enabled composites and are extendable to many other technical textile applications as well.

    </p>
  end_date: 2022-09-30
  gismo_id: 3c0a4b92-b36f-11e9-9b22-19a03077e1f4
  iweto_id: '3E016519'
  start_date: 2019-10-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
publication_status: published
publication_status_sort: 2
publisher:
  name: AUTEX
status: public
subject:
- Technology and Engineering
title: 'Building the third dimension : microstructure and mechanics of Additive Manufactured
  continuous Aramid fiber/PETG composites with variable fiber content through in-nozzle
  impregnation'
type: conference
year: '2021'
...
---
_id: '8719114'
abstract:
- Wound dressings are high performance and high value products which can improve the
  regeneration of damaged skin. In these products, bioresorption and biocompatibility
  play a key role. The aim of this study is to provide progress in this area via nanofabrication
  and antimicrobial natural materials. Polyhydroxyalkanoates (PHAs) are a bio-based
  family of polymers that possess high biocompatibility and skin regenerative properties.
  In this study, a blend of poly(3-hydroxybutyrate) (P(3HB)) and poly(3-hydroxyoctanoate-co-3-hydroxy
  decanoate) (P(3HO-co-3HD)) was electrospun into P(3HB))/P(3HO-co-3HD) nanofibers
  to obtain materials with a high surface area and good handling performance. The
  nanofibers were then modified with silver nanoparticles (AgNPs) via the dip-coating
  method. The silver-containing nanofiber meshes showed good cytocompatibility and
  interesting immunomodulatory properties in vitro, together with the capability of
  stimulating the human beta defensin 2 and cytokeratin expression in human keratinocytes
  (HaCaT cells), which makes them promising materials for wound dressing applications.
abstract_full:
- lang: eng
  text: Wound dressings are high performance and high value products which can improve
    the regeneration of damaged skin. In these products, bioresorption and biocompatibility
    play a key role. The aim of this study is to provide progress in this area via
    nanofabrication and antimicrobial natural materials. Polyhydroxyalkanoates (PHAs)
    are a bio-based family of polymers that possess high biocompatibility and skin
    regenerative properties. In this study, a blend of poly(3-hydroxybutyrate) (P(3HB))
    and poly(3-hydroxyoctanoate-co-3-hydroxy decanoate) (P(3HO-co-3HD)) was electrospun
    into P(3HB))/P(3HO-co-3HD) nanofibers to obtain materials with a high surface
    area and good handling performance. The nanofibers were then modified with silver
    nanoparticles (AgNPs) via the dip-coating method. The silver-containing nanofiber
    meshes showed good cytocompatibility and interesting immunomodulatory properties
    in vitro, together with the capability of stimulating the human beta defensin
    2 and cytokeratin expression in human keratinocytes (HaCaT cells), which makes
    them promising materials for wound dressing applications.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: '4907'
article_type: original
author:
- _id: 23C336CA-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 23C336CA-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Özlem İpek
  last_name: Kalaoglu Altan
  name: Özlem İpek Kalaoglu Altan
  name_last_first: Kalaoglu Altan, Özlem İpek
  ugent_id:
  - '000091814136'
  - '802003037550'
  - '975697430594'
- _id: FD1D00E4-202C-11E9-BF9B-1E415707D3EF
  biblio_id: FD1D00E4-202C-11E9-BF9B-1E415707D3EF
  first_name: Havva
  last_name: Başkan
  name: Havva Başkan
  name_last_first: Başkan, Havva
  ugent_id:
  - '000181437082'
  - '978594688030'
- _id: 2D12E8D8-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 2D12E8D8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Timo
  last_name: Meireman
  name: Timo Meireman
  name_last_first: Meireman, Timo
  ugent_id:
  - '972580996713'
- first_name: Pooja
  last_name: Basnett
  name: Pooja Basnett
  name_last_first: Basnett, Pooja
- first_name: Bahareh
  last_name: Azimi
  name: Bahareh Azimi
  name_last_first: Azimi, Bahareh
- first_name: Alessandra
  last_name: Fusco
  name: Alessandra Fusco
  name_last_first: Fusco, Alessandra
- first_name: Niccola
  last_name: Funel
  name: Niccola Funel
  name_last_first: Funel, Niccola
- first_name: Giovanna
  last_name: Donnarumma
  name: Giovanna Donnarumma
  name_last_first: Donnarumma, Giovanna
- first_name: Andrea
  last_name: Lazzeri
  name: Andrea Lazzeri
  name_last_first: Lazzeri, Andrea
- first_name: Ipsita
  last_name: Roy
  name: Ipsita Roy
  name_last_first: Roy, Ipsita
- first_name: Serena
  last_name: Danti
  name: Serena Danti
  name_last_first: Danti, Serena
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8719114'
cite:
  apa: |2
      <div class="csl-entry">Kalaoglu Altan, Ö. İ., Başkan, H., Meireman, T., Basnett, P., Azimi, B., Fusco, A., … De Clerck, K. (2021). Silver nanoparticle-coated polyhydroxyalkanoate based electrospun fibers for wound dressing applications. <i>MATERIALS</i>, <i>14</i>(17). https://doi.org/10.3390/ma14174907</div>
  bof: |2-
      <div class="csl-entry">Kalaoglu Altan, Özlem İpek, Havva Başkan, Timo Meireman, Pooja Basnett, Bahareh Azimi, Alessandra Fusco, Niccola Funel, Giovanna Donnarumma, Andrea Lazzeri, Ipsita Roy, Serena Danti, and Karen De Clerck. 2021. “Silver Nanoparticle-Coated Polyhydroxyalkanoate Based Electrospun Fibers for Wound Dressing Applications.” <i>MATERIALS</i> 14 (17). doi:10.3390/ma14174907.</div>
    <div><i>Impact factor: 3.748, category: METALLURGY & METALLURGICAL ENGINEERING, rank: 18/79, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Kalaoglu Altan, Özlem İpek, Havva Başkan, Timo Meireman, Pooja Basnett, Bahareh Azimi, Alessandra Fusco, Niccola Funel, et al. 2021. “Silver Nanoparticle-Coated Polyhydroxyalkanoate Based Electrospun Fibers for Wound Dressing Applications.” <i>MATERIALS</i> 14 (17). https://doi.org/10.3390/ma14174907.</div>
  fwo: |2
      <div class="csl-entry">Kalaoglu Altan, Özlem İpek, Havva Başkan, Timo Meireman, Pooja Basnett, Bahareh Azimi, Alessandra Fusco, Niccola Funel, Giovanna Donnarumma, Andrea Lazzeri, Ipsita Roy, Serena Danti, and Karen De Clerck. 2021. “Silver Nanoparticle-Coated Polyhydroxyalkanoate Based Electrospun Fibers for Wound Dressing Applications.” <i>MATERIALS</i> 14 (17). doi:10.3390/ma14174907.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Ö. İ. Kalaoglu Altan <i>et al.</i>, “Silver nanoparticle-coated polyhydroxyalkanoate based electrospun fibers for wound dressing applications,” <i>MATERIALS</i>, vol. 14, no. 17, 2021.</div>
      </div>
  mla: |2
      <div class="csl-entry">Kalaoglu Altan, Özlem İpek, et al. “Silver Nanoparticle-Coated Polyhydroxyalkanoate Based Electrospun Fibers for Wound Dressing Applications.” <i>MATERIALS</i>, vol. 14, no. 17, 2021, doi:10.3390/ma14174907.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Kalaoglu Altan Öİ, Başkan H, Meireman T, Basnett P, Azimi B, Fusco A, et al. Silver nanoparticle-coated polyhydroxyalkanoate based electrospun fibers for wound dressing applications. MATERIALS. 2021;14(17).</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution 4.0 International Public License
  (CC-BY 4.0)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2021-09-03 09:27:44
date_updated: 2023-05-08 11:53:18
doi:
- 10.3390/ma14174907
external: 0
file:
- _id: '8719142'
  access: open
  content_type: application/pdf
  kind: fullText
  name: Silver_Nanoparticle-Coated_Polyhydroxyalkanoate_Based_Electrospun_Fibers_for_Wound_Dressing_Applications.pdf
  publication_version: publishedVersion
  sha256: a04d08a453a951793a50dad10b275e2b4c1c4c5e7012a2f2ccbb83ea5ce193a4
  size: '5748258'
  thumbnail_url: https://biblio.ugent.be/publication/8719114/file/8719142/thumbnail.png
  url: https://biblio.ugent.be/publication/8719114/file/8719142.pdf
handle: http://hdl.handle.net/1854/LU-8719114
issn:
- 1996-1944
issue: '17'
issue_title: Low-impact polymer nanofibers and applications
jcr:
  category: METALLURGY & METALLURGICAL ENGINEERING
  category_decile: 3
  category_quartile: 1
  category_rank: 18/79
  category_vigintile: 5
  eigenfactor: 0.07693
  immediacy_index: 0.835
  impact_factor: 3.748
  impact_factor_5yr: 4.042
  prev_category_decile: 3
  prev_category_quartile: 1
  prev_category_vigintile: 5
  prev_impact_factor: 3.623
  total_cites: 78439
keyword:
- General Materials Science
- polyhydroxyalkanoates
- eco-friendly nanofibers
- wound dressings
- low-impact biomedical applications
- immunomodulation
- defensin
- keratinocytes
language:
- eng
page:
  count: '17'
parent:
  short_title: Materials
  title: MATERIALS
project:
- _id: 41A09117
  abstract: '<p>Personal care, Cosmetic and biomedical industries deal with high-value
    and/or large volume consumption of polymer-based products which are often derived
    from fossil sources. Although a number of alternative bio-based polymers is the
    subject of recent research, more effort is still needed to increase their specific
    functionalities and performances in order to proceed with their true translation
    into market. PolyBioSkin aims at developing skin-contact biopolymer-based product
    parts with increased performance and functionality, such as parts of diapers,
    cosmetic pads and wound dressings. Indeed, PolyBioSkin will focus on two main
    classes of bio-based polymers relevant for next generation bio-based industry:
    biopolyesters (polylactic acid and polyhydroxyalkanoates) because fully renewable,
    biocompatible and biodegradable and available at an industrial scale, and natural
    polysaccharides (cellulose/starch and chitin/chitosan), derived from biomass and
    food waste, for their peculiar properties, such as absorbency and anti-infectivity.
    <br />Films and textiles will be produced starting from these polymers and their
    combinations to prove that key products and/or product parts in sanitary, cosmetic
    and biomedical industry can be effectively translated from a fossil-derived to
    bio-based polymer production. PolyBioSkin will provide to skin-contact products
    a much more environmentally friendly end of life than the current accumulation
    in landfills or incineration, thanks to their biodegradability allowing the organic
    recycling.</p>'
  end_date: 2020-07-31
  eu_acronym: PolyBioSkin
  eu_call_id: H20.RIA.2017.0006,01
  eu_framework_programme: H2020
  eu_id: '745839'
  gismo_id: 035f6009-5e69-457b-8ff6-598f0e66069f
  iweto_id: 41A09117
  start_date: 2017-06-01
  title: PolyBioSkin
publication_status: published
publication_status_sort: 2
pubmed_id: '34500997'
status: public
subject:
- Technology and Engineering
title: Silver nanoparticle-coated polyhydroxyalkanoate based electrospun fibers for
  wound dressing applications
type: journalArticle
volume: '14'
wos_id: '000694323800001'
wos_type: Article
year: '2021'
...
---
_id: '8719144'
abstract:
- 'Olive tree is a well-known source of polyphenols. We prepared an olive leaf extract
  (OLE) and characterized it via high performance liquid chromatography (HPLC) analysis.
  OLE was blended with different polyhydroxyalkanoates (PHAs), namely, poly(hydroxybutyrate-co-hydroxyvalerate)
  (PHBHV) and polyhydroxybutyrate/poly(hydroxyoctanoate-co-hydroxydecanoate) (PHB/PHOHD),
  to produce fiber meshes via electrospinning: OLE/PHBV and OLE/ (PHB/PHOHD), respectively.
  An 80–90% (w/w%) release of the main polyphenols from the OLE/PHA fibers occurred
  in 24 h, with a burst release in the first 30 min. OLE and the produced fiber meshes
  were assayed using human dermal keratinocytes (HaCaT cells) to evaluate the expression
  of a panel of cytokines involved in the inflammatory process and innate immune response,
  such as the antimicrobial peptide human beta defensin 2 (HBD-2). Fibers containing
  OLE were able to decrease the expression of the pro-inflammatory cytokines at 6
  h up to 24 h. All the PHA fibers allowed an early downregulation of the pro-inflammatory
  cytokines in 6 h, which is suggestive of a strong anti-inflammatory activity exerted
  by PHA fibers. Differently from pure OLE, PHB/PHOHD fibers (both with and without
  OLE) upregulated the expression of HBD-2. Our results showed that PHA fiber meshes
  are suitable in decreasing pro-inflammatory cytokines and the incorporation of OLE
  may enable indirect antibacterial properties, which is essential in wound healing
  and tissue regeneration.'
abstract_full:
- lang: eng
  text: 'Olive tree is a well-known source of polyphenols. We prepared an olive leaf
    extract (OLE) and characterized it via high performance liquid chromatography
    (HPLC) analysis. OLE was blended with different polyhydroxyalkanoates (PHAs),
    namely, poly(hydroxybutyrate-co-hydroxyvalerate) (PHBHV) and polyhydroxybutyrate/poly(hydroxyoctanoate-co-hydroxydecanoate)
    (PHB/PHOHD), to produce fiber meshes via electrospinning: OLE/PHBV and OLE/ (PHB/PHOHD),
    respectively. An 80–90% (w/w%) release of the main polyphenols from the OLE/PHA
    fibers occurred in 24 h, with a burst release in the first 30 min. OLE and the
    produced fiber meshes were assayed using human dermal keratinocytes (HaCaT cells)
    to evaluate the expression of a panel of cytokines involved in the inflammatory
    process and innate immune response, such as the antimicrobial peptide human beta
    defensin 2 (HBD-2). Fibers containing OLE were able to decrease the expression
    of the pro-inflammatory cytokines at 6 h up to 24 h. All the PHA fibers allowed
    an early downregulation of the pro-inflammatory cytokines in 6 h, which is suggestive
    of a strong anti-inflammatory activity exerted by PHA fibers. Differently from
    pure OLE, PHB/PHOHD fibers (both with and without OLE) upregulated the expression
    of HBD-2. Our results showed that PHA fiber meshes are suitable in decreasing
    pro-inflammatory cytokines and the incorporation of OLE may enable indirect antibacterial
    properties, which is essential in wound healing and tissue regeneration.'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: '4006'
article_type: original
author:
- first_name: Jose Gustavo
  last_name: De la Ossa
  name: Jose Gustavo De la Ossa
  name_last_first: De la Ossa, Jose Gustavo
- first_name: Alessandra
  last_name: Fusco
  name: Alessandra Fusco
  name_last_first: Fusco, Alessandra
- first_name: Bahareh
  last_name: Azimi
  name: Bahareh Azimi
  name_last_first: Azimi, Bahareh
- first_name: Jasmine
  last_name: Esposito Salsano
  name: Jasmine Esposito Salsano
  name_last_first: Esposito Salsano, Jasmine
- first_name: Maria
  last_name: Digiacomo
  name: Maria Digiacomo
  name_last_first: Digiacomo, Maria
- first_name: Maria-Beatrice
  last_name: Coltelli
  name: Maria-Beatrice Coltelli
  name_last_first: Coltelli, Maria-Beatrice
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- first_name: Ipsita
  last_name: Roy
  name: Ipsita Roy
  name_last_first: Roy, Ipsita
- first_name: Marco
  last_name: Macchia
  name: Marco Macchia
  name_last_first: Macchia, Marco
- first_name: Andrea
  last_name: Lazzeri
  name: Andrea Lazzeri
  name_last_first: Lazzeri, Andrea
- first_name: Giovanna
  last_name: Donnarumma
  name: Giovanna Donnarumma
  name_last_first: Donnarumma, Giovanna
- first_name: Serena
  last_name: Danti
  name: Serena Danti
  name_last_first: Danti, Serena
- first_name: Rossella
  last_name: Di Stefano
  name: Rossella Di Stefano
  name_last_first: Di Stefano, Rossella
biblio_id: '8719144'
cite:
  apa: |2
      <div class="csl-entry">De la Ossa, J. G., Fusco, A., Azimi, B., Esposito Salsano, J., Digiacomo, M., Coltelli, M.-B., … Di Stefano, R. (2021). Immunomodulatory activity of electrospun polyhydroxyalkanoate fiber scaffolds incorporating olive leaf extract. <i>APPLIED SCIENCES-BASEL</i>, <i>11</i>(9). https://doi.org/10.3390/app11094006</div>
  bof: |2-
      <div class="csl-entry">De la Ossa, Jose Gustavo, Alessandra Fusco, Bahareh Azimi, Jasmine Esposito Salsano, Maria Digiacomo, Maria-Beatrice Coltelli, Karen De Clerck, Ipsita Roy, Marco Macchia, Andrea Lazzeri, Giovanna Donnarumma, Serena Danti, and Rossella Di Stefano. 2021. “Immunomodulatory Activity of Electrospun Polyhydroxyalkanoate Fiber Scaffolds Incorporating Olive Leaf Extract.” <i>APPLIED SCIENCES-BASEL</i> 11 (9). doi:10.3390/app11094006.</div>
    <div><i>Impact factor: 2.838, category: ENGINEERING, MULTIDISCIPLINARY, rank: 39/92, quartile: 2.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">De la Ossa, Jose Gustavo, Alessandra Fusco, Bahareh Azimi, Jasmine Esposito Salsano, Maria Digiacomo, Maria-Beatrice Coltelli, Karen De Clerck, et al. 2021. “Immunomodulatory Activity of Electrospun Polyhydroxyalkanoate Fiber Scaffolds Incorporating Olive Leaf Extract.” <i>APPLIED SCIENCES-BASEL</i> 11 (9). https://doi.org/10.3390/app11094006.</div>
  fwo: |2
      <div class="csl-entry">De la Ossa, Jose Gustavo, Alessandra Fusco, Bahareh Azimi, Jasmine Esposito Salsano, Maria Digiacomo, Maria-Beatrice Coltelli, Karen De Clerck, Ipsita Roy, Marco Macchia, Andrea Lazzeri, Giovanna Donnarumma, Serena Danti, and Rossella Di Stefano. 2021. “Immunomodulatory Activity of Electrospun Polyhydroxyalkanoate Fiber Scaffolds Incorporating Olive Leaf Extract.” <i>APPLIED SCIENCES-BASEL</i> 11 (9). doi:10.3390/app11094006.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">J. G. De la Ossa <i>et al.</i>, “Immunomodulatory activity of electrospun polyhydroxyalkanoate fiber scaffolds incorporating olive leaf extract,” <i>APPLIED SCIENCES-BASEL</i>, vol. 11, no. 9, 2021.</div>
      </div>
  mla: |2
      <div class="csl-entry">De la Ossa, Jose Gustavo, et al. “Immunomodulatory Activity of Electrospun Polyhydroxyalkanoate Fiber Scaffolds Incorporating Olive Leaf Extract.” <i>APPLIED SCIENCES-BASEL</i>, vol. 11, no. 9, 2021, doi:10.3390/app11094006.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De la Ossa JG, Fusco A, Azimi B, Esposito Salsano J, Digiacomo M, Coltelli M-B, et al. Immunomodulatory activity of electrospun polyhydroxyalkanoate fiber scaffolds incorporating olive leaf extract. APPLIED SCIENCES-BASEL. 2021;11(9).</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution 4.0 International Public License
  (CC-BY 4.0)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2021-09-03 11:30:17
date_updated: 2023-05-08 11:53:18
doi:
- 10.3390/app11094006
external: 0
file:
- _id: '8719146'
  access: open
  content_type: application/pdf
  kind: fullText
  name: Immunomodulatory_Activity_of_Electrospun_Polyhydroxyalkanoate_Fiber_Scaffolds_Incorporating_Olive_Leaf_Extract.pdf
  publication_version: publishedVersion
  sha256: c5df9f1fb544caa156eb0540ab6c1f7b1489af998c3680bd28bb7e314d246ce4
  size: '4207568'
  thumbnail_url: https://biblio.ugent.be/publication/8719144/file/8719146/thumbnail.png
  url: https://biblio.ugent.be/publication/8719144/file/8719146.pdf
handle: http://hdl.handle.net/1854/LU-8719144
issn:
- 2076-3417
issue: '9'
issue_title: Natural compounds with antimicrobial and immunomodulatory activity
jcr:
  category: ENGINEERING, MULTIDISCIPLINARY
  category_decile: 5
  category_quartile: 2
  category_rank: 39/92
  category_vigintile: 9
  eigenfactor: 0.07328
  immediacy_index: 0.681
  impact_factor: 2.838
  impact_factor_5yr: 2.921
  prev_category_decile: 5
  prev_category_quartile: 2
  prev_category_vigintile: 9
  prev_impact_factor: 2.679
  total_cites: 63761
keyword:
- polyphenol
- anti-inflammatory
- antibacterial
- wound healing
- wound dressings
- tissue regeneration
- bio-based
language:
- eng
page:
  count: '15'
parent:
  short_title: Appl. Sci.-Basel
  title: APPLIED SCIENCES-BASEL
project:
- _id: 41A09117
  abstract: '<p>Personal care, Cosmetic and biomedical industries deal with high-value
    and/or large volume consumption of polymer-based products which are often derived
    from fossil sources. Although a number of alternative bio-based polymers is the
    subject of recent research, more effort is still needed to increase their specific
    functionalities and performances in order to proceed with their true translation
    into market. PolyBioSkin aims at developing skin-contact biopolymer-based product
    parts with increased performance and functionality, such as parts of diapers,
    cosmetic pads and wound dressings. Indeed, PolyBioSkin will focus on two main
    classes of bio-based polymers relevant for next generation bio-based industry:
    biopolyesters (polylactic acid and polyhydroxyalkanoates) because fully renewable,
    biocompatible and biodegradable and available at an industrial scale, and natural
    polysaccharides (cellulose/starch and chitin/chitosan), derived from biomass and
    food waste, for their peculiar properties, such as absorbency and anti-infectivity.
    <br />Films and textiles will be produced starting from these polymers and their
    combinations to prove that key products and/or product parts in sanitary, cosmetic
    and biomedical industry can be effectively translated from a fossil-derived to
    bio-based polymer production. PolyBioSkin will provide to skin-contact products
    a much more environmentally friendly end of life than the current accumulation
    in landfills or incineration, thanks to their biodegradability allowing the organic
    recycling.</p>'
  end_date: 2020-07-31
  eu_acronym: PolyBioSkin
  eu_call_id: H20.RIA.2017.0006,01
  eu_framework_programme: H2020
  eu_id: '745839'
  gismo_id: 035f6009-5e69-457b-8ff6-598f0e66069f
  iweto_id: 41A09117
  start_date: 2017-06-01
  title: PolyBioSkin
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Immunomodulatory activity of electrospun polyhydroxyalkanoate fiber scaffolds
  incorporating olive leaf extract
type: journalArticle
volume: '11'
wos_id: '000649921000001'
wos_type: Article
year: '2021'
...
---
_id: '8686070'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
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  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Chemistry
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  - ugent_id: WE06
  ugent_id: WE06
alternative_location:
- access: open
  kind: fullText
  url: https://www.mipol.unimi.it/
- access: open
  kind: fullText
  url: https://www.mipol.unimi.it/Booklet_MIPOL2020.pdf
article_number: IL9
author:
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
- _id: 28DB1308-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 28DB1308-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lies
  last_name: De Keer
  name: Lies De Keer
  name_last_first: De Keer, Lies
  orcid_id: 0000-0003-2620-0046
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  - '802002106754'
  - '971930032541'
- _id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
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    ugent_id: TW11
  biblio_id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  first_name: Eva
  last_name: Loccufier
  name: Eva Loccufier
  name_last_first: Loccufier, Eva
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  - '802002671374'
  - '974161061035'
- first_name: Killic
  last_name: Karsu
  name: Killic Karsu
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- _id: F99156E8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F99156E8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Paul
  last_name: Van Steenberge
  name: Paul Van Steenberge
  name_last_first: Van Steenberge, Paul
  orcid_id: 0000-0001-6244-1299
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  - '975633424843'
- _id: 09189588-D3C7-11E7-943C-6ACCAD28A064
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  first_name: Anastasia
  last_name: Kislyak
  name: Anastasia Kislyak
  name_last_first: Kislyak, Anastasia
  ugent_id:
  - '976068385977'
- first_name: Hendrik
  last_name: Frisch
  name: Hendrik Frisch
  name_last_first: Frisch, Hendrik
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
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    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
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- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
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  - '978828372447'
- _id: F429FA8E-F0ED-11E1-A9DE-61C894A0A6B4
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F429FA8E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Marie-Françoise
  last_name: Reyniers
  name: Marie-Françoise Reyniers
  name_last_first: Reyniers, Marie-Françoise
  ugent_id:
  - '801000590040'
  - '001960946643'
- first_name: Christopher
  last_name: Barner-kowollik
  name: Christopher Barner-kowollik
  name_last_first: Barner-kowollik, Christopher
- first_name: R. W.
  last_name: Dauskardt
  name: R. W. Dauskardt
  name_last_first: Dauskardt, R. W.
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
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  - '801000947425'
  - '976215851340'
biblio_id: '8686070'
cite:
  apa: |2
      <div class="csl-entry">D’hooge, D., De Keer, L., Loccufier, E., Karsu, K., Van Steenberge, P., Kislyak, A., … De Clerck, K. (2020). The amazing world of network polymers and their applications. <i>MIPOL2020, Milan Polymer Days, Abstracts</i>, 18–18.</div>
  chicago-author-date: |2
      <div class="csl-entry">D’hooge, Dagmar, Lies De Keer, Eva Loccufier, Killic Karsu, Paul Van Steenberge, Anastasia Kislyak, Hendrik Frisch, et al. 2020. “The Amazing World of Network Polymers and Their Applications.” In <i>MIPOL2020, Milan Polymer Days, Abstracts</i>, 18–18.</div>
  fwo: |2
      <div class="csl-entry">D’hooge, Dagmar, Lies De Keer, Eva Loccufier, Killic Karsu, Paul Van Steenberge, Anastasia Kislyak, Hendrik Frisch, Lode Daelemans, Klaartje De Buysser, Marie-Françoise Reyniers, Christopher Barner-kowollik, R. W. Dauskardt, and Karen De Clerck. 2020. “The Amazing World of Network Polymers and Their Applications.” In <i>MIPOL2020, Milan Polymer Days, Abstracts</i>, 18–18.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">D. D’hooge <i>et al.</i>, “The amazing world of network polymers and their applications,” in <i>MIPOL2020, Milan Polymer Days, Abstracts</i>, Milan, Italy, Online, 2020, pp. 18–18.</div>
      </div>
  mla: |2
      <div class="csl-entry">D’hooge, Dagmar, et al. “The Amazing World of Network Polymers and Their Applications.” <i>MIPOL2020, Milan Polymer Days, Abstracts</i>, 2020, pp. 18–18.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">D’hooge D, De Keer L, Loccufier E, Karsu K, Van Steenberge P, Kislyak A, et al. The amazing world of network polymers and their applications. In: MIPOL2020, Milan Polymer Days, Abstracts. 2020. p. 18–18.</div>
       </div>
classification: C3
conference:
  end_date: 2020-07-17
  location: Milan, Italy, Online
  name: Virtual MIPOL2020 Congress
  start_date: 2020-07-15
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
  _id: 798BCFF0-0208-11E3-BADE-15C210BDE39D
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    ugent_id: TW11
  biblio_id: 798BCFF0-0208-11E3-BADE-15C210BDE39D
  first_name: Paulien
  last_name: Baeyens
  name: Paulien Baeyens
  name_last_first: Baeyens, Paulien
  ugent_id:
  - '802002698757'
  - '974253404530'
date_created: 2021-01-06 13:06:41
date_updated: 2026-03-31 13:20:18
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handle: http://hdl.handle.net/1854/LU-8686070
isbn:
- '9788836230266'
language:
- eng
page:
  count: '1'
  first: '18'
  last: '18'
parent:
  title: MIPOL2020, Milan Polymer Days, Abstracts
project:
- _id: '3E016519'
  abstract: |-
    <p>
    Textiles are ideally suited for technical engineering applications thanks to their unique combination of lightness, flexibility and strength. Especially, fibre reinforced composites are seeing a tremendous growth for designing light-weight structural components. The fibres, the building blocks of any textile, and their arrangement in the textile and the composite (microstructure) determine the macroscopic properties. It is thus of utmost importance that this micro-macro relation is fundamentally understood. The complexity of textiles (complex hierarchical microstructure, highly non-linear behaviour) makes this a challenging problem. By following a multiscale analysis, combining both advanced experimental and numerical techniques, starting with individual fibres and building up till complete nano-interleaved preforms, we get a fundamental understanding of the micro-macro relationships that govern the mechanical behaviour of textile materials. These insights are of crucial importance for the further development of high-end nano-enabled composites and are extendable to many other technical textile applications as well.

    </p>
  end_date: 2022-09-30
  gismo_id: 3c0a4b92-b36f-11e9-9b22-19a03077e1f4
  iweto_id: '3E016519'
  start_date: 2019-10-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
- _id: 01P03418
  abstract: <p>The unique combination of light and flexible, but strong structures,
    makes textile materials well suited for technical engineering applications. Especially,
    fibre reinforced composites are seeing a tremendous growth for designing light-weight
    structural components. The fibres, the building blocks of any textile, and their
    arrangement in the composite (microstructure) determine the obtainable mechanical
    properties. It is thus of utmost importance that the formation of this microstructure
    is fundamentally understood. This enables the optimization of current materials,
    but also the development of advanced, nano-enabled composites by the novel technique
    of interleaving nanofibrous textiles. It is more complex than one would think
    at first sight due to the complicated nature of textiles. For example, composites
    are made by stacking layers of fabrics, whose interaction with each other and
    the tooling can result in unwanted defects or misalignments. This is related to
    the mechanics of the textile material. By following a multi-scale analysis, combining
    both experimental and numerical techniques, starting with individual fibres and
    building up till complete nano-interleaved preforms, we will get a fundamental
    understanding of the micro-macro relationships that govern the mechanics of textile
    materials. These insights are of crucial importance for further development of
    high-end nano-enabled composites, and extendable to many other technical textile
    applications as well.</p>
  end_date: 2019-09-30
  gismo_id: b2c0136d-5a95-11e9-b3e1-37a68b033e1d
  iweto_id: 01P03418
  start_date: 2019-01-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
- _id: 3S009618
  abstract: <p>Nanofibres are fibres with a diameter that is 1000 times smaller than
    a human hair. This makes nanofibrous membranes very light and porous, ideally
    suited for advanced engineering applications in various sectors. By adding a specific
    functionality (for example hydrophobic groups, amines, thiol functions), the application
    field can even be extended. However, the material choice and design are crucial
    for optimal performance. Therefore, several bridged organosilanes, hybrid structures
    with organic and inorganic moieties, will be studied as an alternative starting
    product to make such nanofibrous membranes within this project. They allow for
    highly flexible materials with superior chemical and thermal stability for which,
    moreover, the hydrophobicity can be tuned. These functionalised nanofibers will
    be processed from water and ethanol, which is ecologically more friendly than
    most current nanofiber and membrane production techniques. Applications in the
    field of water purification and chemical conversion are targeted. These <br />applications
    require long-term stable materials and make use of the large specific surface
    area, high porosity and/or large pores of the nanofibrous membranes to target
    more efficient processes.</p>
  end_date: 2022-09-09
  gismo_id: d937d58c-be65-11e9-ace9-8bf558aeac68
  iweto_id: 3S009618
  start_date: 2018-01-01
  title: |-
    Long-term stable organosilica nanofibrous membranes
    functionalised for advanced engineering applications
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
- Chemistry
title: The amazing world of network polymers and their applications
type: conference
year: '2020'
...
---
_id: '8644170'
abstract:
- Natural dyes might be more environmentally sustainable compared to their synthetic
  counterparts, however in general their performance is worse. Therefore, typically
  metallic mordants are applied to improve the natural dye's affinity towards substrates,
  but this is not a suitable technique in a 'green story'. In this paper, we test
  the potential of using anthocyanins from blueberry waste for dyeing cotton with
  biomordants, which are selected to tailor the intermolecular interactions such as
  hydrogen bonds, ionic bonds and pi-pi interactions with the dye molecule. In the
  experimental part, parameters during extraction and dyeing were optimized (e.g.
  temperature, pH, dyeing time and concentration). The effect of the (bio)mordants
  was monitored by Fourier transform infrared spectroscopy, spectrophotometric measurements
  and standard ISO wash and light tests. It was shown that stannous chloride stands
  out as metallic mordant, while no biomordants show sufficient intermolecular interactions
  to replace this metal salt. The experimental study has been corroborated with a
  series of molecular modeling calculations to obtain more insight into the intermolecular
  interactions between dye and (bio)mordants. To this end, both static Density Functional
  Theory based calculations as semi-empirical and force field based molecular dynamics
  calculations have been performed. The results indeed confirm that, in general, too
  small interaction energies for the biomordants of interest with the dye molecules
  are found, in correspondence with experimental findings. Overall, by performing
  systematic experiments in combination with the interpretation of the molecular models,
  this study yields valuable insights into the development of green routes towards
  use of anthocyanins as a natural dye for cellulose-based materials.
abstract_full:
- lang: eng
  text: Natural dyes might be more environmentally sustainable compared to their synthetic
    counterparts, however in general their performance is worse. Therefore, typically
    metallic mordants are applied to improve the natural dye's affinity towards substrates,
    but this is not a suitable technique in a 'green story'. In this paper, we test
    the potential of using anthocyanins from blueberry waste for dyeing cotton with
    biomordants, which are selected to tailor the intermolecular interactions such
    as hydrogen bonds, ionic bonds and pi-pi interactions with the dye molecule. In
    the experimental part, parameters during extraction and dyeing were optimized
    (e.g. temperature, pH, dyeing time and concentration). The effect of the (bio)mordants
    was monitored by Fourier transform infrared spectroscopy, spectrophotometric measurements
    and standard ISO wash and light tests. It was shown that stannous chloride stands
    out as metallic mordant, while no biomordants show sufficient intermolecular interactions
    to replace this metal salt. The experimental study has been corroborated with
    a series of molecular modeling calculations to obtain more insight into the intermolecular
    interactions between dye and (bio)mordants. To this end, both static Density Functional
    Theory based calculations as semi-empirical and force field based molecular dynamics
    calculations have been performed. The results indeed confirm that, in general,
    too small interaction energies for the biomordants of interest with the dye molecules
    are found, in correspondence with experimental findings. Overall, by performing
    systematic experiments in combination with the interpretation of the molecular
    models, this study yields valuable insights into the development of green routes
    towards use of anthocyanins as a natural dye for cellulose-based materials.
affiliation:
- name: Department of Green Chemistry and Technology
  path:
  - ugent_id: UGent
  - ugent_id: LA
  - ugent_id: LA24
  ugent_id: LA24
- name: Department of Applied physics
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW17
  ugent_id: TW17
- name: Department of Physics and astronomy
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE05
  ugent_id: WE05
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Food technology, Safety and Health
  path:
  - ugent_id: UGent
  - ugent_id: LA
  - ugent_id: LA23
  ugent_id: LA23
article_number: '108180'
article_type: original
author:
- _id: 1D7D45A8-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 1D7D45A8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Kim
  last_name: Phan
  name: Kim Phan
  name_last_first: Phan, Kim
  orcid_id: 0000-0001-8660-5251
  ugent_id:
  - '000090124821'
  - '802002578620'
  - '971260175395'
- _id: E6DAAB84-24F3-11E5-AB25-64A3B5D1D7B1
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: E6DAAB84-24F3-11E5-AB25-64A3B5D1D7B1
  first_name: Elias
  last_name: Van Den Broeck
  name: Elias Van Den Broeck
  name_last_first: Van Den Broeck, Elias
  orcid_id: 0000-0002-9609-4333
  ugent_id:
  - '971635909747'
- _id: F542886E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW17
    ugent_id: TW17
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE05
    ugent_id: WE05
  biblio_id: F542886E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Veronique
  last_name: Van Speybroeck
  name: Veronique Van Speybroeck
  name_last_first: Van Speybroeck, Veronique
  orcid_id: 0000-0003-2206-178X
  ugent_id:
  - '801001153549'
  - '919016668139'
  - '976495757166'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F587F796-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA23
    ugent_id: LA23
  biblio_id: F587F796-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Katleen
  last_name: Raes
  name: Katleen Raes
  name_last_first: Raes, Katleen
  orcid_id: 0000-0003-2382-120X
  ugent_id:
  - '801001275508'
  - '973092298160'
- _id: FBC5C354-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA24
    ugent_id: LA24
  biblio_id: FBC5C354-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Steven
  last_name: De Meester
  name: Steven De Meester
  name_last_first: De Meester, Steven
  orcid_id: 0000-0002-5246-3918
  ugent_id:
  - '802000481497'
  - '973680737243'
biblio_id: '8644170'
cite:
  apa: |2
      <div class="csl-entry">Phan, K., Van Den Broeck, E., Van Speybroeck, V., De Clerck, K., Raes, K., &#38; De Meester, S. (2020). The potential of anthocyanins from blueberries as a natural dye for cotton : a combined experimental and theoretical study. <i>DYES AND PIGMENTS</i>, <i>176</i>. https://doi.org/10.1016/j.dyepig.2019.108180</div>
  bof: |2-
      <div class="csl-entry">Phan, Kim, Elias Van Den Broeck, Veronique Van Speybroeck, Karen De Clerck, Katleen Raes, and Steven De Meester. 2020. “The Potential of Anthocyanins from Blueberries as a Natural Dye for Cotton : A Combined Experimental and Theoretical Study.” <i>DYES AND PIGMENTS</i> 176. doi:10.1016/j.dyepig.2019.108180.</div>
    <div><i>Impact factor: 4.889, category: MATERIALS SCIENCE, TEXTILES, rank: 3/25, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Phan, Kim, Elias Van Den Broeck, Veronique Van Speybroeck, Karen De Clerck, Katleen Raes, and Steven De Meester. 2020. “The Potential of Anthocyanins from Blueberries as a Natural Dye for Cotton : A Combined Experimental and Theoretical Study.” <i>DYES AND PIGMENTS</i> 176. https://doi.org/10.1016/j.dyepig.2019.108180.</div>
  fwo: |2
      <div class="csl-entry">Phan, Kim, Elias Van Den Broeck, Veronique Van Speybroeck, Karen De Clerck, Katleen Raes, and Steven De Meester. 2020. “The Potential of Anthocyanins from Blueberries as a Natural Dye for Cotton : A Combined Experimental and Theoretical Study.” <i>DYES AND PIGMENTS</i> 176. doi:10.1016/j.dyepig.2019.108180.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. Phan, E. Van Den Broeck, V. Van Speybroeck, K. De Clerck, K. Raes, and S. De Meester, “The potential of anthocyanins from blueberries as a natural dye for cotton : a combined experimental and theoretical study,” <i>DYES AND PIGMENTS</i>, vol. 176, 2020.</div>
      </div>
  mla: |2
      <div class="csl-entry">Phan, Kim, et al. “The Potential of Anthocyanins from Blueberries as a Natural Dye for Cotton : A Combined Experimental and Theoretical Study.” <i>DYES AND PIGMENTS</i>, vol. 176, 2020, doi:10.1016/j.dyepig.2019.108180.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Phan K, Van Den Broeck E, Van Speybroeck V, De Clerck K, Raes K, De Meester S. The potential of anthocyanins from blueberries as a natural dye for cotton : a combined experimental and theoretical study. DYES AND PIGMENTS. 2020;176.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: 1D7D45A8-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 1D7D45A8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Kim
  last_name: Phan
  name: Kim Phan
  name_last_first: Phan, Kim
  orcid_id: 0000-0001-8660-5251
  ugent_id:
  - '000090124821'
  - '802002578620'
  - '971260175395'
date_created: 2020-01-23 09:20:25
date_updated: 2026-03-31 13:38:06
doi:
- 10.1016/j.dyepig.2019.108180
external: 0
file:
- _id: '8644171'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: PhanThe_potential_of_anthocyanins_from_blueberries_as_a_natural_dye_for_cotton_A_combined_experimental_and_theoretical_study.pdf
  publication_version: publishedVersion
  sha256: fd0096e0554a100e6d3933c0dc6298d19afce7b2ed25b230188712c7f56803d2
  size: '4963718'
  thumbnail_url: https://biblio.ugent.be/publication/8644170/file/8644171/thumbnail.png
  url: https://biblio.ugent.be/publication/8644170/file/8644171.pdf
handle: http://hdl.handle.net/1854/LU-8644170
issn:
- 0143-7208
- 1873-3743
jcr:
  category: MATERIALS SCIENCE, TEXTILES
  category_decile: 1
  category_quartile: 1
  category_rank: 3/25
  category_vigintile: 2
  eigenfactor: 0.019
  immediacy_index: 1.795
  impact_factor: 4.889
  impact_factor_5yr: 4.016
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 1
  prev_impact_factor: 4.613
  total_cites: 23405
keyword:
- Anthocyanins
- Cotton
- Density functional theory (DFT)
- Molecular dynamics
- Natural dye
- ANTIOXIDANT ACTIVITY
- THERMAL-DEGRADATION
- RED-WINE
- ADSORPTION
- WATER
- COPIGMENTATION
- COLOR
- EXTRACTION
- STABILITY
- DYNAMICS
language:
- eng
page:
  count: '19'
parent:
  short_title: Dyes Pigment.
  title: DYES AND PIGMENTS
publication_status: published
publication_status_sort: 2
status: public
subject:
- Chemistry
- Technology and Engineering
title: 'The potential of anthocyanins from blueberries as a natural dye for cotton
  : a combined experimental and theoretical study'
type: journalArticle
vabb_approved: 0
vabb_id: c:vabb:533377
vabb_type: VABB-1
vabb_year:
- '2023'
volume: '176'
wos_id: '000519335300003'
wos_type: Article
year: '2020'
...
---
_id: '8677677'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
author:
- _id: DD6903D4-F0EE-11E1-A197-91C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: DD6903D4-F0EE-11E1-A197-91C894A0A6B4
  first_name: Brecht
  last_name: Tomme
  name: Brecht Tomme
  name_last_first: Tomme, Brecht
  orcid_id: 0000-0001-7765-3059
  ugent_id:
  - '000120101558'
  - '802003221547'
  - '975685845663'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8677677'
cite:
  apa: |2
      <div class="csl-entry">Tomme, B., &#38; De Clerck, K. (2020). Nieuws uit de vakgroep : REACT project : REcycling of waste ACrylic Textiles (Horizon 2020).</div>
  bof: |2
      <div class="csl-entry">Tomme, Brecht, and Karen De Clerck. 2020. “Nieuws Uit de Vakgroep : REACT Project : REcycling of Waste ACrylic Textiles (Horizon 2020).” <i>UNITEX</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">Tomme, Brecht, and Karen De Clerck. 2020. “Nieuws Uit de Vakgroep : REACT Project : REcycling of Waste ACrylic Textiles (Horizon 2020).” <i>UNITEX</i>.</div>
  fwo: |2
      <div class="csl-entry">Tomme, Brecht, and Karen De Clerck. 2020. “Nieuws Uit de Vakgroep : REACT Project : REcycling of Waste ACrylic Textiles (Horizon 2020).” <i>UNITEX</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. Tomme and K. De Clerck, “Nieuws uit de vakgroep : REACT project : REcycling of waste ACrylic Textiles (Horizon 2020),” <i>UNITEX</i>, no. 3. pp. 51–51, 2020.</div>
      </div>
  mla: |2
      <div class="csl-entry">Tomme, Brecht, and Karen De Clerck. “Nieuws Uit de Vakgroep : REACT Project : REcycling of Waste ACrylic Textiles (Horizon 2020).” <i>UNITEX</i>, no. 3, 2020, pp. 51–51.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Tomme B, De Clerck K. Nieuws uit de vakgroep : REACT project : REcycling of waste ACrylic Textiles (Horizon 2020). UNITEX. 2020. p. 51–51.</div>
       </div>
classification: V
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2020-10-13 09:47:08
date_updated: 2023-05-08 11:51:51
external: 0
file:
- _id: '8677680'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: UNITEX_2020_september_REACT_scan.pdf
  publication_version: publishedVersion
  sha256: f0985739551c341ae77c6564511e1bff6ef422ab95a81dbef73b0650b13a9bbf
  size: '1052499'
  thumbnail_url: https://biblio.ugent.be/publication/8677677/file/8677680/thumbnail.png
  url: https://biblio.ugent.be/publication/8677677/file/8677680.pdf
handle: http://hdl.handle.net/1854/LU-8677677
issue: '3'
jcr: {}
language:
- dut
misc_type: magazinePiece
page:
  count: '1'
  first: '51'
  last: '51'
parent:
  short_title: Unitex
  title: UNITEX
project:
- _id: 41D08919
  abstract: <p>Extremely durable and able to repel water, acrylic fabrics are widely
    used for outdoor awnings and patio furniture. However, to have the required characteristics
    for such use, it is needed to apply chemical finishes to the acrylic fabrics,
    so as to increase the hydro and oil-repellency, the resistance to UV and to fire.
    This makes the management of acrylic textile waste tricky. The EU-funded REACT
    project is developing an eco-friendly process to remove the hazardous chemicals
    from the finishing substances (fluorocarbons, melamine and acrylic resins, anti-mould
    agents), which affect the secondary raw material purity and their management.
    A mechanical recycling process will follow to obtain second life fibre and fabrics.
    The goal is to reduce the amount of landfill and incineration of acrylic textiles
    by at least 30 % for the outdoor sector (awnings and furnishing).</p>
  end_date: 2022-09-30
  eu_acronym: REACT
  eu_framework_programme: H2020
  eu_id: '820869'
  gismo_id: 33e5665e-f621-4479-9128-81922feec34f
  iweto_id: 41D08919
  start_date: 2019-06-01
  title: REcycling of waste ACrylic Textiles
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: 'Nieuws uit de vakgroep : REACT project : REcycling of waste ACrylic Textiles
  (Horizon 2020)'
type: misc
year: '2020'
...
---
_id: '8675582'
abstract:
- The present review had the aim of describing the methodologies of synthesis and
  properties of biobased pullulan, a microbial polysaccharide investigated in the
  last decade because of its interesting potentialities in several applications. After
  describing the implications of pullulan in nano-technology, biodegradation, compatibility
  with body and skin, and sustainability, the current applications of pullulan are
  described, with the aim of assessing the potentialities of this biopolymer in the
  biomedical, personal care, and cosmetic sector, especially in applications in contact
  with skin.
abstract_full:
- lang: eng
  text: The present review had the aim of describing the methodologies of synthesis
    and properties of biobased pullulan, a microbial polysaccharide investigated in
    the last decade because of its interesting potentialities in several applications.
    After describing the implications of pullulan in nano-technology, biodegradation,
    compatibility with body and skin, and sustainability, the current applications
    of pullulan are described, with the aim of assessing the potentialities of this
    biopolymer in the biomedical, personal care, and cosmetic sector, especially in
    applications in contact with skin.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: '20'
article_type: review
author:
- first_name: Maria-Beatrice
  last_name: Coltelli
  name: Maria-Beatrice Coltelli
  name_last_first: Coltelli, Maria-Beatrice
- first_name: Serena
  last_name: Danti
  name: Serena Danti
  name_last_first: Danti, Serena
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- first_name: Andrea
  last_name: Lazzeri
  name: Andrea Lazzeri
  name_last_first: Lazzeri, Andrea
- first_name: Pierfrancesco
  last_name: Morganti
  name: Pierfrancesco Morganti
  name_last_first: Morganti, Pierfrancesco
biblio_id: '8675582'
cite:
  apa: |2
      <div class="csl-entry">Coltelli, M.-B., Danti, S., De Clerck, K., Lazzeri, A., &#38; Morganti, P. (2020). Pullulan for advanced sustainable body- and skin-contact applications. <i>JOURNAL OF FUNCTIONAL BIOMATERIALS</i>, <i>11</i>(1). https://doi.org/10.3390/jfb11010020</div>
  bof: |2
      <div class="csl-entry">Coltelli, Maria-Beatrice, Serena Danti, Karen De Clerck, Andrea Lazzeri, and Pierfrancesco Morganti. 2020. “Pullulan for Advanced Sustainable Body- and Skin-Contact Applications.” <i>JOURNAL OF FUNCTIONAL BIOMATERIALS</i> 11 (1). doi:10.3390/jfb11010020.</div>
  chicago-author-date: |2
      <div class="csl-entry">Coltelli, Maria-Beatrice, Serena Danti, Karen De Clerck, Andrea Lazzeri, and Pierfrancesco Morganti. 2020. “Pullulan for Advanced Sustainable Body- and Skin-Contact Applications.” <i>JOURNAL OF FUNCTIONAL BIOMATERIALS</i> 11 (1). https://doi.org/10.3390/jfb11010020.</div>
  fwo: |2
      <div class="csl-entry">Coltelli, Maria-Beatrice, Serena Danti, Karen De Clerck, Andrea Lazzeri, and Pierfrancesco Morganti. 2020. “Pullulan for Advanced Sustainable Body- and Skin-Contact Applications.” <i>JOURNAL OF FUNCTIONAL BIOMATERIALS</i> 11 (1). doi:10.3390/jfb11010020.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">M.-B. Coltelli, S. Danti, K. De Clerck, A. Lazzeri, and P. Morganti, “Pullulan for advanced sustainable body- and skin-contact applications,” <i>JOURNAL OF FUNCTIONAL BIOMATERIALS</i>, vol. 11, no. 1, 2020.</div>
      </div>
  mla: |2
      <div class="csl-entry">Coltelli, Maria-Beatrice, et al. “Pullulan for Advanced Sustainable Body- and Skin-Contact Applications.” <i>JOURNAL OF FUNCTIONAL BIOMATERIALS</i>, vol. 11, no. 1, 2020, doi:10.3390/jfb11010020.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Coltelli M-B, Danti S, De Clerck K, Lazzeri A, Morganti P. Pullulan for advanced sustainable body- and skin-contact applications. JOURNAL OF FUNCTIONAL BIOMATERIALS. 2020;11(1).</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution 4.0 International Public License
  (CC-BY 4.0)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2020-09-24 11:31:48
date_updated: 2023-05-08 11:51:46
doi:
- 10.3390/jfb11010020
external: 0
file:
- _id: '8675586'
  access: open
  content_type: application/pdf
  kind: fullText
  name: jfb-11-00020-v2.pdf
  publication_version: publishedVersion
  sha256: 37d61162344f18648fdbc6761b96b21dcc19b111ac5c2a29a3ea577874eba159
  size: '1905462'
  thumbnail_url: https://biblio.ugent.be/publication/8675582/file/8675586/thumbnail.png
  url: https://biblio.ugent.be/publication/8675582/file/8675586.pdf
handle: http://hdl.handle.net/1854/LU-8675582
issn:
- 2079-4983
issue: '1'
issue_title: High performance functional bio-based polymers for skin-contact products
jcr: {}
keyword:
- pullulan
- biopolymers
- exopolysaccharides
- biodegradation
- biocompatibility
- POLYMERS
- DELIVERY
- EXOPOLYSACCHARIDES
- NANOPARTICLES
- SCAFFOLDS
- MATRICES
- NANOGEL
- WATER
language:
- eng
page:
  count: '17'
parent:
  short_title: J. Funct. Biomater.
  title: JOURNAL OF FUNCTIONAL BIOMATERIALS
project:
- _id: 41A09117
  abstract: '<p>Personal care, Cosmetic and biomedical industries deal with high-value
    and/or large volume consumption of polymer-based products which are often derived
    from fossil sources. Although a number of alternative bio-based polymers is the
    subject of recent research, more effort is still needed to increase their specific
    functionalities and performances in order to proceed with their true translation
    into market. PolyBioSkin aims at developing skin-contact biopolymer-based product
    parts with increased performance and functionality, such as parts of diapers,
    cosmetic pads and wound dressings. Indeed, PolyBioSkin will focus on two main
    classes of bio-based polymers relevant for next generation bio-based industry:
    biopolyesters (polylactic acid and polyhydroxyalkanoates) because fully renewable,
    biocompatible and biodegradable and available at an industrial scale, and natural
    polysaccharides (cellulose/starch and chitin/chitosan), derived from biomass and
    food waste, for their peculiar properties, such as absorbency and anti-infectivity.
    <br />Films and textiles will be produced starting from these polymers and their
    combinations to prove that key products and/or product parts in sanitary, cosmetic
    and biomedical industry can be effectively translated from a fossil-derived to
    bio-based polymer production. PolyBioSkin will provide to skin-contact products
    a much more environmentally friendly end of life than the current accumulation
    in landfills or incineration, thanks to their biodegradability allowing the organic
    recycling.</p>'
  end_date: 2020-07-31
  eu_acronym: PolyBioSkin
  eu_call_id: H20.RIA.2017.0006,01
  eu_framework_programme: H2020
  eu_id: '745839'
  gismo_id: 035f6009-5e69-457b-8ff6-598f0e66069f
  iweto_id: 41A09117
  start_date: 2017-06-01
  title: PolyBioSkin
publication_status: published
publication_status_sort: 2
pubmed_id: '32197310'
status: public
subject:
- Technology and Engineering
title: Pullulan for advanced sustainable body- and skin-contact applications
type: journalArticle
volume: '11'
wos_id: '000523723900010'
wos_type: Review
year: '2020'
...
---
_id: '8675587'
abstract:
- Polyhydroxyalkanoates (PHAs) are a family of bio-based polyesters that have found
  different biomedical applications. Chitin and lignin, byproducts of fishery and
  plant biomass, show antimicrobial and anti-inflammatory activity on the nanoscale.
  Due to their polarities, chitin nanofibril (CN) and nanolignin (NL) can be assembled
  into micro-complexes, which can be loaded with bioactive factors, such as the glycyrrhetinic
  acid (GA) and CN-NL/GA (CLA) complexes, and can be used to decorate polymer surfaces.
  This study aims to develop completely bio-based and bioactive meshes intended for
  wound healing. Poly(3-hydroxybutyrate)/Poly(3-hydroxyoctanoate-co-3-hydroxydecanoate),
  P(3HB)/P(3HO-co-3HD) was used to produce films and fiber meshes, to be surface-modified
  via electrospraying of CN or CLA to reach a uniform distribution. P(3HB)/P(3HO-co-3HD)
  fibers with desirable size and morphology were successfully prepared and functionalized
  with CN and CLA using electrospinning and tested in vitro with human keratinocytes.
  The presence of CN and CLA improved the indirect antimicrobial and anti-inflammatory
  activity of the electrospun fiber meshes by downregulating the expression of the
  most important pro-inflammatory cytokines and upregulating human defensin 2 expression.
  This natural and eco-sustainable mesh is promising in wound healing applications.
abstract_full:
- lang: eng
  text: Polyhydroxyalkanoates (PHAs) are a family of bio-based polyesters that have
    found different biomedical applications. Chitin and lignin, byproducts of fishery
    and plant biomass, show antimicrobial and anti-inflammatory activity on the nanoscale.
    Due to their polarities, chitin nanofibril (CN) and nanolignin (NL) can be assembled
    into micro-complexes, which can be loaded with bioactive factors, such as the
    glycyrrhetinic acid (GA) and CN-NL/GA (CLA) complexes, and can be used to decorate
    polymer surfaces. This study aims to develop completely bio-based and bioactive
    meshes intended for wound healing. Poly(3-hydroxybutyrate)/Poly(3-hydroxyoctanoate-co-3-hydroxydecanoate),
    P(3HB)/P(3HO-co-3HD) was used to produce films and fiber meshes, to be surface-modified
    via electrospraying of CN or CLA to reach a uniform distribution. P(3HB)/P(3HO-co-3HD)
    fibers with desirable size and morphology were successfully prepared and functionalized
    with CN and CLA using electrospinning and tested in vitro with human keratinocytes.
    The presence of CN and CLA improved the indirect antimicrobial and anti-inflammatory
    activity of the electrospun fiber meshes by downregulating the expression of the
    most important pro-inflammatory cytokines and upregulating human defensin 2 expression.
    This natural and eco-sustainable mesh is promising in wound healing applications.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: '62'
article_type: original
author:
- first_name: Bahareh
  last_name: Azimi
  name: Bahareh Azimi
  name_last_first: Azimi, Bahareh
- first_name: Lily
  last_name: Thomas
  name: Lily Thomas
  name_last_first: Thomas, Lily
- first_name: Alessandra
  last_name: Fusco
  name: Alessandra Fusco
  name_last_first: Fusco, Alessandra
- _id: 23C336CA-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 23C336CA-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Özlem İpek
  last_name: Kalaoglu Altan
  name: Özlem İpek Kalaoglu Altan
  name_last_first: Kalaoglu Altan, Özlem İpek
  ugent_id:
  - '000091814136'
  - '802003037550'
  - '975697430594'
- first_name: Pooja
  last_name: Basnett
  name: Pooja Basnett
  name_last_first: Basnett, Pooja
- first_name: Patrizia
  last_name: Cinelli
  name: Patrizia Cinelli
  name_last_first: Cinelli, Patrizia
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- first_name: Ipsita
  last_name: Roy
  name: Ipsita Roy
  name_last_first: Roy, Ipsita
- first_name: Giovanna
  last_name: Donnarumma
  name: Giovanna Donnarumma
  name_last_first: Donnarumma, Giovanna
- first_name: Maria-Beatrice
  last_name: Coltelli
  name: Maria-Beatrice Coltelli
  name_last_first: Coltelli, Maria-Beatrice
- first_name: Serena
  last_name: Danti
  name: Serena Danti
  name_last_first: Danti, Serena
- first_name: Andrea
  last_name: Lazzeri
  name: Andrea Lazzeri
  name_last_first: Lazzeri, Andrea
biblio_id: '8675587'
cite:
  apa: |2
      <div class="csl-entry">Azimi, B., Thomas, L., Fusco, A., Kalaoglu Altan, Ö. İ., Basnett, P., Cinelli, P., … Lazzeri, A. (2020). Electrosprayed chitin nanofibril/electrospun polyhydroxyalkanoate fiber mesh as functional nonwoven for skin application. <i>JOURNAL OF FUNCTIONAL BIOMATERIALS</i>, <i>11</i>(3). https://doi.org/10.3390/jfb11030062</div>
  bof: |2
      <div class="csl-entry">Azimi, Bahareh, Lily Thomas, Alessandra Fusco, Özlem İpek Kalaoglu Altan, Pooja Basnett, Patrizia Cinelli, Karen De Clerck, Ipsita Roy, Giovanna Donnarumma, Maria-Beatrice Coltelli, Serena Danti, and Andrea Lazzeri. 2020. “Electrosprayed Chitin Nanofibril/Electrospun Polyhydroxyalkanoate Fiber Mesh as Functional Nonwoven for Skin Application.” <i>JOURNAL OF FUNCTIONAL BIOMATERIALS</i> 11 (3). doi:10.3390/jfb11030062.</div>
  chicago-author-date: |2
      <div class="csl-entry">Azimi, Bahareh, Lily Thomas, Alessandra Fusco, Özlem İpek Kalaoglu Altan, Pooja Basnett, Patrizia Cinelli, Karen De Clerck, et al. 2020. “Electrosprayed Chitin Nanofibril/Electrospun Polyhydroxyalkanoate Fiber Mesh as Functional Nonwoven for Skin Application.” <i>JOURNAL OF FUNCTIONAL BIOMATERIALS</i> 11 (3). https://doi.org/10.3390/jfb11030062.</div>
  fwo: |2
      <div class="csl-entry">Azimi, Bahareh, Lily Thomas, Alessandra Fusco, Özlem İpek Kalaoglu Altan, Pooja Basnett, Patrizia Cinelli, Karen De Clerck, Ipsita Roy, Giovanna Donnarumma, Maria-Beatrice Coltelli, Serena Danti, and Andrea Lazzeri. 2020. “Electrosprayed Chitin Nanofibril/Electrospun Polyhydroxyalkanoate Fiber Mesh as Functional Nonwoven for Skin Application.” <i>JOURNAL OF FUNCTIONAL BIOMATERIALS</i> 11 (3). doi:10.3390/jfb11030062.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. Azimi <i>et al.</i>, “Electrosprayed chitin nanofibril/electrospun polyhydroxyalkanoate fiber mesh as functional nonwoven for skin application,” <i>JOURNAL OF FUNCTIONAL BIOMATERIALS</i>, vol. 11, no. 3, 2020.</div>
      </div>
  mla: |2
      <div class="csl-entry">Azimi, Bahareh, et al. “Electrosprayed Chitin Nanofibril/Electrospun Polyhydroxyalkanoate Fiber Mesh as Functional Nonwoven for Skin Application.” <i>JOURNAL OF FUNCTIONAL BIOMATERIALS</i>, vol. 11, no. 3, 2020, doi:10.3390/jfb11030062.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Azimi B, Thomas L, Fusco A, Kalaoglu Altan Öİ, Basnett P, Cinelli P, et al. Electrosprayed chitin nanofibril/electrospun polyhydroxyalkanoate fiber mesh as functional nonwoven for skin application. JOURNAL OF FUNCTIONAL BIOMATERIALS. 2020;11(3).</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution 4.0 International Public License
  (CC-BY 4.0)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2020-09-24 11:44:43
date_updated: 2023-05-08 11:51:46
doi:
- 10.3390/jfb11030062
external: 0
file:
- _id: '8675594'
  access: open
  content_type: application/pdf
  kind: fullText
  name: jfb-11-00062.pdf
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  sha256: 8afea3166f84d2812c202dc68e6def8561db67a2c08c7c18afc43d08eff466e6
  size: '12146486'
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  url: https://biblio.ugent.be/publication/8675587/file/8675594.pdf
handle: http://hdl.handle.net/1854/LU-8675587
issn:
- 2079-4983
issue: '3'
issue_title: High performance functional bio-based polymers for skin-contact products
jcr: {}
keyword:
- biopolymer
- bio-based
- surface modification
- nanolignin
- electrospinning
- electrospray
- anti-inflammatory
- DRUG-DELIVERY
- SCAFFOLDS
- CHALLENGES
language:
- eng
page:
  count: '17'
parent:
  short_title: J. Funct. Biomater.
  title: JOURNAL OF FUNCTIONAL BIOMATERIALS
project:
- _id: 41A09117
  abstract: '<p>Personal care, Cosmetic and biomedical industries deal with high-value
    and/or large volume consumption of polymer-based products which are often derived
    from fossil sources. Although a number of alternative bio-based polymers is the
    subject of recent research, more effort is still needed to increase their specific
    functionalities and performances in order to proceed with their true translation
    into market. PolyBioSkin aims at developing skin-contact biopolymer-based product
    parts with increased performance and functionality, such as parts of diapers,
    cosmetic pads and wound dressings. Indeed, PolyBioSkin will focus on two main
    classes of bio-based polymers relevant for next generation bio-based industry:
    biopolyesters (polylactic acid and polyhydroxyalkanoates) because fully renewable,
    biocompatible and biodegradable and available at an industrial scale, and natural
    polysaccharides (cellulose/starch and chitin/chitosan), derived from biomass and
    food waste, for their peculiar properties, such as absorbency and anti-infectivity.
    <br />Films and textiles will be produced starting from these polymers and their
    combinations to prove that key products and/or product parts in sanitary, cosmetic
    and biomedical industry can be effectively translated from a fossil-derived to
    bio-based polymer production. PolyBioSkin will provide to skin-contact products
    a much more environmentally friendly end of life than the current accumulation
    in landfills or incineration, thanks to their biodegradability allowing the organic
    recycling.</p>'
  end_date: 2020-07-31
  eu_acronym: PolyBioSkin
  eu_call_id: H20.RIA.2017.0006,01
  eu_framework_programme: H2020
  eu_id: '745839'
  gismo_id: 035f6009-5e69-457b-8ff6-598f0e66069f
  iweto_id: 41A09117
  start_date: 2017-06-01
  title: PolyBioSkin
publication_status: published
publication_status_sort: 2
pubmed_id: '32899241'
status: public
subject:
- Technology and Engineering
title: Electrosprayed chitin nanofibril/electrospun polyhydroxyalkanoate fiber mesh
  as functional nonwoven for skin application
type: journalArticle
volume: '11'
wos_id: '000578212100001'
wos_type: Article
year: '2020'
...
---
_id: '8644208'
abstract:
- A challenge for the photodegradation of (organic) micro-pollutants in waste water
  treatment is the mechanistic and kinetic understanding beyond the degradation of
  the initial (parent) harmful product, e.g. the phenylurea herbicide isoproturon
  (IPU). By combining liquid chromatography-mass spectrometry and kinetic Monte Carlo
  modeling, we demonstrate that upon optimizing the dip-coating conditions (0.34 mol
  L (-1) TiO2 solution at a coating speed of 160 mm min( -1)) for the functionalization
  of a superhydrophilic electrospun silica nanofibrous membrane (i) hydroxylation
  is a dominant reaction pathway and (ii) once IPU reacts on the surface of the TiO(2
  )nanoparticles, further hydroxylation occurs sufficiently fast, with complete IPU
  removal under the detection limit (5-10 mg Lsolution(-1)) as a result of UV irradiation
  within 8 h. As hydroxylation is dominant, degradation intermediates with a higher
  water solubility are formed and therefore a decreased toxicity is obtained upon
  reintroducing the treated solution into the environment. This is confirmed by respirometry,
  with an increase in the oxygen uptake rate of an activated sludge from 5.9 mg O(2
  )g(activated) ( -1)(sludge) h (-1 )for an untreated 10 mg L-1 IPU solution to 8.2
  mg O-2 g(activated sludge) (-1) h( -1) for a solution irradiated for 8 h, in line
  with a blank solution.
abstract_full:
- lang: eng
  text: A challenge for the photodegradation of (organic) micro-pollutants in waste
    water treatment is the mechanistic and kinetic understanding beyond the degradation
    of the initial (parent) harmful product, e.g. the phenylurea herbicide isoproturon
    (IPU). By combining liquid chromatography-mass spectrometry and kinetic Monte
    Carlo modeling, we demonstrate that upon optimizing the dip-coating conditions
    (0.34 mol L (-1) TiO2 solution at a coating speed of 160 mm min( -1)) for the
    functionalization of a superhydrophilic electrospun silica nanofibrous membrane
    (i) hydroxylation is a dominant reaction pathway and (ii) once IPU reacts on the
    surface of the TiO(2 )nanoparticles, further hydroxylation occurs sufficiently
    fast, with complete IPU removal under the detection limit (5-10 mg Lsolution(-1))
    as a result of UV irradiation within 8 h. As hydroxylation is dominant, degradation
    intermediates with a higher water solubility are formed and therefore a decreased
    toxicity is obtained upon reintroducing the treated solution into the environment.
    This is confirmed by respirometry, with an increase in the oxygen uptake rate
    of an activated sludge from 5.9 mg O(2 )g(activated) ( -1)(sludge) h (-1 )for
    an untreated 10 mg L-1 IPU solution to 8.2 mg O-2 g(activated sludge) (-1) h(
    -1) for a solution irradiated for 8 h, in line with a blank solution.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE06
  ugent_id: WE06
- name: Department of Green Chemistry and Technology
  path:
  - ugent_id: UGent
  - ugent_id: LA
  - ugent_id: LA24
  ugent_id: LA24
- name: Department of Diagnostic Sciences
  path:
  - ugent_id: UGent
  - ugent_id: GE
  - ugent_id: GE32
  ugent_id: GE32
article_number: '124143'
article_type: original
author:
- _id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  first_name: Eva
  last_name: Loccufier
  name: Eva Loccufier
  name_last_first: Loccufier, Eva
  orcid_id: 0000-0001-7045-2721
  ugent_id:
  - '802002671374'
  - '974161061035'
- _id: F6574910-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: GE
    - ugent_id: GE32
    ugent_id: GE32
  biblio_id: F6574910-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Koen
  last_name: Deventer
  name: Koen Deventer
  name_last_first: Deventer, Koen
  orcid_id: 0000-0001-8038-1824
  ugent_id:
  - '801001589039'
  - '976190968315'
- _id: E067F7D6-F0BE-11E2-88C6-9A6A10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA24
    ugent_id: LA24
  biblio_id: E067F7D6-F0BE-11E2-88C6-9A6A10BDE39D
  first_name: Dave
  last_name: Manhaeghe
  name: Dave Manhaeghe
  name_last_first: Manhaeghe, Dave
  orcid_id: 0000-0002-4117-6892
  ugent_id:
  - '802002394623'
  - '976978290033'
- _id: FAD54460-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA24
    ugent_id: LA24
  biblio_id: FAD54460-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Stijn
  last_name: Van Hulle
  name: Stijn Van Hulle
  name_last_first: Van Hulle, Stijn
  orcid_id: 0000-0001-5773-7773
  ugent_id:
  - '801001539933'
  - '919019834884'
  - '971483871644'
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8644208'
cite:
  apa: |2
      <div class="csl-entry">Loccufier, E., Deventer, K., Manhaeghe, D., Van Hulle, S., D’hooge, D., De Buysser, K., &#38; De Clerck, K. (2020). Degradation kinetics of isoproturon and its subsequent products in contact with TiO2 functionalized silica nanofibers. <i>CHEMICAL ENGINEERING JOURNAL</i>, <i>387</i>. https://doi.org/10.1016/j.cej.2020.124143</div>
  bof: |2-
      <div class="csl-entry">Loccufier, Eva, Koen Deventer, Dave Manhaeghe, Stijn Van Hulle, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2020. “Degradation Kinetics of Isoproturon and Its Subsequent Products in Contact with TiO2 Functionalized Silica Nanofibers.” <i>CHEMICAL ENGINEERING JOURNAL</i> 387. doi:10.1016/j.cej.2020.124143.</div>
    <div><i>Impact factor: 13.273, category: ENGINEERING, CHEMICAL, rank: 4/143, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Loccufier, Eva, Koen Deventer, Dave Manhaeghe, Stijn Van Hulle, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2020. “Degradation Kinetics of Isoproturon and Its Subsequent Products in Contact with TiO2 Functionalized Silica Nanofibers.” <i>CHEMICAL ENGINEERING JOURNAL</i> 387. https://doi.org/10.1016/j.cej.2020.124143.</div>
  fwo: |2
      <div class="csl-entry">Loccufier, Eva, Koen Deventer, Dave Manhaeghe, Stijn Van Hulle, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2020. “Degradation Kinetics of Isoproturon and Its Subsequent Products in Contact with TiO2 Functionalized Silica Nanofibers.” <i>CHEMICAL ENGINEERING JOURNAL</i> 387. doi:10.1016/j.cej.2020.124143.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Loccufier <i>et al.</i>, “Degradation kinetics of isoproturon and its subsequent products in contact with TiO2 functionalized silica nanofibers,” <i>CHEMICAL ENGINEERING JOURNAL</i>, vol. 387, 2020.</div>
      </div>
  mla: |2
      <div class="csl-entry">Loccufier, Eva, et al. “Degradation Kinetics of Isoproturon and Its Subsequent Products in Contact with TiO2 Functionalized Silica Nanofibers.” <i>CHEMICAL ENGINEERING JOURNAL</i>, vol. 387, 2020, doi:10.1016/j.cej.2020.124143.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Loccufier E, Deventer K, Manhaeghe D, Van Hulle S, D’hooge D, De Buysser K, et al. Degradation kinetics of isoproturon and its subsequent products in contact with TiO2 functionalized silica nanofibers. CHEMICAL ENGINEERING JOURNAL. 2020;387.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: E067F7D6-F0BE-11E2-88C6-9A6A10BDE39D
  affiliation:
  - path:
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    - ugent_id: LA24
    ugent_id: LA24
  biblio_id: E067F7D6-F0BE-11E2-88C6-9A6A10BDE39D
  first_name: Dave
  last_name: Manhaeghe
  name: Dave Manhaeghe
  name_last_first: Manhaeghe, Dave
  orcid_id: 0000-0002-4117-6892
  ugent_id:
  - '802002394623'
  - '976978290033'
date_created: 2020-01-23 14:03:53
date_updated: 2023-05-08 11:50:36
doi:
- 10.1016/j.cej.2020.124143
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-8644208
issn:
- 1385-8947
- 1873-3212
jcr:
  category: ENGINEERING, CHEMICAL
  category_decile: 1
  category_quartile: 1
  category_rank: 4/143
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  impact_factor: 13.273
  impact_factor_5yr: 11.529
  prev_category_decile: 1
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  prev_category_vigintile: 1
  prev_impact_factor: 10.652
  total_cites: 180395
keyword:
- Photodegradation kinetics
- Water treatment
- Electrospinning
- Kinetic Monte Carlo modeling
- Respirometry
- Hydroxylation
- ADVANCED OXIDATION PROCESSES
- HETEROGENEOUS PHOTOCATALYTIC DEGRADATION
- WASTE-WATER TREATMENT
- HERBICIDE ISOPROTURON
- ELECTROSPUN NANOFIBERS
- INTERMEDIATE PRODUCTS
- LIQUID-CHROMATOGRAPHY
- AQUEOUS-SOLUTION
- SUPPORTED TIO2
- AZO DYES
language:
- eng
page:
  count: '14'
parent:
  short_title: Chem. Eng. J.
  title: CHEMICAL ENGINEERING JOURNAL
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
- Chemistry
title: Degradation kinetics of isoproturon and its subsequent products in contact
  with TiO2 functionalized silica nanofibers
type: journalArticle
volume: '387'
wos_id: '000527331600121'
wos_type: Article
year: '2020'
...
---
_id: '8654371'
abstract:
- 'Electrospun (polymeric) nanofibers are proved to be one of the most successful
  toughening techniques for improving the damage resistance of structural fiber-reinforced
  polymer composite laminates. In the past decade, we have seen a steady increase
  in published research papers and industrial interest on this topic. In this chapter,
  we highlight the major findings related to the use of electrospun nanofiber toughening
  veils together with a concise overview of our own research trajectory of the past
  years on this topic. There are five main sections in this chapter which guide the
  reader (be them experienced or inexperienced with the topic) through the current
  state-of-the-art: an introductory section (Section 11.1), a section about the mechanisms
  of nanofiber toughening (Section 11.2), an overview of the nanofiber effect on a
  broad range of mechanical properties (Section 11.3), important considerations regarding
  nanofiber toughening (Section 11.4), and a future outlook and concluding section
  (Sections 11.5 and 11.6).'
abstract_full:
- lang: eng
  text: 'Electrospun (polymeric) nanofibers are proved to be one of the most successful
    toughening techniques for improving the damage resistance of structural fiber-reinforced
    polymer composite laminates. In the past decade, we have seen a steady increase
    in published research papers and industrial interest on this topic. In this chapter,
    we highlight the major findings related to the use of electrospun nanofiber toughening
    veils together with a concise overview of our own research trajectory of the past
    years on this topic. There are five main sections in this chapter which guide
    the reader (be them experienced or inexperienced with the topic) through the current
    state-of-the-art: an introductory section (Section 11.1), a section about the
    mechanisms of nanofiber toughening (Section 11.2), an overview of the nanofiber
    effect on a broad range of mechanical properties (Section 11.3), important considerations
    regarding nanofiber toughening (Section 11.4), and a future outlook and concluding
    section (Sections 11.5 and 11.6).'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
author:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  credit_role:
  - first_author
  - conceptualization
  - data_curation
  - formal_analysis
  - investigation
  - methodology
  - writing_original_draft
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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  credit_role:
  - project_administration
  - supervision
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  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
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  - resources
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  first_name: Karen
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  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8654371'
cite:
  apa: |2
      <div class="csl-entry">Daelemans, L., Van Paepegem, W., &#38; De Clerck, K. (2020). Effect of interleaved polymer nanofibers on the properties of glass and carbon fiber composites. In B. Han, T. A. Nguyen, K. Subrahmanya Bhat, S. Sharma, &#38; L. Longbiao (Eds.), <i>Fiber-reinforced nanocomposites : fundamentals and applications</i> (pp. 235–260). https://doi.org/10.1016/B978-0-12-819904-6.00011-6</div>
  bof: |2
      <div class="csl-entry">Daelemans, Lode, Wim Van Paepegem, and Karen De Clerck. 2020. “Effect of Interleaved Polymer Nanofibers on the Properties of Glass and Carbon Fiber Composites.” In <i>Fiber-Reinforced Nanocomposites : Fundamentals and Applications</i>, ed by. Baogue Han, Tuan Anh Nguyen, K. Subrahmanya Bhat, Sumit Sharma, and Li Longbiao, 235–260. Elsevier. doi:10.1016/B978-0-12-819904-6.00011-6.</div>
  chicago-author-date: |2
      <div class="csl-entry">Daelemans, Lode, Wim Van Paepegem, and Karen De Clerck. 2020. “Effect of Interleaved Polymer Nanofibers on the Properties of Glass and Carbon Fiber Composites.” In <i>Fiber-Reinforced Nanocomposites : Fundamentals and Applications</i>, edited by Baogue Han, Tuan Anh Nguyen, K. Subrahmanya Bhat, Sumit Sharma, and Li Longbiao, 235–60. Elsevier. https://doi.org/10.1016/B978-0-12-819904-6.00011-6.</div>
  fwo: |2
      <div class="csl-entry">Daelemans, Lode, Wim Van Paepegem, and Karen De Clerck. 2020. “Effect of Interleaved Polymer Nanofibers on the Properties of Glass and Carbon Fiber Composites.” In <i>Fiber-Reinforced Nanocomposites : Fundamentals and Applications</i>, ed by. Baogue Han, Tuan Anh Nguyen, K. Subrahmanya Bhat, Sumit Sharma, and Li Longbiao, 235–260. Elsevier. doi:10.1016/B978-0-12-819904-6.00011-6.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Daelemans, W. Van Paepegem, and K. De Clerck, “Effect of interleaved polymer nanofibers on the properties of glass and carbon fiber composites,” in <i>Fiber-reinforced nanocomposites : fundamentals and applications</i>, B. Han, T. A. Nguyen, K. Subrahmanya Bhat, S. Sharma, and L. Longbiao, Eds. Elsevier, 2020, pp. 235–260.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daelemans, Lode, et al. “Effect of Interleaved Polymer Nanofibers on the Properties of Glass and Carbon Fiber Composites.” <i>Fiber-Reinforced Nanocomposites : Fundamentals and Applications</i>, edited by Baogue Han et al., Elsevier, 2020, pp. 235–60, doi:10.1016/B978-0-12-819904-6.00011-6.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daelemans L, Van Paepegem W, De Clerck K. Effect of interleaved polymer nanofibers on the properties of glass and carbon fiber composites. In: Han B, Nguyen TA, Subrahmanya Bhat K, Sharma S, Longbiao L, editors. Fiber-reinforced nanocomposites : fundamentals and applications. Elsevier; 2020. p. 235–60.</div>
       </div>
classification: B2
copyright_statement: No license (in copyright)
created_by:
  _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
date_created: 2020-03-20 09:31:59
date_updated: 2026-03-31 14:57:12
doi:
- 10.1016/B978-0-12-819904-6.00011-6
editor:
- first_name: Baogue
  last_name: Han
  name: Baogue Han
  name_last_first: Han, Baogue
- first_name: Tuan Anh
  last_name: Nguyen
  name: Tuan Anh Nguyen
  name_last_first: Nguyen, Tuan Anh
- first_name: K.
  last_name: Subrahmanya Bhat
  name: K. Subrahmanya Bhat
  name_last_first: Subrahmanya Bhat, K.
- first_name: Sumit
  last_name: Sharma
  name: Sumit Sharma
  name_last_first: Sharma, Sumit
- first_name: Li
  last_name: Longbiao
  name: Li Longbiao
  name_last_first: Longbiao, Li
external: 0
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handle: http://hdl.handle.net/1854/LU-8654371
isbn:
- '9780128199046'
jcr: {}
keyword:
- Delamination
- fiber-reinforced polymer
- toughening
- fracture toughness
- electrospinning
- nanofibers
- nanoparticles
- mechanics
language:
- eng
page:
  count: '26'
  first: '235'
  last: '260'
parent:
  title: 'Fiber-reinforced nanocomposites : fundamentals and applications'
project:
- _id: 01J02013
  abstract: '<p>The project focuses on the use and functionalization of nanofibres
    to improve the toughness of epoxy matrix composites. The project consist of 5
    packages:<br /><br /><br /><br />WP1: nanofibre properties with respect to composite
    applications<br /><br />WP2: functionalization of nanofbibrous structures<br /><br
    />WP3: effect of nanofibres on the curing behavior of epoxy resins<br /><br />WP4:
    Tougning of nf-epoxy systems<br /><br />WP5: mechanical properties of GF/nf composites</p>'
  end_date: 2017-12-31
  gismo_id: 23e0ac1b-2d66-4695-b51c-6f6965e4da3d
  iweto_id: 01J02013
  start_date: 2013-03-01
  title: Epoxy resin composites reinforced with functionalized electrospun nanofibres
- _id: '3E016519'
  abstract: |-
    <p>
    Textiles are ideally suited for technical engineering applications thanks to their unique combination of lightness, flexibility and strength. Especially, fibre reinforced composites are seeing a tremendous growth for designing light-weight structural components. The fibres, the building blocks of any textile, and their arrangement in the textile and the composite (microstructure) determine the macroscopic properties. It is thus of utmost importance that this micro-macro relation is fundamentally understood. The complexity of textiles (complex hierarchical microstructure, highly non-linear behaviour) makes this a challenging problem. By following a multiscale analysis, combining both advanced experimental and numerical techniques, starting with individual fibres and building up till complete nano-interleaved preforms, we get a fundamental understanding of the micro-macro relationships that govern the mechanical behaviour of textile materials. These insights are of crucial importance for the further development of high-end nano-enabled composites and are extendable to many other technical textile applications as well.

    </p>
  end_date: 2022-09-30
  gismo_id: 3c0a4b92-b36f-11e9-9b22-19a03077e1f4
  iweto_id: '3E016519'
  start_date: 2019-10-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
- _id: 01P03418
  abstract: <p>The unique combination of light and flexible, but strong structures,
    makes textile materials well suited for technical engineering applications. Especially,
    fibre reinforced composites are seeing a tremendous growth for designing light-weight
    structural components. The fibres, the building blocks of any textile, and their
    arrangement in the composite (microstructure) determine the obtainable mechanical
    properties. It is thus of utmost importance that the formation of this microstructure
    is fundamentally understood. This enables the optimization of current materials,
    but also the development of advanced, nano-enabled composites by the novel technique
    of interleaving nanofibrous textiles. It is more complex than one would think
    at first sight due to the complicated nature of textiles. For example, composites
    are made by stacking layers of fabrics, whose interaction with each other and
    the tooling can result in unwanted defects or misalignments. This is related to
    the mechanics of the textile material. By following a multi-scale analysis, combining
    both experimental and numerical techniques, starting with individual fibres and
    building up till complete nano-interleaved preforms, we will get a fundamental
    understanding of the micro-macro relationships that govern the mechanics of textile
    materials. These insights are of crucial importance for further development of
    high-end nano-enabled composites, and extendable to many other technical textile
    applications as well.</p>
  end_date: 2019-09-30
  gismo_id: b2c0136d-5a95-11e9-b3e1-37a68b033e1d
  iweto_id: 01P03418
  start_date: 2019-01-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
publication_status: published
publication_status_sort: 2
publisher:
  name: Elsevier
series_title: Micro and Nano Technologies
status: public
subject:
- Technology and Engineering
title: Effect of interleaved polymer nanofibers on the properties of glass and carbon
  fiber composites
type: bookChapter
year: '2020'
...
---
_id: '8679816'
abstract:
- Fiber reinforced composite materials are typically comprised of two phases, i.e.,
  the reinforcing fibers and a surrounding matrix. At a high volume fraction of reinforcing
  fibers, the matrix is confined to a microscale region in between the fibers (1–200
  µm). Although these regions are interconnected, their behavior is likely dominated
  by their micro-scale. Nevertheless, the characterization of the matrix material
  (without reinforcing fibers) is usually performed on macroscopic bulk specimens
  and little is known about the micro-mechanical behavior of polymer matrix materials.
  Here, we show that the microscale behavior of an epoxy resin typically used in composite
  production is clearly different from its macroscale behavior. Microscale polymer
  specimens were produced by drawing microfibers from vitrifying epoxy resin. After
  curing, tensile tests were performed on a large set of pure epoxy microfiber specimens
  with diameters ranging from 30 to 400 µm. An extreme ductility was observed for
  microscale epoxy specimens, while bulk scale epoxy specimens showed brittle behavior.
  The microsized epoxy specimens had a plastic deformation behavior resulting in a
  substantially higher ultimate tensile strength (up to 380 MPa) and strain at break
  (up to 130 %) compared to their bulk counterpart (68 MPa and 8%). Polarized light
  microscopy confirmed a rearrangement of the internal epoxy network structure during
  loading, resulting in the plastic deformation of the microscale epoxy. This was
  further accompanied by in-situ electron microscopy to further determine the deformation
  behavior of the micro-specimens during tensile loading and make accurate strain
  measurements using video-extensometry. This work thus provides novel insights on
  the epoxy material behavior at the confined microscale as present in fiber reinforced
  composite materials.
abstract_full:
- lang: eng
  text: Fiber reinforced composite materials are typically comprised of two phases,
    i.e., the reinforcing fibers and a surrounding matrix. At a high volume fraction
    of reinforcing fibers, the matrix is confined to a microscale region in between
    the fibers (1–200 µm). Although these regions are interconnected, their behavior
    is likely dominated by their micro-scale. Nevertheless, the characterization of
    the matrix material (without reinforcing fibers) is usually performed on macroscopic
    bulk specimens and little is known about the micro-mechanical behavior of polymer
    matrix materials. Here, we show that the microscale behavior of an epoxy resin
    typically used in composite production is clearly different from its macroscale
    behavior. Microscale polymer specimens were produced by drawing microfibers from
    vitrifying epoxy resin. After curing, tensile tests were performed on a large
    set of pure epoxy microfiber specimens with diameters ranging from 30 to 400 µm.
    An extreme ductility was observed for microscale epoxy specimens, while bulk scale
    epoxy specimens showed brittle behavior. The microsized epoxy specimens had a
    plastic deformation behavior resulting in a substantially higher ultimate tensile
    strength (up to 380 MPa) and strain at break (up to 130 %) compared to their bulk
    counterpart (68 MPa and 8%). Polarized light microscopy confirmed a rearrangement
    of the internal epoxy network structure during loading, resulting in the plastic
    deformation of the microscale epoxy. This was further accompanied by in-situ electron
    microscopy to further determine the deformation behavior of the micro-specimens
    during tensile loading and make accurate strain measurements using video-extensometry.
    This work thus provides novel insights on the epoxy material behavior at the confined
    microscale as present in fiber reinforced composite materials.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: '2581'
article_type: original
author:
- _id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  biblio_id: FDFB120E-FFAC-11E2-99A4-C36710BDE39D
  first_name: Olivier
  last_name: Verschatse
  name: Olivier Verschatse
  name_last_first: Verschatse, Olivier
  orcid_id: 0000-0001-7732-6007
  ugent_id:
  - '974442908376'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8679816'
cite:
  apa: |2
      <div class="csl-entry">Verschatse, O., Daelemans, L., Van Paepegem, W., &#38; De Clerck, K. (2020). In-situ observations of microscale ductility in a quasi-brittle bulk scale epoxy. <i>POLYMERS</i>, <i>12</i>(11). https://doi.org/10.3390/polym12112581</div>
  chicago-author-date: |2
      <div class="csl-entry">Verschatse, Olivier, Lode Daelemans, Wim Van Paepegem, and Karen De Clerck. 2020. “In-Situ Observations of Microscale Ductility in a Quasi-Brittle Bulk Scale Epoxy.” <i>POLYMERS</i> 12 (11). https://doi.org/10.3390/polym12112581.</div>
  fwo: |2
      <div class="csl-entry">Verschatse, Olivier, Lode Daelemans, Wim Van Paepegem, and Karen De Clerck. 2020. “In-Situ Observations of Microscale Ductility in a Quasi-Brittle Bulk Scale Epoxy.” <i>POLYMERS</i> 12 (11). doi:10.3390/polym12112581.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">O. Verschatse, L. Daelemans, W. Van Paepegem, and K. De Clerck, “In-situ observations of microscale ductility in a quasi-brittle bulk scale epoxy,” <i>POLYMERS</i>, vol. 12, no. 11, 2020.</div>
      </div>
  mla: |2
      <div class="csl-entry">Verschatse, Olivier, et al. “In-Situ Observations of Microscale Ductility in a Quasi-Brittle Bulk Scale Epoxy.” <i>POLYMERS</i>, vol. 12, no. 11, 2020, doi:10.3390/polym12112581.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Verschatse O, Daelemans L, Van Paepegem W, De Clerck K. In-situ observations of microscale ductility in a quasi-brittle bulk scale epoxy. POLYMERS. 2020;12(11).</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution 4.0 International Public License
  (CC-BY 4.0)
created_by:
  _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
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    ugent_id: TW11
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  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
date_created: 2020-11-04 10:47:45
date_updated: 2026-03-31 14:57:12
doi:
- 10.3390/polym12112581
external: 0
file:
- _id: '8679818'
  access: open
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  kind: fullText
  name: Verschatse_2020_-_In-situ_microscale_ductility_in_a_quasi_brittle_epoxy.pdf
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handle: http://hdl.handle.net/1854/LU-8679816
issn:
- 2073-4360
issue: '11'
jcr:
  category: POLYMER SCIENCE
  category_decile: 3
  category_quartile: 1
  category_rank: 18/88
  category_vigintile: 5
  eigenfactor: 0.0298
  immediacy_index: 1.073
  impact_factor: 4.329
  impact_factor_5yr: 4.493
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 4
  prev_impact_factor: 3.426
  total_cites: 27637
keyword:
- Scanning Electron Microscopy (SEM)
- micromechanical testing
- microscale
- yielding
- plasticity
- COMPOSITE-MATERIALS
- FRACTURE-TOUGHNESS
- TENSILE PROPERTIES
- STRENGTH
- RESIN
- POLYMER
language:
- eng
page:
  count: '14'
parent:
  short_title: Polymers
  title: POLYMERS
project:
- _id: '3E016519'
  abstract: |-
    <p>
    Textiles are ideally suited for technical engineering applications thanks to their unique combination of lightness, flexibility and strength. Especially, fibre reinforced composites are seeing a tremendous growth for designing light-weight structural components. The fibres, the building blocks of any textile, and their arrangement in the textile and the composite (microstructure) determine the macroscopic properties. It is thus of utmost importance that this micro-macro relation is fundamentally understood. The complexity of textiles (complex hierarchical microstructure, highly non-linear behaviour) makes this a challenging problem. By following a multiscale analysis, combining both advanced experimental and numerical techniques, starting with individual fibres and building up till complete nano-interleaved preforms, we get a fundamental understanding of the micro-macro relationships that govern the mechanical behaviour of textile materials. These insights are of crucial importance for the further development of high-end nano-enabled composites and are extendable to many other technical textile applications as well.

    </p>
  end_date: 2022-09-30
  gismo_id: 3c0a4b92-b36f-11e9-9b22-19a03077e1f4
  iweto_id: '3E016519'
  start_date: 2019-10-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
- _id: 01B03518
  abstract: <p>The requested table top SEM with integrated micromechanical testing,
    combines a large sample chamber to accommodate a sensitive micromechanical set-up
    with a high magnification and easy sampling. This is highly novel and only recently
    available at moderate costs. The in-situ visualization of material performance
    under load at high magnification will boost the academic research of the applicants
    and their collaborators.</p>
  end_date: 2020-05-31
  gismo_id: 320e7057-5b7c-11e9-ac93-1bffacd2a7e2
  iweto_id: 01B03518
  publication_count: 1
  start_date: 2018-06-01
  title: Table top SEM with integrated in-situ micromechanical testing for fiber,
    polymer and composite materials
- _id: 01J02013
  abstract: '<p>The project focuses on the use and functionalization of nanofibres
    to improve the toughness of epoxy matrix composites. The project consist of 5
    packages:<br /><br /><br /><br />WP1: nanofibre properties with respect to composite
    applications<br /><br />WP2: functionalization of nanofbibrous structures<br /><br
    />WP3: effect of nanofibres on the curing behavior of epoxy resins<br /><br />WP4:
    Tougning of nf-epoxy systems<br /><br />WP5: mechanical properties of GF/nf composites</p>'
  end_date: 2017-12-31
  gismo_id: 23e0ac1b-2d66-4695-b51c-6f6965e4da3d
  iweto_id: 01J02013
  start_date: 2013-03-01
  title: Epoxy resin composites reinforced with functionalized electrospun nanofibres
- _id: 01P03418
  abstract: <p>The unique combination of light and flexible, but strong structures,
    makes textile materials well suited for technical engineering applications. Especially,
    fibre reinforced composites are seeing a tremendous growth for designing light-weight
    structural components. The fibres, the building blocks of any textile, and their
    arrangement in the composite (microstructure) determine the obtainable mechanical
    properties. It is thus of utmost importance that the formation of this microstructure
    is fundamentally understood. This enables the optimization of current materials,
    but also the development of advanced, nano-enabled composites by the novel technique
    of interleaving nanofibrous textiles. It is more complex than one would think
    at first sight due to the complicated nature of textiles. For example, composites
    are made by stacking layers of fabrics, whose interaction with each other and
    the tooling can result in unwanted defects or misalignments. This is related to
    the mechanics of the textile material. By following a multi-scale analysis, combining
    both experimental and numerical techniques, starting with individual fibres and
    building up till complete nano-interleaved preforms, we will get a fundamental
    understanding of the micro-macro relationships that govern the mechanics of textile
    materials. These insights are of crucial importance for further development of
    high-end nano-enabled composites, and extendable to many other technical textile
    applications as well.</p>
  end_date: 2019-09-30
  gismo_id: b2c0136d-5a95-11e9-b3e1-37a68b033e1d
  iweto_id: 01P03418
  start_date: 2019-01-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: In-situ observations of microscale ductility in a quasi-brittle bulk scale
  epoxy
type: journalArticle
volume: '12'
wos_id: '000594942900001'
wos_type: Article
year: '2020'
...
---
_id: '8671689'
abstract:
- Fibre reinforced composite laminates are key engineering materials allowing to design
  lightweight components with high mechanical properties. Yet they are prone to delamination
  between the reinforcing plies, which in turn limits the damage resistance of many
  applications. This is especially true for the interfaces between dissimilar reinforcing
  plies that are often encountered in actual components, e.g. differences in fibre
  orientation, fibre material or ply architecture, where high interlaminar stresses
  can occur. Nanofibrous toughening veils are known to increase the damage resistance
  when inserted between similar reinforcing plies, but it is currently unknown how
  they perform when delamination occurs at dissimilar interfaces. Here, the nanofibre
  toughening of frequently encountered dissimilar interfaces such as occurring between
  multidirectionally stacked unidirectional fibre plies (+45 degrees/-45 degrees),
  multistructural stackings (unidirectional versus fabrics) and multimaterial configurations
  (glass fibres versus carbon fibres) are analysed. These interfaces largely exert
  their influence on the crack path during delamination and thus alter the effectiveness
  of nanofibre toughening. Poly(ether-block-amide) nanofibres of the biosourced polyamide
  11 family result in a large increase in mode I and mode II interlaminar fracture
  toughness for all the tested dissimilar interfaces. We show that their effectiveness
  however depends on the underlying delamination mechanics present in different dissimilar
  interfaces. (c) 2020 The Authors. Published by Elsevier Ltd. This is an open access
  article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
abstract_full:
- lang: eng
  text: Fibre reinforced composite laminates are key engineering materials allowing
    to design lightweight components with high mechanical properties. Yet they are
    prone to delamination between the reinforcing plies, which in turn limits the
    damage resistance of many applications. This is especially true for the interfaces
    between dissimilar reinforcing plies that are often encountered in actual components,
    e.g. differences in fibre orientation, fibre material or ply architecture, where
    high interlaminar stresses can occur. Nanofibrous toughening veils are known to
    increase the damage resistance when inserted between similar reinforcing plies,
    but it is currently unknown how they perform when delamination occurs at dissimilar
    interfaces. Here, the nanofibre toughening of frequently encountered dissimilar
    interfaces such as occurring between multidirectionally stacked unidirectional
    fibre plies (+45 degrees/-45 degrees), multistructural stackings (unidirectional
    versus fabrics) and multimaterial configurations (glass fibres versus carbon fibres)
    are analysed. These interfaces largely exert their influence on the crack path
    during delamination and thus alter the effectiveness of nanofibre toughening.
    Poly(ether-block-amide) nanofibres of the biosourced polyamide 11 family result
    in a large increase in mode I and mode II interlaminar fracture toughness for
    all the tested dissimilar interfaces. We show that their effectiveness however
    depends on the underlying delamination mechanics present in different dissimilar
    interfaces. (c) 2020 The Authors. Published by Elsevier Ltd. This is an open access
    article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: '109050'
article_type: original
author:
- _id: 2D12E8D8-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 2D12E8D8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Timo
  last_name: Meireman
  name: Timo Meireman
  name_last_first: Meireman, Timo
  ugent_id:
  - '972580996713'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: 9A5AC8E8-102D-11E3-ABFB-408B10BDE39D
  biblio_id: 9A5AC8E8-102D-11E3-ABFB-408B10BDE39D
  first_name: Elisa
  last_name: Van Verre
  name: Elisa Van Verre
  name_last_first: Van Verre, Elisa
  ugent_id:
  - '000130616762'
  - '919027333691'
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8671689'
cite:
  apa: |2
      <div class="csl-entry">Meireman, T., Daelemans, L., Van Verre, E., Van Paepegem, W., &#38; De Clerck, K. (2020). Nanofibre toughening of dissimilar interfaces in composites. <i>MATERIALS &#38; DESIGN</i>, <i>195</i>. https://doi.org/10.1016/j.matdes.2020.109050</div>
  bof: |2-
      <div class="csl-entry">Meireman, Timo, Lode Daelemans, Elisa Van Verre, Wim Van Paepegem, and Karen De Clerck. 2020. “Nanofibre Toughening of Dissimilar Interfaces in Composites.” <i>MATERIALS &#38; DESIGN</i> 195. doi:10.1016/j.matdes.2020.109050.</div>
    <div><i>Impact factor: 7.991, category: MATERIALS SCIENCE, MULTIDISCIPLINARY, rank: 58/335, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Meireman, Timo, Lode Daelemans, Elisa Van Verre, Wim Van Paepegem, and Karen De Clerck. 2020. “Nanofibre Toughening of Dissimilar Interfaces in Composites.” <i>MATERIALS &#38; DESIGN</i> 195. https://doi.org/10.1016/j.matdes.2020.109050.</div>
  fwo: |2
      <div class="csl-entry">Meireman, Timo, Lode Daelemans, Elisa Van Verre, Wim Van Paepegem, and Karen De Clerck. 2020. “Nanofibre Toughening of Dissimilar Interfaces in Composites.” <i>MATERIALS &#38; DESIGN</i> 195. doi:10.1016/j.matdes.2020.109050.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">T. Meireman, L. Daelemans, E. Van Verre, W. Van Paepegem, and K. De Clerck, “Nanofibre toughening of dissimilar interfaces in composites,” <i>MATERIALS &#38; DESIGN</i>, vol. 195, 2020.</div>
      </div>
  mla: |2
      <div class="csl-entry">Meireman, Timo, et al. “Nanofibre Toughening of Dissimilar Interfaces in Composites.” <i>MATERIALS &#38; DESIGN</i>, vol. 195, 2020, doi:10.1016/j.matdes.2020.109050.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Meireman T, Daelemans L, Van Verre E, Van Paepegem W, De Clerck K. Nanofibre toughening of dissimilar interfaces in composites. MATERIALS &#38; DESIGN. 2020;195.</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution-NonCommercial-NoDerivatives 4.0
  International Public License (CC BY-NC-ND 4.0)
created_by:
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    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
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  - '977385781070'
date_created: 2020-08-12 13:44:59
date_updated: 2026-03-31 14:57:12
doi:
- 10.1016/j.matdes.2020.109050
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handle: http://hdl.handle.net/1854/LU-8671689
issn:
- 0264-1275
- 1873-4197
jcr:
  category: MATERIALS SCIENCE, MULTIDISCIPLINARY
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  total_cites: 71936
keyword:
- Mechanical Engineering
- General Materials Science
- Mechanics of Materials
- Nanocomposites
- Matrix cracking
- Interface debonding
- Nanofibre bridging
- Electrospinning
- Hybrid composite
- INTERLAMINAR FRACTURE-TOUGHNESS
- MODE-I
- CRACK DEFLECTION
- FIBER ORIENTATION
- INTERLAYERS
language:
- eng
page:
  count: '11'
parent:
  short_title: Mater. Des.
  title: MATERIALS & DESIGN
project:
- _id: '3E016519'
  abstract: |-
    <p>
    Textiles are ideally suited for technical engineering applications thanks to their unique combination of lightness, flexibility and strength. Especially, fibre reinforced composites are seeing a tremendous growth for designing light-weight structural components. The fibres, the building blocks of any textile, and their arrangement in the textile and the composite (microstructure) determine the macroscopic properties. It is thus of utmost importance that this micro-macro relation is fundamentally understood. The complexity of textiles (complex hierarchical microstructure, highly non-linear behaviour) makes this a challenging problem. By following a multiscale analysis, combining both advanced experimental and numerical techniques, starting with individual fibres and building up till complete nano-interleaved preforms, we get a fundamental understanding of the micro-macro relationships that govern the mechanical behaviour of textile materials. These insights are of crucial importance for the further development of high-end nano-enabled composites and are extendable to many other technical textile applications as well.

    </p>
  end_date: 2022-09-30
  gismo_id: 3c0a4b92-b36f-11e9-9b22-19a03077e1f4
  iweto_id: '3E016519'
  start_date: 2019-10-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
- _id: 01J02013
  abstract: '<p>The project focuses on the use and functionalization of nanofibres
    to improve the toughness of epoxy matrix composites. The project consist of 5
    packages:<br /><br /><br /><br />WP1: nanofibre properties with respect to composite
    applications<br /><br />WP2: functionalization of nanofbibrous structures<br /><br
    />WP3: effect of nanofibres on the curing behavior of epoxy resins<br /><br />WP4:
    Tougning of nf-epoxy systems<br /><br />WP5: mechanical properties of GF/nf composites</p>'
  end_date: 2017-12-31
  gismo_id: 23e0ac1b-2d66-4695-b51c-6f6965e4da3d
  iweto_id: 01J02013
  start_date: 2013-03-01
  title: Epoxy resin composites reinforced with functionalized electrospun nanofibres
- _id: 01P03418
  abstract: <p>The unique combination of light and flexible, but strong structures,
    makes textile materials well suited for technical engineering applications. Especially,
    fibre reinforced composites are seeing a tremendous growth for designing light-weight
    structural components. The fibres, the building blocks of any textile, and their
    arrangement in the composite (microstructure) determine the obtainable mechanical
    properties. It is thus of utmost importance that the formation of this microstructure
    is fundamentally understood. This enables the optimization of current materials,
    but also the development of advanced, nano-enabled composites by the novel technique
    of interleaving nanofibrous textiles. It is more complex than one would think
    at first sight due to the complicated nature of textiles. For example, composites
    are made by stacking layers of fabrics, whose interaction with each other and
    the tooling can result in unwanted defects or misalignments. This is related to
    the mechanics of the textile material. By following a multi-scale analysis, combining
    both experimental and numerical techniques, starting with individual fibres and
    building up till complete nano-interleaved preforms, we will get a fundamental
    understanding of the micro-macro relationships that govern the mechanics of textile
    materials. These insights are of crucial importance for further development of
    high-end nano-enabled composites, and extendable to many other technical textile
    applications as well.</p>
  end_date: 2019-09-30
  gismo_id: b2c0136d-5a95-11e9-b3e1-37a68b033e1d
  iweto_id: 01P03418
  start_date: 2019-01-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Nanofibre toughening of dissimilar interfaces in composites
type: journalArticle
volume: '195'
wos_id: '000576530800007'
wos_type: Article
year: '2020'
...
---
_id: '8656395'
abstract:
- In this work an innovative electrospinning system is proposed that simultaneously
  has an adequate temperature resistance, a high increase in mode I (þ51%) and mode
  II (þ96%) delamination performance and can be commercially produced. Interleaving
  nanofibrous veils can potentially solve the issue of the limited delamination resistance
  encountered in composite laminates, but industrial upscaling has always been impeded
  by one or more critical factors. These constraining factors include a limited temperature
  stability of the nanofibers, a lack in simultaneous mode I and II delamination performance
  increase and the complexity of the electrospinning system because non-commercial
  polymers or specialty nanofibers (e.g. coaxial) are required. In this paper, a robust
  electrospinning system is proposed that is the first to overcome all major hurdles
  to make nanofiber toughening industrially viable. A new class of nanofibers based
  on biosourced polyamide 11 and its poly(ether-block-amide) co-polymers is used to
  deal with those shortcomings. The nanofibers have tuneable diameters down to 50
  nm and cross-section morphologies ranging from circular to ribbon-shaped. The key
  to this work is the fundamental underpinning of the toughening effect using a broad
  range of interleaves with different mechanical and thermal properties, fiber diameters
  and fiber morphologies, all produced from the same bio-based base polymer. Generally,
  round and thin nanofibers performed better than larger and ribbon-like fibers. The
  relationship between the fiber morphology and the delamination performance is further
  underpinned using detailed analysis of the fracture surface. Ultimately, this results
  in a range of optimized nanofibrous veils capable of improving the delamination
  resistance considerably without suffering from the aforementioned drawbacks.
abstract_full:
- lang: eng
  text: In this work an innovative electrospinning system is proposed that simultaneously
    has an adequate temperature resistance, a high increase in mode I (þ51%) and mode
    II (þ96%) delamination performance and can be commercially produced. Interleaving
    nanofibrous veils can potentially solve the issue of the limited delamination
    resistance encountered in composite laminates, but industrial upscaling has always
    been impeded by one or more critical factors. These constraining factors include
    a limited temperature stability of the nanofibers, a lack in simultaneous mode
    I and II delamination performance increase and the complexity of the electrospinning
    system because non-commercial polymers or specialty nanofibers (e.g. coaxial)
    are required. In this paper, a robust electrospinning system is proposed that
    is the first to overcome all major hurdles to make nanofiber toughening industrially
    viable. A new class of nanofibers based on biosourced polyamide 11 and its poly(ether-block-amide)
    co-polymers is used to deal with those shortcomings. The nanofibers have tuneable
    diameters down to 50 nm and cross-section morphologies ranging from circular to
    ribbon-shaped. The key to this work is the fundamental underpinning of the toughening
    effect using a broad range of interleaves with different mechanical and thermal
    properties, fiber diameters and fiber morphologies, all produced from the same
    bio-based base polymer. Generally, round and thin nanofibers performed better
    than larger and ribbon-like fibers. The relationship between the fiber morphology
    and the delamination performance is further underpinned using detailed analysis
    of the fracture surface. Ultimately, this results in a range of optimized nanofibrous
    veils capable of improving the delamination resistance considerably without suffering
    from the aforementioned drawbacks.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: '108126'
article_type: original
author:
- _id: 2D12E8D8-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 2D12E8D8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Timo
  last_name: Meireman
  name: Timo Meireman
  name_last_first: Meireman, Timo
  ugent_id:
  - '972580996713'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: EE9A9EBA-F0EE-11E1-A197-91C894A0A6B4
  biblio_id: EE9A9EBA-F0EE-11E1-A197-91C894A0A6B4
  first_name: Sander
  last_name: Rijckaert
  name: Sander Rijckaert
  name_last_first: Rijckaert, Sander
  orcid_id: 0000-0003-4447-0867
  ugent_id:
  - '977613653975'
- first_name: Hubert
  last_name: Rahier
  name: Hubert Rahier
  name_last_first: Rahier, Hubert
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8656395'
cite:
  apa: |2
      <div class="csl-entry">Meireman, T., Daelemans, L., Rijckaert, S., Rahier, H., Van Paepegem, W., &#38; De Clerck, K. (2020). Delamination resistant composites by interleaving bio-based long-chain polyamide nanofibers through optimal control of fiber diameter and fiber morphology. <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, <i>193</i>. https://doi.org/10.1016/j.compscitech.2020.108126</div>
  chicago-author-date: |2
      <div class="csl-entry">Meireman, Timo, Lode Daelemans, Sander Rijckaert, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2020. “Delamination Resistant Composites by Interleaving Bio-Based Long-Chain Polyamide Nanofibers through Optimal Control of Fiber Diameter and Fiber Morphology.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i> 193. https://doi.org/10.1016/j.compscitech.2020.108126.</div>
  fwo: |2
      <div class="csl-entry">Meireman, Timo, Lode Daelemans, Sander Rijckaert, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2020. “Delamination Resistant Composites by Interleaving Bio-Based Long-Chain Polyamide Nanofibers through Optimal Control of Fiber Diameter and Fiber Morphology.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i> 193. doi:10.1016/j.compscitech.2020.108126.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">T. Meireman, L. Daelemans, S. Rijckaert, H. Rahier, W. Van Paepegem, and K. De Clerck, “Delamination resistant composites by interleaving bio-based long-chain polyamide nanofibers through optimal control of fiber diameter and fiber morphology,” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, vol. 193, 2020.</div>
      </div>
  mla: |2
      <div class="csl-entry">Meireman, Timo, et al. “Delamination Resistant Composites by Interleaving Bio-Based Long-Chain Polyamide Nanofibers through Optimal Control of Fiber Diameter and Fiber Morphology.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, vol. 193, 2020, doi:10.1016/j.compscitech.2020.108126.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Meireman T, Daelemans L, Rijckaert S, Rahier H, Van Paepegem W, De Clerck K. Delamination resistant composites by interleaving bio-based long-chain polyamide nanofibers through optimal control of fiber diameter and fiber morphology. COMPOSITES SCIENCE AND TECHNOLOGY. 2020;193.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
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  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2020-04-06 07:54:15
date_updated: 2026-03-31 14:57:12
doi:
- 10.1016/j.compscitech.2020.108126
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-8656395
issn:
- 0266-3538
- 1879-1050
jcr:
  category: MATERIALS SCIENCE, COMPOSITES
  category_decile: 1
  category_quartile: 1
  category_rank: 2/28
  category_vigintile: 2
  eigenfactor: 0.02456
  immediacy_index: 2.192
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  impact_factor_5yr: 7.907
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  prev_impact_factor: 7.094
  total_cites: 42685
keyword:
- Nano composites
- Matrix cracking
- Fiber/matrix bond
- Fiber bridging
- Poly(ether-block-amide) (PEBA)
- INTERLAMINAR FRACTURE-TOUGHNESS
- MODE-I
- ELECTROSPUN NANOFIBERS
- INTERLAYERS
- BEHAVIOR
- SOLVENT
language:
- eng
page:
  count: '10'
parent:
  short_title: Compos. Sci. Technol.
  title: COMPOSITES SCIENCE AND TECHNOLOGY
project:
- _id: 001D05703
  abstract: <p>Research of urban and rural occupation and trade via pottery analysis.</p>
  end_date: 2005-09-30
  gismo_id: d73db4b9-21d4-4a57-b31f-62c79ca4304d
  iweto_id: 001D05703
  publication_count: 1
  start_date: 2003-10-01
  title: Late antiquity in the northern adriatic region
- _id: 178TW1215
  abstract: |-
    <p>
    The abstract for &quot;Mechanical investigation of epoxy-based composite laminates toughened with electrospun thermoplasticnanofibres&quot; is missing. Please contact the promotor for more information.

    </p>
  end_date: 2018-12-31
  gismo_id: 6aa08433-5d75-4c9e-9d23-aab37736aa7b
  iweto_id: 178TW1215
  start_date: 2015-01-01
  title: Mechanical investigation of epoxy-based composite laminates toughened with
    electrospun thermoplasticnanofibres
- _id: '3E016519'
  abstract: |-
    <p>
    Textiles are ideally suited for technical engineering applications thanks to their unique combination of lightness, flexibility and strength. Especially, fibre reinforced composites are seeing a tremendous growth for designing light-weight structural components. The fibres, the building blocks of any textile, and their arrangement in the textile and the composite (microstructure) determine the macroscopic properties. It is thus of utmost importance that this micro-macro relation is fundamentally understood. The complexity of textiles (complex hierarchical microstructure, highly non-linear behaviour) makes this a challenging problem. By following a multiscale analysis, combining both advanced experimental and numerical techniques, starting with individual fibres and building up till complete nano-interleaved preforms, we get a fundamental understanding of the micro-macro relationships that govern the mechanical behaviour of textile materials. These insights are of crucial importance for the further development of high-end nano-enabled composites and are extendable to many other technical textile applications as well.

    </p>
  end_date: 2022-09-30
  gismo_id: 3c0a4b92-b36f-11e9-9b22-19a03077e1f4
  iweto_id: '3E016519'
  start_date: 2019-10-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
- _id: 01P03418
  abstract: <p>The unique combination of light and flexible, but strong structures,
    makes textile materials well suited for technical engineering applications. Especially,
    fibre reinforced composites are seeing a tremendous growth for designing light-weight
    structural components. The fibres, the building blocks of any textile, and their
    arrangement in the composite (microstructure) determine the obtainable mechanical
    properties. It is thus of utmost importance that the formation of this microstructure
    is fundamentally understood. This enables the optimization of current materials,
    but also the development of advanced, nano-enabled composites by the novel technique
    of interleaving nanofibrous textiles. It is more complex than one would think
    at first sight due to the complicated nature of textiles. For example, composites
    are made by stacking layers of fabrics, whose interaction with each other and
    the tooling can result in unwanted defects or misalignments. This is related to
    the mechanics of the textile material. By following a multi-scale analysis, combining
    both experimental and numerical techniques, starting with individual fibres and
    building up till complete nano-interleaved preforms, we will get a fundamental
    understanding of the micro-macro relationships that govern the mechanics of textile
    materials. These insights are of crucial importance for further development of
    high-end nano-enabled composites, and extendable to many other technical textile
    applications as well.</p>
  end_date: 2019-09-30
  gismo_id: b2c0136d-5a95-11e9-b3e1-37a68b033e1d
  iweto_id: 01P03418
  start_date: 2019-01-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Delamination resistant composites by interleaving bio-based long-chain polyamide
  nanofibers through optimal control of fiber diameter and fiber morphology
type: journalArticle
volume: '193'
wos_id: '000527648600006'
wos_type: Article
year: '2020'
...
---
_id: '8676908'
abstract:
- Long-term predictions of material properties such as stiffness and creep resistance
  are important in many engineering applications and require high reliability and
  accuracy. This is especially true for polymer materials and their composites as
  their viscoelastic nature results in time-dependent material behaviour and any measurement
  uncertainties or errors amplify in long-term predictions. To measure this behaviour
  at smallest loadings, Dynamic Mechanical Analysis (DMA) is frequently declared as
  an ideal method. However, the measurement accuracy and repeatability of this method
  is strongly influenced by (i) the testing fixture and corresponding loading mode,
  (ii) the sample preparation and (iii) the plotting scale to interpret the test results.
  In this study, relevant experimental parameters were found for DMA and a proper
  procedure was designed, which was then applied to measure the viscoelastic behaviour
  of a highly temperature and creep resistant thermoplastic polymer (polyethersulfone)
  and of a highly graphite filled polypropylene composite. In combination with finite
  element simulations and in-situ strain measurements by digital image correlation
  (DIC), the main influences on measurement accuracy of three-point-bending DMA were
  identified and subsequently used to determine measurement guidelines. Using these
  guidelines, DMA measurements allow quantitative determination of the viscoelastic
  response for rigid polymer and composite materials.
abstract_full:
- lang: eng
  text: Long-term predictions of material properties such as stiffness and creep resistance
    are important in many engineering applications and require high reliability and
    accuracy. This is especially true for polymer materials and their composites as
    their viscoelastic nature results in time-dependent material behaviour and any
    measurement uncertainties or errors amplify in long-term predictions. To measure
    this behaviour at smallest loadings, Dynamic Mechanical Analysis (DMA) is frequently
    declared as an ideal method. However, the measurement accuracy and repeatability
    of this method is strongly influenced by (i) the testing fixture and corresponding
    loading mode, (ii) the sample preparation and (iii) the plotting scale to interpret
    the test results. In this study, relevant experimental parameters were found for
    DMA and a proper procedure was designed, which was then applied to measure the
    viscoelastic behaviour of a highly temperature and creep resistant thermoplastic
    polymer (polyethersulfone) and of a highly graphite filled polypropylene composite.
    In combination with finite element simulations and in-situ strain measurements
    by digital image correlation (DIC), the main influences on measurement accuracy
    of three-point-bending DMA were identified and subsequently used to determine
    measurement guidelines. Using these guidelines, DMA measurements allow quantitative
    determination of the viscoelastic response for rigid polymer and composite materials.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: '106799'
article_type: original
author:
- _id: A13EB19E-D8AF-11E6-A6EB-BE61AD28A064
  biblio_id: A13EB19E-D8AF-11E6-A6EB-BE61AD28A064
  credit_role:
  - conceptualization
  - formal_analysis
  - investigation
  - methodology
  - visualization
  - writing_original_draft
  first_name: Joanna
  last_name: Schalnat
  name: Joanna Schalnat
  name_last_first: Schalnat, Joanna
  ugent_id:
  - '976703632210'
- _id: 02740234-FAF6-11E2-80CD-318C10BDE39D
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 02740234-FAF6-11E2-80CD-318C10BDE39D
  credit_role:
  - methodology
  - software
  - validation
  - visualization
  - writing_review_editing
  first_name: David
  last_name: Garoz Gómez
  name: David Garoz Gómez
  name_last_first: Garoz Gómez, David
  orcid_id: 0000-0003-2110-0118
  ugent_id:
  - '000151210973'
  - '802001598415'
  - '972908523778'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  credit_role:
  - supervision
  - visualization
  - writing_review_editing
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - formal_analysis
  - writing_review_editing
  first_name: Ives
  last_name: De Baere
  name: Ives De Baere
  name_last_first: De Baere, Ives
  orcid_id: 0000-0002-6846-0981
  ugent_id:
  - '801001866905'
  - '977854465771'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - resources
  - validation
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  credit_role:
  - funding_acquisition
  - project_administration
  - supervision
  - writing_review_editing
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
biblio_id: '8676908'
cite:
  apa: |2
      <div class="csl-entry">Schalnat, J., Garoz Gómez, D., Daelemans, L., De Baere, I., De Clerck, K., &#38; Van Paepegem, W. (2020). Influencing parameters on measurement accuracy in dynamic mechanical analysis of thermoplastic polymers and their composites. <i>POLYMER TESTING</i>, <i>91</i>. https://doi.org/10.1016/j.polymertesting.2020.106799</div>
  chicago-author-date: |2
      <div class="csl-entry">Schalnat, Joanna, David Garoz Gómez, Lode Daelemans, Ives De Baere, Karen De Clerck, and Wim Van Paepegem. 2020. “Influencing Parameters on Measurement Accuracy in Dynamic Mechanical Analysis of Thermoplastic Polymers and Their Composites.” <i>POLYMER TESTING</i> 91. https://doi.org/10.1016/j.polymertesting.2020.106799.</div>
  fwo: |2
      <div class="csl-entry">Schalnat, Joanna, David Garoz Gómez, Lode Daelemans, Ives De Baere, Karen De Clerck, and Wim Van Paepegem. 2020. “Influencing Parameters on Measurement Accuracy in Dynamic Mechanical Analysis of Thermoplastic Polymers and Their Composites.” <i>POLYMER TESTING</i> 91. doi:10.1016/j.polymertesting.2020.106799.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">J. Schalnat, D. Garoz Gómez, L. Daelemans, I. De Baere, K. De Clerck, and W. Van Paepegem, “Influencing parameters on measurement accuracy in dynamic mechanical analysis of thermoplastic polymers and their composites,” <i>POLYMER TESTING</i>, vol. 91, 2020.</div>
      </div>
  mla: |2
      <div class="csl-entry">Schalnat, Joanna, et al. “Influencing Parameters on Measurement Accuracy in Dynamic Mechanical Analysis of Thermoplastic Polymers and Their Composites.” <i>POLYMER TESTING</i>, vol. 91, 2020, doi:10.1016/j.polymertesting.2020.106799.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Schalnat J, Garoz Gómez D, Daelemans L, De Baere I, De Clerck K, Van Paepegem W. Influencing parameters on measurement accuracy in dynamic mechanical analysis of thermoplastic polymers and their composites. POLYMER TESTING. 2020;91.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: A13EB19E-D8AF-11E6-A6EB-BE61AD28A064
  biblio_id: A13EB19E-D8AF-11E6-A6EB-BE61AD28A064
  first_name: Joanna
  last_name: Schalnat
  name: Joanna Schalnat
  name_last_first: Schalnat, Joanna
  ugent_id:
  - '976703632210'
date_created: 2020-10-06 14:34:42
date_updated: 2026-03-31 14:57:12
doi:
- 10.1016/j.polymertesting.2020.106799
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-8676908
issn:
- 0142-9418
- 1873-2348
jcr:
  category: MATERIALS SCIENCE, CHARACTERIZATION & TESTING
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  total_cites: 14288
keyword:
- DMA
- Accuracy
- Repeatability
- 3-Point-bending
- PESU
- Technoform-PP
- GUIDELINES
language:
- eng
page:
  count: '10'
parent:
  short_title: Polym. Test
  title: POLYMER TESTING
project:
- _id: '3E016519'
  abstract: |-
    <p>
    Textiles are ideally suited for technical engineering applications thanks to their unique combination of lightness, flexibility and strength. Especially, fibre reinforced composites are seeing a tremendous growth for designing light-weight structural components. The fibres, the building blocks of any textile, and their arrangement in the textile and the composite (microstructure) determine the macroscopic properties. It is thus of utmost importance that this micro-macro relation is fundamentally understood. The complexity of textiles (complex hierarchical microstructure, highly non-linear behaviour) makes this a challenging problem. By following a multiscale analysis, combining both advanced experimental and numerical techniques, starting with individual fibres and building up till complete nano-interleaved preforms, we get a fundamental understanding of the micro-macro relationships that govern the mechanical behaviour of textile materials. These insights are of crucial importance for the further development of high-end nano-enabled composites and are extendable to many other technical textile applications as well.

    </p>
  end_date: 2022-09-30
  gismo_id: 3c0a4b92-b36f-11e9-9b22-19a03077e1f4
  iweto_id: '3E016519'
  start_date: 2019-10-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
- _id: 01P03418
  abstract: <p>The unique combination of light and flexible, but strong structures,
    makes textile materials well suited for technical engineering applications. Especially,
    fibre reinforced composites are seeing a tremendous growth for designing light-weight
    structural components. The fibres, the building blocks of any textile, and their
    arrangement in the composite (microstructure) determine the obtainable mechanical
    properties. It is thus of utmost importance that the formation of this microstructure
    is fundamentally understood. This enables the optimization of current materials,
    but also the development of advanced, nano-enabled composites by the novel technique
    of interleaving nanofibrous textiles. It is more complex than one would think
    at first sight due to the complicated nature of textiles. For example, composites
    are made by stacking layers of fabrics, whose interaction with each other and
    the tooling can result in unwanted defects or misalignments. This is related to
    the mechanics of the textile material. By following a multi-scale analysis, combining
    both experimental and numerical techniques, starting with individual fibres and
    building up till complete nano-interleaved preforms, we will get a fundamental
    understanding of the micro-macro relationships that govern the mechanics of textile
    materials. These insights are of crucial importance for further development of
    high-end nano-enabled composites, and extendable to many other technical textile
    applications as well.</p>
  end_date: 2019-09-30
  gismo_id: b2c0136d-5a95-11e9-b3e1-37a68b033e1d
  iweto_id: 01P03418
  start_date: 2019-01-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Influencing parameters on measurement accuracy in dynamic mechanical analysis
  of thermoplastic polymers and their composites
type: journalArticle
volume: '91'
wos_id: '000581970300042'
wos_type: Article
year: '2020'
...
---
_id: '8681095'
abstract:
- In many fused filament fabrication (FFF) processes, commercial printers are used,
  but rarely are printer settings transferred from one commercial printer to the other
  to give similar final tensile part performance. Here, we report such translation
  going from the Felix 3.0 to Prusa i3 MK3 printer by adjusting the flow rate and
  overlap of strands, utilizing an in-house developed blend of polylactic acid (PLA)
  and poly(butylene adipate-co-terephthalate) (PBAT). We perform a sensitivity analysis
  for the Prusa printer, covering variations in nozzle temperature, nozzle diameter,
  layer thickness, and printing speed (T-nozzle, d(nozzle), LT, and v(print)), aiming
  at minimizing anisotropy and improving interlayer bonding. Higher mass, larger width,
  and thickness are obtained with larger d(nozzle), lower v(print), higher LT, and
  higher T-nozzle. A higher v(print) results in less tensile strain at break, but
  it remains at a high strain value for samples printed with d(nozzle) equal to 0.5
  mm. v(print) has no significant effect on the tensile modulus and tensile and impact
  strength of the samples. If LT is fixed, an increased d(nozzle) is beneficial for
  the tensile strength, ductility, and impact strength of the printed sample due to
  better bonding from a wider raster structure, while an increased LT leads to deterioration
  of mechanical properties. If the ratio d(nozzle)/LT is greater than 2, a good tensile
  performance is obtained. An improved T-nozzle leads to a sufficient flow of material,
  contributing to the performance of the printed device. The considerations brought
  forward result in a deeper understanding of the FFF process and offer guidance about
  parameter selection. The optimal d(nozzle)/v(print)/LT/T-nozzle combination is 0.5
  mm/120 mm s(-1)/0.15 mm/230 degrees C.
abstract_full:
- lang: eng
  text: In many fused filament fabrication (FFF) processes, commercial printers are
    used, but rarely are printer settings transferred from one commercial printer
    to the other to give similar final tensile part performance. Here, we report such
    translation going from the Felix 3.0 to Prusa i3 MK3 printer by adjusting the
    flow rate and overlap of strands, utilizing an in-house developed blend of polylactic
    acid (PLA) and poly(butylene adipate-co-terephthalate) (PBAT). We perform a sensitivity
    analysis for the Prusa printer, covering variations in nozzle temperature, nozzle
    diameter, layer thickness, and printing speed (T-nozzle, d(nozzle), LT, and v(print)),
    aiming at minimizing anisotropy and improving interlayer bonding. Higher mass,
    larger width, and thickness are obtained with larger d(nozzle), lower v(print),
    higher LT, and higher T-nozzle. A higher v(print) results in less tensile strain
    at break, but it remains at a high strain value for samples printed with d(nozzle)
    equal to 0.5 mm. v(print) has no significant effect on the tensile modulus and
    tensile and impact strength of the samples. If LT is fixed, an increased d(nozzle)
    is beneficial for the tensile strength, ductility, and impact strength of the
    printed sample due to better bonding from a wider raster structure, while an increased
    LT leads to deterioration of mechanical properties. If the ratio d(nozzle)/LT
    is greater than 2, a good tensile performance is obtained. An improved T-nozzle
    leads to a sufficient flow of material, contributing to the performance of the
    printed device. The considerations brought forward result in a deeper understanding
    of the FFF process and offer guidance about parameter selection. The optimal d(nozzle)/v(print)/LT/T-nozzle
    combination is 0.5 mm/120 mm s(-1)/0.15 mm/230 degrees C.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: '2573'
article_type: original
author:
- _id: D11A4204-79FD-11E6-A1F1-3577B5D1D7B1
  biblio_id: D11A4204-79FD-11E6-A1F1-3577B5D1D7B1
  first_name: Sisi
  last_name: Wang
  name: Sisi Wang
  name_last_first: Wang, Sisi
  ugent_id:
  - '000160916128'
  - '802002436857'
  - '979929499370'
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- first_name: Hesheng
  last_name: Xia
  name: Hesheng Xia
  name_last_first: Xia, Hesheng
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F8DDCF06-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F8DDCF06-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Ludwig
  last_name: Cardon
  name: Ludwig Cardon
  name_last_first: Cardon, Ludwig
  orcid_id: 0000-0002-4019-612X
  ugent_id:
  - '802000179080'
  - '972410561043'
biblio_id: '8681095'
cite:
  apa: |2
      <div class="csl-entry">Wang, S., D’hooge, D., Daelemans, L., Xia, H., De Clerck, K., &#38; Cardon, L. (2020). The transferability and design of commercial printer settings in PLA/PBAT fused filament fabrication. <i>POLYMERS</i>, <i>12</i>(11). https://doi.org/10.3390/polym12112573</div>
  chicago-author-date: |2
      <div class="csl-entry">Wang, Sisi, Dagmar D’hooge, Lode Daelemans, Hesheng Xia, Karen De Clerck, and Ludwig Cardon. 2020. “The Transferability and Design of Commercial Printer Settings in PLA/PBAT Fused Filament Fabrication.” <i>POLYMERS</i> 12 (11). https://doi.org/10.3390/polym12112573.</div>
  fwo: |2
      <div class="csl-entry">Wang, Sisi, Dagmar D’hooge, Lode Daelemans, Hesheng Xia, Karen De Clerck, and Ludwig Cardon. 2020. “The Transferability and Design of Commercial Printer Settings in PLA/PBAT Fused Filament Fabrication.” <i>POLYMERS</i> 12 (11). doi:10.3390/polym12112573.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. Wang, D. D’hooge, L. Daelemans, H. Xia, K. De Clerck, and L. Cardon, “The transferability and design of commercial printer settings in PLA/PBAT fused filament fabrication,” <i>POLYMERS</i>, vol. 12, no. 11, 2020.</div>
      </div>
  mla: |2
      <div class="csl-entry">Wang, Sisi, et al. “The Transferability and Design of Commercial Printer Settings in PLA/PBAT Fused Filament Fabrication.” <i>POLYMERS</i>, vol. 12, no. 11, 2020, doi:10.3390/polym12112573.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Wang S, D’hooge D, Daelemans L, Xia H, De Clerck K, Cardon L. The transferability and design of commercial printer settings in PLA/PBAT fused filament fabrication. POLYMERS. 2020;12(11).</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution 4.0 International Public License
  (CC-BY 4.0)
created_by:
  _id: 798BCFF0-0208-11E3-BADE-15C210BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 798BCFF0-0208-11E3-BADE-15C210BDE39D
  first_name: Paulien
  last_name: Baeyens
  name: Paulien Baeyens
  name_last_first: Baeyens, Paulien
  ugent_id:
  - '802002698757'
  - '974253404530'
date_created: 2020-11-18 13:48:07
date_updated: 2026-03-31 14:57:12
doi:
- 10.3390/polym12112573
external: 0
file:
- _id: '8681096'
  access: open
  content_type: application/pdf
  kind: fullText
  name: 59._Dhooge-The_Transferability_and_Design_of_Commercial_Printer_Settings_in_PLAPBAT_Fused_Filament_Fabrication.pdf
  publication_version: publishedVersion
  sha256: 9f96c5661ae517c2fe8cb809ae05b63d8597b1311fe66f98999dafe0582f0d99
  size: '6977452'
  thumbnail_url: https://biblio.ugent.be/publication/8681095/file/8681096/thumbnail.png
  url: https://biblio.ugent.be/publication/8681095/file/8681096.pdf
handle: http://hdl.handle.net/1854/LU-8681095
issn:
- 2073-4360
issue: '11'
jcr:
  category: POLYMER SCIENCE
  category_decile: 3
  category_quartile: 1
  category_rank: 18/88
  category_vigintile: 5
  eigenfactor: 0.0298
  immediacy_index: 1.073
  impact_factor: 4.329
  impact_factor_5yr: 4.493
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 4
  prev_impact_factor: 3.426
  total_cites: 27637
keyword:
- printing parameter
- mechanical property
- printer transferability
- MECHANICAL-PROPERTIES
- IMPACT STRENGTH
- PLA
- FDM
- PROPERTY
language:
- eng
page:
  count: '20'
parent:
  short_title: Polymers
  title: POLYMERS
project:
- _id: 01P03418
  abstract: <p>The unique combination of light and flexible, but strong structures,
    makes textile materials well suited for technical engineering applications. Especially,
    fibre reinforced composites are seeing a tremendous growth for designing light-weight
    structural components. The fibres, the building blocks of any textile, and their
    arrangement in the composite (microstructure) determine the obtainable mechanical
    properties. It is thus of utmost importance that the formation of this microstructure
    is fundamentally understood. This enables the optimization of current materials,
    but also the development of advanced, nano-enabled composites by the novel technique
    of interleaving nanofibrous textiles. It is more complex than one would think
    at first sight due to the complicated nature of textiles. For example, composites
    are made by stacking layers of fabrics, whose interaction with each other and
    the tooling can result in unwanted defects or misalignments. This is related to
    the mechanics of the textile material. By following a multi-scale analysis, combining
    both experimental and numerical techniques, starting with individual fibres and
    building up till complete nano-interleaved preforms, we will get a fundamental
    understanding of the micro-macro relationships that govern the mechanics of textile
    materials. These insights are of crucial importance for further development of
    high-end nano-enabled composites, and extendable to many other technical textile
    applications as well.</p>
  end_date: 2019-09-30
  gismo_id: b2c0136d-5a95-11e9-b3e1-37a68b033e1d
  iweto_id: 01P03418
  start_date: 2019-01-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
- _id: '3E016519'
  abstract: |-
    <p>
    Textiles are ideally suited for technical engineering applications thanks to their unique combination of lightness, flexibility and strength. Especially, fibre reinforced composites are seeing a tremendous growth for designing light-weight structural components. The fibres, the building blocks of any textile, and their arrangement in the textile and the composite (microstructure) determine the macroscopic properties. It is thus of utmost importance that this micro-macro relation is fundamentally understood. The complexity of textiles (complex hierarchical microstructure, highly non-linear behaviour) makes this a challenging problem. By following a multiscale analysis, combining both advanced experimental and numerical techniques, starting with individual fibres and building up till complete nano-interleaved preforms, we get a fundamental understanding of the micro-macro relationships that govern the mechanical behaviour of textile materials. These insights are of crucial importance for the further development of high-end nano-enabled composites and are extendable to many other technical textile applications as well.

    </p>
  end_date: 2022-09-30
  gismo_id: 3c0a4b92-b36f-11e9-9b22-19a03077e1f4
  iweto_id: '3E016519'
  start_date: 2019-10-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
publication_status: published
publication_status_sort: 2
pubmed_id: '33147749'
status: public
subject:
- Technology and Engineering
title: The transferability and design of commercial printer settings in PLA/PBAT fused
  filament fabrication
type: journalArticle
volume: '12'
wos_id: '000593870800001'
wos_type: Article
year: '2020'
...
---
_id: '8675595'
abstract:
- In the present study, poly(3-hydroxybuturate-co-3-hydroxyvalerate) (PHBV) and plasticized
  polylactide acid (PLA) blends were processed by melt extrusion with different weight
  ratio (up to 20 wt.% of PHBV). Bionanocomposites were obtained through the incorporation
  of an organomodified montmorillonite (C30B) at 3 wt.%. The main features of the
  processing and physico-chemical characterization of films and injected samples were
  assessed and the influence of the components on the chemical, thermal and mechanical
  properties of the bionanocomposites was investigated. The results indicated that
  plasticized PLA/PHBV/C30B bionanocomposites present optimal mechanical properties
  for sanitary applications. Moreover, plasticized PLA/PHBV could lead to finely tuned
  biomaterials able to form electrospun nanofibers.
abstract_full:
- lang: eng
  text: In the present study, poly(3-hydroxybuturate-co-3-hydroxyvalerate) (PHBV)
    and plasticized polylactide acid (PLA) blends were processed by melt extrusion
    with different weight ratio (up to 20 wt.% of PHBV). Bionanocomposites were obtained
    through the incorporation of an organomodified montmorillonite (C30B) at 3 wt.%.
    The main features of the processing and physico-chemical characterization of films
    and injected samples were assessed and the influence of the components on the
    chemical, thermal and mechanical properties of the bionanocomposites was investigated.
    The results indicated that plasticized PLA/PHBV/C30B bionanocomposites present
    optimal mechanical properties for sanitary applications. Moreover, plasticized
    PLA/PHBV could lead to finely tuned biomaterials able to form electrospun nanofibers.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: '64'
article_type: original
author:
- first_name: Clément
  last_name: Lacoste
  name: Clément Lacoste
  name_last_first: Lacoste, Clément
- first_name: Benjamin
  last_name: Gallard
  name: Benjamin Gallard
  name_last_first: Gallard, Benjamin
- first_name: José-Marie
  last_name: Lopez-Cuesta
  name: José-Marie Lopez-Cuesta
  name_last_first: Lopez-Cuesta, José-Marie
- _id: 23C336CA-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 23C336CA-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Özlem İpek
  last_name: Kalaoglu Altan
  name: Özlem İpek Kalaoglu Altan
  name_last_first: Kalaoglu Altan, Özlem İpek
  ugent_id:
  - '000091814136'
  - '802003037550'
  - '975697430594'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8675595'
cite:
  apa: |2
      <div class="csl-entry">Lacoste, C., Gallard, B., Lopez-Cuesta, J.-M., Kalaoglu Altan, Ö. İ., &#38; De Clerck, K. (2020). Development of bionanocomposites based on poly(3-hydroxybutyrate-co-3-hydroxyvalerate)/polylactide blends reinforced with cloisite 30B. <i>JOURNAL OF FUNCTIONAL BIOMATERIALS</i>, <i>11</i>(3). https://doi.org/10.3390/jfb11030064</div>
  bof: |2
      <div class="csl-entry">Lacoste, Clément, Benjamin Gallard, José-Marie Lopez-Cuesta, Özlem İpek Kalaoglu Altan, and Karen De Clerck. 2020. “Development of Bionanocomposites Based on Poly(3-Hydroxybutyrate-Co-3-Hydroxyvalerate)/Polylactide Blends Reinforced with Cloisite 30B.” <i>JOURNAL OF FUNCTIONAL BIOMATERIALS</i> 11 (3). doi:10.3390/jfb11030064.</div>
  chicago-author-date: |2
      <div class="csl-entry">Lacoste, Clément, Benjamin Gallard, José-Marie Lopez-Cuesta, Özlem İpek Kalaoglu Altan, and Karen De Clerck. 2020. “Development of Bionanocomposites Based on Poly(3-Hydroxybutyrate-Co-3-Hydroxyvalerate)/Polylactide Blends Reinforced with Cloisite 30B.” <i>JOURNAL OF FUNCTIONAL BIOMATERIALS</i> 11 (3). https://doi.org/10.3390/jfb11030064.</div>
  fwo: |2
      <div class="csl-entry">Lacoste, Clément, Benjamin Gallard, José-Marie Lopez-Cuesta, Özlem İpek Kalaoglu Altan, and Karen De Clerck. 2020. “Development of Bionanocomposites Based on Poly(3-Hydroxybutyrate-Co-3-Hydroxyvalerate)/Polylactide Blends Reinforced with Cloisite 30B.” <i>JOURNAL OF FUNCTIONAL BIOMATERIALS</i> 11 (3). doi:10.3390/jfb11030064.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">C. Lacoste, B. Gallard, J.-M. Lopez-Cuesta, Ö. İ. Kalaoglu Altan, and K. De Clerck, “Development of bionanocomposites based on poly(3-hydroxybutyrate-co-3-hydroxyvalerate)/polylactide blends reinforced with cloisite 30B,” <i>JOURNAL OF FUNCTIONAL BIOMATERIALS</i>, vol. 11, no. 3, 2020.</div>
      </div>
  mla: |2
      <div class="csl-entry">Lacoste, Clément, et al. “Development of Bionanocomposites Based on Poly(3-Hydroxybutyrate-Co-3-Hydroxyvalerate)/Polylactide Blends Reinforced with Cloisite 30B.” <i>JOURNAL OF FUNCTIONAL BIOMATERIALS</i>, vol. 11, no. 3, 2020, doi:10.3390/jfb11030064.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Lacoste C, Gallard B, Lopez-Cuesta J-M, Kalaoglu Altan Öİ, De Clerck K. Development of bionanocomposites based on poly(3-hydroxybutyrate-co-3-hydroxyvalerate)/polylactide blends reinforced with cloisite 30B. JOURNAL OF FUNCTIONAL BIOMATERIALS. 2020;11(3).</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution 4.0 International Public License
  (CC-BY 4.0)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2020-09-24 11:47:47
date_updated: 2023-05-08 11:51:47
doi:
- 10.3390/jfb11030064
external: 0
file:
- _id: '8675596'
  access: open
  content_type: application/pdf
  kind: fullText
  name: jfb-11-00064-v2.pdf
  publication_version: publishedVersion
  sha256: e123b23e1304850a371f25eed99d5d2e1f505d06081f654eaab72962f15f33e5
  size: '15111720'
  thumbnail_url: https://biblio.ugent.be/publication/8675595/file/8675596/thumbnail.png
  url: https://biblio.ugent.be/publication/8675595/file/8675596.pdf
handle: http://hdl.handle.net/1854/LU-8675595
issn:
- 2079-4983
issue: '3'
issue_title: High performance functional bio-based polymers for skin-contact products
jcr: {}
keyword:
- biopolymer
- blends
- PLA
- PHBV
- nanocomposite
- FILMS
- PLLA/PHBV
language:
- eng
page:
  count: '12'
parent:
  short_title: J. Funct. Biomater.
  title: JOURNAL OF FUNCTIONAL BIOMATERIALS
project:
- _id: 41A09117
  abstract: '<p>Personal care, Cosmetic and biomedical industries deal with high-value
    and/or large volume consumption of polymer-based products which are often derived
    from fossil sources. Although a number of alternative bio-based polymers is the
    subject of recent research, more effort is still needed to increase their specific
    functionalities and performances in order to proceed with their true translation
    into market. PolyBioSkin aims at developing skin-contact biopolymer-based product
    parts with increased performance and functionality, such as parts of diapers,
    cosmetic pads and wound dressings. Indeed, PolyBioSkin will focus on two main
    classes of bio-based polymers relevant for next generation bio-based industry:
    biopolyesters (polylactic acid and polyhydroxyalkanoates) because fully renewable,
    biocompatible and biodegradable and available at an industrial scale, and natural
    polysaccharides (cellulose/starch and chitin/chitosan), derived from biomass and
    food waste, for their peculiar properties, such as absorbency and anti-infectivity.
    <br />Films and textiles will be produced starting from these polymers and their
    combinations to prove that key products and/or product parts in sanitary, cosmetic
    and biomedical industry can be effectively translated from a fossil-derived to
    bio-based polymer production. PolyBioSkin will provide to skin-contact products
    a much more environmentally friendly end of life than the current accumulation
    in landfills or incineration, thanks to their biodegradability allowing the organic
    recycling.</p>'
  end_date: 2020-07-31
  eu_acronym: PolyBioSkin
  eu_call_id: H20.RIA.2017.0006,01
  eu_framework_programme: H2020
  eu_id: '745839'
  gismo_id: 035f6009-5e69-457b-8ff6-598f0e66069f
  iweto_id: 41A09117
  start_date: 2017-06-01
  title: PolyBioSkin
publication_status: published
publication_status_sort: 2
pubmed_id: '32947911'
status: public
subject:
- Technology and Engineering
title: Development of bionanocomposites based on poly(3-hydroxybutyrate-co-3-hydroxyvalerate)/polylactide
  blends reinforced with cloisite 30B
type: journalArticle
volume: '11'
wos_id: '000578196900001'
wos_type: Article
year: '2020'
...
---
_id: '8680287'
abstract:
- Dye-functionalized polymers have been extensively studied to understand polymer
  chain dynamics, intra or inter-molecular association and conformational changes
  as well as in practical applications such as signal amplification in diagnostic
  tests and light-harvesting antennas. In this work, the Forster resonance energy
  transfer (FRET) of dye-functionalized poly(2-ethyl-2-oxazoline) (PEtOx) was studied
  to evaluate the effect of dye positioning and polymer chain length on the FRET efficiency.
  Therefore, both alpha (initiating terminus)- or omega (terminal chain end)-fluorophore
  single labeled and dual alpha,omega-fluorescent dye labeled PEtOx were prepared
  via cationic ring opening polymerization (CROP) using 1-(bromomethyl)pyrene as the
  initiator and/or 1-pyrenebutyric acid or coumarin 343 as the terminating agent,
  yielding well-defined PEtOx with high labeling efficiency (over 91%). Fluorescence
  studies revealed that intramolecular FRET is most efficient for heterotelechelic
  PEtOx containing both pyrene and coumarin 343 fluorophores as chain ends, as expected.
  A strong dependence of the energy transfer on the chain length was found for these
  dual labeled polymers. The polymers were tested in both dilute organic (chloroform)
  and aqueous media revealing a higher FRET efficiency in water due to the enhanced
  emissive properties of pyrene. The application of dual labeled polymers as fluorescent
  probes for temperature sensing was demonstrated based on the lower critical solution
  temperature behavior of the PEtOx. Furthermore, these polymers could be successfully
  processed into fibers and thin films. Importantly, the fluorescence properties were
  retained in the solid state without decreasing the FRET efficiency, thus opening
  future possibilities for application of these materials in solar cells and/or sensors.
abstract_full:
- lang: eng
  text: Dye-functionalized polymers have been extensively studied to understand polymer
    chain dynamics, intra or inter-molecular association and conformational changes
    as well as in practical applications such as signal amplification in diagnostic
    tests and light-harvesting antennas. In this work, the Forster resonance energy
    transfer (FRET) of dye-functionalized poly(2-ethyl-2-oxazoline) (PEtOx) was studied
    to evaluate the effect of dye positioning and polymer chain length on the FRET
    efficiency. Therefore, both alpha (initiating terminus)- or omega (terminal chain
    end)-fluorophore single labeled and dual alpha,omega-fluorescent dye labeled PEtOx
    were prepared via cationic ring opening polymerization (CROP) using 1-(bromomethyl)pyrene
    as the initiator and/or 1-pyrenebutyric acid or coumarin 343 as the terminating
    agent, yielding well-defined PEtOx with high labeling efficiency (over 91%). Fluorescence
    studies revealed that intramolecular FRET is most efficient for heterotelechelic
    PEtOx containing both pyrene and coumarin 343 fluorophores as chain ends, as expected.
    A strong dependence of the energy transfer on the chain length was found for these
    dual labeled polymers. The polymers were tested in both dilute organic (chloroform)
    and aqueous media revealing a higher FRET efficiency in water due to the enhanced
    emissive properties of pyrene. The application of dual labeled polymers as fluorescent
    probes for temperature sensing was demonstrated based on the lower critical solution
    temperature behavior of the PEtOx. Furthermore, these polymers could be successfully
    processed into fibers and thin films. Importantly, the fluorescence properties
    were retained in the solid state without decreasing the FRET efficiency, thus
    opening future possibilities for application of these materials in solar cells
    and/or sensors.
affiliation:
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_type: original
author:
- _id: D031A838-F0EE-11E1-A197-91C894A0A6B4
  biblio_id: D031A838-F0EE-11E1-A197-91C894A0A6B4
  first_name: Ronald
  last_name: Merckx
  name: Ronald Merckx
  name_last_first: Merckx, Ronald
  orcid_id: 0000-0002-2867-0888
  ugent_id:
  - '974260040744'
- first_name: Thomas
  last_name: Swift
  name: Thomas Swift
  name_last_first: Swift, Thomas
- first_name: Ryan
  last_name: Rees
  name: Ryan Rees
  name_last_first: Rees, Ryan
- first_name: Joachim F. R.
  last_name: Van Guyse
  name: Joachim F. R. Van Guyse
  name_last_first: Van Guyse, Joachim F. R.
- _id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
  ugent_id:
  - '000100318410'
  - '802002133935'
  - '975208259089'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F9FE1DBE-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW51
    ugent_id: TW51
  biblio_id: F9FE1DBE-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Heidi
  last_name: Ottevaere
  name: Heidi Ottevaere
  name_last_first: Ottevaere, Heidi
  ugent_id:
  - '802000315688'
- _id: F9FDEB1E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW51
    ugent_id: TW51
  biblio_id: F9FDEB1E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Hugo
  last_name: Thienpont
  name: Hugo Thienpont
  name_last_first: Thienpont, Hugo
  ugent_id:
  - '802000315587'
- _id: 88FDC734-E001-11E5-A52B-C053B5D1D7B1
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 88FDC734-E001-11E5-A52B-C053B5D1D7B1
  first_name: Valentin-Victor
  last_name: Jerca
  name: Valentin-Victor Jerca
  name_last_first: Jerca, Valentin-Victor
  ugent_id:
  - '802002296007'
  - '973706288659'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
biblio_id: '8680287'
cite:
  apa: |2
      <div class="csl-entry">Merckx, R., Swift, T., Rees, R., Van Guyse, J. F. R., Schoolaert, E., De Clerck, K., … Hoogenboom, R. (2020). Förster resonance energy transfer in fluorophore labeled poly(2-ethyl-2-oxazoline)s. <i>JOURNAL OF MATERIALS CHEMISTRY C</i>, <i>8</i>(40), 14125–14137. https://doi.org/10.1039/d0tc02830d</div>
  chicago-author-date: |2
      <div class="csl-entry">Merckx, Ronald, Thomas Swift, Ryan Rees, Joachim F. R. Van Guyse, Ella Schoolaert, Karen De Clerck, Heidi Ottevaere, Hugo Thienpont, Valentin-Victor Jerca, and Richard Hoogenboom. 2020. “Förster Resonance Energy Transfer in Fluorophore Labeled Poly(2-Ethyl-2-Oxazoline)s.” <i>JOURNAL OF MATERIALS CHEMISTRY C</i> 8 (40): 14125–37. https://doi.org/10.1039/d0tc02830d.</div>
  fwo: |2
      <div class="csl-entry">Merckx, Ronald, Thomas Swift, Ryan Rees, Joachim F. R. Van Guyse, Ella Schoolaert, Karen De Clerck, Heidi Ottevaere, Hugo Thienpont, Valentin-Victor Jerca, and Richard Hoogenboom. 2020. “Förster Resonance Energy Transfer in Fluorophore Labeled Poly(2-Ethyl-2-Oxazoline)s.” <i>JOURNAL OF MATERIALS CHEMISTRY C</i> 8 (40): 14125–14137. doi:10.1039/d0tc02830d.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">R. Merckx <i>et al.</i>, “Förster resonance energy transfer in fluorophore labeled poly(2-ethyl-2-oxazoline)s,” <i>JOURNAL OF MATERIALS CHEMISTRY C</i>, vol. 8, no. 40, pp. 14125–14137, 2020.</div>
      </div>
  mla: |2
      <div class="csl-entry">Merckx, Ronald, et al. “Förster Resonance Energy Transfer in Fluorophore Labeled Poly(2-Ethyl-2-Oxazoline)s.” <i>JOURNAL OF MATERIALS CHEMISTRY C</i>, vol. 8, no. 40, 2020, pp. 14125–37, doi:10.1039/d0tc02830d.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Merckx R, Swift T, Rees R, Van Guyse JFR, Schoolaert E, De Clerck K, et al. Förster resonance energy transfer in fluorophore labeled poly(2-ethyl-2-oxazoline)s. JOURNAL OF MATERIALS CHEMISTRY C. 2020;8(40):14125–37.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
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  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
  ugent_id:
  - '000100318410'
  - '802002133935'
  - '975208259089'
date_created: 2020-11-10 19:08:52
date_updated: 2026-03-31 14:54:18
doi:
- 10.1039/d0tc02830d
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-8680287
issn:
- 2050-7526
- 2050-7534
issue: '40'
jcr:
  category: PHYSICS, APPLIED
  category_decile: 2
  category_quartile: 1
  category_rank: 25/160
  category_vigintile: 4
  eigenfactor: 0.09371
  immediacy_index: 1.587
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  impact_factor_5yr: 6.853
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 3
  prev_impact_factor: 7.059
  total_cites: 62169
keyword:
- Materials Chemistry
- General Chemistry
- LIGHT-HARVESTING POLYMERS
- FLUORESCENCE
- POLYMERIZATION
- DYNAMICS
- MICELLES
- HYBRIDS
- CHAINS
- POLY(2-OXAZOLINE)S
- TEMPERATURE
- STRATEGIES
language:
- eng
page:
  count: '13'
  first: '14125'
  last: '14137'
parent:
  short_title: J. Mater. Chem. C
  title: JOURNAL OF MATERIALS CHEMISTRY C
project:
- _id: 3G060518
  abstract: <p> Due to their high relative surface area, nanofibrous materials obtained
    via electrospinning have shown to be ideal candidates for high-quality sensors
    in many sectors, including environmental monitoring, food inspection and biomedicine.
    The key challenges remain (i) the controlled incorporation of analyte-sensitive
    dye molecules in the nanofibers via chemical linkage without leaching upon application
    and (ii) the identification of environmentally friendly electrospinning conditions,
    aiming at the production of sensor materials with a long-term water stability.
    In view of these challenges and benefiting from the joint expertise of the applicants
    in material science, chemical engineering, and polymer chemistry, in this project,
    electrospinning of copoly(2-oxazoline) s (PAOx) with immobilized indicator dye
    molecules is explored. Ultimately, large-scale production of water-stable PAOx-based
    nanofibrous sensors will be realized by (i) applying model-based design to control
    the microstructure of individual PAOx chains during the synthesis step and (ii)
    tuning the electrospinning conditions upon nanofiber production with respect to
    water stability and sensor accessibility. Advanced characterization techniques
    will be used to showcase the controlled dye incorporation and to confirm the superior
    behaviour of the obtained sensors, starting from pyrenebased reference dyes opening
    up a wide range of potential indicator dyes and relevant applications. </p>
  end_date: 2021-12-31
  gismo_id: 68c7d40e-8a7e-479e-8231-436053702888
  iweto_id: 3G060518
  publication_count: 2
  start_date: 2018-01-01
  title: Combining material science and chemical engineering design for novel and
    fast optical nanostructured sensors.
publication_status: published
publication_status_sort: 2
status: public
subject:
- Chemistry
title: Förster resonance energy transfer in fluorophore labeled poly(2-ethyl-2-oxazoline)s
type: journalArticle
volume: '8'
wos_id: '000581559100019'
wos_type: Article
year: '2020'
...
---
_id: '8676370'
abstract:
- In biomedicine, polymer blends are frequently applied in wound dressing design or
  drug delivery. Within these applications, poly(2-alkyl/aryl-2-oxazoline)s (PAOx)
  are emerging as a popular matrix due to excellent biocompatibility and miscibility
  with other polymers. However, as much is known of PAOx miscibility with other biocompatible
  polymer systems, so little is known of the miscibility within the PAOx class. We
  show the remarkable phase separation of two important, structurally alike, amorphous
  PAOx, i.e., poly(2-ethyl2-oxazoline) and poly(2-n-propyl-2-oxazoline), that occurs
  when the polymers' number-average molar mass exceeds 10 kg.mol(-1). The (im)miscibility
  as a function of average molar mass is experimentally investigated by thermal analysis,
  theoretically underpinned by the Flory-Huggins lattice theory, and visualized by
  fluorescence microscopy in both films and nanofibers, the latter being a high-potential
  support material in biomedicine. These results provide important knowledge on PAOx
  (im)miscibility which has a crucial impact on the behavior of the many final end
  products they are investigated for.
abstract_full:
- lang: eng
  text: In biomedicine, polymer blends are frequently applied in wound dressing design
    or drug delivery. Within these applications, poly(2-alkyl/aryl-2-oxazoline)s (PAOx)
    are emerging as a popular matrix due to excellent biocompatibility and miscibility
    with other polymers. However, as much is known of PAOx miscibility with other
    biocompatible polymer systems, so little is known of the miscibility within the
    PAOx class. We show the remarkable phase separation of two important, structurally
    alike, amorphous PAOx, i.e., poly(2-ethyl2-oxazoline) and poly(2-n-propyl-2-oxazoline),
    that occurs when the polymers' number-average molar mass exceeds 10 kg.mol(-1).
    The (im)miscibility as a function of average molar mass is experimentally investigated
    by thermal analysis, theoretically underpinned by the Flory-Huggins lattice theory,
    and visualized by fluorescence microscopy in both films and nanofibers, the latter
    being a high-potential support material in biomedicine. These results provide
    important knowledge on PAOx (im)miscibility which has a crucial impact on the
    behavior of the many final end products they are investigated for.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
article_type: original
author:
- _id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
  ugent_id:
  - '000100318410'
  - '802002133935'
  - '975208259089'
- _id: D031A838-F0EE-11E1-A197-91C894A0A6B4
  biblio_id: D031A838-F0EE-11E1-A197-91C894A0A6B4
  first_name: Ronald
  last_name: Merckx
  name: Ronald Merckx
  name_last_first: Merckx, Ronald
  orcid_id: 0000-0002-2867-0888
  ugent_id:
  - '974260040744'
- _id: 39CBE44E-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 39CBE44E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jana
  last_name: Becelaere
  name: Jana Becelaere
  name_last_first: Becelaere, Jana
  orcid_id: 0000-0001-5024-3308
  ugent_id:
  - '977861082888'
- first_name: Melissa
  last_name: Everaerts
  name: Melissa Everaerts
  name_last_first: Everaerts, Melissa
- _id: 0FBA8502-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 0FBA8502-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Joachim
  last_name: Van Guyse
  name: Joachim Van Guyse
  name_last_first: Van Guyse, Joachim
  ugent_id:
  - '000080062786'
  - '802001924676'
  - '979806612797'
- _id: 0DE02024-4716-11E7-B659-9A5FAE28A064
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0DE02024-4716-11E7-B659-9A5FAE28A064
  first_name: Ondrej
  last_name: Sedlacek
  name: Ondrej Sedlacek
  name_last_first: Sedlacek, Ondrej
  ugent_id:
  - '802002515063'
  - '977034650467'
- _id: FF08BC60-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FF08BC60-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: BRUNO
  last_name: DE GEEST
  name: BRUNO DE GEEST
  name_last_first: DE GEEST, BRUNO
  ugent_id:
  - '870110440223'
- first_name: Guy
  last_name: Van den Mooter
  name: Guy Van den Mooter
  name_last_first: Van den Mooter, Guy
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
biblio_id: '8676370'
cite:
  apa: |2
      <div class="csl-entry">Schoolaert, E., Merckx, R., Becelaere, J., Everaerts, M., Van Guyse, J., Sedlacek, O., … Hoogenboom, R. (2020). Immiscibility of chemically alike amorphous polymers : phase separation of poly(2-ethyl-2-oxazoline) and poly(2‑n‑propyl-2- oxazoline). <i>MACROMOLECULES</i>, <i>53</i>(17), 7590–7600. https://doi.org/10.1021/acs.macromol.0c00970</div>
  chicago-author-date: |2
      <div class="csl-entry">Schoolaert, Ella, Ronald Merckx, Jana Becelaere, Melissa Everaerts, Joachim Van Guyse, Ondrej Sedlacek, BRUNO DE GEEST, et al. 2020. “Immiscibility of Chemically Alike Amorphous Polymers : Phase Separation of Poly(2-Ethyl-2-Oxazoline) and Poly(2‑n‑propyl-2- Oxazoline).” <i>MACROMOLECULES</i> 53 (17): 7590–7600. https://doi.org/10.1021/acs.macromol.0c00970.</div>
  fwo: |2
      <div class="csl-entry">Schoolaert, Ella, Ronald Merckx, Jana Becelaere, Melissa Everaerts, Joachim Van Guyse, Ondrej Sedlacek, BRUNO DE GEEST, Guy Van den Mooter, Dagmar D’hooge, Karen De Clerck, and Richard Hoogenboom. 2020. “Immiscibility of Chemically Alike Amorphous Polymers : Phase Separation of Poly(2-Ethyl-2-Oxazoline) and Poly(2‑n‑propyl-2- Oxazoline).” <i>MACROMOLECULES</i> 53 (17): 7590–7600. doi:10.1021/acs.macromol.0c00970.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Schoolaert <i>et al.</i>, “Immiscibility of chemically alike amorphous polymers : phase separation of poly(2-ethyl-2-oxazoline) and poly(2‑n‑propyl-2- oxazoline),” <i>MACROMOLECULES</i>, vol. 53, no. 17, pp. 7590–7600, 2020.</div>
      </div>
  mla: |2
      <div class="csl-entry">Schoolaert, Ella, et al. “Immiscibility of Chemically Alike Amorphous Polymers : Phase Separation of Poly(2-Ethyl-2-Oxazoline) and Poly(2‑n‑propyl-2- Oxazoline).” <i>MACROMOLECULES</i>, vol. 53, no. 17, 2020, pp. 7590–600, doi:10.1021/acs.macromol.0c00970.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Schoolaert E, Merckx R, Becelaere J, Everaerts M, Van Guyse J, Sedlacek O, et al. Immiscibility of chemically alike amorphous polymers : phase separation of poly(2-ethyl-2-oxazoline) and poly(2‑n‑propyl-2- oxazoline). MACROMOLECULES. 2020;53(17):7590–600.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: 798BCFF0-0208-11E3-BADE-15C210BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 798BCFF0-0208-11E3-BADE-15C210BDE39D
  first_name: Paulien
  last_name: Baeyens
  name: Paulien Baeyens
  name_last_first: Baeyens, Paulien
  ugent_id:
  - '802002698757'
  - '974253404530'
date_created: 2020-10-02 11:59:47
date_updated: 2026-03-31 14:54:18
doi:
- 10.1021/acs.macromol.0c00970
external: 0
file:
- _id: '8676371'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: 50._DHOOGE-_immiscibility_if_chemically_alike_amorphous.pdf
  publication_version: publishedVersion
  sha256: 9c76b69b0ca387ac19407cbf6aad7fd8edef8d0ab16fed778c6542e5e5415d08
  size: '4334461'
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  url: https://biblio.ugent.be/publication/8676370/file/8676371.pdf
handle: http://hdl.handle.net/1854/LU-8676370
issn:
- 0024-9297
- 1520-5835
issue: '17'
jcr:
  category: POLYMER SCIENCE
  category_decile: 1
  category_quartile: 1
  category_rank: 8/88
  category_vigintile: 2
  eigenfactor: 0.05829
  immediacy_index: 1.335
  impact_factor: 5.985
  impact_factor_5yr: 6.156
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 2
  prev_impact_factor: 5.918
  total_cites: 111371
keyword:
- SOLID DISPERSIONS
- DRUG-DELIVERY
- POLY(2-OXAZOLINE)S
- MISCIBILITY
- NANOFIBERS
- SOLUBILITY
- FORMULATION
- BLENDS
language:
- eng
page:
  count: '11'
  first: '7590'
  last: '7600'
parent:
  short_title: Macromolecules
  title: MACROMOLECULES
project:
- _id: 3G060518
  abstract: <p> Due to their high relative surface area, nanofibrous materials obtained
    via electrospinning have shown to be ideal candidates for high-quality sensors
    in many sectors, including environmental monitoring, food inspection and biomedicine.
    The key challenges remain (i) the controlled incorporation of analyte-sensitive
    dye molecules in the nanofibers via chemical linkage without leaching upon application
    and (ii) the identification of environmentally friendly electrospinning conditions,
    aiming at the production of sensor materials with a long-term water stability.
    In view of these challenges and benefiting from the joint expertise of the applicants
    in material science, chemical engineering, and polymer chemistry, in this project,
    electrospinning of copoly(2-oxazoline) s (PAOx) with immobilized indicator dye
    molecules is explored. Ultimately, large-scale production of water-stable PAOx-based
    nanofibrous sensors will be realized by (i) applying model-based design to control
    the microstructure of individual PAOx chains during the synthesis step and (ii)
    tuning the electrospinning conditions upon nanofiber production with respect to
    water stability and sensor accessibility. Advanced characterization techniques
    will be used to showcase the controlled dye incorporation and to confirm the superior
    behaviour of the obtained sensors, starting from pyrenebased reference dyes opening
    up a wide range of potential indicator dyes and relevant applications. </p>
  end_date: 2021-12-31
  gismo_id: 68c7d40e-8a7e-479e-8231-436053702888
  iweto_id: 3G060518
  publication_count: 2
  start_date: 2018-01-01
  title: Combining material science and chemical engineering design for novel and
    fast optical nanostructured sensors.
publication_status: published
publication_status_sort: 2
status: public
subject:
- Chemistry
title: 'Immiscibility of chemically alike amorphous polymers : phase separation of
  poly(2-ethyl-2-oxazoline) and poly(2‑n‑propyl-2- oxazoline)'
type: journalArticle
volume: '53'
wos_id: '000571389300037'
wos_type: Article
year: '2020'
...
---
_id: '8667396'
abstract:
- This work shows the design of highly porous membranes with tunable wettability based
  on poly(2-n-propyl-2-oxazoline) (PnPrOx) nanofibers. Wicking and advanced contact
  angle experiments demonstrate the high potential for applications requiring specific
  interactions with aqueous media. PnPrOx is a popular member among the biocompatible
  poly(2-oxazoline)s due to its thermoresponsiveness in aqueous solutions, enabling
  the production of ‘smart materials’. On material level, however, many interesting
  properties of this polymer remain undiscovered. Electrospinning is an ideal technique
  to transfer the properties observed in solutions to end-material properties, as
  the polymer is processed into highly porous, nanofibrous membranes. PnPrOx' electrospinnability
  is here investigated in environmentally friendly ethanol/water solvent systems,
  ensuring industrial scalability. The nanofibrous membranes show increased hydrophobicity
  exhibiting the rose-petal effect. Upon functionalization with tannic acid, the hydrophobic
  membranes are transformed into hydrophilic nanofibers showing water-stability in
  both fresh and salty water, even below the polymer cloud point temperature. By varying
  the tannic acid amount, the hydrophilicity can be fine-tuned as the contact area
  between water droplets and surface, the rate and manner of water uptake and the
  extent of the rose-petal effect can be manipulated easily. Hence an interesting
  material is designed for applications in which water caption and transport are important.
abstract_full:
- lang: eng
  text: This work shows the design of highly porous membranes with tunable wettability
    based on poly(2-n-propyl-2-oxazoline) (PnPrOx) nanofibers. Wicking and advanced
    contact angle experiments demonstrate the high potential for applications requiring
    specific interactions with aqueous media. PnPrOx is a popular member among the
    biocompatible poly(2-oxazoline)s due to its thermoresponsiveness in aqueous solutions,
    enabling the production of ‘smart materials’. On material level, however, many
    interesting properties of this polymer remain undiscovered. Electrospinning is
    an ideal technique to transfer the properties observed in solutions to end-material
    properties, as the polymer is processed into highly porous, nanofibrous membranes.
    PnPrOx' electrospinnability is here investigated in environmentally friendly ethanol/water
    solvent systems, ensuring industrial scalability. The nanofibrous membranes show
    increased hydrophobicity exhibiting the rose-petal effect. Upon functionalization
    with tannic acid, the hydrophobic membranes are transformed into hydrophilic nanofibers
    showing water-stability in both fresh and salty water, even below the polymer
    cloud point temperature. By varying the tannic acid amount, the hydrophilicity
    can be fine-tuned as the contact area between water droplets and surface, the
    rate and manner of water uptake and the extent of the rose-petal effect can be
    manipulated easily. Hence an interesting material is designed for applications
    in which water caption and transport are important.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
article_number: '108747'
article_type: original
author:
- _id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
  ugent_id:
  - '000100318410'
  - '802002133935'
  - '975208259089'
- _id: 3FFE21AE-18B9-11E7-81EB-FC93AD28A064
  biblio_id: 3FFE21AE-18B9-11E7-81EB-FC93AD28A064
  first_name: Luisa
  last_name: Cossu
  name: Luisa Cossu
  name_last_first: Cossu, Luisa
  ugent_id:
  - '000161455587'
- _id: 39CBE44E-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 39CBE44E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jana
  last_name: Becelaere
  name: Jana Becelaere
  name_last_first: Becelaere, Jana
  orcid_id: 0000-0001-5024-3308
  ugent_id:
  - '977861082888'
- _id: 0FBA8502-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 0FBA8502-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Joachim
  last_name: Van Guyse
  name: Joachim Van Guyse
  name_last_first: Van Guyse, Joachim
  ugent_id:
  - '000080062786'
  - '802001924676'
  - '979806612797'
- _id: 1E398254-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 1E398254-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ali
  last_name: Tigrine
  name: Ali Tigrine
  name_last_first: Tigrine, Ali
  orcid_id: 0000-0003-1639-1344
  ugent_id:
  - '802002407050'
  - '000090191610'
  - '975542025985'
- _id: 116B8CE8-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 116B8CE8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Maarten
  last_name: Vergaelen
  name: Maarten Vergaelen
  name_last_first: Vergaelen, Maarten
  ugent_id:
  - '000080251635'
  - '802001657928'
  - '978043257578'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8667396'
cite:
  apa: |2
      <div class="csl-entry">Schoolaert, E., Cossu, L., Becelaere, J., Van Guyse, J., Tigrine, A., Vergaelen, M., … De Clerck, K. (2020). Nanofibers with a tunable wettability by electrospinning and physical crosslinking of poly(2-n-propyl-2-oxazoline). <i>MATERIALS &#38; DESIGN</i>, <i>192</i>. https://doi.org/10.1016/j.matdes.2020.108747</div>
  chicago-author-date: |2
      <div class="csl-entry">Schoolaert, Ella, Luisa Cossu, Jana Becelaere, Joachim Van Guyse, Ali Tigrine, Maarten Vergaelen, Richard Hoogenboom, and Karen De Clerck. 2020. “Nanofibers with a Tunable Wettability by Electrospinning and Physical Crosslinking of Poly(2-n-Propyl-2-Oxazoline).” <i>MATERIALS &#38; DESIGN</i> 192. https://doi.org/10.1016/j.matdes.2020.108747.</div>
  fwo: |2
      <div class="csl-entry">Schoolaert, Ella, Luisa Cossu, Jana Becelaere, Joachim Van Guyse, Ali Tigrine, Maarten Vergaelen, Richard Hoogenboom, and Karen De Clerck. 2020. “Nanofibers with a Tunable Wettability by Electrospinning and Physical Crosslinking of Poly(2-n-Propyl-2-Oxazoline).” <i>MATERIALS &#38; DESIGN</i> 192. doi:10.1016/j.matdes.2020.108747.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Schoolaert <i>et al.</i>, “Nanofibers with a tunable wettability by electrospinning and physical crosslinking of poly(2-n-propyl-2-oxazoline),” <i>MATERIALS &#38; DESIGN</i>, vol. 192, 2020.</div>
      </div>
  mla: |2
      <div class="csl-entry">Schoolaert, Ella, et al. “Nanofibers with a Tunable Wettability by Electrospinning and Physical Crosslinking of Poly(2-n-Propyl-2-Oxazoline).” <i>MATERIALS &#38; DESIGN</i>, vol. 192, 2020, doi:10.1016/j.matdes.2020.108747.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Schoolaert E, Cossu L, Becelaere J, Van Guyse J, Tigrine A, Vergaelen M, et al. Nanofibers with a tunable wettability by electrospinning and physical crosslinking of poly(2-n-propyl-2-oxazoline). MATERIALS &#38; DESIGN. 2020;192.</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution-NonCommercial-NoDerivatives 4.0
  International Public License (CC BY-NC-ND 4.0)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2020-06-26 07:39:19
date_updated: 2026-03-31 14:54:18
doi:
- 10.1016/j.matdes.2020.108747
external: 0
file:
- _id: '8667409'
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  content_type: application/pdf
  kind: fullText
  name: MaterialsDesign_2020.pdf
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  size: '2375962'
  thumbnail_url: https://biblio.ugent.be/publication/8667396/file/8667409/thumbnail.png
  url: https://biblio.ugent.be/publication/8667396/file/8667409.pdf
handle: http://hdl.handle.net/1854/LU-8667396
issn:
- 0264-1275
- 1873-4197
jcr:
  category: MATERIALS SCIENCE, MULTIDISCIPLINARY
  category_decile: 2
  category_quartile: 1
  category_rank: 58/335
  category_vigintile: 4
  eigenfactor: 0.06983
  immediacy_index: 2.04
  impact_factor: 7.991
  impact_factor_5yr: 7.097
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 4
  prev_impact_factor: 6.289
  total_cites: 71936
keyword:
- Mechanical Engineering
- General Materials Science
- Mechanics of Materials
- Poly(2-n-propyl-2-oxazoline)
- Nanofibers
- Wettability
- Rose-petal
- Contact angle
- Tannic acid
- CRITICAL SOLUTION TEMPERATURE
- HYDROGEN-BONDED MULTILAYERS
- SUPERHYDROPHOBIC SURFACES
- SILVER NANOPARTICLES
- TANNIC-ACID
- POLY(2-OXAZOLINE)S
- POLYMER
- WATER
- MEMBRANE
- PH
language:
- eng
page:
  count: '12'
parent:
  short_title: Mater. Des.
  title: MATERIALS & DESIGN
project:
- _id: 3G060518
  abstract: <p> Due to their high relative surface area, nanofibrous materials obtained
    via electrospinning have shown to be ideal candidates for high-quality sensors
    in many sectors, including environmental monitoring, food inspection and biomedicine.
    The key challenges remain (i) the controlled incorporation of analyte-sensitive
    dye molecules in the nanofibers via chemical linkage without leaching upon application
    and (ii) the identification of environmentally friendly electrospinning conditions,
    aiming at the production of sensor materials with a long-term water stability.
    In view of these challenges and benefiting from the joint expertise of the applicants
    in material science, chemical engineering, and polymer chemistry, in this project,
    electrospinning of copoly(2-oxazoline) s (PAOx) with immobilized indicator dye
    molecules is explored. Ultimately, large-scale production of water-stable PAOx-based
    nanofibrous sensors will be realized by (i) applying model-based design to control
    the microstructure of individual PAOx chains during the synthesis step and (ii)
    tuning the electrospinning conditions upon nanofiber production with respect to
    water stability and sensor accessibility. Advanced characterization techniques
    will be used to showcase the controlled dye incorporation and to confirm the superior
    behaviour of the obtained sensors, starting from pyrenebased reference dyes opening
    up a wide range of potential indicator dyes and relevant applications. </p>
  end_date: 2021-12-31
  gismo_id: 68c7d40e-8a7e-479e-8231-436053702888
  iweto_id: 3G060518
  publication_count: 2
  start_date: 2018-01-01
  title: Combining material science and chemical engineering design for novel and
    fast optical nanostructured sensors.
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Nanofibers with a tunable wettability by electrospinning and physical crosslinking
  of poly(2-n-propyl-2-oxazoline)
type: journalArticle
volume: '192'
wos_id: '000568835300003'
wos_type: Article
year: '2020'
...
---
_id: '8686363'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
author:
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F45BCAD2-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F45BCAD2-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Johanna
  last_name: Louwagie
  name: Johanna Louwagie
  name_last_first: Louwagie, Johanna
  orcid_id: 0000-0002-3511-4134
  ugent_id:
  - '801000689969'
  - '977529866587'
biblio_id: '8686363'
cite:
  apa: |2
      <div class="csl-entry">De Clerck, K., &#38; Louwagie, J. (2020). Nieuws uit de vakgroep : CTSE in beweging : innovator in textiel- en polymeermaterialen.</div>
  bof: |2
      <div class="csl-entry">De Clerck, Karen, and Johanna Louwagie. 2020. “Nieuws Uit de Vakgroep : CTSE in Beweging : Innovator in Textiel- En Polymeermaterialen.” <i>UNITEX</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Clerck, Karen, and Johanna Louwagie. 2020. “Nieuws Uit de Vakgroep : CTSE in Beweging : Innovator in Textiel- En Polymeermaterialen.” <i>UNITEX</i>.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, and Johanna Louwagie. 2020. “Nieuws Uit de Vakgroep : CTSE in Beweging : Innovator in Textiel- En Polymeermaterialen.” <i>UNITEX</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck and J. Louwagie, “Nieuws uit de vakgroep : CTSE in beweging : innovator in textiel- en polymeermaterialen,” <i>UNITEX</i>, no. 4. pp. 47–47, 2020.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Clerck, Karen, and Johanna Louwagie. “Nieuws Uit de Vakgroep : CTSE in Beweging : Innovator in Textiel- En Polymeermaterialen.” <i>UNITEX</i>, no. 4, 2020, pp. 47–47.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, Louwagie J. Nieuws uit de vakgroep : CTSE in beweging : innovator in textiel- en polymeermaterialen. UNITEX. 2020. p. 47–47.</div>
       </div>
classification: V
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
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    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2021-01-08 09:28:22
date_updated: 2023-05-08 11:52:09
external: 0
file:
- _id: '8686365'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: UNITEX_2020_december_scan.pdf
  publication_version: publishedVersion
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  url: https://biblio.ugent.be/publication/8686363/file/8686365.pdf
handle: http://hdl.handle.net/1854/LU-8686363
issue: '4'
jcr: {}
language:
- dut
misc_type: magazinePiece
page:
  count: '1'
  first: '47'
  last: '47'
parent:
  short_title: Unitex
  title: UNITEX
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: 'Nieuws uit de vakgroep : CTSE in beweging : innovator in textiel- en polymeermaterialen'
type: misc
year: '2020'
...
---
_id: '8620290'
abstract:
- Optical nanofibrous sensors show potential in many application areas, including
  biomedicine, as they provide ultra-sensitivity combined with versatility, flexibility
  and user-friendliness. In our work stimuli-sensitive dyes are incorporated in a
  polymeric nanofibrous matrix by the process of solvent electrospinning. An important
  challenge that is tackled here is dye-immobilization as to design a stable sensor.
  In addition, an ecological friendly production process is aimed for resulting in
  the use of “green” solvents such as water and ethanol. However, the use of hydrophilic
  polymers poses some challenges with regard to the solvent electrospinning process,
  which are addressed in this work as well.
abstract_full:
- lang: eng
  text: Optical nanofibrous sensors show potential in many application areas, including
    biomedicine, as they provide ultra-sensitivity combined with versatility, flexibility
    and user-friendliness. In our work stimuli-sensitive dyes are incorporated in
    a polymeric nanofibrous matrix by the process of solvent electrospinning. An important
    challenge that is tackled here is dye-immobilization as to design a stable sensor.
    In addition, an ecological friendly production process is aimed for resulting
    in the use of “green” solvents such as water and ethanol. However, the use of
    hydrophilic polymers poses some challenges with regard to the solvent electrospinning
    process, which are addressed in this work as well.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
author:
- _id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
  ugent_id:
  - '000100318410'
  - '802002133935'
  - '975208259089'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8620290'
cite:
  apa: |2
      <div class="csl-entry">Schoolaert, E., Hoogenboom, R., &#38; De Clerck, K. (2019). Going from polymer to application : solvent electrospinning of optical nanofibrous sensors. <i>AUTEX2019 : 19th World Textile Conference on Textiles at the Crossroads</i>. Presented at the 19th World Textile conference (AUTEX-2019): Textiles at the crossroads, Ghent, Belgium.</div>
  bof: |2
      <div class="csl-entry">Schoolaert, Ella, Richard Hoogenboom, and Karen De Clerck. 2019. “Going from Polymer to Application : Solvent Electrospinning of Optical Nanofibrous Sensors.” In <i>AUTEX2019 : 19th World Textile Conference on Textiles at the Crossroads</i>. AUTEX.</div>
  chicago-author-date: |2
      <div class="csl-entry">Schoolaert, Ella, Richard Hoogenboom, and Karen De Clerck. 2019. “Going from Polymer to Application : Solvent Electrospinning of Optical Nanofibrous Sensors.” In <i>AUTEX2019 : 19th World Textile Conference on Textiles at the Crossroads</i>. AUTEX.</div>
  fwo: |2
      <div class="csl-entry">Schoolaert, Ella, Richard Hoogenboom, and Karen De Clerck. 2019. “Going from Polymer to Application : Solvent Electrospinning of Optical Nanofibrous Sensors.” In <i>AUTEX2019 : 19th World Textile Conference on Textiles at the Crossroads</i>. AUTEX.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Schoolaert, R. Hoogenboom, and K. De Clerck, “Going from polymer to application : solvent electrospinning of optical nanofibrous sensors,” in <i>AUTEX2019 : 19th world textile conference on textiles at the crossroads</i>, Ghent, Belgium, 2019.</div>
      </div>
  mla: |2
      <div class="csl-entry">Schoolaert, Ella, et al. “Going from Polymer to Application : Solvent Electrospinning of Optical Nanofibrous Sensors.” <i>AUTEX2019 : 19th World Textile Conference on Textiles at the Crossroads</i>, AUTEX, 2019.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Schoolaert E, Hoogenboom R, De Clerck K. Going from polymer to application : solvent electrospinning of optical nanofibrous sensors. In: AUTEX2019 : 19th world textile conference on textiles at the crossroads. AUTEX; 2019.</div>
       </div>
classification: C1
conference:
  end_date: 2019-06-15
  location: Ghent, Belgium
  name: '19th World Textile conference (AUTEX-2019): Textiles at the crossroads'
  organizer: AUTEX (Association of Universities for Textiles)
  start_date: 2019-06-11
conference_type: proceedingsPaper
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2019-06-21 14:13:32
date_updated: 2026-03-31 13:11:33
external: 0
file:
- _id: '8620298'
  access: open
  content_type: application/pdf
  kind: fullText
  name: 2A_0127.pdf
  sha256: 900eeff7ab1223fe55b2932f5b74aef788a5ace3b444812f98c1ba9e416539b4
  size: '662122'
  thumbnail_url: https://biblio.ugent.be/publication/8620290/file/8620298/thumbnail.png
  url: https://biblio.ugent.be/publication/8620290/file/8620298.pdf
handle: http://hdl.handle.net/1854/LU-8620290
isbn:
- '9789079892068'
jcr: {}
keyword:
- Solvent electrospinning
- nanofibers
- optical sensors
language:
- eng
page:
  count: '6'
parent:
  title: 'AUTEX2019 : 19th world textile conference on textiles at the crossroads'
project:
- _id: 3G060518
  abstract: <p> Due to their high relative surface area, nanofibrous materials obtained
    via electrospinning have shown to be ideal candidates for high-quality sensors
    in many sectors, including environmental monitoring, food inspection and biomedicine.
    The key challenges remain (i) the controlled incorporation of analyte-sensitive
    dye molecules in the nanofibers via chemical linkage without leaching upon application
    and (ii) the identification of environmentally friendly electrospinning conditions,
    aiming at the production of sensor materials with a long-term water stability.
    In view of these challenges and benefiting from the joint expertise of the applicants
    in material science, chemical engineering, and polymer chemistry, in this project,
    electrospinning of copoly(2-oxazoline) s (PAOx) with immobilized indicator dye
    molecules is explored. Ultimately, large-scale production of water-stable PAOx-based
    nanofibrous sensors will be realized by (i) applying model-based design to control
    the microstructure of individual PAOx chains during the synthesis step and (ii)
    tuning the electrospinning conditions upon nanofiber production with respect to
    water stability and sensor accessibility. Advanced characterization techniques
    will be used to showcase the controlled dye incorporation and to confirm the superior
    behaviour of the obtained sensors, starting from pyrenebased reference dyes opening
    up a wide range of potential indicator dyes and relevant applications. </p>
  end_date: 2021-12-31
  gismo_id: 68c7d40e-8a7e-479e-8231-436053702888
  iweto_id: 3G060518
  publication_count: 2
  start_date: 2018-01-01
  title: Combining material science and chemical engineering design for novel and
    fast optical nanostructured sensors.
publication_status: published
publication_status_sort: 2
publisher:
  name: AUTEX
status: public
subject:
- Technology and Engineering
- Chemistry
title: 'Going from polymer to application : solvent electrospinning of optical nanofibrous
  sensors'
type: conference
year: '2019'
...
---
_id: '8620299'
abstract:
- "The use of nanofibers is expanding from academic into industry as these lightweight
  and highly porous materials\r\nare advantageous in many application areas. The main
  objectives of this roject is to reveal the potential of the\r\nbioeconomy in Europe,
  to decrease the use of fossil-based products, lead to greener and more environmentally\r\nfriendly
  growth by fighting against climate change. For this purpose, nonwovens are prepared
  from bio-based\r\npolymers using solution electrospinning method for cosmetics and
  wound-care applications."
abstract_full:
- lang: eng
  text: "The use of nanofibers is expanding from academic into industry as these lightweight
    and highly porous materials\r\nare advantageous in many application areas. The
    main objectives of this roject is to reveal the potential of the\r\nbioeconomy
    in Europe, to decrease the use of fossil-based products, lead to greener and more
    environmentally\r\nfriendly growth by fighting against climate change. For this
    purpose, nonwovens are prepared from bio-based\r\npolymers using solution electrospinning
    method for cosmetics and wound-care applications."
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
alternative_location:
- access: open
  kind: fullText
  url: https://ojs.ugent.be/autex/article/view/11605
author:
- _id: 23C336CA-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 23C336CA-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Özlem İpek
  last_name: Kalaoglu Altan
  name: Özlem İpek Kalaoglu Altan
  name_last_first: Kalaoglu Altan, Özlem İpek
  ugent_id:
  - '000091814136'
  - '802003037550'
  - '975697430594'
- _id: 2D12E8D8-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 2D12E8D8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Timo
  last_name: Meireman
  name: Timo Meireman
  name_last_first: Meireman, Timo
  ugent_id:
  - '972580996713'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8620299'
cite:
  apa: |2
      <div class="csl-entry">Kalaoglu Altan, Ö. İ., Meireman, T., &#38; De Clerck, K. (2019). Electrospun nanofibers for skin-contact applications. <i>AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads</i>. Presented at the AUTEX2019, Ghent.</div>
  chicago-author-date: |2
      <div class="csl-entry">Kalaoglu Altan, Özlem İpek, Timo Meireman, and Karen De Clerck. 2019. “Electrospun Nanofibers for Skin-Contact Applications.” In <i>AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads</i>. Ghent: Autex.</div>
  fwo: |2
      <div class="csl-entry">Kalaoglu Altan, Özlem İpek, Timo Meireman, and Karen De Clerck. 2019. “Electrospun Nanofibers for Skin-Contact Applications.” In <i>AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads</i>. Ghent: Autex.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Ö. İ. Kalaoglu Altan, T. Meireman, and K. De Clerck, “Electrospun nanofibers for skin-contact applications,” in <i>AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads</i>, Ghent, 2019.</div>
      </div>
  mla: |2
      <div class="csl-entry">Kalaoglu Altan, Özlem İpek, et al. “Electrospun Nanofibers for Skin-Contact Applications.” <i>AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads</i>, Autex, 2019.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Kalaoglu Altan Öİ, Meireman T, De Clerck K. Electrospun nanofibers for skin-contact applications. In: AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads. Ghent: Autex; 2019.</div>
       </div>
classification: C1
conference:
  end_date: 2019-06-15
  location: Ghent
  name: AUTEX2019
  organizer: Autex
  start_date: 2019-06-11
conference_type: proceedingsPaper
copyright_statement: Creative Commons Attribution-NonCommercial 4.0 International
  Public License (CC BY-NC 4.0)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2019-06-21 14:21:26
date_updated: 2026-03-31 13:24:04
external: 0
file:
- _id: '8620304'
  access: open
  content_type: application/pdf
  kind: fullText
  name: 2A_0579.pdf
  publication_version: publishedVersion
  sha256: 19fe6440bfd92a4a5e4fd35f3b4bc9a9f9c3c6e22c34f4f2738da50f0d125965
  size: '752110'
  thumbnail_url: https://biblio.ugent.be/publication/8620299/file/8620304/thumbnail.png
  url: https://biblio.ugent.be/publication/8620299/file/8620304.pdf
handle: http://hdl.handle.net/1854/LU-8620299
isbn:
- '9789079892068'
keyword:
- Bio-based polymers
- electrospinning
- nanofibers
- wound-care
- face masks
language:
- eng
page:
  count: '3'
parent:
  title: AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads
publication_status: published
publication_status_sort: 2
publisher:
  location: Ghent
  name: Autex
status: public
subject:
- Technology and Engineering
title: Electrospun nanofibers for skin-contact applications
type: conference
year: '2019'
...
---
_id: '8612204'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Pharmaceutics
  path:
  - ugent_id: UGent
  - ugent_id: FW
  - ugent_id: FW01
  ugent_id: FW01
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
alternative_location:
- access: open
  kind: fullText
  url: http://www.fears.ugent.be/booklet.pdf
author:
- _id: 39CBE44E-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 39CBE44E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jana
  last_name: Becelaere
  name: Jana Becelaere
  name_last_first: Becelaere, Jana
  orcid_id: 0000-0001-5024-3308
  ugent_id:
  - '977861082888'
- _id: F4A465E4-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: FW
    - ugent_id: FW01
    ugent_id: FW01
  biblio_id: F4A465E4-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Chris
  last_name: Vervaet
  name: Chris Vervaet
  name_last_first: Vervaet, Chris
  orcid_id: 0000-0002-1291-6054
  ugent_id:
  - '801000867397'
  - '973325837380'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8612204'
cite:
  apa: |2
      <div class="csl-entry">Becelaere, J., Vervaet, C., Hoogenboom, R., &#38; De Clerck, K. (2019). Therapeutic nanofibers? Innovative oral drug delivery for improved bioavailability. <i>FEARS 2019 : Book of Abstracts</i>, 18–19.</div>
  chicago-author-date: |2
      <div class="csl-entry">Becelaere, Jana, Chris Vervaet, Richard Hoogenboom, and Karen De Clerck. 2019. “Therapeutic Nanofibers? Innovative Oral Drug Delivery for Improved Bioavailability.” In <i>FEARS 2019 : Book of Abstracts</i>, 18–19.</div>
  fwo: |2
      <div class="csl-entry">Becelaere, Jana, Chris Vervaet, Richard Hoogenboom, and Karen De Clerck. 2019. “Therapeutic Nanofibers? Innovative Oral Drug Delivery for Improved Bioavailability.” In <i>FEARS 2019 : Book of Abstracts</i>, 18–19.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">J. Becelaere, C. Vervaet, R. Hoogenboom, and K. De Clerck, “Therapeutic nanofibers? Innovative oral drug delivery for improved bioavailability,” in <i>FEARS 2019 : book of abstracts</i>, Ghent, Belgium, 2019, pp. 18–19.</div>
      </div>
  mla: |2
      <div class="csl-entry">Becelaere, Jana, et al. “Therapeutic Nanofibers? Innovative Oral Drug Delivery for Improved Bioavailability.” <i>FEARS 2019 : Book of Abstracts</i>, 2019, pp. 18–19.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Becelaere J, Vervaet C, Hoogenboom R, De Clerck K. Therapeutic nanofibers? Innovative oral drug delivery for improved bioavailability. In: FEARS 2019 : book of abstracts. 2019. p. 18–9.</div>
       </div>
classification: C3
conference:
  end_date: 2019-02-19
  location: Ghent, Belgium
  name: 19th FEA Research Symposium, FEARS 2019
  organizer: FEA, Ghent University
  start_date: 2019-02-19
conference_type: poster
copyright_statement: No license (in copyright)
created_by:
  _id: 39CBE44E-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 39CBE44E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jana
  last_name: Becelaere
  name: Jana Becelaere
  name_last_first: Becelaere, Jana
  orcid_id: 0000-0001-5024-3308
  ugent_id:
  - '977861082888'
date_created: 2019-04-15 13:58:39
date_updated: 2026-03-31 13:22:46
external: 0
file:
- _id: '8612206'
  access: open
  content_type: application/pdf
  kind: fullText
  name: FEARS-2019_JanaBecelaere.pdf
  sha256: d39ceb36c8e872aa2f5f46b76a9a41ff71b78e654078b4853e66ad44249b96c0
  size: '1093059'
  thumbnail_url: https://biblio.ugent.be/publication/8612204/file/8612206/thumbnail.png
  url: https://biblio.ugent.be/publication/8612204/file/8612206.pdf
- _id: '8612207'
  access: open
  content_type: application/pdf
  kind: fullText
  name: FEARS-2019-ABSTRACT_JanaBecelaere.pdf
  sha256: d878401f717ccafcfb849f3b2acfc04171a38ffea1edd39f0df4d1bfa3292308
  size: '39504'
  thumbnail_url: https://biblio.ugent.be/publication/8612204/file/8612207/thumbnail.png
  url: https://biblio.ugent.be/publication/8612204/file/8612207.pdf
handle: http://hdl.handle.net/1854/LU-8612204
language:
- eng
page:
  first: '18'
  last: '19'
parent:
  title: 'FEARS 2019 : book of abstracts'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Medicine and Health Sciences
- Technology and Engineering
title: Therapeutic nanofibers? Innovative oral drug delivery for improved bioavailability
type: conference
year: '2019'
...
---
_id: '8620115'
abstract:
- "Bio-material polylactic acid and poly(butylene adipate-co-terephthalate) were blended
  to achieve increased ductility of the blend. Cloisite was added to improve the stiffness
  of the blend. The blends were made into filament suitable for extrusion-based additive
  manufacturing. Melt flow index of the filament and mechanical properties of the
  printed bars were tested. Preliminary results showed that the melt flow index increases
  significantly with cloisite and the modulus of polylactic acid/poly(butylene adipate-co-terephthalate)
  improved slightly. The notched impact strength of the blend increased with increasing
  content of cloisite, and it increased significantly after annealing, especially
  for blends without cloisite.\r\nKey"
abstract_full:
- lang: eng
  text: "Bio-material polylactic acid and poly(butylene adipate-co-terephthalate)
    were blended to achieve increased ductility of the blend. Cloisite was added to
    improve the stiffness of the blend. The blends were made into filament suitable
    for extrusion-based additive manufacturing. Melt flow index of the filament and
    mechanical properties of the printed bars were tested. Preliminary results showed
    that the melt flow index increases significantly with cloisite and the modulus
    of polylactic acid/poly(butylene adipate-co-terephthalate) improved slightly.
    The notched impact strength of the blend increased with increasing content of
    cloisite, and it increased significantly after annealing, especially for blends
    without cloisite.\r\nKey"
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
alternative_location:
- access: open
  kind: fullText
  url: https://ojs.ugent.be/autex/article/view/11499
article_number: '157'
author:
- _id: D11A4204-79FD-11E6-A1F1-3577B5D1D7B1
  biblio_id: D11A4204-79FD-11E6-A1F1-3577B5D1D7B1
  first_name: Sisi
  last_name: Wang
  name: Sisi Wang
  name_last_first: Wang, Sisi
  ugent_id:
  - '000160916128'
  - '802002436857'
  - '979929499370'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: 598AF26A-65E7-11E8-B53A-AFC811A95AF2
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 598AF26A-65E7-11E8-B53A-AFC811A95AF2
  first_name: Rudinei
  last_name: Fiorio
  name: Rudinei Fiorio
  name_last_first: Fiorio, Rudinei
  ugent_id:
  - '000181256523'
  - '802002862445'
  - '974407662418'
- first_name: Hesheng
  last_name: Xia
  name: Hesheng Xia
  name_last_first: Xia, Hesheng
- first_name: Jie
  last_name: Zhang
  name: Jie Zhang
  name_last_first: Zhang, Jie
- first_name: Maling
  last_name: Giu
  name: Maling Giu
  name_last_first: Giu, Maling
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F8DDCF06-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F8DDCF06-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Ludwig
  last_name: Cardon
  name: Ludwig Cardon
  name_last_first: Cardon, Ludwig
  orcid_id: 0000-0002-4019-612X
  ugent_id:
  - '802000179080'
  - '972410561043'
biblio_id: '8620115'
cite:
  apa: |2
      <div class="csl-entry">Wang, S., Daelemans, L., Fiorio, R., Xia, H., Zhang, J., Giu, M., … Cardon, L. (2019). Bio-material polylactic acid/poly(butylene adipate-co-terephthalate) blend development for extrusion-based additive manufacturing. <i>AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads</i>. Presented at the AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads, Ghent.</div>
  chicago-author-date: |2
      <div class="csl-entry">Wang, Sisi, Lode Daelemans, Rudinei Fiorio, Hesheng Xia, Jie Zhang, Maling Giu, Dagmar D’hooge, Karen De Clerck, and Ludwig Cardon. 2019. “Bio-Material Polylactic Acid/Poly(Butylene Adipate-Co-Terephthalate) Blend Development for Extrusion-Based Additive Manufacturing.” In <i>AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads</i>. Ghent: Autex.</div>
  fwo: |2
      <div class="csl-entry">Wang, Sisi, Lode Daelemans, Rudinei Fiorio, Hesheng Xia, Jie Zhang, Maling Giu, Dagmar D’hooge, Karen De Clerck, and Ludwig Cardon. 2019. “Bio-Material Polylactic Acid/Poly(Butylene Adipate-Co-Terephthalate) Blend Development for Extrusion-Based Additive Manufacturing.” In <i>AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads</i>. Ghent: Autex.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. Wang <i>et al.</i>, “Bio-material polylactic acid/poly(butylene adipate-co-terephthalate) blend development for extrusion-based additive manufacturing,” in <i>AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads</i>, Ghent, 2019.</div>
      </div>
  mla: |2
      <div class="csl-entry">Wang, Sisi, et al. “Bio-Material Polylactic Acid/Poly(Butylene Adipate-Co-Terephthalate) Blend Development for Extrusion-Based Additive Manufacturing.” <i>AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads</i>, Autex, 2019.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Wang S, Daelemans L, Fiorio R, Xia H, Zhang J, Giu M, et al. Bio-material polylactic acid/poly(butylene adipate-co-terephthalate) blend development for extrusion-based additive manufacturing. In: AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads. Ghent: Autex; 2019.</div>
       </div>
classification: C1
conference:
  end_date: 2019-06-15
  location: Ghent
  name: AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads
  organizer: Autex
  start_date: 2019-06-11
conference_type: proceedingsPaper
copyright_statement: Creative Commons Attribution-NonCommercial 4.0 International
  Public License (CC BY-NC 4.0)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
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    ugent_id: TW11
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  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
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date_created: 2019-06-21 10:19:20
date_updated: 2026-03-31 13:22:22
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-8620115
isbn:
- '9789079892068'
keyword:
- Polylactic acid
- poly(butylene adipate-co-terephthalate)
- additive manufacturing
- annealing
language:
- eng
page:
  count: '4'
parent:
  title: AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads
project:
- _id: 01P03418
  abstract: <p>The unique combination of light and flexible, but strong structures,
    makes textile materials well suited for technical engineering applications. Especially,
    fibre reinforced composites are seeing a tremendous growth for designing light-weight
    structural components. The fibres, the building blocks of any textile, and their
    arrangement in the composite (microstructure) determine the obtainable mechanical
    properties. It is thus of utmost importance that the formation of this microstructure
    is fundamentally understood. This enables the optimization of current materials,
    but also the development of advanced, nano-enabled composites by the novel technique
    of interleaving nanofibrous textiles. It is more complex than one would think
    at first sight due to the complicated nature of textiles. For example, composites
    are made by stacking layers of fabrics, whose interaction with each other and
    the tooling can result in unwanted defects or misalignments. This is related to
    the mechanics of the textile material. By following a multi-scale analysis, combining
    both experimental and numerical techniques, starting with individual fibres and
    building up till complete nano-interleaved preforms, we will get a fundamental
    understanding of the micro-macro relationships that govern the mechanics of textile
    materials. These insights are of crucial importance for further development of
    high-end nano-enabled composites, and extendable to many other technical textile
    applications as well.</p>
  end_date: 2019-09-30
  gismo_id: b2c0136d-5a95-11e9-b3e1-37a68b033e1d
  iweto_id: 01P03418
  start_date: 2019-01-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
publication_status: published
publication_status_sort: 2
publisher:
  location: Ghent
  name: Autex
status: public
subject:
- Technology and Engineering
title: Bio-material polylactic acid/poly(butylene adipate-co-terephthalate) blend
  development for extrusion-based additive manufacturing
type: conference
year: '2019'
...
---
_id: '8628296'
abstract:
- Bio-material polylactic acid and poly(butylene adipate-co-terephthalate) were blended
  to achieve increased ductility of the blend. Cloisite was added to improve the stiffness
  of the blend. The blends were made into filament suitable for extrusion-based additive
  manufacturing. Melt flow index of the filament and mechanical properties of the
  printed bars were tested. Preliminary results showed that the melt flow index increases
  significantly with cloisite and the modulus of polylactic acid/poly(butylene adipate-co-terephthalate)
  improved slightly. The notched impact strength of the blend increased with increasing
  content of cloisite, and it increased significantly after annealing, especially
  for blends without cloisite.
abstract_full:
- lang: eng
  text: Bio-material polylactic acid and poly(butylene adipate-co-terephthalate) were
    blended to achieve increased ductility of the blend. Cloisite was added to improve
    the stiffness of the blend. The blends were made into filament suitable for extrusion-based
    additive manufacturing. Melt flow index of the filament and mechanical properties
    of the printed bars were tested. Preliminary results showed that the melt flow
    index increases significantly with cloisite and the modulus of polylactic acid/poly(butylene
    adipate-co-terephthalate) improved slightly. The notched impact strength of the
    blend increased with increasing content of cloisite, and it increased significantly
    after annealing, especially for blends without cloisite.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
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  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Applied physics
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  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW17
  ugent_id: TW17
alternative_location:
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  kind: fullText
  url: https://ojs.ugent.be/autex/article/view/11499
article_number: '157'
author:
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  biblio_id: D11A4204-79FD-11E6-A1F1-3577B5D1D7B1
  first_name: Sisi
  last_name: Wang
  name: Sisi Wang
  name_last_first: Wang, Sisi
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  - '000160916128'
  - '802002436857'
  - '979929499370'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: 598AF26A-65E7-11E8-B53A-AFC811A95AF2
  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: 598AF26A-65E7-11E8-B53A-AFC811A95AF2
  first_name: Rudinei
  last_name: Fiorio
  name: Rudinei Fiorio
  name_last_first: Fiorio, Rudinei
  ugent_id:
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- first_name: H.
  last_name: Xia
  name: H. Xia
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- _id: FF42AF42-7F7D-11E6-8766-2C13B5D1D7B1
  biblio_id: FF42AF42-7F7D-11E6-8766-2C13B5D1D7B1
  first_name: Jia
  last_name: Zhang
  name: Jia Zhang
  name_last_first: Zhang, Jia
  ugent_id:
  - '973050210365'
- first_name: M.
  last_name: Gou
  name: M. Gou
  name_last_first: Gou, M.
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F8DDCF06-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F8DDCF06-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Ludwig
  last_name: Cardon
  name: Ludwig Cardon
  name_last_first: Cardon, Ludwig
  orcid_id: 0000-0002-4019-612X
  ugent_id:
  - '802000179080'
  - '972410561043'
biblio_id: '8628296'
cite:
  apa: |2
      <div class="csl-entry">Wang, S., Daelemans, L., Fiorio, R., Xia, H., Zhang, J., Gou, M., … Cardon, L. (2019). Bio-material polylactic acid/poly(butylene adipate-co-terephthalate) blend developed for extrusion- based additive manufacturing. <i>AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads</i>. Presented at the 19th World conference on textiles (AUTEX-2019), Ghent, Belgium.</div>
  chicago-author-date: |2
      <div class="csl-entry">Wang, Sisi, Lode Daelemans, Rudinei Fiorio, H. Xia, Jia Zhang, M. Gou, Dagmar D’hooge, Karen De Clerck, and Ludwig Cardon. 2019. “Bio-Material Polylactic Acid/Poly(Butylene Adipate-Co-Terephthalate) Blend Developed for Extrusion- Based Additive Manufacturing.” In <i>AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads</i>.</div>
  fwo: |2
      <div class="csl-entry">Wang, Sisi, Lode Daelemans, Rudinei Fiorio, H. Xia, Jia Zhang, M. Gou, Dagmar D’hooge, Karen De Clerck, and Ludwig Cardon. 2019. “Bio-Material Polylactic Acid/Poly(Butylene Adipate-Co-Terephthalate) Blend Developed for Extrusion- Based Additive Manufacturing.” In <i>AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. Wang <i>et al.</i>, “Bio-material polylactic acid/poly(butylene adipate-co-terephthalate) blend developed for extrusion- based additive manufacturing,” in <i>AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads</i>, Ghent, Belgium, 2019.</div>
      </div>
  mla: |2
      <div class="csl-entry">Wang, Sisi, et al. “Bio-Material Polylactic Acid/Poly(Butylene Adipate-Co-Terephthalate) Blend Developed for Extrusion- Based Additive Manufacturing.” <i>AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads</i>, 2019.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Wang S, Daelemans L, Fiorio R, Xia H, Zhang J, Gou M, et al. Bio-material polylactic acid/poly(butylene adipate-co-terephthalate) blend developed for extrusion- based additive manufacturing. In: AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads. 2019.</div>
       </div>
classification: C1
conference:
  end_date: 2019-06-15
  location: Ghent, Belgium
  name: 19th World conference on textiles (AUTEX-2019)
  start_date: 2019-06-11
conference_type: proceedingsPaper
copyright_statement: Creative Commons Attribution-NonCommercial 4.0 International
  Public License (CC BY-NC 4.0)
created_by:
  _id: 798BCFF0-0208-11E3-BADE-15C210BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 798BCFF0-0208-11E3-BADE-15C210BDE39D
  first_name: Paulien
  last_name: Baeyens
  name: Paulien Baeyens
  name_last_first: Baeyens, Paulien
  ugent_id:
  - '802002698757'
  - '974253404530'
date_created: 2019-09-16 10:54:01
date_updated: 2026-03-31 13:22:22
external: 0
file:
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  access: open
  content_type: application/pdf
  kind: fullText
  name: ZHANG-ABSTRACT-_Bio-material.pdf
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handle: http://hdl.handle.net/1854/LU-8628296
isbn:
- '9789079892068'
language:
- eng
page:
  count: '4'
parent:
  title: AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads
project:
- _id: 01P03418
  abstract: <p>The unique combination of light and flexible, but strong structures,
    makes textile materials well suited for technical engineering applications. Especially,
    fibre reinforced composites are seeing a tremendous growth for designing light-weight
    structural components. The fibres, the building blocks of any textile, and their
    arrangement in the composite (microstructure) determine the obtainable mechanical
    properties. It is thus of utmost importance that the formation of this microstructure
    is fundamentally understood. This enables the optimization of current materials,
    but also the development of advanced, nano-enabled composites by the novel technique
    of interleaving nanofibrous textiles. It is more complex than one would think
    at first sight due to the complicated nature of textiles. For example, composites
    are made by stacking layers of fabrics, whose interaction with each other and
    the tooling can result in unwanted defects or misalignments. This is related to
    the mechanics of the textile material. By following a multi-scale analysis, combining
    both experimental and numerical techniques, starting with individual fibres and
    building up till complete nano-interleaved preforms, we will get a fundamental
    understanding of the micro-macro relationships that govern the mechanics of textile
    materials. These insights are of crucial importance for further development of
    high-end nano-enabled composites, and extendable to many other technical textile
    applications as well.</p>
  end_date: 2019-09-30
  gismo_id: b2c0136d-5a95-11e9-b3e1-37a68b033e1d
  iweto_id: 01P03418
  start_date: 2019-01-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Bio-material polylactic acid/poly(butylene adipate-co-terephthalate) blend
  developed for extrusion- based additive manufacturing
type: conference
year: '2019'
...
---
_id: '8639405'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
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  url: https://www.pacificpolymer.org/public.asp?page=home.html
author:
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  biblio_id: 28DB1308-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lies
  last_name: De Keer
  name: Lies De Keer
  name_last_first: De Keer, Lies
  orcid_id: 0000-0003-2620-0046
  ugent_id:
  - '000100481791'
  - '802002106754'
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- first_name: K.I.
  last_name: Karsu
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  first_name: Paul
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  name: Paul Van Steenberge
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  last_name: Frisch
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  affiliation:
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    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
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- _id: F429FA8E-F0ED-11E1-A9DE-61C894A0A6B4
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    ugent_id: TW11
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  first_name: Marie-Françoise
  last_name: Reyniers
  name: Marie-Françoise Reyniers
  name_last_first: Reyniers, Marie-Françoise
  ugent_id:
  - '801000590040'
  - '001960946643'
- first_name: C.
  last_name: Barner- Kowollik
  name: C. Barner- Kowollik
  name_last_first: Barner- Kowollik, C.
- first_name: R.W.
  last_name: Dauskardt
  name: R.W. Dauskardt
  name_last_first: Dauskardt, R.W.
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
biblio_id: '8639405'
cite:
  apa: |2
      <div class="csl-entry">De Keer, L., Karsu, K. I., Van Steenberge, P., Frisch, H., Daelemans, L., De Clerck, K., … D’hooge, D. (2019). From molecule to material performance : multiscale design of (in)organic network polymers. <i>16th Pacific Polymer Conference (PPC16), Abstracts</i>. Presented at the 16th Pacific Polymer Conference (PPC16), Singapore, Singapore.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Keer, Lies, K.I. Karsu, Paul Van Steenberge, H. Frisch, Lode Daelemans, Karen De Clerck, Marie-Françoise Reyniers, C. Barner- Kowollik, R.W. Dauskardt, and Dagmar D’hooge. 2019. “From Molecule to Material Performance : Multiscale Design of (in)Organic Network Polymers.” In <i>16th Pacific Polymer Conference (PPC16), Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">De Keer, Lies, K.I. Karsu, Paul Van Steenberge, H. Frisch, Lode Daelemans, Karen De Clerck, Marie-Françoise Reyniers, C. Barner- Kowollik, R.W. Dauskardt, and Dagmar D’hooge. 2019. “From Molecule to Material Performance : Multiscale Design of (in)Organic Network Polymers.” In <i>16th Pacific Polymer Conference (PPC16), Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. De Keer <i>et al.</i>, “From molecule to material performance : multiscale design of (in)organic network polymers,” in <i>16th Pacific Polymer Conference (PPC16), Abstracts</i>, Singapore, Singapore, 2019.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Keer, Lies, et al. “From Molecule to Material Performance : Multiscale Design of (in)Organic Network Polymers.” <i>16th Pacific Polymer Conference (PPC16), Abstracts</i>, 2019.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Keer L, Karsu KI, Van Steenberge P, Frisch H, Daelemans L, De Clerck K, et al. From molecule to material performance : multiscale design of (in)organic network polymers. In: 16th Pacific Polymer Conference (PPC16), Abstracts. 2019.</div>
       </div>
classification: C3
conference:
  end_date: 2019-12-12
  location: Singapore, Singapore
  name: 16th Pacific Polymer Conference (PPC16)
  start_date: 2019-12-08
conference_type: other
copyright_statement: No license (in copyright)
created_by:
  _id: 798BCFF0-0208-11E3-BADE-15C210BDE39D
  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 798BCFF0-0208-11E3-BADE-15C210BDE39D
  first_name: Paulien
  last_name: Baeyens
  name: Paulien Baeyens
  name_last_first: Baeyens, Paulien
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date_created: 2019-12-18 15:37:02
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page:
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parent:
  title: 16th Pacific Polymer Conference (PPC16), Abstracts
project:
- _id: 01P03418
  abstract: <p>The unique combination of light and flexible, but strong structures,
    makes textile materials well suited for technical engineering applications. Especially,
    fibre reinforced composites are seeing a tremendous growth for designing light-weight
    structural components. The fibres, the building blocks of any textile, and their
    arrangement in the composite (microstructure) determine the obtainable mechanical
    properties. It is thus of utmost importance that the formation of this microstructure
    is fundamentally understood. This enables the optimization of current materials,
    but also the development of advanced, nano-enabled composites by the novel technique
    of interleaving nanofibrous textiles. It is more complex than one would think
    at first sight due to the complicated nature of textiles. For example, composites
    are made by stacking layers of fabrics, whose interaction with each other and
    the tooling can result in unwanted defects or misalignments. This is related to
    the mechanics of the textile material. By following a multi-scale analysis, combining
    both experimental and numerical techniques, starting with individual fibres and
    building up till complete nano-interleaved preforms, we will get a fundamental
    understanding of the micro-macro relationships that govern the mechanics of textile
    materials. These insights are of crucial importance for further development of
    high-end nano-enabled composites, and extendable to many other technical textile
    applications as well.</p>
  end_date: 2019-09-30
  gismo_id: b2c0136d-5a95-11e9-b3e1-37a68b033e1d
  iweto_id: 01P03418
  start_date: 2019-01-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
- Chemistry
title: 'From molecule to material performance : multiscale design of (in)organic network
  polymers'
type: conference
year: '2019'
...
---
_id: 01GTVCS0KST6X71B8WW5CJ5QEF
abstract:
- In article number 1807434, Dagmar R. D'hooge, Karen De Clerck, and co-workers develop
  a direct route to control the interfacial bonding between two polymeric materials
  through molecular diffusion during in situ chemical formation of one of those materials.
  This route is used to create nanofibrous hybrid materials that have excellent toughness.
  The image shows a nanofibre ligament bridging a microcrack, resulting in highly
  toughened hybrid materials.
abstract_full:
- lang: eng
  text: In article number 1807434, Dagmar R. D'hooge, Karen De Clerck, and co-workers
    develop a direct route to control the interfacial bonding between two polymeric
    materials through molecular diffusion during in situ chemical formation of one
    of those materials. This route is used to create nanofibrous hybrid materials
    that have excellent toughness. The image shows a nanofibre ligament bridging a
    microcrack, resulting in highly toughened hybrid materials.
additional_info: Back Cover
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    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
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- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
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  first_name: Dagmar
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  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
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- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: 01GTVCS0KST6X71B8WW5CJ5QEF
cite:
  apa: |2
      <div class="csl-entry">Daelemans, L., Van Paepegem, W., D’hooge, D., &#38; De Clerck, K. (2019). Composite Materials: Excellent nanofiber adhesion for hybrid polymer materials with high toughness based on matrix interdiffusion during chemical conversion (Adv. Funct. Mater. 8/2019). https://doi.org/10.1002/adfm.201970051</div>
  bof: |2-
      <div class="csl-entry">Daelemans, Lode, Wim Van Paepegem, Dagmar D’hooge, and Karen De Clerck. 2019. “Composite Materials: Excellent Nanofiber Adhesion for Hybrid Polymer Materials with High Toughness Based on Matrix Interdiffusion during Chemical Conversion (Adv. Funct. Mater. 8/2019).” <i>ADVANCED FUNCTIONAL MATERIALS</i>. doi:10.1002/adfm.201970051.</div>
    <div><i>Impact factor: 16.836, category: MATERIALS SCIENCE, MULTIDISCIPLINARY, rank: 13/314, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Daelemans, Lode, Wim Van Paepegem, Dagmar D’hooge, and Karen De Clerck. 2019. “Composite Materials: Excellent Nanofiber Adhesion for Hybrid Polymer Materials with High Toughness Based on Matrix Interdiffusion during Chemical Conversion (Adv. Funct. Mater. 8/2019).” <i>ADVANCED FUNCTIONAL MATERIALS</i>. https://doi.org/10.1002/adfm.201970051.</div>
  fwo: |2
      <div class="csl-entry">Daelemans, Lode, Wim Van Paepegem, Dagmar D’hooge, and Karen De Clerck. 2019. “Composite Materials: Excellent Nanofiber Adhesion for Hybrid Polymer Materials with High Toughness Based on Matrix Interdiffusion during Chemical Conversion (Adv. Funct. Mater. 8/2019).” <i>ADVANCED FUNCTIONAL MATERIALS</i>. doi:10.1002/adfm.201970051.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Daelemans, W. Van Paepegem, D. D’hooge, and K. De Clerck, “Composite Materials: Excellent nanofiber adhesion for hybrid polymer materials with high toughness based on matrix interdiffusion during chemical conversion (Adv. Funct. Mater. 8/2019),” <i>ADVANCED FUNCTIONAL MATERIALS</i>, vol. 29, no. 8. 2019.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daelemans, Lode, et al. “Composite Materials: Excellent Nanofiber Adhesion for Hybrid Polymer Materials with High Toughness Based on Matrix Interdiffusion during Chemical Conversion (Adv. Funct. Mater. 8/2019).” <i>ADVANCED FUNCTIONAL MATERIALS</i>, vol. 29, no. 8, 2019, doi:10.1002/adfm.201970051.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daelemans L, Van Paepegem W, D’hooge D, De Clerck K. Composite Materials: Excellent nanofiber adhesion for hybrid polymer materials with high toughness based on matrix interdiffusion during chemical conversion (Adv. Funct. Mater. 8/2019). Vol. 29, ADVANCED FUNCTIONAL MATERIALS. 2019.</div>
       </div>
classification: V
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date_created: 2023-03-06 12:01:41
date_updated: 2026-03-31 08:19:05
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jcr:
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  eigenfactor: 0.21448
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keyword:
- Electrochemistry
- Condensed Matter Physics
- Biomaterials
- Electronic, Optical and Magnetic Materials
language:
- eng
misc_type: other
page:
  count: '1'
parent:
  short_title: Adv. Funct. Mater.
  title: ADVANCED FUNCTIONAL MATERIALS
publication_status: published
publication_status_sort: 2
status: public
subject:
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- Chemistry
title: 'Composite Materials: Excellent nanofiber adhesion for hybrid polymer materials
  with high toughness based on matrix interdiffusion during chemical conversion (Adv.
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type: misc
volume: '29'
year: '2019'
...
---
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    ugent_id: TW11
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cite:
  apa: |2
      <div class="csl-entry">Phan, K., Van Den Broeck, E., Van Speybroeck, V., De Clerck, K., Raes, K., &#38; De Meester, S. (2019). Exploring the potential of anthocyanins as a natural dye for non-food applications. <i>GCE/GSC Conference, Abstracts</i>. Presented at the 23rd Green Chemistry &#38; Engineering conference (GCE) ; 9th International conference on Green and Sustainable Chemistry (GSC), Reston, VA, USA.</div>
  bof: |2
      <div class="csl-entry">Phan, Kim, Elias Van Den Broeck, Veronique Van Speybroeck, Karen De Clerck, Katleen Raes, and Steven De Meester. 2019. “Exploring the Potential of Anthocyanins as a Natural Dye for Non-Food Applications.” In <i>GCE/GSC Conference, Abstracts</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">Phan, Kim, Elias Van Den Broeck, Veronique Van Speybroeck, Karen De Clerck, Katleen Raes, and Steven De Meester. 2019. “Exploring the Potential of Anthocyanins as a Natural Dye for Non-Food Applications.” In <i>GCE/GSC Conference, Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">Phan, Kim, Elias Van Den Broeck, Veronique Van Speybroeck, Karen De Clerck, Katleen Raes, and Steven De Meester. 2019. “Exploring the Potential of Anthocyanins as a Natural Dye for Non-Food Applications.” In <i>GCE/GSC Conference, Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. Phan, E. Van Den Broeck, V. Van Speybroeck, K. De Clerck, K. Raes, and S. De Meester, “Exploring the potential of anthocyanins as a natural dye for non-food applications,” in <i>GCE/GSC conference, Abstracts</i>, Reston, VA, USA, 2019.</div>
      </div>
  mla: |2
      <div class="csl-entry">Phan, Kim, et al. “Exploring the Potential of Anthocyanins as a Natural Dye for Non-Food Applications.” <i>GCE/GSC Conference, Abstracts</i>, 2019.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Phan K, Van Den Broeck E, Van Speybroeck V, De Clerck K, Raes K, De Meester S. Exploring the potential of anthocyanins as a natural dye for non-food applications. In: GCE/GSC conference, Abstracts. 2019.</div>
       </div>
classification: C3
conference:
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  location: Reston, VA, USA
  name: 23rd Green Chemistry & Engineering conference (GCE) ; 9th International conference
    on Green and Sustainable Chemistry (GSC)
  organizer: American Chemical Society (ACS)
  start_date: 2019-06-11
conference_type: poster
copyright_statement: No license (in copyright)
created_by:
  _id: 1D7D45A8-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
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date_created: 2019-06-21 08:41:48
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handle: http://hdl.handle.net/1854/LU-8620122
jcr: {}
language:
- eng
parent:
  title: GCE/GSC conference, Abstracts
publication_status: published
publication_status_sort: 2
status: public
subject:
- Chemistry
- Agriculture and Food Sciences
title: Exploring the potential of anthocyanins as a natural dye for non-food applications
type: conference
year: '2019'
...
---
_id: '8620308'
abstract:
- Nanofibrous materials produced via electrospinning are characterized by a high porosity,
  large specific surface area, and high pore interconnectivity and, therefore, show
  potential for, e.g., separation and filtration. The development of more inert nanofibers
  with higher thermal and chemical resistance extends the application field. Silica
  nanofibrous membranes produced by direct electrospinning of a sol–gel solution without
  a sacrificing carrier meet these challenging demands. A combination of hydrolysis
  and condensation reactions of the tetraethoxysilane (TEOS) precursor, results in
  dense silica nanofibers with superior mechanical properties, without a rough and
  uneven surface, allowing the use in advanced engineering applications.
abstract_full:
- lang: eng
  text: Nanofibrous materials produced via electrospinning are characterized by a
    high porosity, large specific surface area, and high pore interconnectivity and,
    therefore, show potential for, e.g., separation and filtration. The development
    of more inert nanofibers with higher thermal and chemical resistance extends the
    application field. Silica nanofibrous membranes produced by direct electrospinning
    of a sol–gel solution without a sacrificing carrier meet these challenging demands.
    A combination of hydrolysis and condensation reactions of the tetraethoxysilane
    (TEOS) precursor, results in dense silica nanofibers with superior mechanical
    properties, without a rough and uneven surface, allowing the use in advanced engineering
    applications.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE06
  ugent_id: WE06
author:
- _id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  first_name: Eva
  last_name: Loccufier
  name: Eva Loccufier
  name_last_first: Loccufier, Eva
  orcid_id: 0000-0001-7045-2721
  ugent_id:
  - '802002671374'
  - '974161061035'
- _id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
  orcid_id: 0000-0002-1281-2968
  ugent_id:
  - '000070582957'
  - '975000449525'
- first_name: Dolores
  last_name: Esquivel
  name: Dolores Esquivel
  name_last_first: Esquivel, Dolores
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8620308'
cite:
  apa: |2
      <div class="csl-entry">Loccufier, E., Geltmeyer, J., Esquivel, D., D’hooge, D., De Buysser, K., &#38; De Clerck, K. (2019). Electrospinning of silica nanofibers without carrier polymer for advanced engineering applications. <i>AUTEX2019 : 19th World Textile Conference on Textiles at the Crossroads</i>. Presented at the 19th World Textile conference (AUTEX-2019): Textiles at the crossroads, Ghent, Belgium.</div>
  bof: |2
      <div class="csl-entry">Loccufier, Eva, Jozefien Geltmeyer, Dolores Esquivel, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2019. “Electrospinning of Silica Nanofibers without Carrier Polymer for Advanced Engineering Applications.” In <i>AUTEX2019 : 19th World Textile Conference on Textiles at the Crossroads</i>. AUTEX.</div>
  chicago-author-date: |2
      <div class="csl-entry">Loccufier, Eva, Jozefien Geltmeyer, Dolores Esquivel, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2019. “Electrospinning of Silica Nanofibers without Carrier Polymer for Advanced Engineering Applications.” In <i>AUTEX2019 : 19th World Textile Conference on Textiles at the Crossroads</i>. AUTEX.</div>
  fwo: |2
      <div class="csl-entry">Loccufier, Eva, Jozefien Geltmeyer, Dolores Esquivel, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2019. “Electrospinning of Silica Nanofibers without Carrier Polymer for Advanced Engineering Applications.” In <i>AUTEX2019 : 19th World Textile Conference on Textiles at the Crossroads</i>. AUTEX.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Loccufier, J. Geltmeyer, D. Esquivel, D. D’hooge, K. De Buysser, and K. De Clerck, “Electrospinning of silica nanofibers without carrier polymer for advanced engineering applications,” in <i>AUTEX2019 : 19th world textile conference on textiles at the crossroads</i>, Ghent, Belgium, 2019.</div>
      </div>
  mla: |2
      <div class="csl-entry">Loccufier, Eva, et al. “Electrospinning of Silica Nanofibers without Carrier Polymer for Advanced Engineering Applications.” <i>AUTEX2019 : 19th World Textile Conference on Textiles at the Crossroads</i>, AUTEX, 2019.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Loccufier E, Geltmeyer J, Esquivel D, D’hooge D, De Buysser K, De Clerck K. Electrospinning of silica nanofibers without carrier polymer for advanced engineering applications. In: AUTEX2019 : 19th world textile conference on textiles at the crossroads. AUTEX; 2019.</div>
       </div>
classification: C1
conference:
  end_date: 2019-06-15
  location: Ghent, Belgium
  name: '19th World Textile conference (AUTEX-2019): Textiles at the crossroads'
  organizer: AUTEX (Association of Universities for Textiles)
  start_date: 2019-06-11
conference_type: proceedingsPaper
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
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    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2019-06-21 14:32:08
date_updated: 2023-05-08 11:49:49
external: 0
file:
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- _id: '8628435'
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  url: https://biblio.ugent.be/publication/8620308/file/8628435.pdf
handle: http://hdl.handle.net/1854/LU-8620308
isbn:
- '9789079892068'
jcr: {}
keyword:
- Electrospinning
- Silica
- Sol-gel synthesis
- Hydrophobicity
- Viscosity
language:
- eng
page:
  count: '6'
parent:
  title: 'AUTEX2019 : 19th world textile conference on textiles at the crossroads'
publication_status: published
publication_status_sort: 2
publisher:
  name: AUTEX
status: public
subject:
- Technology and Engineering
title: Electrospinning of silica nanofibers without carrier polymer for advanced engineering
  applications
type: conference
year: '2019'
...
---
_id: '8628560'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
author:
- _id: D11A4204-79FD-11E6-A1F1-3577B5D1D7B1
  biblio_id: D11A4204-79FD-11E6-A1F1-3577B5D1D7B1
  first_name: Sisi
  last_name: Wang
  name: Sisi Wang
  name_last_first: Wang, Sisi
  ugent_id:
  - '000160916128'
  - '802002436857'
  - '979929499370'
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F8DDCF06-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F8DDCF06-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Ludwig
  last_name: Cardon
  name: Ludwig Cardon
  name_last_first: Cardon, Ludwig
  orcid_id: 0000-0002-4019-612X
  ugent_id:
  - '802000179080'
  - '972410561043'
biblio_id: '8628560'
cite:
  apa: |2
      <div class="csl-entry">Wang, S., D’hooge, D., De Clerck, K., &#38; Cardon, L. (2019). Extrusion based additive manufacturing of biobased polymers. <i>Polymer Process Engineering 2019 (PPE19) : Abstracts</i>. Presented at the Polymer Process Engineering 2019 (PPE19), Bradford, UK.</div>
  bof: |2
      <div class="csl-entry">Wang, Sisi, Dagmar D’hooge, Karen De Clerck, and Ludwig Cardon. 2019. “Extrusion Based Additive Manufacturing of Biobased Polymers.” In <i>Polymer Process Engineering 2019 (PPE19) : Abstracts</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">Wang, Sisi, Dagmar D’hooge, Karen De Clerck, and Ludwig Cardon. 2019. “Extrusion Based Additive Manufacturing of Biobased Polymers.” In <i>Polymer Process Engineering 2019 (PPE19) : Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">Wang, Sisi, Dagmar D’hooge, Karen De Clerck, and Ludwig Cardon. 2019. “Extrusion Based Additive Manufacturing of Biobased Polymers.” In <i>Polymer Process Engineering 2019 (PPE19) : Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. Wang, D. D’hooge, K. De Clerck, and L. Cardon, “Extrusion based additive manufacturing of biobased polymers,” in <i>Polymer Process Engineering 2019 (PPE19) : abstracts</i>, Bradford, UK, 2019.</div>
      </div>
  mla: |2
      <div class="csl-entry">Wang, Sisi, et al. “Extrusion Based Additive Manufacturing of Biobased Polymers.” <i>Polymer Process Engineering 2019 (PPE19) : Abstracts</i>, 2019.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Wang S, D’hooge D, De Clerck K, Cardon L. Extrusion based additive manufacturing of biobased polymers. In: Polymer Process Engineering 2019 (PPE19) : abstracts. 2019.</div>
       </div>
classification: C3
conference:
  end_date: 2019-07-10
  location: Bradford, UK
  name: Polymer Process Engineering 2019 (PPE19)
  start_date: 2019-07-09
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
  _id: FA9ED9DE-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: FA9ED9DE-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Veerle
  last_name: Van Cauwenberghe
  name: Veerle Van Cauwenberghe
  name_last_first: Van Cauwenberghe, Veerle
  ugent_id:
  - '802000403089'
  - '971461632473'
date_created: 2019-09-17 13:13:47
date_updated: 2023-05-08 11:50:06
external: 0
file:
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  kind: fullText
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handle: http://hdl.handle.net/1854/LU-8628560
jcr: {}
language:
- eng
page:
  count: '1'
parent:
  title: 'Polymer Process Engineering 2019 (PPE19) : abstracts'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Extrusion based additive manufacturing of biobased polymers
type: conference
year: '2019'
...
---
_id: '8627257'
abstract:
- Recently, the use of repellents for preventing the transmission of mosquito-borne
  diseases is getting increasingly more attention. However, most of the current repellents
  are volatile in nature and must be frequently re-applied as their efficacy is only
  limited to a short period of time. Therefore, a slow release and abrasion-resistant
  mechanism is needed for prolonging the protection time of the repellents. The focus
  of this study is on the direct micro-encapsulation of repellents from an emulsion
  and integration of already encapsulated repellents into nanofibres via electrospinning.
  Different repellents were electrospun in polyvinyl alcohol (PVA) nanofibrous structures,
  namely p-menthane-3,8-diol micro-capsules, permethrin, chilli and catnip oil. The
  repellents were successfully incorporated in the nanofibres and the tensile properties
  of the resulting samples did not have a significant change. This means that the
  newly created textiles were identical to current PVA nanofibrous textiles with the
  added benefit of being mosquito repellent. Principally, all incorporated repellents
  in the nanofibrous structures showed a significantly reduced number of mosquito
  landings compared to the control. Consequently, the currently described method resulted
  in a new and very effective repelling textile material that can be used in the prevention
  against mosquito-associated diseases.
abstract_full:
- lang: eng
  text: Recently, the use of repellents for preventing the transmission of mosquito-borne
    diseases is getting increasingly more attention. However, most of the current
    repellents are volatile in nature and must be frequently re-applied as their efficacy
    is only limited to a short period of time. Therefore, a slow release and abrasion-resistant
    mechanism is needed for prolonging the protection time of the repellents. The
    focus of this study is on the direct micro-encapsulation of repellents from an
    emulsion and integration of already encapsulated repellents into nanofibres via
    electrospinning. Different repellents were electrospun in polyvinyl alcohol (PVA)
    nanofibrous structures, namely p-menthane-3,8-diol micro-capsules, permethrin,
    chilli and catnip oil. The repellents were successfully incorporated in the nanofibres
    and the tensile properties of the resulting samples did not have a significant
    change. This means that the newly created textiles were identical to current PVA
    nanofibrous textiles with the added benefit of being mosquito repellent. Principally,
    all incorporated repellents in the nanofibrous structures showed a significantly
    reduced number of mosquito landings compared to the control. Consequently, the
    currently described method resulted in a new and very effective repelling textile
    material that can be used in the prevention against mosquito-associated diseases.
affiliation:
- name: Department of Biology
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE11
  ugent_id: WE11
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
article_number: '182139'
article_type: original
author:
- first_name: Lucy
  last_name: Ciera
  name: Lucy Ciera
  name_last_first: Ciera, Lucy
- _id: F5886064-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: F5886064-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lynda
  last_name: Beladjal
  name: Lynda Beladjal
  name_last_first: Beladjal, Lynda
  orcid_id: 0000-0002-5755-7235
  ugent_id:
  - '801001276417'
  - '974387308481'
- _id: F58CB1E6-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F58CB1E6-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lieve
  last_name: Van Landuyt
  name: Lieve Van Landuyt
  name_last_first: Van Landuyt, Lieve
  ugent_id:
  - '801001285006'
- first_name: David
  last_name: Menger
  name: David Menger
  name_last_first: Menger, David
- first_name: Maarten
  last_name: Holdinga
  name: Maarten Holdinga
  name_last_first: Holdinga, Maarten
- _id: F382C624-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: F382C624-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Johan
  last_name: Mertens
  name: Johan Mertens
  name_last_first: Mertens, Johan
  ugent_id:
  - '978235956061'
- _id: F4469E14-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW18
    ugent_id: TW18
  biblio_id: F4469E14-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lieva
  last_name: Van Langenhove
  name: Lieva Van Langenhove
  name_last_first: Van Langenhove, Lieva
  orcid_id: 0000-0001-9802-7399
  ugent_id:
  - '801000648543'
  - '972198930382'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: 3BD8851C-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 3BD8851C-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Tom
  last_name: Gheysens
  name: Tom Gheysens
  name_last_first: Gheysens, Tom
  orcid_id: 0000-0002-8185-8986
  ugent_id:
  - '002000654908'
  - '801001793648'
  - '971661450756'
biblio_id: '8627257'
cite:
  apa: |2
      <div class="csl-entry">Ciera, L., Beladjal, L., Van Landuyt, L., Menger, D., Holdinga, M., Mertens, J., … Gheysens, T. (2019). Electrospinning repellents in polyvinyl alcohol-nanofibres for obtaining mosquito-repelling fabrics. <i>ROYAL SOCIETY OPEN SCIENCE</i>, <i>6</i>(8). https://doi.org/10.1098/rsos.182139</div>
  bof: |2-
      <div class="csl-entry">Ciera, Lucy, Lynda Beladjal, Lieve Van Landuyt, David Menger, Maarten Holdinga, Johan Mertens, Lieva Van Langenhove, Karen De Clerck, and Tom Gheysens. 2019. “Electrospinning Repellents in Polyvinyl Alcohol-Nanofibres for Obtaining Mosquito-Repelling Fabrics.” <i>ROYAL SOCIETY OPEN SCIENCE</i> 6 (8). doi:10.1098/rsos.182139.</div>
    <div><i>Impact factor: 2.646, category: MULTIDISCIPLINARY SCIENCES, rank: 28/71, quartile: 2.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Ciera, Lucy, Lynda Beladjal, Lieve Van Landuyt, David Menger, Maarten Holdinga, Johan Mertens, Lieva Van Langenhove, Karen De Clerck, and Tom Gheysens. 2019. “Electrospinning Repellents in Polyvinyl Alcohol-Nanofibres for Obtaining Mosquito-Repelling Fabrics.” <i>ROYAL SOCIETY OPEN SCIENCE</i> 6 (8). https://doi.org/10.1098/rsos.182139.</div>
  fwo: |2
      <div class="csl-entry">Ciera, Lucy, Lynda Beladjal, Lieve Van Landuyt, David Menger, Maarten Holdinga, Johan Mertens, Lieva Van Langenhove, Karen De Clerck, and Tom Gheysens. 2019. “Electrospinning Repellents in Polyvinyl Alcohol-Nanofibres for Obtaining Mosquito-Repelling Fabrics.” <i>ROYAL SOCIETY OPEN SCIENCE</i> 6 (8). doi:10.1098/rsos.182139.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Ciera <i>et al.</i>, “Electrospinning repellents in polyvinyl alcohol-nanofibres for obtaining mosquito-repelling fabrics,” <i>ROYAL SOCIETY OPEN SCIENCE</i>, vol. 6, no. 8, 2019.</div>
      </div>
  mla: |2
      <div class="csl-entry">Ciera, Lucy, et al. “Electrospinning Repellents in Polyvinyl Alcohol-Nanofibres for Obtaining Mosquito-Repelling Fabrics.” <i>ROYAL SOCIETY OPEN SCIENCE</i>, vol. 6, no. 8, 2019, doi:10.1098/rsos.182139.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Ciera L, Beladjal L, Van Landuyt L, Menger D, Holdinga M, Mertens J, et al. Electrospinning repellents in polyvinyl alcohol-nanofibres for obtaining mosquito-repelling fabrics. ROYAL SOCIETY OPEN SCIENCE. 2019;6(8).</div>
       </div>
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keyword:
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- repellent
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- INSECT REPELLENTS
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title: Electrospinning repellents in polyvinyl alcohol-nanofibres for obtaining mosquito-repelling
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cite:
  apa: |2
      <div class="csl-entry">Bossier, S., Gohari Derakhshandeh, P., Kaczmarek, A., Loccufier, E., Gheysens, T., Van Der Voort, P., … Leus, K. (2019). Orthogonal tandem oxidative carboxylation of styrene by VPOM@CTF@PA-4,6 nanofiber. <i>Netherlands’ Catalysis and Chemistry Conference, 20th, Abstracts</i>. Presented at the 20th Netherlands’ Catalysis and Chemistry Conference (NCCC XX), Noordwijkerhout, The Netherlands.</div>
  bof: |2
      <div class="csl-entry">Bossier, Sander, Parviz Gohari Derakhshandeh, Anna Kaczmarek, Eva Loccufier, Tom Gheysens, Pascal Van Der Voort, Karen De Clerck, Peter Dubruel, and Karen Leus. 2019. “Orthogonal Tandem Oxidative Carboxylation of Styrene by VPOM@CTF@PA-4,6 Nanofiber.” In <i>Netherlands’ Catalysis and Chemistry Conference, 20th, Abstracts</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">Bossier, Sander, Parviz Gohari Derakhshandeh, Anna Kaczmarek, Eva Loccufier, Tom Gheysens, Pascal Van Der Voort, Karen De Clerck, Peter Dubruel, and Karen Leus. 2019. “Orthogonal Tandem Oxidative Carboxylation of Styrene by VPOM@CTF@PA-4,6 Nanofiber.” In <i>Netherlands’ Catalysis and Chemistry Conference, 20th, Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">Bossier, Sander, Parviz Gohari Derakhshandeh, Anna Kaczmarek, Eva Loccufier, Tom Gheysens, Pascal Van Der Voort, Karen De Clerck, Peter Dubruel, and Karen Leus. 2019. “Orthogonal Tandem Oxidative Carboxylation of Styrene by VPOM@CTF@PA-4,6 Nanofiber.” In <i>Netherlands’ Catalysis and Chemistry Conference, 20th, Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. Bossier <i>et al.</i>, “Orthogonal tandem oxidative carboxylation of styrene by VPOM@CTF@PA-4,6 nanofiber,” in <i>Netherlands’ Catalysis and Chemistry Conference, 20th, Abstracts</i>, Noordwijkerhout, The Netherlands, 2019.</div>
      </div>
  mla: |2
      <div class="csl-entry">Bossier, Sander, et al. “Orthogonal Tandem Oxidative Carboxylation of Styrene by VPOM@CTF@PA-4,6 Nanofiber.” <i>Netherlands’ Catalysis and Chemistry Conference, 20th, Abstracts</i>, 2019.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Bossier S, Gohari Derakhshandeh P, Kaczmarek A, Loccufier E, Gheysens T, Van Der Voort P, et al. Orthogonal tandem oxidative carboxylation of styrene by VPOM@CTF@PA-4,6 nanofiber. In: Netherlands’ Catalysis and Chemistry Conference, 20th, Abstracts. 2019.</div>
       </div>
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jcr: {}
language:
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parent:
  title: Netherlands' Catalysis and Chemistry Conference, 20th, Abstracts
publication_status: published
publication_status_sort: 2
status: public
subject:
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title: Orthogonal tandem oxidative carboxylation of styrene by VPOM@CTF@PA-4,6 nanofiber
type: conference
year: '2019'
...
---
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cite:
  apa: |2
      <div class="csl-entry">Daelemans, L., &#38; De Clerck, K. (2019). Nieuws uit de vakgroep : nieuwe analysetechnieken aan Ugent verbinden de microwereld van textiel met onze macroscopische wereld. <i>UNITEX</i>, (1), 51–51.</div>
  bof: |2
      <div class="csl-entry">Daelemans, Lode, and Karen De Clerck. 2019. “Nieuws Uit de Vakgroep : Nieuwe Analysetechnieken Aan Ugent Verbinden de Microwereld van Textiel Met Onze Macroscopische Wereld.” <i>UNITEX</i> (1): 51–51.</div>
  chicago-author-date: |2
      <div class="csl-entry">Daelemans, Lode, and Karen De Clerck. 2019. “Nieuws Uit de Vakgroep : Nieuwe Analysetechnieken Aan Ugent Verbinden de Microwereld van Textiel Met Onze Macroscopische Wereld.” <i>UNITEX</i>, no. 1: 51–51.</div>
  fwo: |2
      <div class="csl-entry">Daelemans, Lode, and Karen De Clerck. 2019. “Nieuws Uit de Vakgroep : Nieuwe Analysetechnieken Aan Ugent Verbinden de Microwereld van Textiel Met Onze Macroscopische Wereld.” <i>UNITEX</i> (1): 51–51.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Daelemans and K. De Clerck, “Nieuws uit de vakgroep : nieuwe analysetechnieken aan Ugent verbinden de microwereld van textiel met onze macroscopische wereld,” <i>UNITEX</i>, no. 1, pp. 51–51, 2019.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daelemans, Lode, and Karen De Clerck. “Nieuws Uit de Vakgroep : Nieuwe Analysetechnieken Aan Ugent Verbinden de Microwereld van Textiel Met Onze Macroscopische Wereld.” <i>UNITEX</i>, no. 1, Prof. Dr. em. M. Van Parys, 2019, pp. 51–51.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daelemans L, De Clerck K. Nieuws uit de vakgroep : nieuwe analysetechnieken aan Ugent verbinden de microwereld van textiel met onze macroscopische wereld. UNITEX. 2019;(1):51–51.</div>
       </div>
classification: A4
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  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
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date_created: 2019-03-28 10:45:09
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  title: UNITEX
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  abstract: <p>The unique combination of light and flexible, but strong structures,
    makes textile materials well suited for technical engineering applications. Especially,
    fibre reinforced composites are seeing a tremendous growth for designing light-weight
    structural components. The fibres, the building blocks of any textile, and their
    arrangement in the composite (microstructure) determine the obtainable mechanical
    properties. It is thus of utmost importance that the formation of this microstructure
    is fundamentally understood. This enables the optimization of current materials,
    but also the development of advanced, nano-enabled composites by the novel technique
    of interleaving nanofibrous textiles. It is more complex than one would think
    at first sight due to the complicated nature of textiles. For example, composites
    are made by stacking layers of fabrics, whose interaction with each other and
    the tooling can result in unwanted defects or misalignments. This is related to
    the mechanics of the textile material. By following a multi-scale analysis, combining
    both experimental and numerical techniques, starting with individual fibres and
    building up till complete nano-interleaved preforms, we will get a fundamental
    understanding of the micro-macro relationships that govern the mechanics of textile
    materials. These insights are of crucial importance for further development of
    high-end nano-enabled composites, and extendable to many other technical textile
    applications as well.</p>
  end_date: 2019-09-30
  gismo_id: b2c0136d-5a95-11e9-b3e1-37a68b033e1d
  iweto_id: 01P03418
  start_date: 2019-01-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
publication_status: published
publication_status_sort: 2
publisher:
  location: Deinze
  name: Prof. Dr. em. M. Van Parys
status: public
title: 'Nieuws uit de vakgroep : nieuwe analysetechnieken aan Ugent verbinden de microwereld
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type: journalArticle
year: '2019'
...
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  first_name: Lode
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  name: Lode Daelemans
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      <div class="csl-entry">Verschatse, O., Daelemans, L., Van Paepegem, W., &#38; De Clerck, K. (2019). <i>Understanding the small scale to predict the large scale</i>. Presented at the FEA Research Symposium 2019, Ghent, Belgium.</div>
  bof: |2
      <div class="csl-entry">Verschatse, Olivier, Lode Daelemans, Wim Van Paepegem, and Karen De Clerck. 2019. “Understanding the Small Scale to Predict the Large Scale.” In .</div>
  chicago-author-date: |2
      <div class="csl-entry">Verschatse, Olivier, Lode Daelemans, Wim Van Paepegem, and Karen De Clerck. 2019. “Understanding the Small Scale to Predict the Large Scale.” In .</div>
  fwo: |2
      <div class="csl-entry">Verschatse, Olivier, Lode Daelemans, Wim Van Paepegem, and Karen De Clerck. 2019. “Understanding the Small Scale to Predict the Large Scale.” In .</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">O. Verschatse, L. Daelemans, W. Van Paepegem, and K. De Clerck, “Understanding the small scale to predict the large scale,” presented at the FEA Research Symposium 2019, Ghent, Belgium, 2019.</div>
      </div>
  mla: |2
      <div class="csl-entry">Verschatse, Olivier, et al. <i>Understanding the Small Scale to Predict the Large Scale</i>. 2019.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Verschatse O, Daelemans L, Van Paepegem W, De Clerck K. Understanding the small scale to predict the large scale. In 2019.</div>
       </div>
classification: C3
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  location: Ghent, Belgium
  name: FEA Research Symposium 2019
  organizer: Faculty of Engineering and Architecture - Ghent University
  start_date: 2019-02-19
conference_type: poster
copyright_statement: No license (in copyright)
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date_created: 2019-04-23 09:57:03
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page:
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  abstract: <p>The unique combination of light and flexible, but strong structures,
    makes textile materials well suited for technical engineering applications. Especially,
    fibre reinforced composites are seeing a tremendous growth for designing light-weight
    structural components. The fibres, the building blocks of any textile, and their
    arrangement in the composite (microstructure) determine the obtainable mechanical
    properties. It is thus of utmost importance that the formation of this microstructure
    is fundamentally understood. This enables the optimization of current materials,
    but also the development of advanced, nano-enabled composites by the novel technique
    of interleaving nanofibrous textiles. It is more complex than one would think
    at first sight due to the complicated nature of textiles. For example, composites
    are made by stacking layers of fabrics, whose interaction with each other and
    the tooling can result in unwanted defects or misalignments. This is related to
    the mechanics of the textile material. By following a multi-scale analysis, combining
    both experimental and numerical techniques, starting with individual fibres and
    building up till complete nano-interleaved preforms, we will get a fundamental
    understanding of the micro-macro relationships that govern the mechanics of textile
    materials. These insights are of crucial importance for further development of
    high-end nano-enabled composites, and extendable to many other technical textile
    applications as well.</p>
  end_date: 2019-09-30
  gismo_id: b2c0136d-5a95-11e9-b3e1-37a68b033e1d
  iweto_id: 01P03418
  start_date: 2019-01-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
publication_status: published
publication_status_sort: 2
status: public
subject:
- Biology and Life Sciences
title: Understanding the small scale to predict the large scale
type: conference
year: '2019'
...
---
_id: '8598945'
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  first_name: Wim
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cite:
  apa: |2
      <div class="csl-entry">Daelemans, L., Van Paepegem, W., D’hooge, D., &#38; De Clerck, K. (2019). Excellent nanofiber adhesion for hybrid polymer materials with high toughness based on matrix interdiffusion during chemical conversion. <i>ADVANCED FUNCTIONAL MATERIALS</i>, <i>29</i>(8). https://doi.org/10.1002/adfm.201807434</div>
  bof: |2-
      <div class="csl-entry">Daelemans, Lode, Wim Van Paepegem, Dagmar D’hooge, and Karen De Clerck. 2019. “Excellent Nanofiber Adhesion for Hybrid Polymer Materials with High Toughness Based on Matrix Interdiffusion during Chemical Conversion.” <i>ADVANCED FUNCTIONAL MATERIALS</i> 29 (8). doi:10.1002/adfm.201807434.</div>
    <div><i>Impact factor: 16.836, category: MATERIALS SCIENCE, MULTIDISCIPLINARY, rank: 13/314, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Daelemans, Lode, Wim Van Paepegem, Dagmar D’hooge, and Karen De Clerck. 2019. “Excellent Nanofiber Adhesion for Hybrid Polymer Materials with High Toughness Based on Matrix Interdiffusion during Chemical Conversion.” <i>ADVANCED FUNCTIONAL MATERIALS</i> 29 (8). https://doi.org/10.1002/adfm.201807434.</div>
  fwo: |2
      <div class="csl-entry">Daelemans, Lode, Wim Van Paepegem, Dagmar D’hooge, and Karen De Clerck. 2019. “Excellent Nanofiber Adhesion for Hybrid Polymer Materials with High Toughness Based on Matrix Interdiffusion during Chemical Conversion.” <i>ADVANCED FUNCTIONAL MATERIALS</i> 29 (8). doi:10.1002/adfm.201807434.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Daelemans, W. Van Paepegem, D. D’hooge, and K. De Clerck, “Excellent nanofiber adhesion for hybrid polymer materials with high toughness based on matrix interdiffusion during chemical conversion,” <i>ADVANCED FUNCTIONAL MATERIALS</i>, vol. 29, no. 8, 2019.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daelemans, Lode, et al. “Excellent Nanofiber Adhesion for Hybrid Polymer Materials with High Toughness Based on Matrix Interdiffusion during Chemical Conversion.” <i>ADVANCED FUNCTIONAL MATERIALS</i>, vol. 29, no. 8, Wiley, 2019, doi:10.1002/adfm.201807434.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daelemans L, Van Paepegem W, D’hooge D, De Clerck K. Excellent nanofiber adhesion for hybrid polymer materials with high toughness based on matrix interdiffusion during chemical conversion. ADVANCED FUNCTIONAL MATERIALS. 2019;29(8).</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
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  first_name: Lode
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date_created: 2019-02-04 13:04:30
date_updated: 2026-03-31 14:57:12
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keyword:
- Electrochemistry
- Electronic
- Optical and Magnetic Materials
- Condensed Matter Physics
- Biomaterials
language:
- eng
parent:
  short_title: Adv. Funct. Mater.
  title: ADVANCED FUNCTIONAL MATERIALS
project:
- _id: 01J02013
  abstract: '<p>The project focuses on the use and functionalization of nanofibres
    to improve the toughness of epoxy matrix composites. The project consist of 5
    packages:<br /><br /><br /><br />WP1: nanofibre properties with respect to composite
    applications<br /><br />WP2: functionalization of nanofbibrous structures<br /><br
    />WP3: effect of nanofibres on the curing behavior of epoxy resins<br /><br />WP4:
    Tougning of nf-epoxy systems<br /><br />WP5: mechanical properties of GF/nf composites</p>'
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  iweto_id: 01J02013
  start_date: 2013-03-01
  title: Epoxy resin composites reinforced with functionalized electrospun nanofibres
- _id: 01P03418
  abstract: <p>The unique combination of light and flexible, but strong structures,
    makes textile materials well suited for technical engineering applications. Especially,
    fibre reinforced composites are seeing a tremendous growth for designing light-weight
    structural components. The fibres, the building blocks of any textile, and their
    arrangement in the composite (microstructure) determine the obtainable mechanical
    properties. It is thus of utmost importance that the formation of this microstructure
    is fundamentally understood. This enables the optimization of current materials,
    but also the development of advanced, nano-enabled composites by the novel technique
    of interleaving nanofibrous textiles. It is more complex than one would think
    at first sight due to the complicated nature of textiles. For example, composites
    are made by stacking layers of fabrics, whose interaction with each other and
    the tooling can result in unwanted defects or misalignments. This is related to
    the mechanics of the textile material. By following a multi-scale analysis, combining
    both experimental and numerical techniques, starting with individual fibres and
    building up till complete nano-interleaved preforms, we will get a fundamental
    understanding of the micro-macro relationships that govern the mechanics of textile
    materials. These insights are of crucial importance for further development of
    high-end nano-enabled composites, and extendable to many other technical textile
    applications as well.</p>
  end_date: 2019-09-30
  gismo_id: b2c0136d-5a95-11e9-b3e1-37a68b033e1d
  iweto_id: 01P03418
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  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
publication_status: published
publication_status_sort: 2
publisher:
  name: Wiley
status: public
subject:
- Technology and Engineering
- Chemistry
title: Excellent nanofiber adhesion for hybrid polymer materials with high toughness
  based on matrix interdiffusion during chemical conversion
type: journalArticle
volume: '29'
wos_id: '000459826500018'
wos_type: Article
year: '2019'
...
---
_id: '8619799'
abstract:
- Fiber reinforced polymer composites are the go-to materialfor designing applications
  thatrequire a high strength and  stiffness  at  minimal  weight  such  as  aerospace  structures,  wind  turbines  or  ultralight  vehicles.  However,
  delamination  between  the  reinforcing  plies  remains  a  major occurring  failure  type.Interleaving  electrospun
  nanofibres  between  the  reinforcing  plies  has  proven  to  be  a  viable  interlaminar  toughening  method  which
  significantly  limitsthe  occurrence  of  delamination  failure  in  composites.  This
  contributionsgives  an  overview into the relationship between the electrospun nanofibre
  properties and the resulting toughenedcomposites.
abstract_full:
- lang: eng
  text: Fiber reinforced polymer composites are the go-to materialfor designing applications
    thatrequire a high strength and  stiffness  at  minimal  weight  such  as  aerospace  structures,  wind  turbines  or  ultralight  vehicles.  However,
    delamination  between  the  reinforcing  plies  remains  a  major occurring  failure  type.Interleaving  electrospun
    nanofibres  between  the  reinforcing  plies  has  proven  to  be  a  viable  interlaminar  toughening  method  which
    significantly  limitsthe  occurrence  of  delamination  failure  in  composites.  This
    contributionsgives  an  overview into the relationship between the electrospun
    nanofibre properties and the resulting toughenedcomposites.
affiliation:
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    ugent_id: TW11
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  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
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  ugent_id:
  - '802001635191'
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  biblio_id: 2D12E8D8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Timo
  last_name: Meireman
  name: Timo Meireman
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  - '972580996713'
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
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  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
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cite:
  apa: |2
      <div class="csl-entry">Daelemans, L., Meireman, T., Van Paepegem, W., D’hooge, D., &#38; De Clerck, K. (2019). Nanofibers for damage resistant composite materials. <i>PROCEEDINGS OF THE 19TH WORLD TEXTILE CONFERENCE</i>. Presented at the AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads, Ghent, Belgium.</div>
  chicago-author-date: |2
      <div class="csl-entry">Daelemans, Lode, Timo Meireman, Wim Van Paepegem, Dagmar D’hooge, and Karen De Clerck. 2019. “Nanofibers for Damage Resistant Composite Materials.” In <i>PROCEEDINGS OF THE 19TH WORLD TEXTILE CONFERENCE</i>. Open Journal System of Ghent University.</div>
  fwo: |2
      <div class="csl-entry">Daelemans, Lode, Timo Meireman, Wim Van Paepegem, Dagmar D’hooge, and Karen De Clerck. 2019. “Nanofibers for Damage Resistant Composite Materials.” In <i>PROCEEDINGS OF THE 19TH WORLD TEXTILE CONFERENCE</i>. Open Journal System of Ghent University.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Daelemans, T. Meireman, W. Van Paepegem, D. D’hooge, and K. De Clerck, “Nanofibers for damage resistant composite materials,” in <i>PROCEEDINGS OF THE 19TH WORLD TEXTILE CONFERENCE</i>, Ghent, Belgium, 2019.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daelemans, Lode, et al. “Nanofibers for Damage Resistant Composite Materials.” <i>PROCEEDINGS OF THE 19TH WORLD TEXTILE CONFERENCE</i>, Open Journal System of Ghent University, 2019.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daelemans L, Meireman T, Van Paepegem W, D’hooge D, De Clerck K. Nanofibers for damage resistant composite materials. In: PROCEEDINGS OF THE 19TH WORLD TEXTILE CONFERENCE. Open Journal System of Ghent University; 2019.</div>
       </div>
classification: C1
conference:
  end_date: 2019-06-15
  location: Ghent, Belgium
  name: AUTEX 2019, 19th World Textile Conference on Textiles at the Crossroads
  start_date: 2019-06-11
conference_type: proceedingsPaper
copyright_statement: No license (in copyright)
created_by:
  _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
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  - '802001635191'
  - '971650880382'
date_created: 2019-06-19 06:43:26
date_updated: 2026-03-31 14:57:12
external: 0
file:
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  kind: fullText
  name: AUTEX_0660_full_paper.pdf
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  url: https://biblio.ugent.be/publication/8619799/file/8619800.pdf
handle: http://hdl.handle.net/1854/LU-8619799
isbn:
- '9789079892068'
keyword:
- COMPOSITES
- FRACTURETOUGHNESS
- ELECTROSPINNING
- NANOFIBERS
- CRACK GROWTH
language:
- eng
page:
  count: '5'
parent:
  title: PROCEEDINGS OF THE 19TH WORLD TEXTILE CONFERENCE
project:
- _id: 01P03418
  abstract: <p>The unique combination of light and flexible, but strong structures,
    makes textile materials well suited for technical engineering applications. Especially,
    fibre reinforced composites are seeing a tremendous growth for designing light-weight
    structural components. The fibres, the building blocks of any textile, and their
    arrangement in the composite (microstructure) determine the obtainable mechanical
    properties. It is thus of utmost importance that the formation of this microstructure
    is fundamentally understood. This enables the optimization of current materials,
    but also the development of advanced, nano-enabled composites by the novel technique
    of interleaving nanofibrous textiles. It is more complex than one would think
    at first sight due to the complicated nature of textiles. For example, composites
    are made by stacking layers of fabrics, whose interaction with each other and
    the tooling can result in unwanted defects or misalignments. This is related to
    the mechanics of the textile material. By following a multi-scale analysis, combining
    both experimental and numerical techniques, starting with individual fibres and
    building up till complete nano-interleaved preforms, we will get a fundamental
    understanding of the micro-macro relationships that govern the mechanics of textile
    materials. These insights are of crucial importance for further development of
    high-end nano-enabled composites, and extendable to many other technical textile
    applications as well.</p>
  end_date: 2019-09-30
  gismo_id: b2c0136d-5a95-11e9-b3e1-37a68b033e1d
  iweto_id: 01P03418
  start_date: 2019-01-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
publication_status: published
publication_status_sort: 2
publisher:
  name: Open Journal System of Ghent University
status: public
subject:
- Technology and Engineering
title: Nanofibers for damage resistant composite materials
type: conference
year: '2019'
...
---
_id: '8627516'
additional_info: author Lode Daelemans is mentioned in abstract, but not on poster
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE06
  ugent_id: WE06
author:
- _id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  first_name: Eva
  last_name: Loccufier
  name: Eva Loccufier
  name_last_first: Loccufier, Eva
  orcid_id: 0000-0001-7045-2721
  ugent_id:
  - '802002671374'
  - '974161061035'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8627516'
cite:
  apa: |2
      <div class="csl-entry">Loccufier, E., Daelemans, L., D’hooge, D., De Buysser, K., &#38; De Clerck, K. (2019). Electrospinning of silica nanofibrous membranes for the separation of heterogeneous azeotropes. <i>Book of Abstracts : XX International Sol-Gel Conference : Next Generation</i>, 48–49. St Petersburg, Russia: ITMO University ; ISGS (International Sol-Gel Society).</div>
  bof: |2
      <div class="csl-entry">Loccufier, Eva, Lode Daelemans, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2019. “Electrospinning of Silica Nanofibrous Membranes for the Separation of Heterogeneous Azeotropes.” In <i>Book of Abstracts : XX International Sol-Gel Conference : Next Generation</i>, 48–49. St Petersburg, Russia: ITMO University ; ISGS (International Sol-Gel Society).</div>
  chicago-author-date: |2
      <div class="csl-entry">Loccufier, Eva, Lode Daelemans, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2019. “Electrospinning of Silica Nanofibrous Membranes for the Separation of Heterogeneous Azeotropes.” In <i>Book of Abstracts : XX International Sol-Gel Conference : Next Generation</i>, 48–49. St Petersburg, Russia: ITMO University ; ISGS (International Sol-Gel Society).</div>
  fwo: |2
      <div class="csl-entry">Loccufier, Eva, Lode Daelemans, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2019. “Electrospinning of Silica Nanofibrous Membranes for the Separation of Heterogeneous Azeotropes.” In <i>Book of Abstracts : XX International Sol-Gel Conference : Next Generation</i>, 48–49. St Petersburg, Russia: ITMO University ; ISGS (International Sol-Gel Society).</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Loccufier, L. Daelemans, D. D’hooge, K. De Buysser, and K. De Clerck, “Electrospinning of silica nanofibrous membranes for the separation of heterogeneous azeotropes,” in <i>Book of abstracts : XX international sol-gel conference : next generation</i>, Sint-Petersburg, Russia, 2019, pp. 48–49.</div>
      </div>
  mla: |2
      <div class="csl-entry">Loccufier, Eva, et al. “Electrospinning of Silica Nanofibrous Membranes for the Separation of Heterogeneous Azeotropes.” <i>Book of Abstracts : XX International Sol-Gel Conference : Next Generation</i>, ITMO University ; ISGS (International Sol-Gel Society), 2019, pp. 48–49.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Loccufier E, Daelemans L, D’hooge D, De Buysser K, De Clerck K. Electrospinning of silica nanofibrous membranes for the separation of heterogeneous azeotropes. In: Book of abstracts : XX international sol-gel conference : next generation. St Petersburg, Russia: ITMO University ; ISGS (International Sol-Gel Society); 2019. p. 48–9.</div>
       </div>
classification: C3
conference:
  end_date: 2019-08-30
  location: Sint-Petersburg, Russia
  name: '20th International Sol-Gel conference (Sol-Gel 2019): The next generation'
  start_date: 2019-08-25
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
  _id: 798BCFF0-0208-11E3-BADE-15C210BDE39D
  affiliation:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 798BCFF0-0208-11E3-BADE-15C210BDE39D
  first_name: Paulien
  last_name: Baeyens
  name: Paulien Baeyens
  name_last_first: Baeyens, Paulien
  ugent_id:
  - '802002698757'
  - '974253404530'
date_created: 2019-09-09 14:08:46
date_updated: 2026-03-31 14:57:12
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-8627516
jcr: {}
language:
- eng
page:
  first: '48'
  last: '49'
parent:
  title: 'Book of abstracts : XX international sol-gel conference : next generation'
project:
- _id: 3S009618
  abstract: <p>Nanofibres are fibres with a diameter that is 1000 times smaller than
    a human hair. This makes nanofibrous membranes very light and porous, ideally
    suited for advanced engineering applications in various sectors. By adding a specific
    functionality (for example hydrophobic groups, amines, thiol functions), the application
    field can even be extended. However, the material choice and design are crucial
    for optimal performance. Therefore, several bridged organosilanes, hybrid structures
    with organic and inorganic moieties, will be studied as an alternative starting
    product to make such nanofibrous membranes within this project. They allow for
    highly flexible materials with superior chemical and thermal stability for which,
    moreover, the hydrophobicity can be tuned. These functionalised nanofibers will
    be processed from water and ethanol, which is ecologically more friendly than
    most current nanofiber and membrane production techniques. Applications in the
    field of water purification and chemical conversion are targeted. These <br />applications
    require long-term stable materials and make use of the large specific surface
    area, high porosity and/or large pores of the nanofibrous membranes to target
    more efficient processes.</p>
  end_date: 2022-09-09
  gismo_id: d937d58c-be65-11e9-ace9-8bf558aeac68
  iweto_id: 3S009618
  start_date: 2018-01-01
  title: |-
    Long-term stable organosilica nanofibrous membranes
    functionalised for advanced engineering applications
- _id: 01P03418
  abstract: <p>The unique combination of light and flexible, but strong structures,
    makes textile materials well suited for technical engineering applications. Especially,
    fibre reinforced composites are seeing a tremendous growth for designing light-weight
    structural components. The fibres, the building blocks of any textile, and their
    arrangement in the composite (microstructure) determine the obtainable mechanical
    properties. It is thus of utmost importance that the formation of this microstructure
    is fundamentally understood. This enables the optimization of current materials,
    but also the development of advanced, nano-enabled composites by the novel technique
    of interleaving nanofibrous textiles. It is more complex than one would think
    at first sight due to the complicated nature of textiles. For example, composites
    are made by stacking layers of fabrics, whose interaction with each other and
    the tooling can result in unwanted defects or misalignments. This is related to
    the mechanics of the textile material. By following a multi-scale analysis, combining
    both experimental and numerical techniques, starting with individual fibres and
    building up till complete nano-interleaved preforms, we will get a fundamental
    understanding of the micro-macro relationships that govern the mechanics of textile
    materials. These insights are of crucial importance for further development of
    high-end nano-enabled composites, and extendable to many other technical textile
    applications as well.</p>
  end_date: 2019-09-30
  gismo_id: b2c0136d-5a95-11e9-b3e1-37a68b033e1d
  iweto_id: 01P03418
  start_date: 2019-01-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
publication_status: published
publication_status_sort: 2
publisher:
  location: St Petersburg, Russia
  name: ITMO University ; ISGS (International Sol-Gel Society)
status: public
subject:
- Chemistry
- Technology and Engineering
title: Electrospinning of silica nanofibrous membranes for the separation of heterogeneous
  azeotropes
type: conference
year: '2019'
...
---
_id: '8612400'
abstract:
- Electrospun nanofibre interleaving has a great potential for toughening of composite
  laminates as an effective, safe and industrially relevant method. Although many
  studies showcase large increases in delamination resistance, these are typically
  obtained under either Mode I or Mode II loading and for a wide variety of nanofibres.
  Here, we present a more general approach towards simultaneous excellent Mode I and
  Mode II delamination resistance using a single nanofibre system without the need
  for additional chemical modification steps or speciality polymers. It is illustrated
  based on the concept of interdiffusion of polycaprolactone nanofibres during the
  curing process into the epoxy matrix resin for improved adhesion. The results show
  that for a simultaneous increase in Mode I and Mode II delamination resistance,
  the adhesion and the fibre morphology of the nanofibres are crucial. The methodology
  is then expanded to allow for industrial relevant working windows by core-shell
  structured polyamide/polycaprolactone nanofibres. This approach results in a  of
  650 ± 50 J m-2 (+ca. 60% vs. virgin material) and a  of 3160 ± 35 J m-2 (+ca. 60%
  vs. virgin material).
abstract_full:
- lang: eng
  text: Electrospun nanofibre interleaving has a great potential for toughening of
    composite laminates as an effective, safe and industrially relevant method. Although
    many studies showcase large increases in delamination resistance, these are typically
    obtained under either Mode I or Mode II loading and for a wide variety of nanofibres.
    Here, we present a more general approach towards simultaneous excellent Mode I
    and Mode II delamination resistance using a single nanofibre system without the
    need for additional chemical modification steps or speciality polymers. It is
    illustrated based on the concept of interdiffusion of polycaprolactone nanofibres
    during the curing process into the epoxy matrix resin for improved adhesion. The
    results show that for a simultaneous increase in Mode I and Mode II delamination
    resistance, the adhesion and the fibre morphology of the nanofibres are crucial.
    The methodology is then expanded to allow for industrial relevant working windows
    by core-shell structured polyamide/polycaprolactone nanofibres. This approach
    results in a  of 650 ± 50 J m-2 (+ca. 60% vs. virgin material) and a  of 3160
    ± 35 J m-2 (+ca. 60% vs. virgin material).
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_type: original
author:
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: F79D51B8-C937-11E5-A139-C70DB5D1D7B1
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: F79D51B8-C937-11E5-A139-C70DB5D1D7B1
  first_name: Nuray
  last_name: Kizildag
  name: Nuray Kizildag
  name_last_first: Kizildag, Nuray
  ugent_id:
  - '000161189849'
  - '802002292266'
  - '973174641965'
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8612400'
cite:
  apa: |2
      <div class="csl-entry">Daelemans, L., Kizildag, N., Van Paepegem, W., D’hooge, D., &#38; De Clerck, K. (2019). Interdiffusing core-shell nanofiber interleaved composites for excellent Mode I and Mode II delamination resistance. <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, <i>175</i>, 143–150. https://doi.org/10.1016/j.compscitech.2019.03.019</div>
  chicago-author-date: |2
      <div class="csl-entry">Daelemans, Lode, Nuray Kizildag, Wim Van Paepegem, Dagmar D’hooge, and Karen De Clerck. 2019. “Interdiffusing Core-Shell Nanofiber Interleaved Composites for Excellent Mode I and Mode II Delamination Resistance.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i> 175: 143–50. https://doi.org/10.1016/j.compscitech.2019.03.019.</div>
  fwo: |2
      <div class="csl-entry">Daelemans, Lode, Nuray Kizildag, Wim Van Paepegem, Dagmar D’hooge, and Karen De Clerck. 2019. “Interdiffusing Core-Shell Nanofiber Interleaved Composites for Excellent Mode I and Mode II Delamination Resistance.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i> 175: 143–150. doi:10.1016/j.compscitech.2019.03.019.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Daelemans, N. Kizildag, W. Van Paepegem, D. D’hooge, and K. De Clerck, “Interdiffusing core-shell nanofiber interleaved composites for excellent Mode I and Mode II delamination resistance,” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, vol. 175, pp. 143–150, 2019.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daelemans, Lode, et al. “Interdiffusing Core-Shell Nanofiber Interleaved Composites for Excellent Mode I and Mode II Delamination Resistance.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, vol. 175, 2019, pp. 143–50, doi:10.1016/j.compscitech.2019.03.019.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daelemans L, Kizildag N, Van Paepegem W, D’hooge D, De Clerck K. Interdiffusing core-shell nanofiber interleaved composites for excellent Mode I and Mode II delamination resistance. COMPOSITES SCIENCE AND TECHNOLOGY. 2019;175:143–50.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
date_created: 2019-04-17 05:01:11
date_updated: 2026-03-31 14:57:12
doi:
- 10.1016/j.compscitech.2019.03.019
external: 0
file:
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  size: '2085363'
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  content_type: application/pdf
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handle: http://hdl.handle.net/1854/LU-8612400
issn:
- 0266-3538
- 1879-1050
jcr:
  category: MATERIALS SCIENCE, COMPOSITES
  category_decile: 1
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keyword:
- General Engineering
- Ceramics and Composites
language:
- eng
page:
  first: '143'
  last: '150'
parent:
  short_title: Compos. Sci. Technol.
  title: COMPOSITES SCIENCE AND TECHNOLOGY
project:
- _id: 01J02013
  abstract: '<p>The project focuses on the use and functionalization of nanofibres
    to improve the toughness of epoxy matrix composites. The project consist of 5
    packages:<br /><br /><br /><br />WP1: nanofibre properties with respect to composite
    applications<br /><br />WP2: functionalization of nanofbibrous structures<br /><br
    />WP3: effect of nanofibres on the curing behavior of epoxy resins<br /><br />WP4:
    Tougning of nf-epoxy systems<br /><br />WP5: mechanical properties of GF/nf composites</p>'
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  iweto_id: 01J02013
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  title: Epoxy resin composites reinforced with functionalized electrospun nanofibres
- _id: 01B03518
  abstract: <p>The requested table top SEM with integrated micromechanical testing,
    combines a large sample chamber to accommodate a sensitive micromechanical set-up
    with a high magnification and easy sampling. This is highly novel and only recently
    available at moderate costs. The in-situ visualization of material performance
    under load at high magnification will boost the academic research of the applicants
    and their collaborators.</p>
  end_date: 2020-05-31
  gismo_id: 320e7057-5b7c-11e9-ac93-1bffacd2a7e2
  iweto_id: 01B03518
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  start_date: 2018-06-01
  title: Table top SEM with integrated in-situ micromechanical testing for fiber,
    polymer and composite materials
- _id: 01P03418
  abstract: <p>The unique combination of light and flexible, but strong structures,
    makes textile materials well suited for technical engineering applications. Especially,
    fibre reinforced composites are seeing a tremendous growth for designing light-weight
    structural components. The fibres, the building blocks of any textile, and their
    arrangement in the composite (microstructure) determine the obtainable mechanical
    properties. It is thus of utmost importance that the formation of this microstructure
    is fundamentally understood. This enables the optimization of current materials,
    but also the development of advanced, nano-enabled composites by the novel technique
    of interleaving nanofibrous textiles. It is more complex than one would think
    at first sight due to the complicated nature of textiles. For example, composites
    are made by stacking layers of fabrics, whose interaction with each other and
    the tooling can result in unwanted defects or misalignments. This is related to
    the mechanics of the textile material. By following a multi-scale analysis, combining
    both experimental and numerical techniques, starting with individual fibres and
    building up till complete nano-interleaved preforms, we will get a fundamental
    understanding of the micro-macro relationships that govern the mechanics of textile
    materials. These insights are of crucial importance for further development of
    high-end nano-enabled composites, and extendable to many other technical textile
    applications as well.</p>
  end_date: 2019-09-30
  gismo_id: b2c0136d-5a95-11e9-b3e1-37a68b033e1d
  iweto_id: 01P03418
  start_date: 2019-01-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Interdiffusing core-shell nanofiber interleaved composites for excellent Mode
  I and Mode II delamination resistance
type: journalArticle
volume: '175'
wos_id: '000466455100018'
wos_type: Article
year: '2019'
...
---
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  first_name: Ruben
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  first_name: Ives
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  name: Ives De Baere
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  first_name: Lode
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  first_name: Karen
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  name: Karen De Clerck
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cite:
  apa: |2
      <div class="csl-entry">Geerinck, R., De Baere, I., De Clercq, G., Daelemans, L., Ivens, J., &#38; De Clerck, K. (2019). One-shot production of large-scale 3D woven fabrics with integrated prismatic shaped cavities and their applications. <i>MATERIALS &#38; DESIGN</i>, <i>165</i>. https://doi.org/10.1016/j.matdes.2018.107578</div>
  bof: |2-
      <div class="csl-entry">Geerinck, Ruben, Ives De Baere, Geert De Clercq, Lode Daelemans, Jan Ivens, and Karen De Clerck. 2019. “One-Shot Production of Large-Scale 3D Woven Fabrics with Integrated Prismatic Shaped Cavities and Their Applications.” <i>MATERIALS &#38; DESIGN</i> 165. doi:10.1016/j.matdes.2018.107578.</div>
    <div><i>Impact factor: 6.289, category: MATERIALS SCIENCE, MULTIDISCIPLINARY, rank: 59/314, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Geerinck, Ruben, Ives De Baere, Geert De Clercq, Lode Daelemans, Jan Ivens, and Karen De Clerck. 2019. “One-Shot Production of Large-Scale 3D Woven Fabrics with Integrated Prismatic Shaped Cavities and Their Applications.” <i>MATERIALS &#38; DESIGN</i> 165. https://doi.org/10.1016/j.matdes.2018.107578.</div>
  fwo: |2
      <div class="csl-entry">Geerinck, Ruben, Ives De Baere, Geert De Clercq, Lode Daelemans, Jan Ivens, and Karen De Clerck. 2019. “One-Shot Production of Large-Scale 3D Woven Fabrics with Integrated Prismatic Shaped Cavities and Their Applications.” <i>MATERIALS &#38; DESIGN</i> 165. doi:10.1016/j.matdes.2018.107578.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">R. Geerinck, I. De Baere, G. De Clercq, L. Daelemans, J. Ivens, and K. De Clerck, “One-shot production of large-scale 3D woven fabrics with integrated prismatic shaped cavities and their applications,” <i>MATERIALS &#38; DESIGN</i>, vol. 165, 2019.</div>
      </div>
  mla: |2
      <div class="csl-entry">Geerinck, Ruben, et al. “One-Shot Production of Large-Scale 3D Woven Fabrics with Integrated Prismatic Shaped Cavities and Their Applications.” <i>MATERIALS &#38; DESIGN</i>, vol. 165, Elsevier, 2019, doi:10.1016/j.matdes.2018.107578.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Geerinck R, De Baere I, De Clercq G, Daelemans L, Ivens J, De Clerck K. One-shot production of large-scale 3D woven fabrics with integrated prismatic shaped cavities and their applications. MATERIALS &#38; DESIGN. 2019;165.</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution 4.0 International Public License
  (CC-BY 4.0)
created_by:
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  name_last_first: Daelemans, Lode
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date_created: 2019-02-04 13:02:52
date_updated: 2026-03-31 14:57:12
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handle: http://hdl.handle.net/1854/LU-8598943
issn:
- 0264-1275
jcr:
  category: MATERIALS SCIENCE, MULTIDISCIPLINARY
  category_decile: 2
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  total_cites: 60066
keyword:
- Mechanical Engineering
- General Materials Science
- Mechanics of Materials
language:
- eng
parent:
  short_title: Mater. Des.
  title: MATERIALS & DESIGN
project:
- _id: 178TW1215
  abstract: |-
    <p>
    The abstract for &quot;Mechanical investigation of epoxy-based composite laminates toughened with electrospun thermoplasticnanofibres&quot; is missing. Please contact the promotor for more information.

    </p>
  end_date: 2018-12-31
  gismo_id: 6aa08433-5d75-4c9e-9d23-aab37736aa7b
  iweto_id: 178TW1215
  start_date: 2015-01-01
  title: Mechanical investigation of epoxy-based composite laminates toughened with
    electrospun thermoplasticnanofibres
- _id: 01P03418
  abstract: <p>The unique combination of light and flexible, but strong structures,
    makes textile materials well suited for technical engineering applications. Especially,
    fibre reinforced composites are seeing a tremendous growth for designing light-weight
    structural components. The fibres, the building blocks of any textile, and their
    arrangement in the composite (microstructure) determine the obtainable mechanical
    properties. It is thus of utmost importance that the formation of this microstructure
    is fundamentally understood. This enables the optimization of current materials,
    but also the development of advanced, nano-enabled composites by the novel technique
    of interleaving nanofibrous textiles. It is more complex than one would think
    at first sight due to the complicated nature of textiles. For example, composites
    are made by stacking layers of fabrics, whose interaction with each other and
    the tooling can result in unwanted defects or misalignments. This is related to
    the mechanics of the textile material. By following a multi-scale analysis, combining
    both experimental and numerical techniques, starting with individual fibres and
    building up till complete nano-interleaved preforms, we will get a fundamental
    understanding of the micro-macro relationships that govern the mechanics of textile
    materials. These insights are of crucial importance for further development of
    high-end nano-enabled composites, and extendable to many other technical textile
    applications as well.</p>
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  gismo_id: b2c0136d-5a95-11e9-b3e1-37a68b033e1d
  iweto_id: 01P03418
  start_date: 2019-01-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
publication_status: published
publication_status_sort: 2
publisher:
  name: Elsevier
status: public
title: One-shot production of large-scale 3D woven fabrics with integrated prismatic
  shaped cavities and their applications
type: journalArticle
volume: '165'
wos_id: '000458259300008'
wos_type: Article
year: '2019'
...
---
_id: '8628993'
abstract:
- Based on differential scanning calorimetry (DSC), X-ray diffraction (XRD) analysis,
  polarizing microscope (POM), and scanning electron microscopy (SEM) analysis, strategies
  to close the gap on applying conventional processing optimizations for the field
  of 3D printing and to specifically increase the mechanical performance of extrusion-based
  additive manufacturing of poly(lactic acid) (PLA) filaments by annealing and/or
  blending with poly(3-hydroxybutyrate) (PHB) were reported. For filament printing
  at 210 °C, the PLA crystallinity increased significantly upon annealing. Specifically,
  for 2 h of annealing at 100 °C, the fracture surface became sufficiently coarse
  such that the PLA notched impact strength increased significantly (15 kJ m−2). The
  Vicat softening temperature (VST) increased to 160 °C, starting from an annealing
  time of 0.5 h. Similar increases in VST were obtained by blending with PHB (20 wt.%)
  at a lower printing temperature of 190 °C due to crystallization control. For the
  blend, the strain at break increased due to the presence of a second phase, with
  annealing only relevant for enhancing the modulus.</jats:p>
abstract_full:
- lang: eng
  text: Based on differential scanning calorimetry (DSC), X-ray diffraction (XRD)
    analysis, polarizing microscope (POM), and scanning electron microscopy (SEM)
    analysis, strategies to close the gap on applying conventional processing optimizations
    for the field of 3D printing and to specifically increase the mechanical performance
    of extrusion-based additive manufacturing of poly(lactic acid) (PLA) filaments
    by annealing and/or blending with poly(3-hydroxybutyrate) (PHB) were reported.
    For filament printing at 210 °C, the PLA crystallinity increased significantly
    upon annealing. Specifically, for 2 h of annealing at 100 °C, the fracture surface
    became sufficiently coarse such that the PLA notched impact strength increased
    significantly (15 kJ m−2). The Vicat softening temperature (VST) increased to
    160 °C, starting from an annealing time of 0.5 h. Similar increases in VST were
    obtained by blending with PHB (20 wt.%) at a lower printing temperature of 190
    °C due to crystallization control. For the blend, the strain at break increased
    due to the presence of a second phase, with annealing only relevant for enhancing
    the modulus.</jats:p>
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
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article_number: '1529'
article_type: original
author:
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  biblio_id: D11A4204-79FD-11E6-A1F1-3577B5D1D7B1
  first_name: Sisi
  last_name: Wang
  name: Sisi Wang
  name_last_first: Wang, Sisi
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- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
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  first_name: Lode
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  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: 598AF26A-65E7-11E8-B53A-AFC811A95AF2
  first_name: Rudinei
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  name: Rudinei Fiorio
  name_last_first: Fiorio, Rudinei
  ugent_id:
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  - '802002862445'
  - '974407662418'
- first_name: Maling
  last_name: Gou
  name: Maling Gou
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  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F8DDCF06-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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  biblio_id: F8DDCF06-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Ludwig
  last_name: Cardon
  name: Ludwig Cardon
  name_last_first: Cardon, Ludwig
  orcid_id: 0000-0002-4019-612X
  ugent_id:
  - '802000179080'
  - '972410561043'
biblio_id: '8628993'
cite:
  apa: |2
      <div class="csl-entry">Wang, S., Daelemans, L., Fiorio, R., Gou, M., D’hooge, D., De Clerck, K., &#38; Cardon, L. (2019). Improving mechanical properties for extrusion-based additive manufacturing of poly(lactic acid) by annealing and blending with poly(3-hydroxybutyrate). <i>POLYMERS</i>, <i>11</i>(9). https://doi.org/10.3390/polym11091529</div>
  chicago-author-date: |2
      <div class="csl-entry">Wang, Sisi, Lode Daelemans, Rudinei Fiorio, Maling Gou, Dagmar D’hooge, Karen De Clerck, and Ludwig Cardon. 2019. “Improving Mechanical Properties for Extrusion-Based Additive Manufacturing of Poly(Lactic Acid) by Annealing and Blending with Poly(3-Hydroxybutyrate).” <i>POLYMERS</i> 11 (9). https://doi.org/10.3390/polym11091529.</div>
  fwo: |2
      <div class="csl-entry">Wang, Sisi, Lode Daelemans, Rudinei Fiorio, Maling Gou, Dagmar D’hooge, Karen De Clerck, and Ludwig Cardon. 2019. “Improving Mechanical Properties for Extrusion-Based Additive Manufacturing of Poly(Lactic Acid) by Annealing and Blending with Poly(3-Hydroxybutyrate).” <i>POLYMERS</i> 11 (9). doi:10.3390/polym11091529.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. Wang <i>et al.</i>, “Improving mechanical properties for extrusion-based additive manufacturing of poly(lactic acid) by annealing and blending with poly(3-hydroxybutyrate),” <i>POLYMERS</i>, vol. 11, no. 9, 2019.</div>
      </div>
  mla: |2
      <div class="csl-entry">Wang, Sisi, et al. “Improving Mechanical Properties for Extrusion-Based Additive Manufacturing of Poly(Lactic Acid) by Annealing and Blending with Poly(3-Hydroxybutyrate).” <i>POLYMERS</i>, vol. 11, no. 9, 2019, doi:10.3390/polym11091529.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Wang S, Daelemans L, Fiorio R, Gou M, D’hooge D, De Clerck K, et al. Improving mechanical properties for extrusion-based additive manufacturing of poly(lactic acid) by annealing and blending with poly(3-hydroxybutyrate). POLYMERS. 2019;11(9).</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution 4.0 International Public License
  (CC-BY 4.0)
created_by:
  _id: FA9ED9DE-F0ED-11E1-A9DE-61C894A0A6B4
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    ugent_id: TW11
  biblio_id: FA9ED9DE-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Veerle
  last_name: Van Cauwenberghe
  name: Veerle Van Cauwenberghe
  name_last_first: Van Cauwenberghe, Veerle
  ugent_id:
  - '802000403089'
  - '971461632473'
date_created: 2019-09-20 12:52:31
date_updated: 2026-03-31 14:57:12
doi:
- 10.3390/polym11091529
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  thumbnail_url: https://biblio.ugent.be/publication/8628993/file/8628994/thumbnail.png
  url: https://biblio.ugent.be/publication/8628993/file/8628994.pdf
handle: http://hdl.handle.net/1854/LU-8628993
issn:
- 2073-4360
issue: '9'
jcr:
  category: POLYMER SCIENCE
  category_decile: 2
  category_quartile: 1
  category_rank: 16/89
  category_vigintile: 4
  eigenfactor: 0.01985
  immediacy_index: 0.826
  impact_factor: 3.426
  impact_factor_5yr: 3.636
  total_cites: 14006
keyword:
- extrusion-based additive manufacturing
- poly(lactic acid)
- poly(3-hydroxybutyrate)
- annealing
- notched impact strength
language:
- eng
page:
  count: '13'
parent:
  short_title: Polymers
  title: POLYMERS
project:
- _id: 01P03418
  abstract: <p>The unique combination of light and flexible, but strong structures,
    makes textile materials well suited for technical engineering applications. Especially,
    fibre reinforced composites are seeing a tremendous growth for designing light-weight
    structural components. The fibres, the building blocks of any textile, and their
    arrangement in the composite (microstructure) determine the obtainable mechanical
    properties. It is thus of utmost importance that the formation of this microstructure
    is fundamentally understood. This enables the optimization of current materials,
    but also the development of advanced, nano-enabled composites by the novel technique
    of interleaving nanofibrous textiles. It is more complex than one would think
    at first sight due to the complicated nature of textiles. For example, composites
    are made by stacking layers of fabrics, whose interaction with each other and
    the tooling can result in unwanted defects or misalignments. This is related to
    the mechanics of the textile material. By following a multi-scale analysis, combining
    both experimental and numerical techniques, starting with individual fibres and
    building up till complete nano-interleaved preforms, we will get a fundamental
    understanding of the micro-macro relationships that govern the mechanics of textile
    materials. These insights are of crucial importance for further development of
    high-end nano-enabled composites, and extendable to many other technical textile
    applications as well.</p>
  end_date: 2019-09-30
  gismo_id: b2c0136d-5a95-11e9-b3e1-37a68b033e1d
  iweto_id: 01P03418
  start_date: 2019-01-01
  title: Multiscale experimental and numerical characterisation of textile reinforcements
    for enhanced nano-interleaved composites
- _id: 3S009618
  abstract: <p>Nanofibres are fibres with a diameter that is 1000 times smaller than
    a human hair. This makes nanofibrous membranes very light and porous, ideally
    suited for advanced engineering applications in various sectors. By adding a specific
    functionality (for example hydrophobic groups, amines, thiol functions), the application
    field can even be extended. However, the material choice and design are crucial
    for optimal performance. Therefore, several bridged organosilanes, hybrid structures
    with organic and inorganic moieties, will be studied as an alternative starting
    product to make such nanofibrous membranes within this project. They allow for
    highly flexible materials with superior chemical and thermal stability for which,
    moreover, the hydrophobicity can be tuned. These functionalised nanofibers will
    be processed from water and ethanol, which is ecologically more friendly than
    most current nanofiber and membrane production techniques. Applications in the
    field of water purification and chemical conversion are targeted. These <br />applications
    require long-term stable materials and make use of the large specific surface
    area, high porosity and/or large pores of the nanofibrous membranes to target
    more efficient processes.</p>
  end_date: 2022-09-09
  gismo_id: d937d58c-be65-11e9-ace9-8bf558aeac68
  iweto_id: 3S009618
  start_date: 2018-01-01
  title: |-
    Long-term stable organosilica nanofibrous membranes
    functionalised for advanced engineering applications
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Improving mechanical properties for extrusion-based additive manufacturing
  of poly(lactic acid) by annealing and blending with poly(3-hydroxybutyrate)
type: journalArticle
volume: '11'
wos_id: '000489104300154'
wos_type: Article
year: '2019'
...
---
_id: '8671577'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
author:
- _id: 23C336CA-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 23C336CA-F0EE-11E1-A9DE-61C894A0A6B4
  credit_role:
  - first_author
  first_name: Özlem İpek
  last_name: Kalaoglu Altan
  name: Özlem İpek Kalaoglu Altan
  name_last_first: Kalaoglu Altan, Özlem İpek
  ugent_id:
  - '000091814136'
  - '802003037550'
  - '975697430594'
- first_name: Bahareh
  last_name: Azimi
  name: Bahareh Azimi
  name_last_first: Azimi, Bahareh
- first_name: Serena
  last_name: Danti
  name: Serena Danti
  name_last_first: Danti, Serena
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8671577'
cite:
  apa: |2
      <div class="csl-entry">Kalaoglu Altan, Ö. İ., Azimi, B., Danti, S., &#38; De Clerck, K. (2019). Electrospun nanofibers for skin-contact applications. <i>EUPOC 2019 – Electrospinning and Related Techniques : From Design to Production of Advanced Polymer Materials and Devices, Abstracts</i>, 68–68. Como.</div>
  bof: |2
      <div class="csl-entry">Kalaoglu Altan, Özlem İpek, Bahareh Azimi, Serena Danti, and Karen De Clerck. 2019. “Electrospun Nanofibers for Skin-Contact Applications.” In <i>EUPOC 2019 – Electrospinning and Related Techniques : From Design to Production of Advanced Polymer Materials and Devices, Abstracts</i>, 68–68. Como.</div>
  chicago-author-date: |2
      <div class="csl-entry">Kalaoglu Altan, Özlem İpek, Bahareh Azimi, Serena Danti, and Karen De Clerck. 2019. “Electrospun Nanofibers for Skin-Contact Applications.” In <i>EUPOC 2019 – Electrospinning and Related Techniques : From Design to Production of Advanced Polymer Materials and Devices, Abstracts</i>, 68–68. Como.</div>
  fwo: |2
      <div class="csl-entry">Kalaoglu Altan, Özlem İpek, Bahareh Azimi, Serena Danti, and Karen De Clerck. 2019. “Electrospun Nanofibers for Skin-Contact Applications.” In <i>EUPOC 2019 – Electrospinning and Related Techniques : From Design to Production of Advanced Polymer Materials and Devices, Abstracts</i>, 68–68. Como.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Ö. İ. Kalaoglu Altan, B. Azimi, S. Danti, and K. De Clerck, “Electrospun nanofibers for skin-contact applications,” in <i>EUPOC 2019 – Electrospinning and related techniques : from design to production of advanced polymer materials and devices, Abstracts</i>, Como, Italy, 2019, pp. 68–68.</div>
      </div>
  mla: |2
      <div class="csl-entry">Kalaoglu Altan, Özlem İpek, et al. “Electrospun Nanofibers for Skin-Contact Applications.” <i>EUPOC 2019 – Electrospinning and Related Techniques : From Design to Production of Advanced Polymer Materials and Devices, Abstracts</i>, 2019, pp. 68–68.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Kalaoglu Altan Öİ, Azimi B, Danti S, De Clerck K. Electrospun nanofibers for skin-contact applications. In: EUPOC 2019 – Electrospinning and related techniques : from design to production of advanced polymer materials and devices, Abstracts. Como; 2019. p. 68–68.</div>
       </div>
classification: C3
conference:
  end_date: 2019-05-16
  location: Como, Italy
  name: 'EUPOC 2019 – Electrospinning and related techniques : from design to production
    of advanced polymer materials and devices'
  organizer: AIM / EUPOC
  start_date: 2019-05-12
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2020-08-11 08:58:18
date_updated: 2023-05-08 11:51:41
external: 0
file:
- _id: '8671579'
  access: open
  content_type: application/pdf
  kind: fullText
  name: EPF_EUROPOLYMER_CONFERENCE_2019_Como_Polybioskin_poster.pdf
  publication_version: publishedVersion
  sha256: 68097d23fc5cd60895938f8e5809003237f166e77ba0de68bf0969f34a217e4e
  size: '958665'
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  url: https://biblio.ugent.be/publication/8671577/file/8671579.pdf
handle: http://hdl.handle.net/1854/LU-8671577
jcr: {}
language:
- eng
page:
  first: '68'
  last: '68'
parent:
  title: 'EUPOC 2019 – Electrospinning and related techniques : from design to production
    of advanced polymer materials and devices, Abstracts'
project:
- _id: 41A09117
  abstract: '<p>Personal care, Cosmetic and biomedical industries deal with high-value
    and/or large volume consumption of polymer-based products which are often derived
    from fossil sources. Although a number of alternative bio-based polymers is the
    subject of recent research, more effort is still needed to increase their specific
    functionalities and performances in order to proceed with their true translation
    into market. PolyBioSkin aims at developing skin-contact biopolymer-based product
    parts with increased performance and functionality, such as parts of diapers,
    cosmetic pads and wound dressings. Indeed, PolyBioSkin will focus on two main
    classes of bio-based polymers relevant for next generation bio-based industry:
    biopolyesters (polylactic acid and polyhydroxyalkanoates) because fully renewable,
    biocompatible and biodegradable and available at an industrial scale, and natural
    polysaccharides (cellulose/starch and chitin/chitosan), derived from biomass and
    food waste, for their peculiar properties, such as absorbency and anti-infectivity.
    <br />Films and textiles will be produced starting from these polymers and their
    combinations to prove that key products and/or product parts in sanitary, cosmetic
    and biomedical industry can be effectively translated from a fossil-derived to
    bio-based polymer production. PolyBioSkin will provide to skin-contact products
    a much more environmentally friendly end of life than the current accumulation
    in landfills or incineration, thanks to their biodegradability allowing the organic
    recycling.</p>'
  end_date: 2020-07-31
  eu_acronym: PolyBioSkin
  eu_call_id: H20.RIA.2017.0006,01
  eu_framework_programme: H2020
  eu_id: '745839'
  gismo_id: 035f6009-5e69-457b-8ff6-598f0e66069f
  iweto_id: 41A09117
  start_date: 2017-06-01
  title: PolyBioSkin
publication_status: published
publication_status_sort: 2
publisher:
  location: Como
status: public
subject:
- Technology and Engineering
title: Electrospun nanofibers for skin-contact applications
type: conference
year: '2019'
...
---
_id: '8586957'
abstract:
- In this study, benzophenone was introduced onto partially hydrolyzed poly(2-ethyl-2-oxazoline)
  (PEtOx-PEI) to prepare a poly(2-ethyl-2-oxazoline)-benzophenone (PEtOx-BP) copolymer,
  which was used to produce water stable nanofibers via aqueous electrospinning and
  photocrosslinking. Three different ultraviolet (UV) irradiation methods, i.e. pre-crosslinking
  before electrospinning, in-situ crosslinking during electrospinning and post-crosslinking
  after electrospinning, were used to prepare crosslinked nanofibers. The influence
  of UV-irradiation at these different stages of the nanofiber production process
  was investigated in terms of alterations in viscosity, nanofiber morphology and
  water stability of the fibers. It was shown that pre-crosslinking the polymer solutions
  had a great influence on the solution viscosity which could both positively or negatively
  alter the stability of the electrospinning process. Whereas the strategy of crosslinking
  nanofibers during the production process did not lead to uniform nor water-stable
  nanofibers, the pre-crosslinking and post-crosslinking strategies greatly increased
  the water stability of the nanofibers. In both techniques the crosslinking density
  and therefore water solubility can be easily tuned by manipulating the polymer concentration,
  UV-irradiation time and membrane thickness. Complete insolubility, i.e. the formation
  of crosslinked networks, was achieved by the post-cross linking strategy. This work
  provides straightforward methods to increase the water stability of the PEtOx nanofibers,
  which will definitely be of great value to biomedical applications such as drug
  delivery and tissue engineering.
abstract_full:
- lang: eng
  text: In this study, benzophenone was introduced onto partially hydrolyzed poly(2-ethyl-2-oxazoline)
    (PEtOx-PEI) to prepare a poly(2-ethyl-2-oxazoline)-benzophenone (PEtOx-BP) copolymer,
    which was used to produce water stable nanofibers via aqueous electrospinning
    and photocrosslinking. Three different ultraviolet (UV) irradiation methods, i.e.
    pre-crosslinking before electrospinning, in-situ crosslinking during electrospinning
    and post-crosslinking after electrospinning, were used to prepare crosslinked
    nanofibers. The influence of UV-irradiation at these different stages of the nanofiber
    production process was investigated in terms of alterations in viscosity, nanofiber
    morphology and water stability of the fibers. It was shown that pre-crosslinking
    the polymer solutions had a great influence on the solution viscosity which could
    both positively or negatively alter the stability of the electrospinning process.
    Whereas the strategy of crosslinking nanofibers during the production process
    did not lead to uniform nor water-stable nanofibers, the pre-crosslinking and
    post-crosslinking strategies greatly increased the water stability of the nanofibers.
    In both techniques the crosslinking density and therefore water solubility can
    be easily tuned by manipulating the polymer concentration, UV-irradiation time
    and membrane thickness. Complete insolubility, i.e. the formation of crosslinked
    networks, was achieved by the post-cross linking strategy. This work provides
    straightforward methods to increase the water stability of the PEtOx nanofibers,
    which will definitely be of great value to biomedical applications such as drug
    delivery and tissue engineering.
additional_info: the first two authors contributed equally as first author to the
  manuscript
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
article_type: original
author:
- _id: 7C93C83A-2C77-11E3-8FFE-9F6610BDE39D
  biblio_id: 7C93C83A-2C77-11E3-8FFE-9F6610BDE39D
  credit_role:
  - first_author
  first_name: Yin
  last_name: Li
  name: Yin Li
  name_last_first: Li, Yin
  ugent_id:
  - '000131149050'
  - '802001676621'
  - '975949733557'
- _id: 116B8CE8-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 116B8CE8-F0EE-11E1-A9DE-61C894A0A6B4
  credit_role:
  - first_author
  first_name: Maarten
  last_name: Vergaelen
  name: Maarten Vergaelen
  name_last_first: Vergaelen, Maarten
  ugent_id:
  - '000080251635'
  - '802001657928'
  - '978043257578'
- _id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
  ugent_id:
  - '000100318410'
  - '802002133935'
  - '975208259089'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8586957'
cite:
  apa: |2
      <div class="csl-entry">Li, Y., Vergaelen, M., Schoolaert, E., Hoogenboom, R., &#38; De Clerck, K. (2019). Effect of crosslinking stage on photocrosslinking of benzophenone functionalized poly(2-ethyl-2-oxazoline) nanofibers obtained by aqueous electrospinning. <i>EUROPEAN POLYMER JOURNAL</i>, <i>112</i>, 24–30. https://doi.org/10.1016/j.eurpolymj.2018.12.030</div>
  chicago-author-date: |2
      <div class="csl-entry">Li, Yin, Maarten Vergaelen, Ella Schoolaert, Richard Hoogenboom, and Karen De Clerck. 2019. “Effect of Crosslinking Stage on Photocrosslinking of Benzophenone Functionalized Poly(2-Ethyl-2-Oxazoline) Nanofibers Obtained by Aqueous Electrospinning.” <i>EUROPEAN POLYMER JOURNAL</i> 112: 24–30. https://doi.org/10.1016/j.eurpolymj.2018.12.030.</div>
  fwo: |2
      <div class="csl-entry">Li, Yin, Maarten Vergaelen, Ella Schoolaert, Richard Hoogenboom, and Karen De Clerck. 2019. “Effect of Crosslinking Stage on Photocrosslinking of Benzophenone Functionalized Poly(2-Ethyl-2-Oxazoline) Nanofibers Obtained by Aqueous Electrospinning.” <i>EUROPEAN POLYMER JOURNAL</i> 112: 24–30. doi:10.1016/j.eurpolymj.2018.12.030.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Y. Li, M. Vergaelen, E. Schoolaert, R. Hoogenboom, and K. De Clerck, “Effect of crosslinking stage on photocrosslinking of benzophenone functionalized poly(2-ethyl-2-oxazoline) nanofibers obtained by aqueous electrospinning,” <i>EUROPEAN POLYMER JOURNAL</i>, vol. 112, pp. 24–30, 2019.</div>
      </div>
  mla: |2
      <div class="csl-entry">Li, Yin, et al. “Effect of Crosslinking Stage on Photocrosslinking of Benzophenone Functionalized Poly(2-Ethyl-2-Oxazoline) Nanofibers Obtained by Aqueous Electrospinning.” <i>EUROPEAN POLYMER JOURNAL</i>, vol. 112, 2019, pp. 24–30, doi:10.1016/j.eurpolymj.2018.12.030.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Li Y, Vergaelen M, Schoolaert E, Hoogenboom R, De Clerck K. Effect of crosslinking stage on photocrosslinking of benzophenone functionalized poly(2-ethyl-2-oxazoline) nanofibers obtained by aqueous electrospinning. EUROPEAN POLYMER JOURNAL. 2019;112:24–30.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2019-01-02 11:11:27
date_updated: 2026-03-31 14:54:18
doi:
- 10.1016/j.eurpolymj.2018.12.030
external: 0
file:
- _id: '8586958'
  access: open
  content_type: application/pdf
  kind: fullText
  name: preprint PAOX BZP.pdf
  sha256: 7de16c45cb1734b73bfc4f0691dba285a6aeee1b4c381eb12e883c215882851b
  size: '1657408'
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- _id: '8586959'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: 1-s2.0-S0014305718322031-main.pdf
  sha256: 01fe3778de27697055aa61c3ddbc8882ab55563a97f7cff7cc034301630c52fe
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handle: http://hdl.handle.net/1854/LU-8586957
issn:
- 0014-3057
jcr:
  category: POLYMER SCIENCE
  category_decile: 2
  category_quartile: 1
  category_rank: 14/89
  category_vigintile: 4
  eigenfactor: 0.01972
  immediacy_index: 0.913
  impact_factor: 3.862
  impact_factor_5yr: 4.166
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 4
  prev_impact_factor: 3.621
  total_cites: 22306
keyword:
- Electrospinning
- Poly(2-ethyl-2-oxazoline)
- Benzophenone
- UV-irradiation
- Crosslinking
- Nanofibers
- POLY(ETHYLENE OXIDE)
- NANOPARTICLES
- CHEMISTRY
- FIBERS
language:
- eng
page:
  first: '24'
  last: '30'
parent:
  short_title: Eur. Polym. J.
  title: EUROPEAN POLYMER JOURNAL
project:
- _id: 3G060518
  abstract: <p> Due to their high relative surface area, nanofibrous materials obtained
    via electrospinning have shown to be ideal candidates for high-quality sensors
    in many sectors, including environmental monitoring, food inspection and biomedicine.
    The key challenges remain (i) the controlled incorporation of analyte-sensitive
    dye molecules in the nanofibers via chemical linkage without leaching upon application
    and (ii) the identification of environmentally friendly electrospinning conditions,
    aiming at the production of sensor materials with a long-term water stability.
    In view of these challenges and benefiting from the joint expertise of the applicants
    in material science, chemical engineering, and polymer chemistry, in this project,
    electrospinning of copoly(2-oxazoline) s (PAOx) with immobilized indicator dye
    molecules is explored. Ultimately, large-scale production of water-stable PAOx-based
    nanofibrous sensors will be realized by (i) applying model-based design to control
    the microstructure of individual PAOx chains during the synthesis step and (ii)
    tuning the electrospinning conditions upon nanofiber production with respect to
    water stability and sensor accessibility. Advanced characterization techniques
    will be used to showcase the controlled dye incorporation and to confirm the superior
    behaviour of the obtained sensors, starting from pyrenebased reference dyes opening
    up a wide range of potential indicator dyes and relevant applications. </p>
  end_date: 2021-12-31
  gismo_id: 68c7d40e-8a7e-479e-8231-436053702888
  iweto_id: 3G060518
  publication_count: 2
  start_date: 2018-01-01
  title: Combining material science and chemical engineering design for novel and
    fast optical nanostructured sensors.
publication_status: published
publication_status_sort: 2
status: public
subject:
- Chemistry
- Technology and Engineering
title: Effect of crosslinking stage on photocrosslinking of benzophenone functionalized
  poly(2-ethyl-2-oxazoline) nanofibers obtained by aqueous electrospinning
type: journalArticle
volume: '112'
wos_id: '000461001700003'
wos_type: Article
year: '2019'
...
---
_id: '8644205'
abstract:
- Poly(2-ethyl-2-oxazoline)s (PEtOx) have received substantial attention for various
  potential biomedical applications, yet they have not been explored as scaffold materials
  to any extensive degree. A major challenge to open up future applications is to
  overcome the poor water stability of these materials. We here propose a universal
  crosslinking strategy for these materials based on a partial acidic hydrolysis of
  PEtOx to poly[(2-ethyl-2-oxazoline)-co-(ethylenimine)] (PEtOx-EI) followed by exposure
  to glutaraldehyde vapour to create water-stable scaffolds. To demonstrate the utility
  of this approach two different fabrication techniques were used to make 2-and 3-dimensional
  structures, namely solution electrospinning and fused deposition modelling (FDM).
  Because the partial hydrolysis results in increased hydrophilicity, the crosslinking
  conditions for the fine PEtOx-EI nanofibers were carefully tuned to enable crosslinking
  of the nanofibers prior to a loss of the nanofibrous morphology. Conversely, for
  the thicker FDM printed PEtOx-EI structures the crosslinking conditions are more
  tolerant. Crosslinking with glutaraldehyde vapour provided water-stability to both
  2D and 3D constructs, which is an important asset for biomedical applications.
abstract_full:
- lang: eng
  text: Poly(2-ethyl-2-oxazoline)s (PEtOx) have received substantial attention for
    various potential biomedical applications, yet they have not been explored as
    scaffold materials to any extensive degree. A major challenge to open up future
    applications is to overcome the poor water stability of these materials. We here
    propose a universal crosslinking strategy for these materials based on a partial
    acidic hydrolysis of PEtOx to poly[(2-ethyl-2-oxazoline)-co-(ethylenimine)] (PEtOx-EI)
    followed by exposure to glutaraldehyde vapour to create water-stable scaffolds.
    To demonstrate the utility of this approach two different fabrication techniques
    were used to make 2-and 3-dimensional structures, namely solution electrospinning
    and fused deposition modelling (FDM). Because the partial hydrolysis results in
    increased hydrophilicity, the crosslinking conditions for the fine PEtOx-EI nanofibers
    were carefully tuned to enable crosslinking of the nanofibers prior to a loss
    of the nanofibrous morphology. Conversely, for the thicker FDM printed PEtOx-EI
    structures the crosslinking conditions are more tolerant. Crosslinking with glutaraldehyde
    vapour provided water-stability to both 2D and 3D constructs, which is an important
    asset for biomedical applications.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
article_number: '109218'
article_type: original
author:
- _id: 23C336CA-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 23C336CA-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Özlem İpek
  last_name: Kalaoglu Altan
  name: Özlem İpek Kalaoglu Altan
  name_last_first: Kalaoglu Altan, Özlem İpek
  ugent_id:
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  - '802003037550'
  - '975697430594'
- _id: 7C93C83A-2C77-11E3-8FFE-9F6610BDE39D
  biblio_id: 7C93C83A-2C77-11E3-8FFE-9F6610BDE39D
  first_name: Yin
  last_name: Li
  name: Yin Li
  name_last_first: Li, Yin
  ugent_id:
  - '000131149050'
  - '802001676621'
  - '975949733557'
- first_name: Rebecca
  last_name: McMaster
  name: Rebecca McMaster
  name_last_first: McMaster, Rebecca
- first_name: Aby
  last_name: Shaw
  name: Aby Shaw
  name_last_first: Shaw, Aby
- _id: B0F291B6-98F0-11E3-B04A-F4CE10BDE39D
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: B0F291B6-98F0-11E3-B04A-F4CE10BDE39D
  first_name: Zhanyao
  last_name: Hou
  name: Zhanyao Hou
  name_last_first: Hou, Zhanyao
  orcid_id: 0000-0002-6189-1578
  ugent_id:
  - '000131333552'
  - '802001770284'
  - '978130174228'
- _id: 116B8CE8-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 116B8CE8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Maarten
  last_name: Vergaelen
  name: Maarten Vergaelen
  name_last_first: Vergaelen, Maarten
  ugent_id:
  - '000080251635'
  - '802001657928'
  - '978043257578'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- first_name: Tim R
  last_name: Dargaville
  name: Tim R Dargaville
  name_last_first: Dargaville, Tim R
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8644205'
cite:
  apa: |2
      <div class="csl-entry">Kalaoglu Altan, Ö. İ., Li, Y., McMaster, R., Shaw, A., Hou, Z., Vergaelen, M., … De Clerck, K. (2019). Crosslinking of electrospun and bioextruded partially hydrolyzed poly(2-ethyl-2-oxazoline) using glutaraldehyde vapour. <i>EUROPEAN POLYMER JOURNAL</i>, <i>120</i>. https://doi.org/10.1016/j.eurpolymj.2019.109218</div>
  chicago-author-date: |2
      <div class="csl-entry">Kalaoglu Altan, Özlem İpek, Yin Li, Rebecca McMaster, Aby Shaw, Zhanyao Hou, Maarten Vergaelen, Richard Hoogenboom, Tim R Dargaville, and Karen De Clerck. 2019. “Crosslinking of Electrospun and Bioextruded Partially Hydrolyzed Poly(2-Ethyl-2-Oxazoline) Using Glutaraldehyde Vapour.” <i>EUROPEAN POLYMER JOURNAL</i> 120. https://doi.org/10.1016/j.eurpolymj.2019.109218.</div>
  fwo: |2
      <div class="csl-entry">Kalaoglu Altan, Özlem İpek, Yin Li, Rebecca McMaster, Aby Shaw, Zhanyao Hou, Maarten Vergaelen, Richard Hoogenboom, Tim R Dargaville, and Karen De Clerck. 2019. “Crosslinking of Electrospun and Bioextruded Partially Hydrolyzed Poly(2-Ethyl-2-Oxazoline) Using Glutaraldehyde Vapour.” <i>EUROPEAN POLYMER JOURNAL</i> 120. doi:10.1016/j.eurpolymj.2019.109218.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Ö. İ. Kalaoglu Altan <i>et al.</i>, “Crosslinking of electrospun and bioextruded partially hydrolyzed poly(2-ethyl-2-oxazoline) using glutaraldehyde vapour,” <i>EUROPEAN POLYMER JOURNAL</i>, vol. 120, 2019.</div>
      </div>
  mla: |2
      <div class="csl-entry">Kalaoglu Altan, Özlem İpek, et al. “Crosslinking of Electrospun and Bioextruded Partially Hydrolyzed Poly(2-Ethyl-2-Oxazoline) Using Glutaraldehyde Vapour.” <i>EUROPEAN POLYMER JOURNAL</i>, vol. 120, 2019, doi:10.1016/j.eurpolymj.2019.109218.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Kalaoglu Altan Öİ, Li Y, McMaster R, Shaw A, Hou Z, Vergaelen M, et al. Crosslinking of electrospun and bioextruded partially hydrolyzed poly(2-ethyl-2-oxazoline) using glutaraldehyde vapour. EUROPEAN POLYMER JOURNAL. 2019;120.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2020-01-23 13:52:45
date_updated: 2026-03-31 14:54:18
doi:
- 10.1016/j.eurpolymj.2019.109218
external: 0
file:
- _id: '8644211'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: 1-s2.0-S0014305719313588-main.pdf
  publication_version: publishedVersion
  sha256: 58e939c8be6a3673be48a7bc8b104ec8b272b7c2190bff6eb91c3d9e1342fc3e
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  url: https://biblio.ugent.be/publication/8644205/file/8644211.pdf
handle: http://hdl.handle.net/1854/LU-8644205
issn:
- 0014-3057
- 1873-1945
jcr:
  category: POLYMER SCIENCE
  category_decile: 2
  category_quartile: 1
  category_rank: 14/89
  category_vigintile: 4
  eigenfactor: 0.01972
  immediacy_index: 0.913
  impact_factor: 3.862
  impact_factor_5yr: 4.166
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 4
  prev_impact_factor: 3.621
  total_cites: 22306
keyword:
- Electrospinning
- Fused deposition modelling
- Poly(2-ethyl-2-oxazoline)
- Glutaraldehyde
- Crosslinking
- Bioextrusion
- TISSUE ENGINEERING APPLICATIONS
- 3-DIMENSIONAL SCAFFOLDS
- PORE-SIZE
- NANOFIBERS
- POLY(2-OXAZOLINE)S
- FABRICATION
- HYDROGELS
language:
- eng
page:
  count: '8'
parent:
  short_title: Eur. Polym. J.
  title: EUROPEAN POLYMER JOURNAL
project:
- _id: 3G060518
  abstract: <p> Due to their high relative surface area, nanofibrous materials obtained
    via electrospinning have shown to be ideal candidates for high-quality sensors
    in many sectors, including environmental monitoring, food inspection and biomedicine.
    The key challenges remain (i) the controlled incorporation of analyte-sensitive
    dye molecules in the nanofibers via chemical linkage without leaching upon application
    and (ii) the identification of environmentally friendly electrospinning conditions,
    aiming at the production of sensor materials with a long-term water stability.
    In view of these challenges and benefiting from the joint expertise of the applicants
    in material science, chemical engineering, and polymer chemistry, in this project,
    electrospinning of copoly(2-oxazoline) s (PAOx) with immobilized indicator dye
    molecules is explored. Ultimately, large-scale production of water-stable PAOx-based
    nanofibrous sensors will be realized by (i) applying model-based design to control
    the microstructure of individual PAOx chains during the synthesis step and (ii)
    tuning the electrospinning conditions upon nanofiber production with respect to
    water stability and sensor accessibility. Advanced characterization techniques
    will be used to showcase the controlled dye incorporation and to confirm the superior
    behaviour of the obtained sensors, starting from pyrenebased reference dyes opening
    up a wide range of potential indicator dyes and relevant applications. </p>
  end_date: 2021-12-31
  gismo_id: 68c7d40e-8a7e-479e-8231-436053702888
  iweto_id: 3G060518
  publication_count: 2
  start_date: 2018-01-01
  title: Combining material science and chemical engineering design for novel and
    fast optical nanostructured sensors.
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
- Chemistry
title: Crosslinking of electrospun and bioextruded partially hydrolyzed poly(2-ethyl-2-oxazoline)
  using glutaraldehyde vapour
type: journalArticle
volume: '120'
wos_id: '000498309000063'
wos_type: Article
year: '2019'
...
---
_id: '8620866'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
author:
- _id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
  ugent_id:
  - '000100318410'
  - '802002133935'
  - '975208259089'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8620866'
cite:
  apa: |2
      <div class="csl-entry">Schoolaert, E., Hoogenboom, R., &#38; De Clerck, K. (2019). Going from polymer to application : ecofriendly solvent electrospinning of optical nanofibrous sensors. <i>Abstracts : The 6th International Conference on Electrospinning</i>, 202–202. Shanghai, PR China: Donghua University.</div>
  chicago-author-date: |2
      <div class="csl-entry">Schoolaert, Ella, Richard Hoogenboom, and Karen De Clerck. 2019. “Going from Polymer to Application : Ecofriendly Solvent Electrospinning of Optical Nanofibrous Sensors.” In <i>Abstracts : The 6th International Conference on Electrospinning</i>, 202–202. Shanghai, PR China: Donghua University.</div>
  fwo: |2
      <div class="csl-entry">Schoolaert, Ella, Richard Hoogenboom, and Karen De Clerck. 2019. “Going from Polymer to Application : Ecofriendly Solvent Electrospinning of Optical Nanofibrous Sensors.” In <i>Abstracts : The 6th International Conference on Electrospinning</i>, 202–202. Shanghai, PR China: Donghua University.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Schoolaert, R. Hoogenboom, and K. De Clerck, “Going from polymer to application : ecofriendly solvent electrospinning of optical nanofibrous sensors,” in <i>Abstracts : the 6th international conference on electrospinning</i>, Shanghai, PR China, 2019, pp. 202–202.</div>
      </div>
  mla: |2
      <div class="csl-entry">Schoolaert, Ella, et al. “Going from Polymer to Application : Ecofriendly Solvent Electrospinning of Optical Nanofibrous Sensors.” <i>Abstracts : The 6th International Conference on Electrospinning</i>, Donghua University, 2019, pp. 202–202.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Schoolaert E, Hoogenboom R, De Clerck K. Going from polymer to application : ecofriendly solvent electrospinning of optical nanofibrous sensors. In: Abstracts : the 6th international conference on electrospinning. Shanghai, PR China: Donghua University; 2019. p. 202–202.</div>
       </div>
classification: C3
conference:
  end_date: 2019-06-21
  location: Shanghai, PR China
  name: 6th International conference on Electrospinning (Electrospin 2019)
  start_date: 2019-06-19
conference_type: poster
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2019-06-26 11:02:18
date_updated: 2026-03-31 14:54:18
external: 0
file:
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  access: restricted
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  kind: fullText
  name: Book_of_Abstracts_Electrospin2019.pdf
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  size: '18920632'
  thumbnail_url: https://biblio.ugent.be/publication/8620866/file/8620868/thumbnail.png
  url: https://biblio.ugent.be/publication/8620866/file/8620868.pdf
handle: http://hdl.handle.net/1854/LU-8620866
keyword:
- Aqueous electrospinning
- nanofibers
- optical sensors
- thermoresponsive polymers
- stimuli-sensitive dyes
language:
- eng
page:
  first: '202'
  last: '202'
parent:
  title: 'Abstracts : the 6th international conference on electrospinning'
project:
- _id: 3G060518
  abstract: <p> Due to their high relative surface area, nanofibrous materials obtained
    via electrospinning have shown to be ideal candidates for high-quality sensors
    in many sectors, including environmental monitoring, food inspection and biomedicine.
    The key challenges remain (i) the controlled incorporation of analyte-sensitive
    dye molecules in the nanofibers via chemical linkage without leaching upon application
    and (ii) the identification of environmentally friendly electrospinning conditions,
    aiming at the production of sensor materials with a long-term water stability.
    In view of these challenges and benefiting from the joint expertise of the applicants
    in material science, chemical engineering, and polymer chemistry, in this project,
    electrospinning of copoly(2-oxazoline) s (PAOx) with immobilized indicator dye
    molecules is explored. Ultimately, large-scale production of water-stable PAOx-based
    nanofibrous sensors will be realized by (i) applying model-based design to control
    the microstructure of individual PAOx chains during the synthesis step and (ii)
    tuning the electrospinning conditions upon nanofiber production with respect to
    water stability and sensor accessibility. Advanced characterization techniques
    will be used to showcase the controlled dye incorporation and to confirm the superior
    behaviour of the obtained sensors, starting from pyrenebased reference dyes opening
    up a wide range of potential indicator dyes and relevant applications. </p>
  end_date: 2021-12-31
  gismo_id: 68c7d40e-8a7e-479e-8231-436053702888
  iweto_id: 3G060518
  publication_count: 2
  start_date: 2018-01-01
  title: Combining material science and chemical engineering design for novel and
    fast optical nanostructured sensors.
publication_status: published
publication_status_sort: 2
publisher:
  location: Shanghai, PR China
  name: Donghua University
status: public
subject:
- Technology and Engineering
- Chemistry
title: 'Going from polymer to application : ecofriendly solvent electrospinning of
  optical nanofibrous sensors'
type: conference
year: '2019'
...
---
_id: '8644206'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Organic and Macromolecular Chemistry
  path:
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  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
article_number: Abstract 552
author:
- _id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
  ugent_id:
  - '000100318410'
  - '802002133935'
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- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
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  orcid_id: 0000-0002-5650-3075
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  - '801000947425'
  - '976215851340'
biblio_id: '8644206'
cite:
  apa: |2
      <div class="csl-entry">Schoolaert, E., Hoogenboom, R., &#38; De Clerck, K. (2019). From polymer to application : solvent electrospinning of poly(2-oxazoline)s. <i>ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY</i>, <i>257</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">Schoolaert, Ella, Richard Hoogenboom, and Karen De Clerck. 2019. “From Polymer to Application : Solvent Electrospinning of Poly(2-Oxazoline)s.” In <i>ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY</i>. Vol. 257.</div>
  fwo: |2
      <div class="csl-entry">Schoolaert, Ella, Richard Hoogenboom, and Karen De Clerck. 2019. “From Polymer to Application : Solvent Electrospinning of Poly(2-Oxazoline)s.” In <i>ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY</i>. Vol. 257.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Schoolaert, R. Hoogenboom, and K. De Clerck, “From polymer to application : solvent electrospinning of poly(2-oxazoline)s,” in <i>ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY</i>, Orlando, FL, 2019, vol. 257.</div>
      </div>
  mla: |2
      <div class="csl-entry">Schoolaert, Ella, et al. “From Polymer to Application : Solvent Electrospinning of Poly(2-Oxazoline)s.” <i>ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY</i>, vol. 257, 2019.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Schoolaert E, Hoogenboom R, De Clerck K. From polymer to application : solvent electrospinning of poly(2-oxazoline)s. In: ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY. 2019.</div>
       </div>
classification: C3
conference:
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  location: Orlando, FL
  name: 257th National Meeting of the American-Chemical-Society (ACS)
  start_date: 2019-03-31
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
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  first_name: Sigrid
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- eng
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parent:
  short_title: Abstr. Pap. Am. Chem. Soc.
  title: ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY
project:
- _id: 3G060518
  abstract: <p> Due to their high relative surface area, nanofibrous materials obtained
    via electrospinning have shown to be ideal candidates for high-quality sensors
    in many sectors, including environmental monitoring, food inspection and biomedicine.
    The key challenges remain (i) the controlled incorporation of analyte-sensitive
    dye molecules in the nanofibers via chemical linkage without leaching upon application
    and (ii) the identification of environmentally friendly electrospinning conditions,
    aiming at the production of sensor materials with a long-term water stability.
    In view of these challenges and benefiting from the joint expertise of the applicants
    in material science, chemical engineering, and polymer chemistry, in this project,
    electrospinning of copoly(2-oxazoline) s (PAOx) with immobilized indicator dye
    molecules is explored. Ultimately, large-scale production of water-stable PAOx-based
    nanofibrous sensors will be realized by (i) applying model-based design to control
    the microstructure of individual PAOx chains during the synthesis step and (ii)
    tuning the electrospinning conditions upon nanofiber production with respect to
    water stability and sensor accessibility. Advanced characterization techniques
    will be used to showcase the controlled dye incorporation and to confirm the superior
    behaviour of the obtained sensors, starting from pyrenebased reference dyes opening
    up a wide range of potential indicator dyes and relevant applications. </p>
  end_date: 2021-12-31
  gismo_id: 68c7d40e-8a7e-479e-8231-436053702888
  iweto_id: 3G060518
  publication_count: 2
  start_date: 2018-01-01
  title: Combining material science and chemical engineering design for novel and
    fast optical nanostructured sensors.
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
- Chemistry
title: 'From polymer to application : solvent electrospinning of poly(2-oxazoline)s'
type: conference
volume: '257'
wos_id: '000478861206146'
wos_type: Meeting Abstract
year: '2019'
...
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  first_name: Klaartje
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cite:
  apa: |2
      <div class="csl-entry">De Buysser, K., Geltmeyer, J., Loccufier, E., Hoogenboom, R., &#38; De Clerck, K. (2018). Electrospinning and functionalisation of silicon oxide nanofibres via sol-gel technology. <i>MRS Spring Meeting, Abstracts</i>. Presented at the MRS Spring meeting &#38; exhibit 2018, Phoenix, AZ, USA.</div>
  bof: |2
      <div class="csl-entry">De Buysser, Klaartje, Jozefien Geltmeyer, Eva Loccufier, Richard Hoogenboom, and Karen De Clerck. 2018. “Electrospinning and Functionalisation of Silicon Oxide Nanofibres via Sol-Gel Technology.” In <i>MRS Spring Meeting, Abstracts</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Buysser, Klaartje, Jozefien Geltmeyer, Eva Loccufier, Richard Hoogenboom, and Karen De Clerck. 2018. “Electrospinning and Functionalisation of Silicon Oxide Nanofibres via Sol-Gel Technology.” In <i>MRS Spring Meeting, Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">De Buysser, Klaartje, Jozefien Geltmeyer, Eva Loccufier, Richard Hoogenboom, and Karen De Clerck. 2018. “Electrospinning and Functionalisation of Silicon Oxide Nanofibres via Sol-Gel Technology.” In <i>MRS Spring Meeting, Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Buysser, J. Geltmeyer, E. Loccufier, R. Hoogenboom, and K. De Clerck, “Electrospinning and functionalisation of silicon oxide nanofibres via sol-gel technology,” in <i>MRS Spring meeting, Abstracts</i>, Phoenix, AZ, USA, 2018.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Buysser, Klaartje, et al. “Electrospinning and Functionalisation of Silicon Oxide Nanofibres via Sol-Gel Technology.” <i>MRS Spring Meeting, Abstracts</i>, 2018.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Buysser K, Geltmeyer J, Loccufier E, Hoogenboom R, De Clerck K. Electrospinning and functionalisation of silicon oxide nanofibres via sol-gel technology. In: MRS Spring meeting, Abstracts. 2018.</div>
       </div>
classification: C3
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  first_name: Klaartje
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  - '978828372447'
date_created: 2018-07-18 12:22:30
date_updated: 2023-05-08 11:47:29
external: 0
handle: http://hdl.handle.net/1854/LU-8569249
jcr: {}
language:
- eng
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status: public
subject:
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- Physics and Astronomy
title: Electrospinning and functionalisation of silicon oxide nanofibres via sol-gel
  technology
type: conference
year: '2018'
...
---
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  first_name: Sisi
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  first_name: Dagmar
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  affiliation:
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  biblio_id: F8DD6016-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Kim
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cite:
  apa: |2
      <div class="csl-entry">Wang, S., D’hooge, D., Ragaert, K., De Clerck, K., &#38; Cardon, L. (2018). Recent Advances in Extrusion based Additive Manufacturing Material Developments. <i>P70 - Polymer Engineering International / UK-China AMRI</i>. Presented at the Polymer Engineering International / 10th UK-China AMRI Research Workshop, Bradford, UK.</div>
  bof: |2
      <div class="csl-entry">Wang, Sisi, Dagmar D’hooge, Kim Ragaert, Karen De Clerck, and Ludwig Cardon. 2018. “Recent Advances in Extrusion Based Additive Manufacturing Material Developments.” In <i>P70 - Polymer Engineering International / UK-China AMRI</i>. Bradford, UK.</div>
  chicago-author-date: |2
      <div class="csl-entry">Wang, Sisi, Dagmar D’hooge, Kim Ragaert, Karen De Clerck, and Ludwig Cardon. 2018. “Recent Advances in Extrusion Based Additive Manufacturing Material Developments.” In <i>P70 - Polymer Engineering International / UK-China AMRI</i>. Bradford, UK.</div>
  fwo: |2
      <div class="csl-entry">Wang, Sisi, Dagmar D’hooge, Kim Ragaert, Karen De Clerck, and Ludwig Cardon. 2018. “Recent Advances in Extrusion Based Additive Manufacturing Material Developments.” In <i>P70 - Polymer Engineering International / UK-China AMRI</i>. Bradford, UK.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. Wang, D. D’hooge, K. Ragaert, K. De Clerck, and L. Cardon, “Recent Advances in Extrusion based Additive Manufacturing Material Developments,” in <i>P70 - Polymer Engineering International / UK-China AMRI</i>, Bradford, UK, 2018.</div>
      </div>
  mla: |2
      <div class="csl-entry">Wang, Sisi, et al. “Recent Advances in Extrusion Based Additive Manufacturing Material Developments.” <i>P70 - Polymer Engineering International / UK-China AMRI</i>, 2018.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Wang S, D’hooge D, Ragaert K, De Clerck K, Cardon L. Recent Advances in Extrusion based Additive Manufacturing Material Developments. In: P70 - Polymer Engineering International / UK-China AMRI. Bradford, UK; 2018.</div>
       </div>
classification: C3
conference:
  end_date: 2018-09-20
  location: Bradford, UK
  name: Polymer Engineering International / 10th UK-China AMRI Research Workshop
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title: Recent Advances in Extrusion based Additive Manufacturing Material Developments
type: conference
year: '2018'
...
---
_id: '8583440'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
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  ugent_id: TW11
article_number: P178
author:
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  first_name: Sisi
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  first_name: Karen
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  first_name: Ludwig
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  ugent_id:
  - '802000179080'
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biblio_id: '8583440'
cite:
  apa: |2
      <div class="csl-entry">Wang, S., De Clerck, K., &#38; Cardon, L. (2018). Polylactic acid/poly-3-hydroxybutyrate applications in extrusion based additive manufacturing. In A. Pontes (Ed.), <i>International Conference on Polymers and Moulds Innovations - PMI 2018</i>. Minho - Portugal: Institute of Polymers and Composites, University of Minho, Portugal.</div>
  bof: |2
      <div class="csl-entry">Wang, Sisi, Karen De Clerck, and Ludwig Cardon. 2018. “Polylactic Acid/Poly-3-Hydroxybutyrate Applications in Extrusion Based Additive Manufacturing.” In <i>International Conference on Polymers and Moulds Innovations - PMI 2018</i>, ed by. António Pontes. Minho - Portugal: Institute of Polymers and Composites, University of Minho, Portugal.</div>
  chicago-author-date: |2
      <div class="csl-entry">Wang, Sisi, Karen De Clerck, and Ludwig Cardon. 2018. “Polylactic Acid/Poly-3-Hydroxybutyrate Applications in Extrusion Based Additive Manufacturing.” In <i>International Conference on Polymers and Moulds Innovations - PMI 2018</i>, edited by António Pontes. Minho - Portugal: Institute of Polymers and Composites, University of Minho, Portugal.</div>
  fwo: |2
      <div class="csl-entry">Wang, Sisi, Karen De Clerck, and Ludwig Cardon. 2018. “Polylactic Acid/Poly-3-Hydroxybutyrate Applications in Extrusion Based Additive Manufacturing.” In <i>International Conference on Polymers and Moulds Innovations - PMI 2018</i>, ed by. António Pontes. Minho - Portugal: Institute of Polymers and Composites, University of Minho, Portugal.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. Wang, K. De Clerck, and L. Cardon, “Polylactic acid/poly-3-hydroxybutyrate applications in extrusion based additive manufacturing,” in <i>International Conference on Polymers and Moulds Innovations - PMI 2018</i>, Minho - Portugal, 2018.</div>
      </div>
  mla: |2
      <div class="csl-entry">Wang, Sisi, et al. “Polylactic Acid/Poly-3-Hydroxybutyrate Applications in Extrusion Based Additive Manufacturing.” <i>International Conference on Polymers and Moulds Innovations - PMI 2018</i>, edited by António Pontes, Institute of Polymers and Composites, University of Minho, Portugal, 2018.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Wang S, De Clerck K, Cardon L. Polylactic acid/poly-3-hydroxybutyrate applications in extrusion based additive manufacturing. In: Pontes A, editor. International Conference on Polymers and Moulds Innovations - PMI 2018. Minho - Portugal: Institute of Polymers and Composites, University of Minho, Portugal; 2018.</div>
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      <div class="csl-entry">De Clerck, K., Loccufier, E., Geltmeyer, J., &#38; De Buysser, K. (2018). Electrospinning of silica nanofibers without carrier polymer for advanced applications. <i>ELEN2018 : ELectrospinning for ENergy Conference</i>. Presented at the ELEN Electrospinning for Energy 2018, Montpellier, France.</div>
  bof: |2
      <div class="csl-entry">De Clerck, Karen, Eva Loccufier, Jozefien Geltmeyer, and Klaartje De Buysser. 2018. “Electrospinning of Silica Nanofibers without Carrier Polymer for Advanced Applications.” In <i>ELEN2018 : ELectrospinning for ENergy Conference</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Clerck, Karen, Eva Loccufier, Jozefien Geltmeyer, and Klaartje De Buysser. 2018. “Electrospinning of Silica Nanofibers without Carrier Polymer for Advanced Applications.” In <i>ELEN2018 : ELectrospinning for ENergy Conference</i>.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, Eva Loccufier, Jozefien Geltmeyer, and Klaartje De Buysser. 2018. “Electrospinning of Silica Nanofibers without Carrier Polymer for Advanced Applications.” In <i>ELEN2018 : ELectrospinning for ENergy Conference</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck, E. Loccufier, J. Geltmeyer, and K. De Buysser, “Electrospinning of silica nanofibers without carrier polymer for advanced applications,” in <i>ELEN2018 : ELectrospinning for ENergy conference</i>, Montpellier, France, 2018.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Clerck, Karen, et al. “Electrospinning of Silica Nanofibers without Carrier Polymer for Advanced Applications.” <i>ELEN2018 : ELectrospinning for ENergy Conference</i>, 2018.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, Loccufier E, Geltmeyer J, De Buysser K. Electrospinning of silica nanofibers without carrier polymer for advanced applications. In: ELEN2018 : ELectrospinning for ENergy conference. 2018.</div>
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  apa: |2
      <div class="csl-entry">Loccufier, E., Geltmeyer, J., Daelemans, L., D’hooge, D., De Buysser, K., &#38; De Clerck, K. (2018). Azeotrope separation : silica nanofibrous membranes for the separation of heterogeneous azeotropes (Adv. Funct. Mater. 44/2018). https://doi.org/10.1002/adfm.201870313</div>
  bof: |2-
      <div class="csl-entry">Loccufier, Eva, Jozefien Geltmeyer, Lode Daelemans, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2018. “Azeotrope Separation : Silica Nanofibrous Membranes for the Separation of Heterogeneous Azeotropes (Adv. Funct. Mater. 44/2018).” <i>ADVANCED FUNCTIONAL MATERIALS</i>. Wiley. doi:10.1002/adfm.201870313.</div>
    <div><i>Impact factor: 15.621, category: CHEMISTRY, PHYSICAL, rank: 5/148, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Loccufier, Eva, Jozefien Geltmeyer, Lode Daelemans, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2018. “Azeotrope Separation : Silica Nanofibrous Membranes for the Separation of Heterogeneous Azeotropes (Adv. Funct. Mater. 44/2018).” <i>ADVANCED FUNCTIONAL MATERIALS</i>. Wiley. https://doi.org/10.1002/adfm.201870313.</div>
  fwo: |2
      <div class="csl-entry">Loccufier, Eva, Jozefien Geltmeyer, Lode Daelemans, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2018. “Azeotrope Separation : Silica Nanofibrous Membranes for the Separation of Heterogeneous Azeotropes (Adv. Funct. Mater. 44/2018).” <i>ADVANCED FUNCTIONAL MATERIALS</i>. Wiley. doi:10.1002/adfm.201870313.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Loccufier, J. Geltmeyer, L. Daelemans, D. D’hooge, K. De Buysser, and K. De Clerck, “Azeotrope separation : silica nanofibrous membranes for the separation of heterogeneous azeotropes (Adv. Funct. Mater. 44/2018),” <i>ADVANCED FUNCTIONAL MATERIALS</i>, vol. 28, no. 44. Wiley, 2018.</div>
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  mla: |2
      <div class="csl-entry">Loccufier, Eva, et al. “Azeotrope Separation : Silica Nanofibrous Membranes for the Separation of Heterogeneous Azeotropes (Adv. Funct. Mater. 44/2018).” <i>ADVANCED FUNCTIONAL MATERIALS</i>, vol. 28, no. 44, Wiley, 2018, doi:10.1002/adfm.201870313.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Loccufier E, Geltmeyer J, Daelemans L, D’hooge D, De Buysser K, De Clerck K. Azeotrope separation : silica nanofibrous membranes for the separation of heterogeneous azeotropes (Adv. Funct. Mater. 44/2018). Vol. 28, ADVANCED FUNCTIONAL MATERIALS. Wiley; 2018.</div>
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  apa: |2
      <div class="csl-entry">De Clerck, K., &#38; Daelemans, L. (2018). Current status in composite laminates enhanced by electrospun nanofibres. In E. Smit (Ed.), <i>Electrospin 2018 International Conference</i> (pp. 29–29). Zuid-Afrika: The Stellenbosch Nanofiber Company (Pty) Ltd.</div>
  bof: |2
      <div class="csl-entry">De Clerck, Karen, and Lode Daelemans. 2018. “Current Status in Composite Laminates Enhanced by Electrospun Nanofibres.” In <i>Electrospin 2018 International Conference</i>, ed by. Eugene Smit, 29–29. Zuid-Afrika: The Stellenbosch Nanofiber Company (Pty) Ltd.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Clerck, Karen, and Lode Daelemans. 2018. “Current Status in Composite Laminates Enhanced by Electrospun Nanofibres.” In <i>Electrospin 2018 International Conference</i>, edited by Eugene Smit, 29–29. Zuid-Afrika: The Stellenbosch Nanofiber Company (Pty) Ltd.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, and Lode Daelemans. 2018. “Current Status in Composite Laminates Enhanced by Electrospun Nanofibres.” In <i>Electrospin 2018 International Conference</i>, ed by. Eugene Smit, 29–29. Zuid-Afrika: The Stellenbosch Nanofiber Company (Pty) Ltd.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck and L. Daelemans, “Current status in composite laminates enhanced by electrospun nanofibres,” in <i>Electrospin 2018 International Conference</i>, Stellenbosch, South Africa, 2018, pp. 29–29.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Clerck, Karen, and Lode Daelemans. “Current Status in Composite Laminates Enhanced by Electrospun Nanofibres.” <i>Electrospin 2018 International Conference</i>, edited by Eugene Smit, The Stellenbosch Nanofiber Company (Pty) Ltd., 2018, pp. 29–29.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, Daelemans L. Current status in composite laminates enhanced by electrospun nanofibres. In: Smit E, editor. Electrospin 2018 International Conference. Zuid-Afrika: The Stellenbosch Nanofiber Company (Pty) Ltd.; 2018. p. 29–29.</div>
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date_created: 2018-03-21 10:07:20
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  abstract: |-
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    </p>
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title: Current status in composite laminates enhanced by electrospun nanofibres
type: conference
year: '2018'
...
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  apa: |2
      <div class="csl-entry">Daelemans, L., Steyaert, I., Schoolaert, E., Goudenhooft, C., Rahier, H., &#38; De Clerck, K. (2018). Nanostructured hydrogels by blend electrospinning of polycaprolactone/gelatin nanofibers. <i>NANOMATERIALS</i>, <i>8</i>(7). https://doi.org/10.3390/nano8070551</div>
  bof: |2-
      <div class="csl-entry">Daelemans, Lode, Iline Steyaert, Ella Schoolaert, Camille Goudenhooft, Hubert Rahier, and Karen De Clerck. 2018. “Nanostructured Hydrogels by Blend Electrospinning of Polycaprolactone/Gelatin Nanofibers.” <i>NANOMATERIALS</i> 8 (7). doi:10.3390/nano8070551.</div>
    <div><i>Impact factor: 4.034, category: MATERIALS SCIENCE, MULTIDISCIPLINARY, rank: 71/293, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Daelemans, Lode, Iline Steyaert, Ella Schoolaert, Camille Goudenhooft, Hubert Rahier, and Karen De Clerck. 2018. “Nanostructured Hydrogels by Blend Electrospinning of Polycaprolactone/Gelatin Nanofibers.” <i>NANOMATERIALS</i> 8 (7). https://doi.org/10.3390/nano8070551.</div>
  fwo: |2
      <div class="csl-entry">Daelemans, Lode, Iline Steyaert, Ella Schoolaert, Camille Goudenhooft, Hubert Rahier, and Karen De Clerck. 2018. “Nanostructured Hydrogels by Blend Electrospinning of Polycaprolactone/Gelatin Nanofibers.” <i>NANOMATERIALS</i> 8 (7). doi:10.3390/nano8070551.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Daelemans, I. Steyaert, E. Schoolaert, C. Goudenhooft, H. Rahier, and K. De Clerck, “Nanostructured hydrogels by blend electrospinning of polycaprolactone/gelatin nanofibers,” <i>NANOMATERIALS</i>, vol. 8, no. 7, 2018.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daelemans, Lode, et al. “Nanostructured Hydrogels by Blend Electrospinning of Polycaprolactone/Gelatin Nanofibers.” <i>NANOMATERIALS</i>, vol. 8, no. 7, MDPI AG, 2018, doi:10.3390/nano8070551.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daelemans L, Steyaert I, Schoolaert E, Goudenhooft C, Rahier H, De Clerck K. Nanostructured hydrogels by blend electrospinning of polycaprolactone/gelatin nanofibers. NANOMATERIALS. 2018;8(7).</div>
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  short_title: Nanomaterials
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  abstract: |-
    <p>
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title: Nanostructured hydrogels by blend electrospinning of polycaprolactone/gelatin
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type: journalArticle
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...
---
_id: '8574639'
abstract:
- Nanofibrous materials produced through electrospinning are characterized by a high
  porosity, large specific surface area, and high pore interconnectivity and, therefore,
  show potential for, e.g., separation and filtration. The development of more inert
  nanofibers with higher thermal and chemical resistance extends the application field
  to high-end purification. Silica nanofibrous membranes produced by direct electrospinning
  of a sol-gel solution without a sacrificing carrier, starting from tetraethoxysilane,
  meet these challenging requirements. After electrospinning the membrane is highly
  hydrophobic. Storage under dry conditions preserves this property. Oppositely, a
  superhydrophilic membrane is obtained by storage under high humidity (month scale).
  This switch is caused by the reaction of ethoxy groups, present due to incomplete
  hydrolysis of the precursor, with moisture in the air, resulting in an increased
  amount of silanol groups. This transition can be accelerated to hour scale by applying
  a heat treatment, with the additional increase in cross-linking density for temperatures
  above 400 degrees C, enabling applications that make use of hydrophobic and hydrophilic
  membranes by tuning the functionalization. It is showcased that upon designing the
  water repellent or absorbing nature of the silica material, fast gravity-driven
  membrane separation of heterogeneous azeotropes can be achieved.
abstract_full:
- lang: eng
  text: Nanofibrous materials produced through electrospinning are characterized by
    a high porosity, large specific surface area, and high pore interconnectivity
    and, therefore, show potential for, e.g., separation and filtration. The development
    of more inert nanofibers with higher thermal and chemical resistance extends the
    application field to high-end purification. Silica nanofibrous membranes produced
    by direct electrospinning of a sol-gel solution without a sacrificing carrier,
    starting from tetraethoxysilane, meet these challenging requirements. After electrospinning
    the membrane is highly hydrophobic. Storage under dry conditions preserves this
    property. Oppositely, a superhydrophilic membrane is obtained by storage under
    high humidity (month scale). This switch is caused by the reaction of ethoxy groups,
    present due to incomplete hydrolysis of the precursor, with moisture in the air,
    resulting in an increased amount of silanol groups. This transition can be accelerated
    to hour scale by applying a heat treatment, with the additional increase in cross-linking
    density for temperatures above 400 degrees C, enabling applications that make
    use of hydrophobic and hydrophilic membranes by tuning the functionalization.
    It is showcased that upon designing the water repellent or absorbing nature of
    the silica material, fast gravity-driven membrane separation of heterogeneous
    azeotropes can be achieved.
affiliation:
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  ugent_id: TW11
- name: Department of Chemistry
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  - ugent_id: WE06
  ugent_id: WE06
article_number: '1804138'
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    ugent_id: TW11
  biblio_id: CF4C5918-F0EE-11E1-A197-91C894A0A6B4
  first_name: Eva
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  name: Eva Loccufier
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- _id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
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  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
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  orcid_id: 0000-0002-1281-2968
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- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
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    ugent_id: TW11
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  first_name: Lode
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  first_name: Dagmar
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  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
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  first_name: Karen
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  name: Karen De Clerck
  name_last_first: De Clerck, Karen
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  - '801000947425'
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  apa: |2
      <div class="csl-entry">Loccufier, E., Geltmeyer, J., Daelemans, L., D’hooge, D., De Buysser, K., &#38; De Clerck, K. (2018). Silica nanofibrous membranes for the separation of heterogeneous azeotropes. <i>ADVANCED FUNCTIONAL MATERIALS</i>, <i>28</i>(44). https://doi.org/10.1002/adfm.201804138</div>
  bof: |2-
      <div class="csl-entry">Loccufier, Eva, Jozefien Geltmeyer, Lode Daelemans, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2018. “Silica Nanofibrous Membranes for the Separation of Heterogeneous Azeotropes.” <i>ADVANCED FUNCTIONAL MATERIALS</i> 28 (44). doi:10.1002/adfm.201804138.</div>
    <div><i>Impact factor: 15.621, category: CHEMISTRY, PHYSICAL, rank: 5/148, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Loccufier, Eva, Jozefien Geltmeyer, Lode Daelemans, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2018. “Silica Nanofibrous Membranes for the Separation of Heterogeneous Azeotropes.” <i>ADVANCED FUNCTIONAL MATERIALS</i> 28 (44). https://doi.org/10.1002/adfm.201804138.</div>
  fwo: |2
      <div class="csl-entry">Loccufier, Eva, Jozefien Geltmeyer, Lode Daelemans, Dagmar D’hooge, Klaartje De Buysser, and Karen De Clerck. 2018. “Silica Nanofibrous Membranes for the Separation of Heterogeneous Azeotropes.” <i>ADVANCED FUNCTIONAL MATERIALS</i> 28 (44). doi:10.1002/adfm.201804138.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Loccufier, J. Geltmeyer, L. Daelemans, D. D’hooge, K. De Buysser, and K. De Clerck, “Silica nanofibrous membranes for the separation of heterogeneous azeotropes,” <i>ADVANCED FUNCTIONAL MATERIALS</i>, vol. 28, no. 44, 2018.</div>
      </div>
  mla: |2
      <div class="csl-entry">Loccufier, Eva, et al. “Silica Nanofibrous Membranes for the Separation of Heterogeneous Azeotropes.” <i>ADVANCED FUNCTIONAL MATERIALS</i>, vol. 28, no. 44, 2018, doi:10.1002/adfm.201804138.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Loccufier E, Geltmeyer J, Daelemans L, D’hooge D, De Buysser K, De Clerck K. Silica nanofibrous membranes for the separation of heterogeneous azeotropes. ADVANCED FUNCTIONAL MATERIALS. 2018;28(44).</div>
       </div>
classification: A1
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  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
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date_created: 2018-09-21 09:12:15
date_updated: 2026-03-31 14:57:13
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- 1616-301X
- 1616-3028
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keyword:
- electrospun nanofibrous membranes
- heterogeneous azeotrope separation
- silica
- wettability switch
- ELECTROSPUN NANOFIBERS
- WATER SEPARATION
- FLUX
- SUPERHYDROPHOBICITY
- ULTRAFILTRATION
- MICROFILTRATION
- PERFORMANCE
- CONVERSION
- SURFACES
- EMULSION
language:
- eng
page:
  count: '10'
parent:
  short_title: Adv. Funct. Mater.
  title: ADVANCED FUNCTIONAL MATERIALS
project:
- _id: 3S009618
  abstract: <p>Nanofibres are fibres with a diameter that is 1000 times smaller than
    a human hair. This makes nanofibrous membranes very light and porous, ideally
    suited for advanced engineering applications in various sectors. By adding a specific
    functionality (for example hydrophobic groups, amines, thiol functions), the application
    field can even be extended. However, the material choice and design are crucial
    for optimal performance. Therefore, several bridged organosilanes, hybrid structures
    with organic and inorganic moieties, will be studied as an alternative starting
    product to make such nanofibrous membranes within this project. They allow for
    highly flexible materials with superior chemical and thermal stability for which,
    moreover, the hydrophobicity can be tuned. These functionalised nanofibers will
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    most current nanofiber and membrane production techniques. Applications in the
    field of water purification and chemical conversion are targeted. These <br />applications
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  gismo_id: d937d58c-be65-11e9-ace9-8bf558aeac68
  iweto_id: 3S009618
  start_date: 2018-01-01
  title: |-
    Long-term stable organosilica nanofibrous membranes
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- _id: 01B03518
  abstract: <p>The requested table top SEM with integrated micromechanical testing,
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  iweto_id: 01B03518
  publication_count: 1
  start_date: 2018-06-01
  title: Table top SEM with integrated in-situ micromechanical testing for fiber,
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- _id: 178TW1215
  abstract: |-
    <p>
    The abstract for &quot;Mechanical investigation of epoxy-based composite laminates toughened with electrospun thermoplasticnanofibres&quot; is missing. Please contact the promotor for more information.

    </p>
  end_date: 2018-12-31
  gismo_id: 6aa08433-5d75-4c9e-9d23-aab37736aa7b
  iweto_id: 178TW1215
  start_date: 2015-01-01
  title: Mechanical investigation of epoxy-based composite laminates toughened with
    electrospun thermoplasticnanofibres
publication_status: published
publication_status_sort: 2
status: public
subject:
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- Technology and Engineering
title: Silica nanofibrous membranes for the separation of heterogeneous azeotropes
type: journalArticle
volume: '28'
wos_id: '000450367700011'
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      <div class="csl-entry">Cohades, A., Daelemans, L., Ward, C., Meireman, T., Van Paepegem, W., De Clerck, K., &#38; Michaud, V. (2018). Size limitations on achieving tough and healable fibre reinforced composites through the use of thermoplastic nanofibres. <i>ECCM18 - 18th European Conference on Composite Materials : Proceedings</i>. Presented at the ECCM18 - 18th European Conference on Composite Materials, Athens, Greece.</div>
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      <div class="csl-entry">Cohades, Amaël, Lode Daelemans, Charlie Ward, Timo Meireman, Wim Van Paepegem, Karen De Clerck, and Véronique Michaud. 2018. “Size Limitations on Achieving Tough and Healable Fibre Reinforced Composites through the Use of Thermoplastic Nanofibres.” In <i>ECCM18 - 18th European Conference on Composite Materials : Proceedings</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">Cohades, Amaël, Lode Daelemans, Charlie Ward, Timo Meireman, Wim Van Paepegem, Karen De Clerck, and Véronique Michaud. 2018. “Size Limitations on Achieving Tough and Healable Fibre Reinforced Composites through the Use of Thermoplastic Nanofibres.” In <i>ECCM18 - 18th European Conference on Composite Materials : Proceedings</i>.</div>
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      <div class="csl-entry">Cohades, Amaël, Lode Daelemans, Charlie Ward, Timo Meireman, Wim Van Paepegem, Karen De Clerck, and Véronique Michaud. 2018. “Size Limitations on Achieving Tough and Healable Fibre Reinforced Composites through the Use of Thermoplastic Nanofibres.” In <i>ECCM18 - 18th European Conference on Composite Materials : Proceedings</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">A. Cohades <i>et al.</i>, “Size limitations on achieving tough and healable fibre reinforced composites through the use of thermoplastic nanofibres,” in <i>ECCM18 - 18th European Conference on Composite Materials : proceedings</i>, Athens, Greece, 2018.</div>
      </div>
  mla: |2
      <div class="csl-entry">Cohades, Amaël, et al. “Size Limitations on Achieving Tough and Healable Fibre Reinforced Composites through the Use of Thermoplastic Nanofibres.” <i>ECCM18 - 18th European Conference on Composite Materials : Proceedings</i>, 2018.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Cohades A, Daelemans L, Ward C, Meireman T, Van Paepegem W, De Clerck K, et al. Size limitations on achieving tough and healable fibre reinforced composites through the use of thermoplastic nanofibres. In: ECCM18 - 18th European Conference on Composite Materials : proceedings. 2018.</div>
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    </p>
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  gismo_id: 6aa08433-5d75-4c9e-9d23-aab37736aa7b
  iweto_id: 178TW1215
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  title: Mechanical investigation of epoxy-based composite laminates toughened with
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      <div class="csl-entry">Cuvellier, A., Torre-Muruzabal, A., Kizildag, N., Daelemans, L., Ba, Y., De Clerck, K., &#38; Rahier, H. (2018). Coaxial electrospinning of epoxy and amine monomers in a pullulan shell for self-healing nanovascular systems. <i>POLYMER TESTING</i>, <i>69</i>, 146–156. https://doi.org/10.1016/j.polymertesting.2018.05.023</div>
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  chicago-author-date: |2
      <div class="csl-entry">Cuvellier, Audrey, Ana Torre-Muruzabal, Nuray Kizildag, Lode Daelemans, Yannick Ba, Karen De Clerck, and Hubert Rahier. 2018. “Coaxial Electrospinning of Epoxy and Amine Monomers in a Pullulan Shell for Self-Healing Nanovascular Systems.” <i>POLYMER TESTING</i> 69: 146–56. https://doi.org/10.1016/j.polymertesting.2018.05.023.</div>
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      <div class="csl-entry">Cuvellier, Audrey, Ana Torre-Muruzabal, Nuray Kizildag, Lode Daelemans, Yannick Ba, Karen De Clerck, and Hubert Rahier. 2018. “Coaxial Electrospinning of Epoxy and Amine Monomers in a Pullulan Shell for Self-Healing Nanovascular Systems.” <i>POLYMER TESTING</i> 69: 146–156. doi:10.1016/j.polymertesting.2018.05.023.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">A. Cuvellier <i>et al.</i>, “Coaxial electrospinning of epoxy and amine monomers in a pullulan shell for self-healing nanovascular systems,” <i>POLYMER TESTING</i>, vol. 69, pp. 146–156, 2018.</div>
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      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Cuvellier A, Torre-Muruzabal A, Kizildag N, Daelemans L, Ba Y, De Clerck K, et al. Coaxial electrospinning of epoxy and amine monomers in a pullulan shell for self-healing nanovascular systems. POLYMER TESTING. 2018;69:146–56.</div>
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      <div class="csl-entry">Cohades, A., Daelemans, L., Ward, C., Meireman, T., Van Paepegem, W., De Clerck, K., &#38; Michaud, V. (2018). Size limitations on achieving tough and healable fibre reinforced composites through the use of thermoplastic nanofibres. <i>COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING</i>, <i>112</i>, 485–495. https://doi.org/10.1016/j.compositesa.2018.07.002</div>
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    <div><i>Impact factor: 6.282, category: ENGINEERING, MANUFACTURING, rank: 3/49, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Cohades, Amaël, Lode Daelemans, Charlie Ward, Timo Meireman, Wim Van Paepegem, Karen De Clerck, and Véronique Michaud. 2018. “Size Limitations on Achieving Tough and Healable Fibre Reinforced Composites through the Use of Thermoplastic Nanofibres.” <i>COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING</i> 112: 485–95. https://doi.org/10.1016/j.compositesa.2018.07.002.</div>
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      <div class="csl-entry">Cohades, Amaël, Lode Daelemans, Charlie Ward, Timo Meireman, Wim Van Paepegem, Karen De Clerck, and Véronique Michaud. 2018. “Size Limitations on Achieving Tough and Healable Fibre Reinforced Composites through the Use of Thermoplastic Nanofibres.” <i>COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING</i> 112: 485–495. doi:10.1016/j.compositesa.2018.07.002.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">A. Cohades <i>et al.</i>, “Size limitations on achieving tough and healable fibre reinforced composites through the use of thermoplastic nanofibres,” <i>COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING</i>, vol. 112, pp. 485–495, 2018.</div>
      </div>
  mla: |2
      <div class="csl-entry">Cohades, Amaël, et al. “Size Limitations on Achieving Tough and Healable Fibre Reinforced Composites through the Use of Thermoplastic Nanofibres.” <i>COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING</i>, vol. 112, Elsevier, 2018, pp. 485–95, doi:10.1016/j.compositesa.2018.07.002.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Cohades A, Daelemans L, Ward C, Meireman T, Van Paepegem W, De Clerck K, et al. Size limitations on achieving tough and healable fibre reinforced composites through the use of thermoplastic nanofibres. COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING. 2018;112:485–95.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
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  - '802001635191'
  - '971650880382'
date_created: 2019-02-04 12:59:10
date_updated: 2026-03-31 14:57:13
doi:
- 10.1016/j.compositesa.2018.07.002
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handle: http://hdl.handle.net/1854/LU-8598936
issn:
- 1359-835X
jcr:
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  category_vigintile: 2
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  impact_factor: 6.282
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  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 1
  prev_impact_factor: 4.514
  total_cites: 23757
keyword:
- Mechanics of Materials
- Ceramics and Composites
language:
- eng
page:
  first: '485'
  last: '495'
parent:
  short_title: Compos. Pt. A-Appl. Sci. Manuf.
  title: COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING
project:
- _id: 178TW1215
  abstract: |-
    <p>
    The abstract for &quot;Mechanical investigation of epoxy-based composite laminates toughened with electrospun thermoplasticnanofibres&quot; is missing. Please contact the promotor for more information.

    </p>
  end_date: 2018-12-31
  gismo_id: 6aa08433-5d75-4c9e-9d23-aab37736aa7b
  iweto_id: 178TW1215
  start_date: 2015-01-01
  title: Mechanical investigation of epoxy-based composite laminates toughened with
    electrospun thermoplasticnanofibres
publication_status: published
publication_status_sort: 2
publisher:
  name: Elsevier
status: public
title: Size limitations on achieving tough and healable fibre reinforced composites
  through the use of thermoplastic nanofibres
type: journalArticle
volume: '112'
wos_id: '000440957800052'
wos_type: Article
year: '2018'
...
---
_id: '8543586'
affiliation:
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  path:
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  - ugent_id: TW11
  ugent_id: TW11
article_type: original
author:
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  last_name: Beckx
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- _id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    ugent_id: TW11
  biblio_id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Ives
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  name: Ives De Baere
  name_last_first: De Baere, Ives
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  - '977854465771'
- first_name: Hubert
  last_name: Rahier
  name: Hubert Rahier
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- first_name: Véronique
  last_name: Michaud
  name: Véronique Michaud
  name_last_first: Michaud, Véronique
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
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    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
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  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8543586'
cite:
  apa: |2
      <div class="csl-entry">Daelemans, L., Cohades, A., Meireman, T., Beckx, J., Spronk, S., Kersemans, M., … De Clerck, K. (2018). Electrospun nanofibrous interleaves for improved low velocity impact resistance of glass fibre reinforced composite laminates. <i>MATERIALS &#38; DESIGN</i>, <i>141</i>(5), 170–184. https://doi.org/10.1016/j.matdes.2017.12.045</div>
  bof: |2-
      <div class="csl-entry">Daelemans, Lode, Amaël Cohades, Timo Meireman, Jasper Beckx, Siebe Spronk, Mathias Kersemans, Ives De Baere, Hubert Rahier, Véronique Michaud, Wim Van Paepegem, and Karen De Clerck. 2018. “Electrospun Nanofibrous Interleaves for Improved Low Velocity Impact Resistance of Glass Fibre Reinforced Composite Laminates.” <i>MATERIALS &#38; DESIGN</i> 141 (5): 170–184. doi:10.1016/j.matdes.2017.12.045.</div>
    <div><i>Impact factor: 5.77, category: MATERIALS SCIENCE, MULTIDISCIPLINARY, rank: 50/293, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Daelemans, Lode, Amaël Cohades, Timo Meireman, Jasper Beckx, Siebe Spronk, Mathias Kersemans, Ives De Baere, et al. 2018. “Electrospun Nanofibrous Interleaves for Improved Low Velocity Impact Resistance of Glass Fibre Reinforced Composite Laminates.” <i>MATERIALS &#38; DESIGN</i> 141 (5): 170–84. https://doi.org/10.1016/j.matdes.2017.12.045.</div>
  fwo: |2
      <div class="csl-entry">Daelemans, Lode, Amaël Cohades, Timo Meireman, Jasper Beckx, Siebe Spronk, Mathias Kersemans, Ives De Baere, Hubert Rahier, Véronique Michaud, Wim Van Paepegem, and Karen De Clerck. 2018. “Electrospun Nanofibrous Interleaves for Improved Low Velocity Impact Resistance of Glass Fibre Reinforced Composite Laminates.” <i>MATERIALS &#38; DESIGN</i> 141 (5): 170–184. doi:10.1016/j.matdes.2017.12.045.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Daelemans <i>et al.</i>, “Electrospun nanofibrous interleaves for improved low velocity impact resistance of glass fibre reinforced composite laminates,” <i>MATERIALS &#38; DESIGN</i>, vol. 141, no. 5, pp. 170–184, 2018.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daelemans, Lode, et al. “Electrospun Nanofibrous Interleaves for Improved Low Velocity Impact Resistance of Glass Fibre Reinforced Composite Laminates.” <i>MATERIALS &#38; DESIGN</i>, vol. 141, no. 5, Elsevier BV, 2018, pp. 170–84, doi:10.1016/j.matdes.2017.12.045.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daelemans L, Cohades A, Meireman T, Beckx J, Spronk S, Kersemans M, et al. Electrospun nanofibrous interleaves for improved low velocity impact resistance of glass fibre reinforced composite laminates. MATERIALS &#38; DESIGN. 2018;141(5):170–84.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
date_created: 2018-01-04 09:05:30
date_updated: 2026-03-31 14:57:13
doi:
- 10.1016/j.matdes.2017.12.045
external: 0
file:
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  url: https://biblio.ugent.be/publication/8543586/file/8543593.pdf
handle: http://hdl.handle.net/1854/LU-8543586
issn:
- 0264-1275
issue: '5'
jcr:
  category: MATERIALS SCIENCE, MULTIDISCIPLINARY
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  category_quartile: 1
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  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 4
  prev_impact_factor: 4.525
  total_cites: 53840
keyword:
- Nano particles
- Damage tolerance
- Electrospinning
- Toughening
- Compression after impact
- CAI
language:
- eng
page:
  count: '14'
  first: '170'
  last: '184'
parent:
  title: MATERIALS & DESIGN
project:
- _id: 178TW1215
  abstract: |-
    <p>
    The abstract for &quot;Mechanical investigation of epoxy-based composite laminates toughened with electrospun thermoplasticnanofibres&quot; is missing. Please contact the promotor for more information.

    </p>
  end_date: 2018-12-31
  gismo_id: 6aa08433-5d75-4c9e-9d23-aab37736aa7b
  iweto_id: 178TW1215
  start_date: 2015-01-01
  title: Mechanical investigation of epoxy-based composite laminates toughened with
    electrospun thermoplasticnanofibres
- _id: 01J02013
  abstract: '<p>The project focuses on the use and functionalization of nanofibres
    to improve the toughness of epoxy matrix composites. The project consist of 5
    packages:<br /><br /><br /><br />WP1: nanofibre properties with respect to composite
    applications<br /><br />WP2: functionalization of nanofbibrous structures<br /><br
    />WP3: effect of nanofibres on the curing behavior of epoxy resins<br /><br />WP4:
    Tougning of nf-epoxy systems<br /><br />WP5: mechanical properties of GF/nf composites</p>'
  end_date: 2017-12-31
  gismo_id: 23e0ac1b-2d66-4695-b51c-6f6965e4da3d
  iweto_id: 01J02013
  start_date: 2013-03-01
  title: Epoxy resin composites reinforced with functionalized electrospun nanofibres
publication_status: published
publication_status_sort: 2
publisher:
  name: Elsevier BV
status: public
subject:
- Technology and Engineering
title: Electrospun nanofibrous interleaves for improved low velocity impact resistance
  of glass fibre reinforced composite laminates
type: journalArticle
volume: '141'
wos_id: '000424945300018'
wos_type: Article
year: '2018'
...
---
_id: '8586960'
abstract:
- Poly(2-oxazoline)-based biomaterials have shown significant potential for various
  applications in the past decade. Herein, we present a methodology for the design
  of degradable diselenide-cross-linked nanofibers by aqueous electrospinning of selenol
  (SeH)-modified poly(2-ethyl-2-oxazoline) (PEtOx). The selenol groups have been introduced
  into PEtOx by reacting partially hydrolyzed PEtOx (poly(2-ethyl-2-oxazoline-)-co-ethylenimine
  (PEtOx-EI)) with gamma-butyroselenolactone, whereby ring-opening upon reaction with
  the secondary amine groups in the polymer backbone yields selenol side chains. Subsequent
  aqueous electrospinning of the selenol-containing PEtOx was linked water-stable
  nanofibers, ascribed to the formation of diselenide cross-links. The effects of
  changes in the experimental parameters and the influence of the selenium content
  on the electrospinning process were investigated in detail. Dynamic exchange between
  the remaining free SeH groups and diselenide bonds formed upon cross-linking enabled
  a tunable dissolution of the PEtOx-based nanofibers, which could be controlled by
  changing both the temperature and cross-linking density. Furthermore, the dissolution
  of the diselenide cross-linked nanofibers could also be induced by the exchange
  of diselenide groups under ultraviolet (UV) irradiation.
abstract_full:
- lang: eng
  text: Poly(2-oxazoline)-based biomaterials have shown significant potential for
    various applications in the past decade. Herein, we present a methodology for
    the design of degradable diselenide-cross-linked nanofibers by aqueous electrospinning
    of selenol (SeH)-modified poly(2-ethyl-2-oxazoline) (PEtOx). The selenol groups
    have been introduced into PEtOx by reacting partially hydrolyzed PEtOx (poly(2-ethyl-2-oxazoline-)-co-ethylenimine
    (PEtOx-EI)) with gamma-butyroselenolactone, whereby ring-opening upon reaction
    with the secondary amine groups in the polymer backbone yields selenol side chains.
    Subsequent aqueous electrospinning of the selenol-containing PEtOx was linked
    water-stable nanofibers, ascribed to the formation of diselenide cross-links.
    The effects of changes in the experimental parameters and the influence of the
    selenium content on the electrospinning process were investigated in detail. Dynamic
    exchange between the remaining free SeH groups and diselenide bonds formed upon
    cross-linking enabled a tunable dissolution of the PEtOx-based nanofibers, which
    could be controlled by changing both the temperature and cross-linking density.
    Furthermore, the dissolution of the diselenide cross-linked nanofibers could also
    be induced by the exchange of diselenide groups under ultraviolet (UV) irradiation.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
article_type: original
author:
- _id: 7C93C83A-2C77-11E3-8FFE-9F6610BDE39D
  biblio_id: 7C93C83A-2C77-11E3-8FFE-9F6610BDE39D
  first_name: Yin
  last_name: Li
  name: Yin Li
  name_last_first: Li, Yin
  ugent_id:
  - '000131149050'
  - '802001676621'
  - '975949733557'
- _id: 116B8CE8-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 116B8CE8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Maarten
  last_name: Vergaelen
  name: Maarten Vergaelen
  name_last_first: Vergaelen, Maarten
  ugent_id:
  - '000080251635'
  - '802001657928'
  - '978043257578'
- first_name: Xiangqiang
  last_name: Pan
  name: Xiangqiang Pan
  name_last_first: Pan, Xiangqiang
- _id: F4AC5984-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: F4AC5984-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Filip
  last_name: Du Prez
  name: Filip Du Prez
  name_last_first: Du Prez, Filip
  orcid_id: 0000-0001-7727-4155
  ugent_id:
  - '801000886393'
  - '976639179245'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8586960'
cite:
  apa: |2
      <div class="csl-entry">Li, Y., Vergaelen, M., Pan, X., Du Prez, F., Hoogenboom, R., &#38; De Clerck, K. (2018). In situ cross-linked nanofibers by aqueous electrospinning of selenol-functionalized poly(2-oxazoline)s. <i>MACROMOLECULES</i>, <i>51</i>(15), 6149–6156. https://doi.org/10.1021/acs.macromol.8b01113</div>
  chicago-author-date: |2
      <div class="csl-entry">Li, Yin, Maarten Vergaelen, Xiangqiang Pan, Filip Du Prez, Richard Hoogenboom, and Karen De Clerck. 2018. “In Situ Cross-Linked Nanofibers by Aqueous Electrospinning of Selenol-Functionalized Poly(2-Oxazoline)s.” <i>MACROMOLECULES</i> 51 (15): 6149–56. https://doi.org/10.1021/acs.macromol.8b01113.</div>
  fwo: |2
      <div class="csl-entry">Li, Yin, Maarten Vergaelen, Xiangqiang Pan, Filip Du Prez, Richard Hoogenboom, and Karen De Clerck. 2018. “In Situ Cross-Linked Nanofibers by Aqueous Electrospinning of Selenol-Functionalized Poly(2-Oxazoline)s.” <i>MACROMOLECULES</i> 51 (15): 6149–6156. doi:10.1021/acs.macromol.8b01113.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Y. Li, M. Vergaelen, X. Pan, F. Du Prez, R. Hoogenboom, and K. De Clerck, “In situ cross-linked nanofibers by aqueous electrospinning of selenol-functionalized poly(2-oxazoline)s,” <i>MACROMOLECULES</i>, vol. 51, no. 15, pp. 6149–6156, 2018.</div>
      </div>
  mla: |2
      <div class="csl-entry">Li, Yin, et al. “In Situ Cross-Linked Nanofibers by Aqueous Electrospinning of Selenol-Functionalized Poly(2-Oxazoline)s.” <i>MACROMOLECULES</i>, vol. 51, no. 15, 2018, pp. 6149–56, doi:10.1021/acs.macromol.8b01113.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Li Y, Vergaelen M, Pan X, Du Prez F, Hoogenboom R, De Clerck K. In situ cross-linked nanofibers by aqueous electrospinning of selenol-functionalized poly(2-oxazoline)s. MACROMOLECULES. 2018;51(15):6149–56.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2019-01-02 11:19:08
date_updated: 2026-03-31 14:54:18
doi:
- 10.1021/acs.macromol.8b01113
external: 0
file:
- _id: '8586961'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: PAOx selenelactone printed version.pdf
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handle: http://hdl.handle.net/1854/LU-8586960
issn:
- 0024-9297
- 1520-5835
issue: '15'
jcr:
  category: POLYMER SCIENCE
  category_decile: 1
  category_quartile: 1
  category_rank: 5/87
  category_vigintile: 2
  eigenfactor: 0.08311
  immediacy_index: 1.136
  impact_factor: 5.997
  impact_factor_5yr: 5.629
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 2
  prev_impact_factor: 5.914
  total_cites: 102131
keyword:
- DRUG-DELIVERY
- MECHANICAL-PROPERTIES
- POLYMERIC NANOFIBERS
- FACILE SYNTHESIS
- SCAFFOLDS
- MEMBRANES
- LINKING
- BLOCK
- NANOPARTICLES
- BIOMATERIALS
language:
- eng
page:
  first: '6149'
  last: '6156'
parent:
  short_title: Macromolecules
  title: MACROMOLECULES
project:
- _id: 3G060518
  abstract: <p> Due to their high relative surface area, nanofibrous materials obtained
    via electrospinning have shown to be ideal candidates for high-quality sensors
    in many sectors, including environmental monitoring, food inspection and biomedicine.
    The key challenges remain (i) the controlled incorporation of analyte-sensitive
    dye molecules in the nanofibers via chemical linkage without leaching upon application
    and (ii) the identification of environmentally friendly electrospinning conditions,
    aiming at the production of sensor materials with a long-term water stability.
    In view of these challenges and benefiting from the joint expertise of the applicants
    in material science, chemical engineering, and polymer chemistry, in this project,
    electrospinning of copoly(2-oxazoline) s (PAOx) with immobilized indicator dye
    molecules is explored. Ultimately, large-scale production of water-stable PAOx-based
    nanofibrous sensors will be realized by (i) applying model-based design to control
    the microstructure of individual PAOx chains during the synthesis step and (ii)
    tuning the electrospinning conditions upon nanofiber production with respect to
    water stability and sensor accessibility. Advanced characterization techniques
    will be used to showcase the controlled dye incorporation and to confirm the superior
    behaviour of the obtained sensors, starting from pyrenebased reference dyes opening
    up a wide range of potential indicator dyes and relevant applications. </p>
  end_date: 2021-12-31
  gismo_id: 68c7d40e-8a7e-479e-8231-436053702888
  iweto_id: 3G060518
  publication_count: 2
  start_date: 2018-01-01
  title: Combining material science and chemical engineering design for novel and
    fast optical nanostructured sensors.
publication_status: published
publication_status_sort: 2
status: public
subject:
- Chemistry
- Technology and Engineering
title: In situ cross-linked nanofibers by aqueous electrospinning of selenol-functionalized
  poly(2-oxazoline)s
type: journalArticle
volume: '51'
wos_id: '000442185700072'
wos_type: Article
year: '2018'
...
---
_id: '8561225'
abstract:
- Here, we introduce a novel concept for the fabrication of colored materials with
  significantly reduced dye leaching through covalent immobilization of the desired
  dye using plasmagenerated surface radicals. This plasma dye coating (PDC) procedure
  immobilizes a preadsorbed layer of a dye functionalized with a radical sensitive
  group on the surface through radical addition caused by a short plasma treatment.
  The non-specific nature of the plasmagenerated surface radicals allows for a wide
  variety of dyes including azobenzenes and sulfonphthaleins, functionalized with
  radical sensitive groups to avoid significant dye degradation, to be combined with
  various materials including PP, PE, PA6, cellulose, and PTFE. The wide applicability,
  low consumption of dye, relatively short procedure time, and the possibility of
  continuous PDC using an atmospheric plasma reactor make this procedure economically
  interesting for various applications ranging from simple coloring of a material
  to the fabrication of chromic sensor fabrics as demonstrated by preparing a range
  of halochromic materials.
abstract_full:
- lang: eng
  text: Here, we introduce a novel concept for the fabrication of colored materials
    with significantly reduced dye leaching through covalent immobilization of the
    desired dye using plasmagenerated surface radicals. This plasma dye coating (PDC)
    procedure immobilizes a preadsorbed layer of a dye functionalized with a radical
    sensitive group on the surface through radical addition caused by a short plasma
    treatment. The non-specific nature of the plasmagenerated surface radicals allows
    for a wide variety of dyes including azobenzenes and sulfonphthaleins, functionalized
    with radical sensitive groups to avoid significant dye degradation, to be combined
    with various materials including PP, PE, PA6, cellulose, and PTFE. The wide applicability,
    low consumption of dye, relatively short procedure time, and the possibility of
    continuous PDC using an atmospheric plasma reactor make this procedure economically
    interesting for various applications ranging from simple coloring of a material
    to the fabrication of chromic sensor fabrics as demonstrated by preparing a range
    of halochromic materials.
additional_info: the first two authors contributed equally
affiliation:
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_number: '1123'
article_type: original
author:
- _id: 28131CFE-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 28131CFE-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lieselot
  last_name: De Smet
  name: Lieselot De Smet
  name_last_first: De Smet, Lieselot
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  affiliation:
  - name: Ghent University
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    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0267A880-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Gertjan
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  name: Gertjan Vancoillie
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  biblio_id: A0066850-114E-11E5-9012-F819B5D1D7B1
  first_name: Peter
  last_name: Minshall
  name: Peter Minshall
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  ugent_id:
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    ugent_id: UGent
  biblio_id: F55DDC50-82C3-11E2-BB4A-B55F10BDE39D
  first_name: Kathleen
  last_name: Lava
  name: Kathleen Lava
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- _id: 0B227202-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0B227202-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Iline
  last_name: Steyaert
  name: Iline Steyaert
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  - '000060129993'
  - '802001072793'
  - '979860756278'
- _id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
  ugent_id:
  - '000100318410'
  - '802002133935'
  - '975208259089'
- _id: 03C4FCA0-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 03C4FCA0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Elke
  last_name: Van De Walle
  name: Elke Van De Walle
  name_last_first: Van De Walle, Elke
  ugent_id:
  - '002004260476'
  - '802000699648'
  - '972251959272'
- _id: F59A8316-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: F59A8316-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Peter
  last_name: Dubruel
  name: Peter Dubruel
  name_last_first: Dubruel, Peter
  orcid_id: 0000-0002-5928-7726
  ugent_id:
  - '801001311476'
  - '978203976171'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
biblio_id: '8561225'
cite:
  apa: |2
      <div class="csl-entry">De Smet, L., Vancoillie, G., Minshall, P., Lava, K., Steyaert, I., Schoolaert, E., … Hoogenboom, R. (2018). Plasma dye coating as straightforward and widely applicable procedure for dye immobilization on polymeric materials. <i>NATURE COMMUNICATIONS</i>, <i>9</i>. https://doi.org/10.1038/s41467-018-03583-4</div>
  chicago-author-date: |2
      <div class="csl-entry">De Smet, Lieselot, Gertjan Vancoillie, Peter Minshall, Kathleen Lava, Iline Steyaert, Ella Schoolaert, Elke Van De Walle, Peter Dubruel, Karen De Clerck, and Richard Hoogenboom. 2018. “Plasma Dye Coating as Straightforward and Widely Applicable Procedure for Dye Immobilization on Polymeric Materials.” <i>NATURE COMMUNICATIONS</i> 9. https://doi.org/10.1038/s41467-018-03583-4.</div>
  fwo: |2
      <div class="csl-entry">De Smet, Lieselot, Gertjan Vancoillie, Peter Minshall, Kathleen Lava, Iline Steyaert, Ella Schoolaert, Elke Van De Walle, Peter Dubruel, Karen De Clerck, and Richard Hoogenboom. 2018. “Plasma Dye Coating as Straightforward and Widely Applicable Procedure for Dye Immobilization on Polymeric Materials.” <i>NATURE COMMUNICATIONS</i> 9. doi:10.1038/s41467-018-03583-4.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. De Smet <i>et al.</i>, “Plasma dye coating as straightforward and widely applicable procedure for dye immobilization on polymeric materials,” <i>NATURE COMMUNICATIONS</i>, vol. 9, 2018.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Smet, Lieselot, et al. “Plasma Dye Coating as Straightforward and Widely Applicable Procedure for Dye Immobilization on Polymeric Materials.” <i>NATURE COMMUNICATIONS</i>, vol. 9, 2018, doi:10.1038/s41467-018-03583-4.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Smet L, Vancoillie G, Minshall P, Lava K, Steyaert I, Schoolaert E, et al. Plasma dye coating as straightforward and widely applicable procedure for dye immobilization on polymeric materials. NATURE COMMUNICATIONS. 2018;9.</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution 4.0 International Public License
  (CC-BY 4.0)
created_by:
  _id: FBA76C4C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: FBA76C4C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Queenie
  last_name: Van Muylem
  name: Queenie Van Muylem
  name_last_first: Van Muylem, Queenie
  ugent_id:
  - '802000474124'
  - '979218934560'
date_created: 2018-05-08 07:27:31
date_updated: 2026-03-31 14:54:18
doi:
- 10.1038/s41467-018-03583-4
external: 0
file:
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  kind: fullText
  name: Nat-Commun_2018_9_1123.pdf
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  size: '1621991'
handle: http://hdl.handle.net/1854/LU-8561225
issn:
- 2041-1723
jcr:
  category: MULTIDISCIPLINARY SCIENCES
  category_decile: 1
  category_quartile: 1
  category_rank: 5/69
  category_vigintile: 2
  eigenfactor: 1.10329
  immediacy_index: 2.107
  impact_factor: 11.878
  impact_factor_5yr: 13.811
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 1
  prev_impact_factor: 12.353
  total_cites: 243793
keyword:
- SURFACE-ACTIVE COMPOUNDS
- ROSE-BENGAL
- POLY(ETHYLENE) SURFACES
- TEXTILE
- MATERIALS
- NITRAZINE YELLOW
- CHEMICAL SENSORS
- PH
- BRUSHES
- NANOFIBERS
- SULFATE
language:
- eng
page:
  count: '11'
parent:
  short_title: Nat. Commun.
  title: NATURE COMMUNICATIONS
project:
- _id: 3G060518
  abstract: <p> Due to their high relative surface area, nanofibrous materials obtained
    via electrospinning have shown to be ideal candidates for high-quality sensors
    in many sectors, including environmental monitoring, food inspection and biomedicine.
    The key challenges remain (i) the controlled incorporation of analyte-sensitive
    dye molecules in the nanofibers via chemical linkage without leaching upon application
    and (ii) the identification of environmentally friendly electrospinning conditions,
    aiming at the production of sensor materials with a long-term water stability.
    In view of these challenges and benefiting from the joint expertise of the applicants
    in material science, chemical engineering, and polymer chemistry, in this project,
    electrospinning of copoly(2-oxazoline) s (PAOx) with immobilized indicator dye
    molecules is explored. Ultimately, large-scale production of water-stable PAOx-based
    nanofibrous sensors will be realized by (i) applying model-based design to control
    the microstructure of individual PAOx chains during the synthesis step and (ii)
    tuning the electrospinning conditions upon nanofiber production with respect to
    water stability and sensor accessibility. Advanced characterization techniques
    will be used to showcase the controlled dye incorporation and to confirm the superior
    behaviour of the obtained sensors, starting from pyrenebased reference dyes opening
    up a wide range of potential indicator dyes and relevant applications. </p>
  end_date: 2021-12-31
  gismo_id: 68c7d40e-8a7e-479e-8231-436053702888
  iweto_id: 3G060518
  publication_count: 2
  start_date: 2018-01-01
  title: Combining material science and chemical engineering design for novel and
    fast optical nanostructured sensors.
publication_status: published
publication_status_sort: 2
pubmed_id: '29549360'
status: public
subject:
- Technology and Engineering
- Chemistry
title: Plasma dye coating as straightforward and widely applicable procedure for dye
  immobilization on polymeric materials
type: journalArticle
volume: '9'
wos_id: '000427592800008'
wos_type: Article
year: '2018'
...
---
_id: '8556775'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
author:
- _id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
  ugent_id:
  - '000100318410'
  - '802002133935'
  - '975208259089'
- _id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F84BBC7E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Dagmar
  last_name: D'hooge
  name: Dagmar D'hooge
  name_last_first: D'hooge, Dagmar
  orcid_id: 0000-0001-9663-9893
  ugent_id:
  - '802000024082'
  - '973689492909'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8556775'
cite:
  apa: |2
      <div class="csl-entry">Schoolaert, E., D’hooge, D., Hoogenboom, R., &#38; De Clerck, K. (2018). Can Poly(N-isopropyl acrylamide) be electrospun from water ? Yes ! In E. Smit (Ed.), <i>Electrospin 2018 international conference</i> (pp. 59–59). Zuid-Afrika: Stellenbosch Nanofiber Company (Pty) Ltd.</div>
  chicago-author-date: |2
      <div class="csl-entry">Schoolaert, Ella, Dagmar D’hooge, Richard Hoogenboom, and Karen De Clerck. 2018. “Can Poly(N-Isopropyl Acrylamide) Be Electrospun from Water ? Yes !” In <i>Electrospin 2018 International Conference</i>, edited by Eugene Smit, 59–59. Zuid-Afrika: Stellenbosch Nanofiber Company (Pty) Ltd.</div>
  fwo: |2
      <div class="csl-entry">Schoolaert, Ella, Dagmar D’hooge, Richard Hoogenboom, and Karen De Clerck. 2018. “Can Poly(N-Isopropyl Acrylamide) Be Electrospun from Water ? Yes !” In <i>Electrospin 2018 International Conference</i>, ed by. Eugene Smit, 59–59. Zuid-Afrika: Stellenbosch Nanofiber Company (Pty) Ltd.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Schoolaert, D. D’hooge, R. Hoogenboom, and K. De Clerck, “Can Poly(N-isopropyl acrylamide) be electrospun from water ? Yes !,” in <i>Electrospin 2018 international conference</i>, Stellenbosch, South Africa, 2018, pp. 59–59.</div>
      </div>
  mla: |2
      <div class="csl-entry">Schoolaert, Ella, et al. “Can Poly(N-Isopropyl Acrylamide) Be Electrospun from Water ? Yes !” <i>Electrospin 2018 International Conference</i>, edited by Eugene Smit, Stellenbosch Nanofiber Company (Pty) Ltd., 2018, pp. 59–59.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Schoolaert E, D’hooge D, Hoogenboom R, De Clerck K. Can Poly(N-isopropyl acrylamide) be electrospun from water ? Yes ! In: Smit E, editor. Electrospin 2018 international conference. Zuid-Afrika: Stellenbosch Nanofiber Company (Pty) Ltd.; 2018. p. 59–59.</div>
       </div>
classification: C3
conference:
  end_date: 2018-01-18
  location: Stellenbosch, South Africa
  name: Electrospin 2018 international conference
  organizer: Stellenbosch Nanofiber Company (Pty) Ltd.
  start_date: 2018-01-16
conference_type: poster
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2018-03-21 10:12:16
date_updated: 2026-03-31 14:54:18
editor:
- first_name: Eugene
  last_name: Smit
  name: Eugene Smit
  name_last_first: Smit, Eugene
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-8556775
language:
- eng
page:
  count: '1'
  first: '59'
  last: '59'
parent:
  title: Electrospin 2018 international conference
project:
- _id: 3G060518
  abstract: <p> Due to their high relative surface area, nanofibrous materials obtained
    via electrospinning have shown to be ideal candidates for high-quality sensors
    in many sectors, including environmental monitoring, food inspection and biomedicine.
    The key challenges remain (i) the controlled incorporation of analyte-sensitive
    dye molecules in the nanofibers via chemical linkage without leaching upon application
    and (ii) the identification of environmentally friendly electrospinning conditions,
    aiming at the production of sensor materials with a long-term water stability.
    In view of these challenges and benefiting from the joint expertise of the applicants
    in material science, chemical engineering, and polymer chemistry, in this project,
    electrospinning of copoly(2-oxazoline) s (PAOx) with immobilized indicator dye
    molecules is explored. Ultimately, large-scale production of water-stable PAOx-based
    nanofibrous sensors will be realized by (i) applying model-based design to control
    the microstructure of individual PAOx chains during the synthesis step and (ii)
    tuning the electrospinning conditions upon nanofiber production with respect to
    water stability and sensor accessibility. Advanced characterization techniques
    will be used to showcase the controlled dye incorporation and to confirm the superior
    behaviour of the obtained sensors, starting from pyrenebased reference dyes opening
    up a wide range of potential indicator dyes and relevant applications. </p>
  end_date: 2021-12-31
  gismo_id: 68c7d40e-8a7e-479e-8231-436053702888
  iweto_id: 3G060518
  publication_count: 2
  start_date: 2018-01-01
  title: Combining material science and chemical engineering design for novel and
    fast optical nanostructured sensors.
publication_status: published
publication_status_sort: 2
publisher:
  location: Zuid-Afrika
  name: Stellenbosch Nanofiber Company (Pty) Ltd.
status: public
title: Can Poly(N-isopropyl acrylamide) be electrospun from water ? Yes !
type: conference
year: '2018'
...
---
_id: '8541242'
abstract:
- Sensors play a major role in many applications today, ranging from biomedicine to
  safety equipment, where they detect and warn us about changes in the environment.
  Nanofibers, characterized by high porosity, flexibility, and a large specific surface
  area, are the ideal material for ultrasensitive, fastresponding, and user-friendly
  sensor design. Indeed, a large specific surface area increases the sensitivity and
  response time of the sensor as the contact area with the analyte is enlarged. Thanks
  to the flexibility of membranes, nanofibrous sensors cannot only be applied in high-end
  analyte detection, but also in personal, daily use. Many different nanofibrous sensors
  have already been designed; albeit, the most straightforward and easiest-to-interpret
  sensor response is a visual change in color, which is of particular interest in
  the case of warning signals. Recently, many researchers have focused on the design
  of so-called colorimetric nanofibers, which typically involve the incorporation
  of a colorimetric functionality into the nanofibrous matrix. Many different strategies
  have been used and explored for colorimetric nanofibrous sensor design, which are
  outlined in this feature article. The many examples and applications demonstrate
  the value of colorimetric nanofibers for advanced optical sensor design, and could
  provide directions for future research in this area.
abstract_full:
- lang: eng
  text: Sensors play a major role in many applications today, ranging from biomedicine
    to safety equipment, where they detect and warn us about changes in the environment.
    Nanofibers, characterized by high porosity, flexibility, and a large specific
    surface area, are the ideal material for ultrasensitive, fastresponding, and user-friendly
    sensor design. Indeed, a large specific surface area increases the sensitivity
    and response time of the sensor as the contact area with the analyte is enlarged.
    Thanks to the flexibility of membranes, nanofibrous sensors cannot only be applied
    in high-end analyte detection, but also in personal, daily use. Many different
    nanofibrous sensors have already been designed; albeit, the most straightforward
    and easiest-to-interpret sensor response is a visual change in color, which is
    of particular interest in the case of warning signals. Recently, many researchers
    have focused on the design of so-called colorimetric nanofibers, which typically
    involve the incorporation of a colorimetric functionality into the nanofibrous
    matrix. Many different strategies have been used and explored for colorimetric
    nanofibrous sensor design, which are outlined in this feature article. The many
    examples and applications demonstrate the value of colorimetric nanofibers for
    advanced optical sensor design, and could provide directions for future research
    in this area.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
article_number: '1702646'
article_type: original
author:
- _id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
  ugent_id:
  - '000100318410'
  - '802002133935'
  - '975208259089'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8541242'
cite:
  apa: |2
      <div class="csl-entry">Schoolaert, E., Hoogenboom, R., &#38; De Clerck, K. (2017). Colorimetric nanofibers as optical sensors. <i>ADVANCED FUNCTIONAL MATERIALS</i>, <i>27</i>(38). https://doi.org/10.1002/adfm.201702646</div>
  chicago-author-date: |2
      <div class="csl-entry">Schoolaert, Ella, Richard Hoogenboom, and Karen De Clerck. 2017. “Colorimetric Nanofibers as Optical Sensors.” <i>ADVANCED FUNCTIONAL MATERIALS</i> 27 (38). https://doi.org/10.1002/adfm.201702646.</div>
  fwo: |2
      <div class="csl-entry">Schoolaert, Ella, Richard Hoogenboom, and Karen De Clerck. 2017. “Colorimetric Nanofibers as Optical Sensors.” <i>ADVANCED FUNCTIONAL MATERIALS</i> 27 (38). doi:10.1002/adfm.201702646.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Schoolaert, R. Hoogenboom, and K. De Clerck, “Colorimetric nanofibers as optical sensors,” <i>ADVANCED FUNCTIONAL MATERIALS</i>, vol. 27, no. 38, 2017.</div>
      </div>
  mla: |2
      <div class="csl-entry">Schoolaert, Ella, et al. “Colorimetric Nanofibers as Optical Sensors.” <i>ADVANCED FUNCTIONAL MATERIALS</i>, vol. 27, no. 38, 2017, doi:10.1002/adfm.201702646.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Schoolaert E, Hoogenboom R, De Clerck K. Colorimetric nanofibers as optical sensors. ADVANCED FUNCTIONAL MATERIALS. 2017;27(38).</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
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  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2017-12-11 15:44:10
date_updated: 2026-03-31 13:12:58
doi:
- 10.1002/adfm.201702646
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handle: http://hdl.handle.net/1854/LU-8541242
issn:
- 1616-301X
issue: '38'
jcr:
  category: PHYSICS, APPLIED
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  category_quartile: 1
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  eigenfactor: 3.232
  immediacy_index: 2.961
  impact_factor: 13.325
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  total_cites: 78965
keyword:
- METAL-HALIDE PEROVSKITES
- QUANTUM-DOT PHOTODETECTORS
- CHARGE-CARRIER DYNAMICS
- NARROW-BAND
- INFRARED PHOTODETECTORS
- SOLAR-CELLS
- RECOMBINATION
- PHOTOVOLTAICS
- FORMAMIDINIUM
- PHOTODIODES
- colorimetric sensors
- nanofibers
- optical sensors
- solvent-electrospinning
language:
- eng
page:
  count: '26'
parent:
  short_title: Adv. Funct. Mater.
  title: ADVANCED FUNCTIONAL MATERIALS
publication_status: published
publication_status_sort: 2
status: public
subject:
- Chemistry
- Technology and Engineering
title: Colorimetric nanofibers as optical sensors
type: journalArticle
volume: '27'
wos_id: '000412675600011'
wos_type: Article
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...
---
_id: '8541246'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
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  - ugent_id: TW11
  ugent_id: TW11
article_type: original
author:
- first_name: A.
  last_name: Cuvellier
  name: A. Cuvellier
  name_last_first: Cuvellier, A.
- first_name: A.
  last_name: Torre-Muruzabal
  name: A. Torre-Muruzabal
  name_last_first: Torre-Muruzabal, A.
- first_name: G.
  last_name: Van Assche
  name: G. Van Assche
  name_last_first: Van Assche, G.
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
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- first_name: H.
  last_name: Rahier
  name: H. Rahier
  name_last_first: Rahier, H.
biblio_id: '8541246'
cite:
  apa: |2
      <div class="csl-entry">Cuvellier, A., Torre-Muruzabal, A., Van Assche, G., De Clerck, K., &#38; Rahier, H. (2017). Selection of healing agents for a vascular self-healing application. <i>POLYMER TESTING</i>, <i>62</i>, 302–310. https://doi.org/10.1016/j.polymertesting.2017.07.013</div>
  chicago-author-date: |2
      <div class="csl-entry">Cuvellier, A., A. Torre-Muruzabal, G. Van Assche, Karen De Clerck, and H. Rahier. 2017. “Selection of Healing Agents for a Vascular Self-Healing Application.” <i>POLYMER TESTING</i> 62: 302–10. https://doi.org/10.1016/j.polymertesting.2017.07.013.</div>
  fwo: |2
      <div class="csl-entry">Cuvellier, A., A. Torre-Muruzabal, G. Van Assche, Karen De Clerck, and H. Rahier. 2017. “Selection of Healing Agents for a Vascular Self-Healing Application.” <i>POLYMER TESTING</i> 62: 302–310. doi:10.1016/j.polymertesting.2017.07.013.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">A. Cuvellier, A. Torre-Muruzabal, G. Van Assche, K. De Clerck, and H. Rahier, “Selection of healing agents for a vascular self-healing application,” <i>POLYMER TESTING</i>, vol. 62, pp. 302–310, 2017.</div>
      </div>
  mla: |2
      <div class="csl-entry">Cuvellier, A., et al. “Selection of Healing Agents for a Vascular Self-Healing Application.” <i>POLYMER TESTING</i>, vol. 62, Elsevier BV, 2017, pp. 302–10, doi:10.1016/j.polymertesting.2017.07.013.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Cuvellier A, Torre-Muruzabal A, Van Assche G, De Clerck K, Rahier H. Selection of healing agents for a vascular self-healing application. POLYMER TESTING. 2017;62:302–10.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2017-12-11 15:51:32
date_updated: 2026-03-31 13:12:58
doi:
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- 0142-9418
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keyword:
- DIFFERENTIAL SCANNING CALORIMETRY
- MOLECULAR-SIZE DISTRIBUTION
- HOLLOW GLASS-FIBERS
- MICROVASCULAR NETWORKS
- MECHANICAL-PROPERTIES
- POLYMERIC MATERIALS
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language:
- eng
page:
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  first: '302'
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parent:
  title: POLYMER TESTING
publication_status: published
publication_status_sort: 2
publisher:
  name: Elsevier BV
status: public
title: Selection of healing agents for a vascular self-healing application
type: journalArticle
volume: '62'
wos_id: '000411537900038'
wos_type: Article
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...
---
_id: '8536522'
abstract:
- With increasing toxicity and environmental concerns, electrospinning from water,
  i.e., waterborne electrospinning, is crucial to further exploit the resulting nanofiber
  potential. Most water-soluble polymers have the inherent limitation of resulting
  in water-soluble nanofibers, and a tedious chemical cross-linking step is required
  to reach stable nanofibers. An interesting alternative route is the use of thermoresponsive
  polymers, such as poly(N-isopropylacrylamide) (PNIPAM), as they are water-soluble
  beneath their lower critical solution temperature (LCST) allowing low-temperature
  electrospinning while the obtained nanofibers are water-stable above the LCST. Moreover,
  PNIPAM nanofibers show major potential to many application fields, including biomedicine,
  as they combine the well-known on off switching behavior of PNIPAM, thanks to its
  LCST, with the unique properties of nanofibers. In the present work, based on dedicated
  turbidity and rheological measurements, optimal combinations of polymer concentration,
  environmental temperature, and relative humidity are identified allowing, for the
  first time, the production of continuous, bead-free PNIPAM nanofibers electrospun
  from water. More specifically, PNIPAM gelation was found to occur well below its
  LCST at higher polymer concentrations leading to a temperature regime where the
  viscosity significantly increases without compromising, the polymer solubility.
  This opens up the ecological, water-based production of uniform PNIPAM nanofibers
  that are stable in water at temperatures above PNIPAM's LCST, making them suitable
  for various applications, including drug delivery and switchable cell culture substrates.
abstract_full:
- lang: eng
  text: With increasing toxicity and environmental concerns, electrospinning from
    water, i.e., waterborne electrospinning, is crucial to further exploit the resulting
    nanofiber potential. Most water-soluble polymers have the inherent limitation
    of resulting in water-soluble nanofibers, and a tedious chemical cross-linking
    step is required to reach stable nanofibers. An interesting alternative route
    is the use of thermoresponsive polymers, such as poly(N-isopropylacrylamide) (PNIPAM),
    as they are water-soluble beneath their lower critical solution temperature (LCST)
    allowing low-temperature electrospinning while the obtained nanofibers are water-stable
    above the LCST. Moreover, PNIPAM nanofibers show major potential to many application
    fields, including biomedicine, as they combine the well-known on off switching
    behavior of PNIPAM, thanks to its LCST, with the unique properties of nanofibers.
    In the present work, based on dedicated turbidity and rheological measurements,
    optimal combinations of polymer concentration, environmental temperature, and
    relative humidity are identified allowing, for the first time, the production
    of continuous, bead-free PNIPAM nanofibers electrospun from water. More specifically,
    PNIPAM gelation was found to occur well below its LCST at higher polymer concentrations
    leading to a temperature regime where the viscosity significantly increases without
    compromising, the polymer solubility. This opens up the ecological, water-based
    production of uniform PNIPAM nanofibers that are stable in water at temperatures
    above PNIPAM's LCST, making them suitable for various applications, including
    drug delivery and switchable cell culture substrates.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
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  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Organic and Macromolecular Chemistry
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  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
article_type: original
author:
- _id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
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  - '975208259089'
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  biblio_id: 2F17DB5C-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Paulien
  last_name: Ryckx
  name: Paulien Ryckx
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  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
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  affiliation:
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  apa: |2
      <div class="csl-entry">Schoolaert, E., Ryckx, P., Geltmeyer, J., Maji, S., Van Steenberge, P., D’hooge, D., … De Clerck, K. (2017). Waterborne electrospinning of poly(N-isopropylacrylamide) by control of environmental parameters. <i>ACS APPLIED MATERIALS &#38; INTERFACES</i>, <i>9</i>(28), 24100–24110. https://doi.org/10.1021/acsami.7b05074</div>
  chicago-author-date: |2
      <div class="csl-entry">Schoolaert, Ella, Paulien Ryckx, Jozefien Geltmeyer, Samarendra Maji, Paul Van Steenberge, Dagmar D’hooge, Richard Hoogenboom, and Karen De Clerck. 2017. “Waterborne Electrospinning of Poly(N-Isopropylacrylamide) by Control of Environmental Parameters.” <i>ACS APPLIED MATERIALS &#38; INTERFACES</i> 9 (28): 24100–110. https://doi.org/10.1021/acsami.7b05074.</div>
  fwo: |2
      <div class="csl-entry">Schoolaert, Ella, Paulien Ryckx, Jozefien Geltmeyer, Samarendra Maji, Paul Van Steenberge, Dagmar D’hooge, Richard Hoogenboom, and Karen De Clerck. 2017. “Waterborne Electrospinning of Poly(N-Isopropylacrylamide) by Control of Environmental Parameters.” <i>ACS APPLIED MATERIALS &#38; INTERFACES</i> 9 (28): 24100–24110. doi:10.1021/acsami.7b05074.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Schoolaert <i>et al.</i>, “Waterborne electrospinning of poly(N-isopropylacrylamide) by control of environmental parameters,” <i>ACS APPLIED MATERIALS &#38; INTERFACES</i>, vol. 9, no. 28, pp. 24100–24110, 2017.</div>
      </div>
  mla: |2
      <div class="csl-entry">Schoolaert, Ella, et al. “Waterborne Electrospinning of Poly(N-Isopropylacrylamide) by Control of Environmental Parameters.” <i>ACS APPLIED MATERIALS &#38; INTERFACES</i>, vol. 9, no. 28, 2017, pp. 24100–10, doi:10.1021/acsami.7b05074.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Schoolaert E, Ryckx P, Geltmeyer J, Maji S, Van Steenberge P, D’hooge D, et al. Waterborne electrospinning of poly(N-isopropylacrylamide) by control of environmental parameters. ACS APPLIED MATERIALS &#38; INTERFACES. 2017;9(28):24100–10.</div>
       </div>
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- POLY-N-ISOPROPYLACRYLAMIDE
- THERMORESPONSIVE POLYMERS
- DRUG-RELEASE
- BIOMEDICAL APPLICATIONS
- AQUEOUS-SOLUTIONS
- GENE DELIVERY
- NANOFIBERS
- TEMPERATURE
- SENSORS
- BEHAVIOR
- poly(N-isopropylacrylamide)
- aqueous media
- electrospinning nanofibers
- lower critical solution temperature
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language:
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parent:
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      <div class="csl-entry">Ceylan, Ö., &#38; De Clerck, K. (2017). Moisture sorption in naturally coloured cotton fibres. <i>17TH WORLD TEXTILE CONFERENCE AUTEX 2017 - SHAPING THE FUTURE OF TEXTILES</i>, <i>254</i>, 1–3. https://doi.org/10.1088/1757-899x/254/14/142006</div>
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      <div class="csl-entry">Ceylan, Özgür, and Karen De Clerck. 2017. “Moisture Sorption in Naturally Coloured Cotton Fibres.” In <i>17TH WORLD TEXTILE CONFERENCE AUTEX 2017 - SHAPING THE FUTURE OF TEXTILES</i>, 254:1–3. IOP Publishing. doi:10.1088/1757-899x/254/14/142006.</div>
  chicago-author-date: |2
      <div class="csl-entry">Ceylan, Özgür, and Karen De Clerck. 2017. “Moisture Sorption in Naturally Coloured Cotton Fibres.” In <i>17TH WORLD TEXTILE CONFERENCE AUTEX 2017 - SHAPING THE FUTURE OF TEXTILES</i>, 254:1–3. IOP Publishing. https://doi.org/10.1088/1757-899x/254/14/142006.</div>
  fwo: |2
      <div class="csl-entry">Ceylan, Özgür, and Karen De Clerck. 2017. “Moisture Sorption in Naturally Coloured Cotton Fibres.” In <i>17TH WORLD TEXTILE CONFERENCE AUTEX 2017 - SHAPING THE FUTURE OF TEXTILES</i>, 254:1–3. IOP Publishing. doi:10.1088/1757-899x/254/14/142006.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Ö. Ceylan and K. De Clerck, “Moisture sorption in naturally coloured cotton fibres,” in <i>17TH WORLD TEXTILE CONFERENCE AUTEX 2017 - SHAPING THE FUTURE OF TEXTILES</i>, Corfu, Greece, 2017, vol. 254, pp. 1–3.</div>
      </div>
  mla: |2
      <div class="csl-entry">Ceylan, Özgür, and Karen De Clerck. “Moisture Sorption in Naturally Coloured Cotton Fibres.” <i>17TH WORLD TEXTILE CONFERENCE AUTEX 2017 - SHAPING THE FUTURE OF TEXTILES</i>, vol. 254, IOP Publishing, 2017, pp. 1–3, doi:10.1088/1757-899x/254/14/142006.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Ceylan Ö, De Clerck K. Moisture sorption in naturally coloured cotton fibres. In: 17TH WORLD TEXTILE CONFERENCE AUTEX 2017 - SHAPING THE FUTURE OF TEXTILES. IOP Publishing; 2017. p. 1–3.</div>
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  apa: |2
      <div class="csl-entry">Kizildag, N., Geltmeyer, J., Ucar, N., De Buysser, K., &#38; De Clerck, K. (2017). Coaxial nanofibers containing TiO2 in the shell for water treatment applications. <i>17TH WORLD TEXTILE CONFERENCE AUTEX 2017 - SHAPING THE FUTURE OF TEXTILES</i>, <i>254</i>, 1–6. https://doi.org/10.1088/1757-899x/254/10/102007</div>
  bof: |2
      <div class="csl-entry">Kizildag, Nuray, Jozefien Geltmeyer, N. Ucar, Klaartje De Buysser, and Karen De Clerck. 2017. “Coaxial Nanofibers Containing TiO2 in the Shell for Water Treatment Applications.” In <i>17TH WORLD TEXTILE CONFERENCE AUTEX 2017 - SHAPING THE FUTURE OF TEXTILES</i>, 254:1–6. IOP Publishing. doi:10.1088/1757-899x/254/10/102007.</div>
  chicago-author-date: |2
      <div class="csl-entry">Kizildag, Nuray, Jozefien Geltmeyer, N. Ucar, Klaartje De Buysser, and Karen De Clerck. 2017. “Coaxial Nanofibers Containing TiO2 in the Shell for Water Treatment Applications.” In <i>17TH WORLD TEXTILE CONFERENCE AUTEX 2017 - SHAPING THE FUTURE OF TEXTILES</i>, 254:1–6. IOP Publishing. https://doi.org/10.1088/1757-899x/254/10/102007.</div>
  fwo: |2
      <div class="csl-entry">Kizildag, Nuray, Jozefien Geltmeyer, N. Ucar, Klaartje De Buysser, and Karen De Clerck. 2017. “Coaxial Nanofibers Containing TiO2 in the Shell for Water Treatment Applications.” In <i>17TH WORLD TEXTILE CONFERENCE AUTEX 2017 - SHAPING THE FUTURE OF TEXTILES</i>, 254:1–6. IOP Publishing. doi:10.1088/1757-899x/254/10/102007.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">N. Kizildag, J. Geltmeyer, N. Ucar, K. De Buysser, and K. De Clerck, “Coaxial nanofibers containing TiO2 in the shell for water treatment applications,” in <i>17TH WORLD TEXTILE CONFERENCE AUTEX 2017 - SHAPING THE FUTURE OF TEXTILES</i>, Corfu, Greece, 2017, vol. 254, pp. 1–6.</div>
      </div>
  mla: |2
      <div class="csl-entry">Kizildag, Nuray, et al. “Coaxial Nanofibers Containing TiO2 in the Shell for Water Treatment Applications.” <i>17TH WORLD TEXTILE CONFERENCE AUTEX 2017 - SHAPING THE FUTURE OF TEXTILES</i>, vol. 254, IOP Publishing, 2017, pp. 1–6, doi:10.1088/1757-899x/254/10/102007.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Kizildag N, Geltmeyer J, Ucar N, De Buysser K, De Clerck K. Coaxial nanofibers containing TiO2 in the shell for water treatment applications. In: 17TH WORLD TEXTILE CONFERENCE AUTEX 2017 - SHAPING THE FUTURE OF TEXTILES. IOP Publishing; 2017. p. 1–6.</div>
       </div>
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  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
  ugent_id:
  - '000100318410'
  - '802002133935'
  - '975208259089'
- _id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
  orcid_id: 0000-0002-1281-2968
  ugent_id:
  - '000070582957'
  - '975000449525'
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
biblio_id: '8556807'
cite:
  apa: |2
      <div class="csl-entry">De Clerck, K., Schoolaert, E., Geltmeyer, J., De Buysser, K., &#38; Hoogenboom, R. (2017). Advanced colorimetric sensors based on dye-functionalized nanofibers. <i>ElectrospinCY_2017</i>, 32–32. Cyprus.</div>
  bof: |2
      <div class="csl-entry">De Clerck, Karen, Ella Schoolaert, Jozefien Geltmeyer, Klaartje De Buysser, and Richard Hoogenboom. 2017. “Advanced Colorimetric Sensors Based on Dye-Functionalized Nanofibers.” In <i>ElectrospinCY_2017</i>, 32–32. Cyprus.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Clerck, Karen, Ella Schoolaert, Jozefien Geltmeyer, Klaartje De Buysser, and Richard Hoogenboom. 2017. “Advanced Colorimetric Sensors Based on Dye-Functionalized Nanofibers.” In <i>ElectrospinCY_2017</i>, 32–32. Cyprus.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, Ella Schoolaert, Jozefien Geltmeyer, Klaartje De Buysser, and Richard Hoogenboom. 2017. “Advanced Colorimetric Sensors Based on Dye-Functionalized Nanofibers.” In <i>ElectrospinCY_2017</i>, 32–32. Cyprus.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck, E. Schoolaert, J. Geltmeyer, K. De Buysser, and R. Hoogenboom, “Advanced colorimetric sensors based on dye-functionalized nanofibers,” in <i>ElectrospinCY_2017</i>, Cyprus, 2017, pp. 32–32.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Clerck, Karen, et al. “Advanced Colorimetric Sensors Based on Dye-Functionalized Nanofibers.” <i>ElectrospinCY_2017</i>, 2017, pp. 32–32.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, Schoolaert E, Geltmeyer J, De Buysser K, Hoogenboom R. Advanced colorimetric sensors based on dye-functionalized nanofibers. In: ElectrospinCY_2017. Cyprus; 2017. p. 32–32.</div>
       </div>
classification: C3
conference:
  end_date: 2017-04-21
  location: Cyprus
  name: ElectrospinCY_2017
  organizer: University of Cyprus
  start_date: 2017-04-19
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2018-03-21 12:26:38
date_updated: 2023-05-08 11:47:03
external: 0
file:
- _id: '8556808'
  access: open
  content_type: application/pdf
  kind: fullText
  name: Advanced colorimetric sensors based on dye-functionalized nanofibers.pdf
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  url: https://biblio.ugent.be/publication/8556807/file/8556808.pdf
handle: http://hdl.handle.net/1854/LU-8556807
jcr: {}
language:
- eng
page:
  count: '1'
  first: '32'
  last: '32'
parent:
  title: ElectrospinCY_2017
publication_status: published
publication_status_sort: 2
publisher:
  location: Cyprus
status: public
title: Advanced colorimetric sensors based on dye-functionalized nanofibers
type: conference
year: '2017'
...
---
_id: '8548640'
abstract:
- 3D woven fabrics can have a lot of advantages when used as reinforcement in for
  example composites or concrete elements. These new woven fabrics with integrated
  prismatic shaped cavities are produced in one single run eliminating a lot of manual
  labour and in the case of composites lead to an improved resistance against delamination.
  In this paper, these fabrics are used to produce composites and concrete elements
  which are subjected to three point bending tests. The first tests show promising
  results as well for the composites as for the concrete reinforcement.
abstract_full:
- lang: eng
  text: 3D woven fabrics can have a lot of advantages when used as reinforcement in
    for example composites or concrete elements. These new woven fabrics with integrated
    prismatic shaped cavities are produced in one single run eliminating a lot of
    manual labour and in the case of composites lead to an improved resistance against
    delamination. In this paper, these fabrics are used to produce composites and
    concrete elements which are subjected to three point bending tests. The first
    tests show promising results as well for the composites as for the concrete reinforcement.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Structural Engineering and Building Materials
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW14
  ugent_id: TW14
author:
- _id: BAF22DEA-0C3F-11E3-BE91-8EC010BDE39D
  biblio_id: BAF22DEA-0C3F-11E3-BE91-8EC010BDE39D
  first_name: Ruben
  last_name: Geerinck
  name: Ruben Geerinck
  name_last_first: Geerinck, Ruben
  ugent_id:
  - '000107011410'
  - '802001963072'
  - '974477498576'
- _id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Ives
  last_name: De Baere
  name: Ives De Baere
  name_last_first: De Baere, Ives
  orcid_id: 0000-0002-6846-0981
  ugent_id:
  - '801001866905'
  - '977854465771'
- _id: 265EDCCC-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 265EDCCC-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Geert
  last_name: De Clercq
  name: Geert De Clercq
  name_last_first: De Clercq, Geert
  ugent_id:
  - '802000722381'
  - '919013370543'
  - '977142365937'
- _id: 96F7EFB4-49B6-11E4-AA90-F166B5D1D7B1
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW14
    ugent_id: TW14
  biblio_id: 96F7EFB4-49B6-11E4-AA90-F166B5D1D7B1
  first_name: Alessandro
  last_name: Proia
  name: Alessandro Proia
  name_last_first: Proia, Alessandro
  orcid_id: 0000-0002-6776-5708
  ugent_id:
  - '802001931548'
  - '977904928811'
- _id: F4D83FF4-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW14
    ugent_id: TW14
  biblio_id: F4D83FF4-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Stijn
  last_name: Matthys
  name: Stijn Matthys
  name_last_first: Matthys, Stijn
  orcid_id: 0000-0002-9588-8561
  ugent_id:
  - '801000980060'
  - '973084180270'
- first_name: Jan
  last_name: Ivens
  name: Jan Ivens
  name_last_first: Ivens, Jan
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8548640'
cite:
  apa: |2
      <div class="csl-entry">Geerinck, R., De Baere, I., De Clercq, G., Proia, A., Matthys, S., Ivens, J., &#38; De Clerck, K. (2017). Woven fabrics with integrated prismatic shaped cavities for technical applications. <i>Proceedings of the 6th International Conference on Intelligent Textiles and Mass Customisation</i>. Presented at the IMTC2017, 6th edition of the International Conference on Intelligent Textiles and Mass Customisation, Ghent, Belgium.</div>
  chicago-author-date: |2
      <div class="csl-entry">Geerinck, Ruben, Ives De Baere, Geert De Clercq, Alessandro Proia, Stijn Matthys, Jan Ivens, and Karen De Clerck. 2017. “Woven Fabrics with Integrated Prismatic Shaped Cavities for Technical Applications.” In <i>Proceedings of the 6th International Conference on Intelligent Textiles and Mass Customisation</i>.</div>
  fwo: |2
      <div class="csl-entry">Geerinck, Ruben, Ives De Baere, Geert De Clercq, Alessandro Proia, Stijn Matthys, Jan Ivens, and Karen De Clerck. 2017. “Woven Fabrics with Integrated Prismatic Shaped Cavities for Technical Applications.” In <i>Proceedings of the 6th International Conference on Intelligent Textiles and Mass Customisation</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">R. Geerinck <i>et al.</i>, “Woven fabrics with integrated prismatic shaped cavities for technical applications,” in <i>Proceedings of the 6th International Conference on Intelligent Textiles and Mass Customisation</i>, Ghent, Belgium, 2017.</div>
      </div>
  mla: |2
      <div class="csl-entry">Geerinck, Ruben, et al. “Woven Fabrics with Integrated Prismatic Shaped Cavities for Technical Applications.” <i>Proceedings of the 6th International Conference on Intelligent Textiles and Mass Customisation</i>, 2017.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Geerinck R, De Baere I, De Clercq G, Proia A, Matthys S, Ivens J, et al. Woven fabrics with integrated prismatic shaped cavities for technical applications. In: Proceedings of the 6th International Conference on Intelligent Textiles and Mass Customisation. 2017.</div>
       </div>
classification: C1
conference:
  end_date: 2017-10-18
  location: Ghent, Belgium
  name: IMTC2017, 6th edition of the International Conference on Intelligent Textiles
    and Mass Customisation
  start_date: 2017-10-16
conference_type: proceedingsPaper
copyright_statement: No license (in copyright)
created_by:
  _id: BAF22DEA-0C3F-11E3-BE91-8EC010BDE39D
  biblio_id: BAF22DEA-0C3F-11E3-BE91-8EC010BDE39D
  first_name: Ruben
  last_name: Geerinck
  name: Ruben Geerinck
  name_last_first: Geerinck, Ruben
  ugent_id:
  - '000107011410'
  - '802001963072'
  - '974477498576'
date_created: 2018-02-20 07:25:06
date_updated: 2026-03-31 13:13:39
external: 0
file:
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  access: restricted
  content_type: application/pdf
  kind: fullText
  name: Ruben_Geerinck.pdf
  sha256: f492a9fd6f026b1d64d036799a38e7b713cebb5d485eb0a0e9bccd92fdb51c9a
  size: '406462'
  thumbnail_url: https://biblio.ugent.be/publication/8548640/file/8565263/thumbnail.png
  url: https://biblio.ugent.be/publication/8548640/file/8565263.pdf
handle: http://hdl.handle.net/1854/LU-8548640
keyword:
- 3D woven fabrics
- 3D composites
- 3D concrete reinforcement
language:
- eng
page:
  count: '6'
parent:
  title: Proceedings of the 6th International Conference on Intelligent Textiles and
    Mass Customisation
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Woven fabrics with integrated prismatic shaped cavities for technical applications
type: conference
year: '2017'
...
---
_id: '8629108'
abstract:
- "Fiber reinforced polymer composites are the material of choice for designing applications
  which require a high\r\nstrength and stiffness at minimal weight such as aerospace
  structures, wind turbines or ultralight vehicles.\r\nHowever, delamination between
  the reinforcing plies remains a major problem as it limits further breakthrough\r\nof
  these materials. Recently, interleaving electrospun nanofibres between the reinforcing
  plies has proven to be a\r\nviable interlaminar toughening method which can significantly
  limit the occurrence of delamination failure in\r\ncomposite materials. This presentation
  will give a thorough insight into the relationship between the electrospun\r\nnanofibre
  properties and the resulting tough composites, and as such, allow for engineering
  novel and damage\r\nresistant nanofiber toughened composites."
abstract_full:
- lang: eng
  text: "Fiber reinforced polymer composites are the material of choice for designing
    applications which require a high\r\nstrength and stiffness at minimal weight
    such as aerospace structures, wind turbines or ultralight vehicles.\r\nHowever,
    delamination between the reinforcing plies remains a major problem as it limits
    further breakthrough\r\nof these materials. Recently, interleaving electrospun
    nanofibres between the reinforcing plies has proven to be a\r\nviable interlaminar
    toughening method which can significantly limit the occurrence of delamination
    failure in\r\ncomposite materials. This presentation will give a thorough insight
    into the relationship between the electrospun\r\nnanofibre properties and the
    resulting tough composites, and as such, allow for engineering novel and damage\r\nresistant
    nanofiber toughened composites."
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
author:
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: 2D12E8D8-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 2D12E8D8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Timo
  last_name: Meireman
  name: Timo Meireman
  name_last_first: Meireman, Timo
  ugent_id:
  - '972580996713'
- _id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Ives
  last_name: De Baere
  name: Ives De Baere
  name_last_first: De Baere, Ives
  orcid_id: 0000-0002-6846-0981
  ugent_id:
  - '801001866905'
  - '977854465771'
- first_name: Hubert
  last_name: Rahier
  name: Hubert Rahier
  name_last_first: Rahier, Hubert
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8629108'
cite:
  apa: |2
      <div class="csl-entry">Daelemans, L., Meireman, T., De Baere, I., Rahier, H., Van Paepegem, W., &#38; De Clerck, K. (2017). Electrospun nanofibers for highly toughened fibre reinforced polymer composite laminates. <i>International Conference on Intelligent Textiles and Mass Customisation (ITMC2017) : Proceedings</i>. Presented at the ITMC2017 - International Conference on Intelligent Textiles and Mass Customisation, Ghent.</div>
  chicago-author-date: |2
      <div class="csl-entry">Daelemans, Lode, Timo Meireman, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2017. “Electrospun Nanofibers for Highly Toughened Fibre Reinforced Polymer Composite Laminates.” In <i>International Conference on Intelligent Textiles and Mass Customisation (ITMC2017) : Proceedings</i>. Ghent.</div>
  fwo: |2
      <div class="csl-entry">Daelemans, Lode, Timo Meireman, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2017. “Electrospun Nanofibers for Highly Toughened Fibre Reinforced Polymer Composite Laminates.” In <i>International Conference on Intelligent Textiles and Mass Customisation (ITMC2017) : Proceedings</i>. Ghent.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Daelemans, T. Meireman, I. De Baere, H. Rahier, W. Van Paepegem, and K. De Clerck, “Electrospun nanofibers for highly toughened fibre reinforced polymer composite laminates,” in <i>International Conference on Intelligent Textiles and Mass Customisation (ITMC2017) : proceedings</i>, Ghent, 2017.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daelemans, Lode, et al. “Electrospun Nanofibers for Highly Toughened Fibre Reinforced Polymer Composite Laminates.” <i>International Conference on Intelligent Textiles and Mass Customisation (ITMC2017) : Proceedings</i>, 2017.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daelemans L, Meireman T, De Baere I, Rahier H, Van Paepegem W, De Clerck K. Electrospun nanofibers for highly toughened fibre reinforced polymer composite laminates. In: International Conference on Intelligent Textiles and Mass Customisation (ITMC2017) : proceedings. Ghent; 2017.</div>
       </div>
classification: C1
conference:
  end_date: 2017-10-18
  location: Ghent
  name: ITMC2017 - International Conference on Intelligent Textiles and Mass Customisation
  start_date: 2017-10-15
conference_type: proceedingsPaper
copyright_statement: No license (in copyright)
created_by:
  _id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: B7D9CFC6-10F6-11E3-9BFC-607B10BDE39D
  first_name: Sigrid
  last_name: Vanraes
  name: Sigrid Vanraes
  name_last_first: Vanraes, Sigrid
  ugent_id:
  - '802003126971'
  - '971075574089'
date_created: 2019-09-23 09:08:47
date_updated: 2026-03-31 14:57:14
external: 0
file:
- _id: '8629111'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: S123_DAELEMANS_et_al_1.pdf
  sha256: 698db816964bb8f40e6d1ae29df350547b2e2d0b801bb594969b9d5fdb69adf4
  size: '280798'
  thumbnail_url: https://biblio.ugent.be/publication/8629108/file/8629111/thumbnail.png
  url: https://biblio.ugent.be/publication/8629108/file/8629111.pdf
handle: http://hdl.handle.net/1854/LU-8629108
keyword:
- composites
- electrospinning
- delamination
- mechanical properties
language:
- eng
page:
  count: '3'
parent:
  title: 'International Conference on Intelligent Textiles and Mass Customisation
    (ITMC2017) : proceedings'
project:
- _id: 178TW1215
  abstract: |-
    <p>
    The abstract for &quot;Mechanical investigation of epoxy-based composite laminates toughened with electrospun thermoplasticnanofibres&quot; is missing. Please contact the promotor for more information.

    </p>
  end_date: 2018-12-31
  gismo_id: 6aa08433-5d75-4c9e-9d23-aab37736aa7b
  iweto_id: 178TW1215
  start_date: 2015-01-01
  title: Mechanical investigation of epoxy-based composite laminates toughened with
    electrospun thermoplasticnanofibres
publication_status: published
publication_status_sort: 2
publisher:
  location: Ghent
status: public
subject:
- Technology and Engineering
title: Electrospun nanofibers for highly toughened fibre reinforced polymer composite
  laminates
type: conference
year: '2017'
...
---
_id: '8556913'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
author:
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: 2D12E8D8-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 2D12E8D8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Timo
  last_name: Meireman
  name: Timo Meireman
  name_last_first: Meireman, Timo
  ugent_id:
  - '972580996713'
- _id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Ives
  last_name: De Baere
  name: Ives De Baere
  name_last_first: De Baere, Ives
  orcid_id: 0000-0002-6846-0981
  ugent_id:
  - '801001866905'
  - '977854465771'
- first_name: Hubert
  last_name: Rahier
  name: Hubert Rahier
  name_last_first: Rahier, Hubert
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8556913'
cite:
  apa: |2
      <div class="csl-entry">Daelemans, L., Meireman, T., De Baere, I., Rahier, H., Van Paepegem, W., &#38; De Clerck, K. (2017). Nano-engineering highly toughened fibre reinforced polymer composites by interleaving electrospun nanofibres for advanced applications. <i>ElectrospinCY_2017</i>, 62–62. Nicosia, Cyprus: University of Cyprus.</div>
  bof: |2
      <div class="csl-entry">Daelemans, Lode, Timo Meireman, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2017. “Nano-Engineering Highly Toughened Fibre Reinforced Polymer Composites by Interleaving Electrospun Nanofibres for Advanced Applications.” In <i>ElectrospinCY_2017</i>, 62–62. Nicosia, Cyprus: University of Cyprus.</div>
  chicago-author-date: |2
      <div class="csl-entry">Daelemans, Lode, Timo Meireman, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2017. “Nano-Engineering Highly Toughened Fibre Reinforced Polymer Composites by Interleaving Electrospun Nanofibres for Advanced Applications.” In <i>ElectrospinCY_2017</i>, 62–62. Nicosia, Cyprus: University of Cyprus.</div>
  fwo: |2
      <div class="csl-entry">Daelemans, Lode, Timo Meireman, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2017. “Nano-Engineering Highly Toughened Fibre Reinforced Polymer Composites by Interleaving Electrospun Nanofibres for Advanced Applications.” In <i>ElectrospinCY_2017</i>, 62–62. Nicosia, Cyprus: University of Cyprus.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Daelemans, T. Meireman, I. De Baere, H. Rahier, W. Van Paepegem, and K. De Clerck, “Nano-engineering highly toughened fibre reinforced polymer composites by interleaving electrospun nanofibres for advanced applications,” in <i>ElectrospinCY_2017</i>, Cyprus, 2017, pp. 62–62.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daelemans, Lode, et al. “Nano-Engineering Highly Toughened Fibre Reinforced Polymer Composites by Interleaving Electrospun Nanofibres for Advanced Applications.” <i>ElectrospinCY_2017</i>, University of Cyprus, 2017, pp. 62–62.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daelemans L, Meireman T, De Baere I, Rahier H, Van Paepegem W, De Clerck K. Nano-engineering highly toughened fibre reinforced polymer composites by interleaving electrospun nanofibres for advanced applications. In: ElectrospinCY_2017. Nicosia, Cyprus: University of Cyprus; 2017. p. 62–62.</div>
       </div>
classification: C3
conference:
  end_date: 2017-04-21
  location: Cyprus
  name: ElectrospinCY_2017
  organizer: University of Cyprus
  start_date: 2017-04-19
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2018-03-21 21:03:34
date_updated: 2026-03-31 14:57:14
external: 0
file:
- _id: '8556914'
  access: open
  content_type: application/pdf
  kind: fullText
  name: Nano-engineering highly toughened fibre reinforced polymer composites by interleaving
    electrospun nanofibres for advanced applications.pdf
  sha256: 5f56dd8e0badf214a15a6dfd01ce11bc51ad1ddf8a5a5d2fd6b4eaa6e1d91954
  size: '377225'
  thumbnail_url: https://biblio.ugent.be/publication/8556913/file/8556914/thumbnail.png
  url: https://biblio.ugent.be/publication/8556913/file/8556914.pdf
handle: http://hdl.handle.net/1854/LU-8556913
jcr: {}
language:
- eng
page:
  first: '62'
  last: '62'
parent:
  title: ElectrospinCY_2017
project:
- _id: 178TW1215
  abstract: |-
    <p>
    The abstract for &quot;Mechanical investigation of epoxy-based composite laminates toughened with electrospun thermoplasticnanofibres&quot; is missing. Please contact the promotor for more information.

    </p>
  end_date: 2018-12-31
  gismo_id: 6aa08433-5d75-4c9e-9d23-aab37736aa7b
  iweto_id: 178TW1215
  start_date: 2015-01-01
  title: Mechanical investigation of epoxy-based composite laminates toughened with
    electrospun thermoplasticnanofibres
publication_status: published
publication_status_sort: 2
publisher:
  location: Nicosia, Cyprus
  name: University of Cyprus
status: public
title: Nano-engineering highly toughened fibre reinforced polymer composites by interleaving
  electrospun nanofibres for advanced applications
type: conference
year: '2017'
...
---
_id: '8507673'
abstract:
- Adding toughening particles to composite laminates is a common approach to increase
  their delamination resistance. More recently, interleaving the laminated structures
  with electrospun (thermoplastic) nanofibrous veils is shown to be a viable toughening
  method. Where toughening composite laminates with nanofibrous interleaves becomes
  more and more evident under static conditions, the effectiveness under fatigue loadings
  has yet to be proven. This article provides insight in the nanofibre toughening
  mechanisms acting under fatigue conditions. Several nanofibre types with a high
  potential for toughening are considered. A substantial decrease of the delamination
  propagation rate up to one order of magnitude was obtained for all tested nanofibre
  types. Furthermore, two distinct zones of delamination behaviour are observed in
  nanofibre interleaved laminates on exposure to cyclic loading. These insights reveal
  the crucial design parameters which allow for the production of nanofibre toughened
  composites with an improved fatigue life.
abstract_full:
- lang: eng
  text: Adding toughening particles to composite laminates is a common approach to
    increase their delamination resistance. More recently, interleaving the laminated
    structures with electrospun (thermoplastic) nanofibrous veils is shown to be a
    viable toughening method. Where toughening composite laminates with nanofibrous
    interleaves becomes more and more evident under static conditions, the effectiveness
    under fatigue loadings has yet to be proven. This article provides insight in
    the nanofibre toughening mechanisms acting under fatigue conditions. Several nanofibre
    types with a high potential for toughening are considered. A substantial decrease
    of the delamination propagation rate up to one order of magnitude was obtained
    for all tested nanofibre types. Furthermore, two distinct zones of delamination
    behaviour are observed in nanofibre interleaved laminates on exposure to cyclic
    loading. These insights reveal the crucial design parameters which allow for the
    production of nanofibre toughened composites with an improved fatigue life.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_type: original
author:
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Sam
  last_name: van der Heijden
  name: Sam van der Heijden
  name_last_first: van der Heijden, Sam
  ugent_id:
  - '000070168988'
  - '802001291348'
  - '972120157894'
- _id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Ives
  last_name: De Baere
  name: Ives De Baere
  name_last_first: De Baere, Ives
  orcid_id: 0000-0002-6846-0981
  ugent_id:
  - '801001866905'
  - '977854465771'
- first_name: Hubert
  last_name: Rahier
  name: Hubert Rahier
  name_last_first: Rahier, Hubert
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8507673'
cite:
  apa: |2
      <div class="csl-entry">Daelemans, L., van der Heijden, S., De Baere, I., Rahier, H., Van Paepegem, W., &#38; De Clerck, K. (2017). Improved fatigue delamination behaviour of composite laminates with electrospun thermoplastic nanofibrous interleaves using the Central Cut-Ply method. <i>COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING</i>, <i>94</i>, 10–20. https://doi.org/10.1016/j.compositesa.2016.12.004</div>
  chicago-author-date: |2
      <div class="csl-entry">Daelemans, Lode, Sam van der Heijden, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2017. “Improved Fatigue Delamination Behaviour of Composite Laminates with Electrospun Thermoplastic Nanofibrous Interleaves Using the Central Cut-Ply Method.” <i>COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING</i> 94: 10–20. https://doi.org/10.1016/j.compositesa.2016.12.004.</div>
  fwo: |2
      <div class="csl-entry">Daelemans, Lode, Sam van der Heijden, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2017. “Improved Fatigue Delamination Behaviour of Composite Laminates with Electrospun Thermoplastic Nanofibrous Interleaves Using the Central Cut-Ply Method.” <i>COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING</i> 94: 10–20. doi:10.1016/j.compositesa.2016.12.004.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Daelemans, S. van der Heijden, I. De Baere, H. Rahier, W. Van Paepegem, and K. De Clerck, “Improved fatigue delamination behaviour of composite laminates with electrospun thermoplastic nanofibrous interleaves using the Central Cut-Ply method,” <i>COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING</i>, vol. 94, pp. 10–20, 2017.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daelemans, Lode, et al. “Improved Fatigue Delamination Behaviour of Composite Laminates with Electrospun Thermoplastic Nanofibrous Interleaves Using the Central Cut-Ply Method.” <i>COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING</i>, vol. 94, Elsevier BV, 2017, pp. 10–20, doi:10.1016/j.compositesa.2016.12.004.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daelemans L, van der Heijden S, De Baere I, Rahier H, Van Paepegem W, De Clerck K. Improved fatigue delamination behaviour of composite laminates with electrospun thermoplastic nanofibrous interleaves using the Central Cut-Ply method. COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING. 2017;94:10–20.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
date_created: 2017-02-06 10:08:32
date_updated: 2026-03-31 14:57:14
doi:
- 10.1016/j.compositesa.2016.12.004
external: 0
file:
- _id: '8507676'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: journal version.pdf
  sha256: b963de27771cba6096ec633816f1ef468c884ebb8abee5df362a54de0423a78f
  size: '3296630'
  thumbnail_url: https://biblio.ugent.be/publication/8507673/file/8507676/thumbnail.png
  url: https://biblio.ugent.be/publication/8507673/file/8507676.pdf
handle: http://hdl.handle.net/1854/LU-8507673
issn:
- 1359-835X
jcr:
  category: ENGINEERING, MANUFACTURING
  category_decile: 1
  category_quartile: 1
  category_rank: 2/46
  category_vigintile: 1
  eigenfactor: 0.895
  immediacy_index: 1.235
  impact_factor: 4.514
  impact_factor_5yr: 4.483
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 1
  prev_impact_factor: 4.075
  total_cites: 18038
keyword:
- Nanocomposites
- Damage tolerance
- Fatigue
- Electrospinning
language:
- eng
page:
  first: '10'
  last: '20'
parent:
  title: COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING
project:
- _id: 178TW1215
  abstract: |-
    <p>
    The abstract for &quot;Mechanical investigation of epoxy-based composite laminates toughened with electrospun thermoplasticnanofibres&quot; is missing. Please contact the promotor for more information.

    </p>
  end_date: 2018-12-31
  gismo_id: 6aa08433-5d75-4c9e-9d23-aab37736aa7b
  iweto_id: 178TW1215
  start_date: 2015-01-01
  title: Mechanical investigation of epoxy-based composite laminates toughened with
    electrospun thermoplasticnanofibres
- _id: 01J02013
  abstract: '<p>The project focuses on the use and functionalization of nanofibres
    to improve the toughness of epoxy matrix composites. The project consist of 5
    packages:<br /><br /><br /><br />WP1: nanofibre properties with respect to composite
    applications<br /><br />WP2: functionalization of nanofbibrous structures<br /><br
    />WP3: effect of nanofibres on the curing behavior of epoxy resins<br /><br />WP4:
    Tougning of nf-epoxy systems<br /><br />WP5: mechanical properties of GF/nf composites</p>'
  end_date: 2017-12-31
  gismo_id: 23e0ac1b-2d66-4695-b51c-6f6965e4da3d
  iweto_id: 01J02013
  start_date: 2013-03-01
  title: Epoxy resin composites reinforced with functionalized electrospun nanofibres
publication_status: published
publication_status_sort: 2
publisher:
  name: Elsevier BV
status: public
subject:
- Technology and Engineering
title: Improved fatigue delamination behaviour of composite laminates with electrospun
  thermoplastic nanofibrous interleaves using the Central Cut-Ply method
type: journalArticle
volume: '94'
wos_id: '000394193300002'
wos_type: Article
year: '2017'
...
---
_id: '8556812'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
author:
- _id: 2D12E8D8-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 2D12E8D8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Timo
  last_name: Meireman
  name: Timo Meireman
  name_last_first: Meireman, Timo
  ugent_id:
  - '972580996713'
- _id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Sam
  last_name: van der Heijden
  name: Sam van der Heijden
  name_last_first: van der Heijden, Sam
  ugent_id:
  - '000070168988'
  - '802001291348'
  - '972120157894'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Ives
  last_name: De Baere
  name: Ives De Baere
  name_last_first: De Baere, Ives
  orcid_id: 0000-0002-6846-0981
  ugent_id:
  - '801001866905'
  - '977854465771'
- first_name: Hubert
  last_name: Rahier
  name: Hubert Rahier
  name_last_first: Rahier, Hubert
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
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  - path:
    - ugent_id: UGent
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8556812'
cite:
  apa: |2
      <div class="csl-entry">Meireman, T., van der Heijden, S., Daelemans, L., De Baere, I., Rahier, H., Van Paepegem, W., &#38; De Clerck, K. (2017). Interlaminar toughening of resin transfer moulded laminates by electrospun polycaprolactone : effect of interleave morphology. <i>ElectrospinCY_2017</i>, 83–83. Nicosia, Cyprus: University of Cyprus.</div>
  bof: |2
      <div class="csl-entry">Meireman, Timo, Sam van der Heijden, Lode Daelemans, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2017. “Interlaminar Toughening of Resin Transfer Moulded Laminates by Electrospun Polycaprolactone : Effect of Interleave Morphology.” In <i>ElectrospinCY_2017</i>, 83–83. Nicosia, Cyprus: University of Cyprus.</div>
  chicago-author-date: |2
      <div class="csl-entry">Meireman, Timo, Sam van der Heijden, Lode Daelemans, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2017. “Interlaminar Toughening of Resin Transfer Moulded Laminates by Electrospun Polycaprolactone : Effect of Interleave Morphology.” In <i>ElectrospinCY_2017</i>, 83–83. Nicosia, Cyprus: University of Cyprus.</div>
  fwo: |2
      <div class="csl-entry">Meireman, Timo, Sam van der Heijden, Lode Daelemans, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2017. “Interlaminar Toughening of Resin Transfer Moulded Laminates by Electrospun Polycaprolactone : Effect of Interleave Morphology.” In <i>ElectrospinCY_2017</i>, 83–83. Nicosia, Cyprus: University of Cyprus.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">T. Meireman <i>et al.</i>, “Interlaminar toughening of resin transfer moulded laminates by electrospun polycaprolactone : effect of interleave morphology,” in <i>ElectrospinCY_2017</i>, Cyprus, 2017, pp. 83–83.</div>
      </div>
  mla: |2
      <div class="csl-entry">Meireman, Timo, et al. “Interlaminar Toughening of Resin Transfer Moulded Laminates by Electrospun Polycaprolactone : Effect of Interleave Morphology.” <i>ElectrospinCY_2017</i>, University of Cyprus, 2017, pp. 83–83.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Meireman T, van der Heijden S, Daelemans L, De Baere I, Rahier H, Van Paepegem W, et al. Interlaminar toughening of resin transfer moulded laminates by electrospun polycaprolactone : effect of interleave morphology. In: ElectrospinCY_2017. Nicosia, Cyprus: University of Cyprus; 2017. p. 83–83.</div>
       </div>
classification: C3
conference:
  end_date: 2017-04-21
  location: Cyprus
  name: ElectrospinCY_2017
  organizer: University of Cyprus
  start_date: 2017-04-19
conference_type: poster
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2018-03-21 12:39:20
date_updated: 2026-03-31 14:57:14
external: 0
file:
- _id: '8556813'
  access: open
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  kind: fullText
  name: Interlaminar Toughening of Resin Transfer Moulded Laminates by Electrospun
    Polycaprolactone_ Effect of Interleave Morphology.pdf
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handle: http://hdl.handle.net/1854/LU-8556812
jcr: {}
language:
- eng
page:
  count: '1'
  first: '83'
  last: '83'
parent:
  title: ElectrospinCY_2017
project:
- _id: 178TW1215
  abstract: |-
    <p>
    The abstract for &quot;Mechanical investigation of epoxy-based composite laminates toughened with electrospun thermoplasticnanofibres&quot; is missing. Please contact the promotor for more information.

    </p>
  end_date: 2018-12-31
  gismo_id: 6aa08433-5d75-4c9e-9d23-aab37736aa7b
  iweto_id: 178TW1215
  start_date: 2015-01-01
  title: Mechanical investigation of epoxy-based composite laminates toughened with
    electrospun thermoplasticnanofibres
- _id: 01J02013
  abstract: '<p>The project focuses on the use and functionalization of nanofibres
    to improve the toughness of epoxy matrix composites. The project consist of 5
    packages:<br /><br /><br /><br />WP1: nanofibre properties with respect to composite
    applications<br /><br />WP2: functionalization of nanofbibrous structures<br /><br
    />WP3: effect of nanofibres on the curing behavior of epoxy resins<br /><br />WP4:
    Tougning of nf-epoxy systems<br /><br />WP5: mechanical properties of GF/nf composites</p>'
  end_date: 2017-12-31
  gismo_id: 23e0ac1b-2d66-4695-b51c-6f6965e4da3d
  iweto_id: 01J02013
  start_date: 2013-03-01
  title: Epoxy resin composites reinforced with functionalized electrospun nanofibres
- _id: 178EA0613
  abstract: "<p> Fiber reinforced polymer composite laminates are the material of
    choice for applications requiring high stiffness and high strength with minimal
    density. Hence, their wide use in wind turbine blades, airplanes and many other
    applications over the last decades. Composite laminates are often composed of
    several layers of glass or carbon fibers, surrounded by an epoxy matrix. However,
    due to their laminated structure, delamination between reinforcing plies and brittle
    matrix fracture are a major concern for fiber reinforced composites and are among
    the most frequent types of failure encountered in service. Traditionally proposed
    solutions for this problem often involve mixing tough thermoplastic materials,
    reactive rubbers, or stiff nanoparticles into the epoxy matrix. However, these
    systems significantly increase the viscosity of the uncured resin and thus have
    a detrimental effect on the resin flow which is crucial to obtain high quality
    laminates. Furthermore, a homogeneous dispersion of the toughening phases throughout
    the composite is not easily obtained. Both a reduced resin flow as well as an
    inhomogeneous distribution of the toughening phases can result in a reduction
    of the overall mechanical properties of the laminate. </p> \n<p> Throughout this
    PhD, the use of tough electrospun nanofibrous veils is investigated as a more
    viable method to increase the resistance against delamination (interlaminar fracture
    toughness). Nanofibrous veils are relatively new materials composed of very fine
    fibers into a non-woven textile. A nanofibrous veil is much like a traditional
    nonwoven material in the sense that it is a relatively strong and dimensionally
    stable macroscopic structure which is easy to handle. Nevertheless, the nanoscale
    diameters of these nanofibers lead to very interesting properties such as small
    pore sizes (about one order of magnitude larger than fiber diameter), large specific
    surface area (typically around 20 m2.g-1), high porosity (typically around 90
    %) and good inter-pore connectivity. The unique properties of electrospun nanofibers
    are very useful for interlaminar toughening of composite materials. The basic
    concept is simple and straightforward. Nanofibrous veils can act as a “pre-shaped
    co-continuous thermoplastic phase” which is then impregnated with epoxy resin.
    The resulting nanofiber toughened epoxy has a morphology which is similar to the
    co-continuous morphology in traditional toughening systems using thermoplastic
    materials. However, by using the nanofibrous structure as a “pre-shaped” morphology,
    there is no need for a complicated and difficult to control phase separation process
    and the resin viscosity remains unaffected. </p> \n<p> The concept of interlaminar
    toughening using electrospun nanofibers was introduced by Dzenis and Reneker and
    further detailed by recent work of ourselves as well as other research groups
    during the course of this PhD. However the results reported so far in open literature
    appear to be quite scattered. In order to explain these different results and
    design novel toughened composites, a better understanding of the toughening (micro)
    mechanisms which are present in nanofiber interleaved laminates is necessary.
    This PhD aims to provide a generic understanding of the toughening mechanism involved,
    which can open up the true potential of electrospun thermoplastic nanofibers.
    </p> \n<p> Following a condensed literature review in chapter 1 and an overview
    of the materials and methods used throughout this PhD in chapter 2, chapter 3
    presents the general micromechanical fracture mechanisms of electrospun nanofiber
    toughened composites. These mechanisms were unraveled by analyzing the nanofiber
    toughening effect on three different levels, coinciding with the hierarchical
    nature of laminated composite materials: the nanotoughened epoxy, the nanotoughened
    interlaminar region and the nanotoughened laminate. Experimental analysis of the
    nanotoughened epoxy has shown that yielding of nanofibers in the fracture processing
    zone as well as nanofiber bridging increases the fracture toughness of the epoxy
    substantially. </p> \n<p> On the level of the nanotoughened interlaminar region,
    careful analysis of the delamination path was shown to be crucial for understanding
    and optimizing the interlaminar toughening effect of electrospun nanofiber. More
    specifically it was found that under the right conditions, crossings of the interlaminar
    region can occur. These interlaminar crossings are one of the main contributors
    to the increase in interlaminar fracture toughness as nanofiber bridging zones
    develop in them. In the subsequent chapters, the nanotoughened interlaminar region
    was extensively studied. Several parameters were identified that influence the
    interlaminar fracture toughness, either directly or by changing the interlaminar
    crack path. </p> \n<p> The first parameter under investigation was the electrospun
    morphology (chapter 4), since it is well known that the phase separated morphology
    in traditional thermoplastic and rubber toughened epoxies has a major influence
    on the final fracture toughness of the epoxy. Throughout chapter 4, five different
    electrospun morphologies (i.e. nanofibers, microfibers, microspheres, films and
    spray-coated PCL) were introduced in the interlaminar region of glass epoxy laminates.
    It was shown that only porous interleave structures, having a fine distribution
    of PCL phases in a surrounding epoxy phase allow for significant improvements
    in both Mode I and Mode II interlaminar fracture toughness of the resulting composites.
    From all the tested porous structures, the nanofiber interleaved structures show
    the best performance. </p> \n<p> The next parameter under investigation was the
    interleaving method (chapter 5). It was shown that a double layer deposited configuration
    (DLD), in which the nanofibers were directly electrospun on both sides of the
    glass fiber mats facing the interlaminar region, gives rise to the highest Mode
    I interlaminar fracture toughness values. As opposed to a single layer deposited
    configuration in which nanofibers were spun on only one side of the glass fiber
    mat or an interleaved configuration in which a standalone nanofiber membrane was
    placed between the glass fiber mats, a DLD configuration improved the formation
    of interlaminar crossings. </p> \n<p> Chapter 6 and chapter 7 report on the effect
    of the mechanical properties of the electrospun fibers on the interlaminar fracture
    toughness. Chapter 6 focuses on the development of electrospun SBS fibers with
    tunable mechanical properties. First, a novel electrospinning solution with relatively
    low toxicity was formulated, after which a post modification strategy based on
    triazolinedione click chemistry was developed. Although the main goal of chapter
    6 was to obtain mechanically tunable SBS fibers, this post modification strategy
    can be applied to introduce a wide variety of functional groups onto SBS fibers.
    The mechanical tunability was achieved by using MDI-TAD (a bi-functional TAD cross-linker).
    Cross-linking with MDI-TAD allowed tuning the elongation at break of the SBS fibers
    from about 90 to 700 %, whereas the modulus of the fibers covers a range from
    11 MPa to over 130 MPa by adjusting the extent of modification. </p> \n<p> The
    mechanical properties of these tunable fibers are subsequently linked to the interlaminar
    toughness of the composite laminates in chapter 7. The variation in the mechanical
    properties of the SBS fibers had a significant effect on both the Mode I as well
    as the Mode II interlaminar fracture toughness of the glass epoxy laminates. Electrospun
    fibers with high elongations at break and low E-moduli are shown to be less suitable
    for interlaminar toughening. Although these fibers have a high work of rupture,
    the energy absorbed when strained up to small elongations is nearly zero. SBS
    fibers with a lower elongation at break and a higher E-modulus resulted in an
    increased amount of absorbed energy in the low strain region. This significantly
    affects the toughness of the interlayer as well as the interlaminar crack path,
    both in Mode I and Mode II loadings. </p> \n<p> Overall it can be concluded that
    important insights were gained throughout this PhD, which will contribute to the
    advancement of the research on these novel materials and help in optimizing and
    designing highly toughened advanced composite applications. In addition it was
    clearly shown that using these insights one can produce nanofiber toughened laminates
    by resin transfer molding, which have a superior delamination resistance, both
    under Mode I as well as Mode II loading conditions and this without resulting
    in a decrease in in-plane properties. </p>"
  end_date: 2016-12-31
  eu_id: '121156'
  gismo_id: d4aff062-4209-4939-a9c6-b2f050ee893b
  iweto_id: 178EA0613
  start_date: 2013-01-01
  title: Epoxy resin composites reinforced with electrospun nanofibres
publication_status: published
publication_status_sort: 2
publisher:
  location: Nicosia, Cyprus
  name: University of Cyprus
status: public
title: 'Interlaminar toughening of resin transfer moulded laminates by electrospun
  polycaprolactone : effect of interleave morphology'
type: conference
year: '2017'
...
---
_id: '8569300'
abstract:
- Previous work has shown that electrospun nanofibers can significantly improve the
  interlaminar fracture toughness of fiber reinforced composites. In this work the
  effect of the morphology of the toughening polymer is analysed by incorporating
  five different polycaprolactone (PCL) structures (nanofibers, microfibers, microspheres,
  dense films and PCL spray coated glass fibres) in the interlaminar regions (van
  der Heijden, 2016).
abstract_full:
- lang: eng
  text: Previous work has shown that electrospun nanofibers can significantly improve
    the interlaminar fracture toughness of fiber reinforced composites. In this work
    the effect of the morphology of the toughening polymer is analysed by incorporating
    five different polycaprolactone (PCL) structures (nanofibers, microfibers, microspheres,
    dense films and PCL spray coated glass fibres) in the interlaminar regions (van
    der Heijden, 2016).
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
author:
- _id: 2D12E8D8-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 2D12E8D8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Timo
  last_name: Meireman
  name: Timo Meireman
  name_last_first: Meireman, Timo
  ugent_id:
  - '972580996713'
- _id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Sam
  last_name: van der Heijden
  name: Sam van der Heijden
  name_last_first: van der Heijden, Sam
  ugent_id:
  - '000070168988'
  - '802001291348'
  - '972120157894'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Ives
  last_name: De Baere
  name: Ives De Baere
  name_last_first: De Baere, Ives
  orcid_id: 0000-0002-6846-0981
  ugent_id:
  - '801001866905'
  - '977854465771'
- first_name: Hubert
  last_name: Rahier
  name: Hubert Rahier
  name_last_first: Rahier, Hubert
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8569300'
cite:
  apa: |2
      <div class="csl-entry">Meireman, T., van der Heijden, S., Daelemans, L., De Baere, I., Rahier, H., Van Paepegem, W., &#38; De Clerck, K. (2017). Interlaminar toughening of resin transfer molded laminates by electrospun polycaprolactone structures : effect of the interleave morphology. <i>PROCEEDINGS OF THE 7TH INTERNATIONAL CONFERENCE ON MECHANICS AND MATERIALS IN DESIGN (M2D2017)</i>, 551–552. Porto: Inegi-feup.</div>
  chicago-author-date: |2
      <div class="csl-entry">Meireman, Timo, Sam van der Heijden, Lode Daelemans, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2017. “Interlaminar Toughening of Resin Transfer Molded Laminates by Electrospun Polycaprolactone Structures : Effect of the Interleave Morphology.” In <i>PROCEEDINGS OF THE 7TH INTERNATIONAL CONFERENCE ON MECHANICS AND MATERIALS IN DESIGN (M2D2017)</i>, 551–52. Porto: Inegi-feup.</div>
  fwo: |2
      <div class="csl-entry">Meireman, Timo, Sam van der Heijden, Lode Daelemans, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2017. “Interlaminar Toughening of Resin Transfer Molded Laminates by Electrospun Polycaprolactone Structures : Effect of the Interleave Morphology.” In <i>PROCEEDINGS OF THE 7TH INTERNATIONAL CONFERENCE ON MECHANICS AND MATERIALS IN DESIGN (M2D2017)</i>, 551–552. Porto: Inegi-feup.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">T. Meireman <i>et al.</i>, “Interlaminar toughening of resin transfer molded laminates by electrospun polycaprolactone structures : effect of the interleave morphology,” in <i>PROCEEDINGS OF THE 7TH INTERNATIONAL CONFERENCE ON MECHANICS AND MATERIALS IN DESIGN (M2D2017)</i>, Albufeira, PORTUGAL, 2017, pp. 551–552.</div>
      </div>
  mla: |2
      <div class="csl-entry">Meireman, Timo, et al. “Interlaminar Toughening of Resin Transfer Molded Laminates by Electrospun Polycaprolactone Structures : Effect of the Interleave Morphology.” <i>PROCEEDINGS OF THE 7TH INTERNATIONAL CONFERENCE ON MECHANICS AND MATERIALS IN DESIGN (M2D2017)</i>, Inegi-feup, 2017, pp. 551–52.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Meireman T, van der Heijden S, Daelemans L, De Baere I, Rahier H, Van Paepegem W, et al. Interlaminar toughening of resin transfer molded laminates by electrospun polycaprolactone structures : effect of the interleave morphology. In: PROCEEDINGS OF THE 7TH INTERNATIONAL CONFERENCE ON MECHANICS AND MATERIALS IN DESIGN (M2D2017). Porto: Inegi-feup; 2017. p. 551–2.</div>
       </div>
classification: P1
conference:
  end_date: 2017-06-15
  location: Albufeira, PORTUGAL
  name: 7th International Conference on Mechanics and Materials in Design (M2D)
  start_date: 2017-06-11
conference_type: proceedingsPaper
copyright_statement: No license (in copyright)
created_by:
  _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
date_created: 2018-07-19 15:06:15
date_updated: 2026-03-31 14:57:14
external: 0
file:
- _id: '8569395'
  access: open
  content_type: application/pdf
  kind: fullText
  name: Abstract_Algarve Timo Meireman.pdf
  sha256: e342ffe2b15c76f3542d03c41788854205787b0d53dcd80bbf25388c052f1a07
  size: '543414'
  thumbnail_url: https://biblio.ugent.be/publication/8569300/file/8569395/thumbnail.png
  url: https://biblio.ugent.be/publication/8569300/file/8569395.pdf
handle: http://hdl.handle.net/1854/LU-8569300
isbn:
- 978-989-98832-7-7
keyword:
- nano-structures
- resin transfer moulding (RTM)
- delamination
language:
- eng
page:
  count: '2'
  first: '551'
  last: '552'
parent:
  title: PROCEEDINGS OF THE 7TH INTERNATIONAL CONFERENCE ON MECHANICS AND MATERIALS
    IN DESIGN (M2D2017)
project:
- _id: 178TW1215
  abstract: |-
    <p>
    The abstract for &quot;Mechanical investigation of epoxy-based composite laminates toughened with electrospun thermoplasticnanofibres&quot; is missing. Please contact the promotor for more information.

    </p>
  end_date: 2018-12-31
  gismo_id: 6aa08433-5d75-4c9e-9d23-aab37736aa7b
  iweto_id: 178TW1215
  start_date: 2015-01-01
  title: Mechanical investigation of epoxy-based composite laminates toughened with
    electrospun thermoplasticnanofibres
- _id: 01J02013
  abstract: '<p>The project focuses on the use and functionalization of nanofibres
    to improve the toughness of epoxy matrix composites. The project consist of 5
    packages:<br /><br /><br /><br />WP1: nanofibre properties with respect to composite
    applications<br /><br />WP2: functionalization of nanofbibrous structures<br /><br
    />WP3: effect of nanofibres on the curing behavior of epoxy resins<br /><br />WP4:
    Tougning of nf-epoxy systems<br /><br />WP5: mechanical properties of GF/nf composites</p>'
  end_date: 2017-12-31
  gismo_id: 23e0ac1b-2d66-4695-b51c-6f6965e4da3d
  iweto_id: 01J02013
  start_date: 2013-03-01
  title: Epoxy resin composites reinforced with functionalized electrospun nanofibres
- _id: 178EA0613
  abstract: "<p> Fiber reinforced polymer composite laminates are the material of
    choice for applications requiring high stiffness and high strength with minimal
    density. Hence, their wide use in wind turbine blades, airplanes and many other
    applications over the last decades. Composite laminates are often composed of
    several layers of glass or carbon fibers, surrounded by an epoxy matrix. However,
    due to their laminated structure, delamination between reinforcing plies and brittle
    matrix fracture are a major concern for fiber reinforced composites and are among
    the most frequent types of failure encountered in service. Traditionally proposed
    solutions for this problem often involve mixing tough thermoplastic materials,
    reactive rubbers, or stiff nanoparticles into the epoxy matrix. However, these
    systems significantly increase the viscosity of the uncured resin and thus have
    a detrimental effect on the resin flow which is crucial to obtain high quality
    laminates. Furthermore, a homogeneous dispersion of the toughening phases throughout
    the composite is not easily obtained. Both a reduced resin flow as well as an
    inhomogeneous distribution of the toughening phases can result in a reduction
    of the overall mechanical properties of the laminate. </p> \n<p> Throughout this
    PhD, the use of tough electrospun nanofibrous veils is investigated as a more
    viable method to increase the resistance against delamination (interlaminar fracture
    toughness). Nanofibrous veils are relatively new materials composed of very fine
    fibers into a non-woven textile. A nanofibrous veil is much like a traditional
    nonwoven material in the sense that it is a relatively strong and dimensionally
    stable macroscopic structure which is easy to handle. Nevertheless, the nanoscale
    diameters of these nanofibers lead to very interesting properties such as small
    pore sizes (about one order of magnitude larger than fiber diameter), large specific
    surface area (typically around 20 m2.g-1), high porosity (typically around 90
    %) and good inter-pore connectivity. The unique properties of electrospun nanofibers
    are very useful for interlaminar toughening of composite materials. The basic
    concept is simple and straightforward. Nanofibrous veils can act as a “pre-shaped
    co-continuous thermoplastic phase” which is then impregnated with epoxy resin.
    The resulting nanofiber toughened epoxy has a morphology which is similar to the
    co-continuous morphology in traditional toughening systems using thermoplastic
    materials. However, by using the nanofibrous structure as a “pre-shaped” morphology,
    there is no need for a complicated and difficult to control phase separation process
    and the resin viscosity remains unaffected. </p> \n<p> The concept of interlaminar
    toughening using electrospun nanofibers was introduced by Dzenis and Reneker and
    further detailed by recent work of ourselves as well as other research groups
    during the course of this PhD. However the results reported so far in open literature
    appear to be quite scattered. In order to explain these different results and
    design novel toughened composites, a better understanding of the toughening (micro)
    mechanisms which are present in nanofiber interleaved laminates is necessary.
    This PhD aims to provide a generic understanding of the toughening mechanism involved,
    which can open up the true potential of electrospun thermoplastic nanofibers.
    </p> \n<p> Following a condensed literature review in chapter 1 and an overview
    of the materials and methods used throughout this PhD in chapter 2, chapter 3
    presents the general micromechanical fracture mechanisms of electrospun nanofiber
    toughened composites. These mechanisms were unraveled by analyzing the nanofiber
    toughening effect on three different levels, coinciding with the hierarchical
    nature of laminated composite materials: the nanotoughened epoxy, the nanotoughened
    interlaminar region and the nanotoughened laminate. Experimental analysis of the
    nanotoughened epoxy has shown that yielding of nanofibers in the fracture processing
    zone as well as nanofiber bridging increases the fracture toughness of the epoxy
    substantially. </p> \n<p> On the level of the nanotoughened interlaminar region,
    careful analysis of the delamination path was shown to be crucial for understanding
    and optimizing the interlaminar toughening effect of electrospun nanofiber. More
    specifically it was found that under the right conditions, crossings of the interlaminar
    region can occur. These interlaminar crossings are one of the main contributors
    to the increase in interlaminar fracture toughness as nanofiber bridging zones
    develop in them. In the subsequent chapters, the nanotoughened interlaminar region
    was extensively studied. Several parameters were identified that influence the
    interlaminar fracture toughness, either directly or by changing the interlaminar
    crack path. </p> \n<p> The first parameter under investigation was the electrospun
    morphology (chapter 4), since it is well known that the phase separated morphology
    in traditional thermoplastic and rubber toughened epoxies has a major influence
    on the final fracture toughness of the epoxy. Throughout chapter 4, five different
    electrospun morphologies (i.e. nanofibers, microfibers, microspheres, films and
    spray-coated PCL) were introduced in the interlaminar region of glass epoxy laminates.
    It was shown that only porous interleave structures, having a fine distribution
    of PCL phases in a surrounding epoxy phase allow for significant improvements
    in both Mode I and Mode II interlaminar fracture toughness of the resulting composites.
    From all the tested porous structures, the nanofiber interleaved structures show
    the best performance. </p> \n<p> The next parameter under investigation was the
    interleaving method (chapter 5). It was shown that a double layer deposited configuration
    (DLD), in which the nanofibers were directly electrospun on both sides of the
    glass fiber mats facing the interlaminar region, gives rise to the highest Mode
    I interlaminar fracture toughness values. As opposed to a single layer deposited
    configuration in which nanofibers were spun on only one side of the glass fiber
    mat or an interleaved configuration in which a standalone nanofiber membrane was
    placed between the glass fiber mats, a DLD configuration improved the formation
    of interlaminar crossings. </p> \n<p> Chapter 6 and chapter 7 report on the effect
    of the mechanical properties of the electrospun fibers on the interlaminar fracture
    toughness. Chapter 6 focuses on the development of electrospun SBS fibers with
    tunable mechanical properties. First, a novel electrospinning solution with relatively
    low toxicity was formulated, after which a post modification strategy based on
    triazolinedione click chemistry was developed. Although the main goal of chapter
    6 was to obtain mechanically tunable SBS fibers, this post modification strategy
    can be applied to introduce a wide variety of functional groups onto SBS fibers.
    The mechanical tunability was achieved by using MDI-TAD (a bi-functional TAD cross-linker).
    Cross-linking with MDI-TAD allowed tuning the elongation at break of the SBS fibers
    from about 90 to 700 %, whereas the modulus of the fibers covers a range from
    11 MPa to over 130 MPa by adjusting the extent of modification. </p> \n<p> The
    mechanical properties of these tunable fibers are subsequently linked to the interlaminar
    toughness of the composite laminates in chapter 7. The variation in the mechanical
    properties of the SBS fibers had a significant effect on both the Mode I as well
    as the Mode II interlaminar fracture toughness of the glass epoxy laminates. Electrospun
    fibers with high elongations at break and low E-moduli are shown to be less suitable
    for interlaminar toughening. Although these fibers have a high work of rupture,
    the energy absorbed when strained up to small elongations is nearly zero. SBS
    fibers with a lower elongation at break and a higher E-modulus resulted in an
    increased amount of absorbed energy in the low strain region. This significantly
    affects the toughness of the interlayer as well as the interlaminar crack path,
    both in Mode I and Mode II loadings. </p> \n<p> Overall it can be concluded that
    important insights were gained throughout this PhD, which will contribute to the
    advancement of the research on these novel materials and help in optimizing and
    designing highly toughened advanced composite applications. In addition it was
    clearly shown that using these insights one can produce nanofiber toughened laminates
    by resin transfer molding, which have a superior delamination resistance, both
    under Mode I as well as Mode II loading conditions and this without resulting
    in a decrease in in-plane properties. </p>"
  end_date: 2016-12-31
  eu_id: '121156'
  gismo_id: d4aff062-4209-4939-a9c6-b2f050ee893b
  iweto_id: 178EA0613
  start_date: 2013-01-01
  title: Epoxy resin composites reinforced with electrospun nanofibres
publication_status: published
publication_status_sort: 2
publisher:
  location: Porto
  name: Inegi-feup
status: public
title: 'Interlaminar toughening of resin transfer molded laminates by electrospun
  polycaprolactone structures : effect of the interleave morphology'
type: conference
wos_id: '000427886600095'
wos_type: Proceedings Paper
year: '2017'
...
---
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affiliation:
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- name: Department of Materials, Textiles and Chemical Engineering
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article_type: original
author:
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    path:
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    ugent_id: UGent
  biblio_id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Sam
  last_name: van der Heijden
  name: Sam van der Heijden
  name_last_first: van der Heijden, Sam
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    ugent_id: TW11
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  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
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  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0FD8C422-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Kevin
  last_name: De Bruycker
  name: Kevin De Bruycker
  name_last_first: De Bruycker, Kevin
  orcid_id: 0000-0002-1438-4872
  ugent_id:
  - '000080073092'
  - '802001637518'
  - '971541586846'
- _id: 29F3953A-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 29F3953A-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Robin
  last_name: Simal
  name: Robin Simal
  name_last_first: Simal, Robin
  ugent_id:
  - '000100362260'
- _id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Ives
  last_name: De Baere
  name: Ives De Baere
  name_last_first: De Baere, Ives
  orcid_id: 0000-0002-6846-0981
  ugent_id:
  - '801001866905'
  - '977854465771'
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
- first_name: Hubert
  last_name: Rahier
  name: Hubert Rahier
  name_last_first: Rahier, Hubert
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
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  - path:
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    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8507013'
cite:
  apa: |2
      <div class="csl-entry">van der Heijden, S., Daelemans, L., De Bruycker, K., Simal, R., De Baere, I., Van Paepegem, W., … De Clerck, K. (2017). Novel composite materials with tunable delamination resistance using functionalizable electrospun SBS fibers. <i>COMPOSITE STRUCTURES</i>, <i>159</i>, 12–20. https://doi.org/10.1016/j.compstruct.2016.09.057</div>
  bof: |2-
      <div class="csl-entry">van der Heijden, Sam, Lode Daelemans, Kevin De Bruycker, Robin Simal, Ives De Baere, Wim Van Paepegem, Hubert Rahier, and Karen De Clerck. 2017. “Novel Composite Materials with Tunable Delamination Resistance Using Functionalizable Electrospun SBS Fibers.” <i>COMPOSITE STRUCTURES</i> 159: 12–20. doi:10.1016/j.compstruct.2016.09.057.</div>
    <div><i>Impact factor: 4.101, category: MATERIALS SCIENCE, COMPOSITES, rank: 5/26, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Heijden, Sam van der, Lode Daelemans, Kevin De Bruycker, Robin Simal, Ives De Baere, Wim Van Paepegem, Hubert Rahier, and Karen De Clerck. 2017. “Novel Composite Materials with Tunable Delamination Resistance Using Functionalizable Electrospun SBS Fibers.” <i>COMPOSITE STRUCTURES</i> 159: 12–20. https://doi.org/10.1016/j.compstruct.2016.09.057.</div>
  fwo: |2
      <div class="csl-entry">van der Heijden, Sam, Lode Daelemans, Kevin De Bruycker, Robin Simal, Ives De Baere, Wim Van Paepegem, Hubert Rahier, and Karen De Clerck. 2017. “Novel Composite Materials with Tunable Delamination Resistance Using Functionalizable Electrospun SBS Fibers.” <i>COMPOSITE STRUCTURES</i> 159: 12–20. doi:10.1016/j.compstruct.2016.09.057.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. van der Heijden <i>et al.</i>, “Novel composite materials with tunable delamination resistance using functionalizable electrospun SBS fibers,” <i>COMPOSITE STRUCTURES</i>, vol. 159, pp. 12–20, 2017.</div>
      </div>
  mla: |2
      <div class="csl-entry">van der Heijden, Sam, et al. “Novel Composite Materials with Tunable Delamination Resistance Using Functionalizable Electrospun SBS Fibers.” <i>COMPOSITE STRUCTURES</i>, vol. 159, 2017, pp. 12–20, doi:10.1016/j.compstruct.2016.09.057.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">van der Heijden S, Daelemans L, De Bruycker K, Simal R, De Baere I, Van Paepegem W, et al. Novel composite materials with tunable delamination resistance using functionalizable electrospun SBS fibers. COMPOSITE STRUCTURES. 2017;159:12–20.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: 0FD8C422-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0FD8C422-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Kevin
  last_name: De Bruycker
  name: Kevin De Bruycker
  name_last_first: De Bruycker, Kevin
  orcid_id: 0000-0002-1438-4872
  ugent_id:
  - '000080073092'
  - '802001637518'
  - '971541586846'
date_created: 2017-02-02 12:41:17
date_updated: 2026-03-31 14:57:14
doi:
- 10.1016/j.compstruct.2016.09.057
external: 0
file:
- _id: '8507017'
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  kind: fullText
  name: 2017vanderHeijden12.pdf
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  size: '3044551'
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  url: https://biblio.ugent.be/publication/8507013/file/8507017.pdf
handle: http://hdl.handle.net/1854/LU-8507013
issn:
- 0263-8223
- 1879-1085
jcr:
  category: MATERIALS SCIENCE, COMPOSITES
  category_decile: 2
  category_quartile: 1
  category_rank: 5/26
  category_vigintile: 4
  eigenfactor: 0.938
  immediacy_index: 1.141
  impact_factor: 4.101
  impact_factor_5yr: 4.451
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 4
  prev_impact_factor: 3.858
  total_cites: 27416
keyword:
- INTERLAMINAR FRACTURE-TOUGHNESS
- TRIAZOLINEDIONE CLICK CHEMISTRY
- CARBON
- FIBER/EPOXY COMPOSITE
- MECHANICAL-PROPERTIES
- MODE-I
- NANOFIBROUS MATS
- PHASE-SEPARATION
- EPOXY COMPOSITE
- NANOCOMPOSITES
- INTERFACE
- Nano composites
- Resin transfer molding (RTM)
- Delamination
- SBS
- Electrospinning
language:
- eng
page:
  first: '12'
  last: '20'
parent:
  short_title: Compos. Struct.
  title: COMPOSITE STRUCTURES
project:
- _id: 178EA0613
  abstract: "<p> Fiber reinforced polymer composite laminates are the material of
    choice for applications requiring high stiffness and high strength with minimal
    density. Hence, their wide use in wind turbine blades, airplanes and many other
    applications over the last decades. Composite laminates are often composed of
    several layers of glass or carbon fibers, surrounded by an epoxy matrix. However,
    due to their laminated structure, delamination between reinforcing plies and brittle
    matrix fracture are a major concern for fiber reinforced composites and are among
    the most frequent types of failure encountered in service. Traditionally proposed
    solutions for this problem often involve mixing tough thermoplastic materials,
    reactive rubbers, or stiff nanoparticles into the epoxy matrix. However, these
    systems significantly increase the viscosity of the uncured resin and thus have
    a detrimental effect on the resin flow which is crucial to obtain high quality
    laminates. Furthermore, a homogeneous dispersion of the toughening phases throughout
    the composite is not easily obtained. Both a reduced resin flow as well as an
    inhomogeneous distribution of the toughening phases can result in a reduction
    of the overall mechanical properties of the laminate. </p> \n<p> Throughout this
    PhD, the use of tough electrospun nanofibrous veils is investigated as a more
    viable method to increase the resistance against delamination (interlaminar fracture
    toughness). Nanofibrous veils are relatively new materials composed of very fine
    fibers into a non-woven textile. A nanofibrous veil is much like a traditional
    nonwoven material in the sense that it is a relatively strong and dimensionally
    stable macroscopic structure which is easy to handle. Nevertheless, the nanoscale
    diameters of these nanofibers lead to very interesting properties such as small
    pore sizes (about one order of magnitude larger than fiber diameter), large specific
    surface area (typically around 20 m2.g-1), high porosity (typically around 90
    %) and good inter-pore connectivity. The unique properties of electrospun nanofibers
    are very useful for interlaminar toughening of composite materials. The basic
    concept is simple and straightforward. Nanofibrous veils can act as a “pre-shaped
    co-continuous thermoplastic phase” which is then impregnated with epoxy resin.
    The resulting nanofiber toughened epoxy has a morphology which is similar to the
    co-continuous morphology in traditional toughening systems using thermoplastic
    materials. However, by using the nanofibrous structure as a “pre-shaped” morphology,
    there is no need for a complicated and difficult to control phase separation process
    and the resin viscosity remains unaffected. </p> \n<p> The concept of interlaminar
    toughening using electrospun nanofibers was introduced by Dzenis and Reneker and
    further detailed by recent work of ourselves as well as other research groups
    during the course of this PhD. However the results reported so far in open literature
    appear to be quite scattered. In order to explain these different results and
    design novel toughened composites, a better understanding of the toughening (micro)
    mechanisms which are present in nanofiber interleaved laminates is necessary.
    This PhD aims to provide a generic understanding of the toughening mechanism involved,
    which can open up the true potential of electrospun thermoplastic nanofibers.
    </p> \n<p> Following a condensed literature review in chapter 1 and an overview
    of the materials and methods used throughout this PhD in chapter 2, chapter 3
    presents the general micromechanical fracture mechanisms of electrospun nanofiber
    toughened composites. These mechanisms were unraveled by analyzing the nanofiber
    toughening effect on three different levels, coinciding with the hierarchical
    nature of laminated composite materials: the nanotoughened epoxy, the nanotoughened
    interlaminar region and the nanotoughened laminate. Experimental analysis of the
    nanotoughened epoxy has shown that yielding of nanofibers in the fracture processing
    zone as well as nanofiber bridging increases the fracture toughness of the epoxy
    substantially. </p> \n<p> On the level of the nanotoughened interlaminar region,
    careful analysis of the delamination path was shown to be crucial for understanding
    and optimizing the interlaminar toughening effect of electrospun nanofiber. More
    specifically it was found that under the right conditions, crossings of the interlaminar
    region can occur. These interlaminar crossings are one of the main contributors
    to the increase in interlaminar fracture toughness as nanofiber bridging zones
    develop in them. In the subsequent chapters, the nanotoughened interlaminar region
    was extensively studied. Several parameters were identified that influence the
    interlaminar fracture toughness, either directly or by changing the interlaminar
    crack path. </p> \n<p> The first parameter under investigation was the electrospun
    morphology (chapter 4), since it is well known that the phase separated morphology
    in traditional thermoplastic and rubber toughened epoxies has a major influence
    on the final fracture toughness of the epoxy. Throughout chapter 4, five different
    electrospun morphologies (i.e. nanofibers, microfibers, microspheres, films and
    spray-coated PCL) were introduced in the interlaminar region of glass epoxy laminates.
    It was shown that only porous interleave structures, having a fine distribution
    of PCL phases in a surrounding epoxy phase allow for significant improvements
    in both Mode I and Mode II interlaminar fracture toughness of the resulting composites.
    From all the tested porous structures, the nanofiber interleaved structures show
    the best performance. </p> \n<p> The next parameter under investigation was the
    interleaving method (chapter 5). It was shown that a double layer deposited configuration
    (DLD), in which the nanofibers were directly electrospun on both sides of the
    glass fiber mats facing the interlaminar region, gives rise to the highest Mode
    I interlaminar fracture toughness values. As opposed to a single layer deposited
    configuration in which nanofibers were spun on only one side of the glass fiber
    mat or an interleaved configuration in which a standalone nanofiber membrane was
    placed between the glass fiber mats, a DLD configuration improved the formation
    of interlaminar crossings. </p> \n<p> Chapter 6 and chapter 7 report on the effect
    of the mechanical properties of the electrospun fibers on the interlaminar fracture
    toughness. Chapter 6 focuses on the development of electrospun SBS fibers with
    tunable mechanical properties. First, a novel electrospinning solution with relatively
    low toxicity was formulated, after which a post modification strategy based on
    triazolinedione click chemistry was developed. Although the main goal of chapter
    6 was to obtain mechanically tunable SBS fibers, this post modification strategy
    can be applied to introduce a wide variety of functional groups onto SBS fibers.
    The mechanical tunability was achieved by using MDI-TAD (a bi-functional TAD cross-linker).
    Cross-linking with MDI-TAD allowed tuning the elongation at break of the SBS fibers
    from about 90 to 700 %, whereas the modulus of the fibers covers a range from
    11 MPa to over 130 MPa by adjusting the extent of modification. </p> \n<p> The
    mechanical properties of these tunable fibers are subsequently linked to the interlaminar
    toughness of the composite laminates in chapter 7. The variation in the mechanical
    properties of the SBS fibers had a significant effect on both the Mode I as well
    as the Mode II interlaminar fracture toughness of the glass epoxy laminates. Electrospun
    fibers with high elongations at break and low E-moduli are shown to be less suitable
    for interlaminar toughening. Although these fibers have a high work of rupture,
    the energy absorbed when strained up to small elongations is nearly zero. SBS
    fibers with a lower elongation at break and a higher E-modulus resulted in an
    increased amount of absorbed energy in the low strain region. This significantly
    affects the toughness of the interlayer as well as the interlaminar crack path,
    both in Mode I and Mode II loadings. </p> \n<p> Overall it can be concluded that
    important insights were gained throughout this PhD, which will contribute to the
    advancement of the research on these novel materials and help in optimizing and
    designing highly toughened advanced composite applications. In addition it was
    clearly shown that using these insights one can produce nanofiber toughened laminates
    by resin transfer molding, which have a superior delamination resistance, both
    under Mode I as well as Mode II loading conditions and this without resulting
    in a decrease in in-plane properties. </p>"
  end_date: 2016-12-31
  eu_id: '121156'
  gismo_id: d4aff062-4209-4939-a9c6-b2f050ee893b
  iweto_id: 178EA0613
  start_date: 2013-01-01
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cite:
  apa: |2
      <div class="csl-entry">Geltmeyer, J., Teixido, H., Meire, M., Van Acker, T., Deventer, K., Vanhaecke, F., … De Clerck, K. (2017). TiO2 functionalized nanofibrous membranes for removal of organic (micro)pollutants from water. <i>SEPARATION AND PURIFICATION TECHNOLOGY</i>, <i>179</i>, 533–541. https://doi.org/10.1016/j.seppur.2017.02.037</div>
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      <div class="csl-entry">Geltmeyer, Jozefien, Helena Teixido, Mieke Meire, Thibaut Van Acker, Koen Deventer, Frank Vanhaecke, Stijn Van Hulle, Klaartje De Buysser, and Karen De Clerck. 2017. “TiO2 Functionalized Nanofibrous Membranes for Removal of Organic (Micro)Pollutants from Water.” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i> 179: 533–41. https://doi.org/10.1016/j.seppur.2017.02.037.</div>
  fwo: |2
      <div class="csl-entry">Geltmeyer, Jozefien, Helena Teixido, Mieke Meire, Thibaut Van Acker, Koen Deventer, Frank Vanhaecke, Stijn Van Hulle, Klaartje De Buysser, and Karen De Clerck. 2017. “TiO2 Functionalized Nanofibrous Membranes for Removal of Organic (Micro)Pollutants from Water.” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i> 179: 533–541. doi:10.1016/j.seppur.2017.02.037.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">J. Geltmeyer <i>et al.</i>, “TiO2 functionalized nanofibrous membranes for removal of organic (micro)pollutants from water,” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i>, vol. 179, pp. 533–541, 2017.</div>
      </div>
  mla: |2
      <div class="csl-entry">Geltmeyer, Jozefien, et al. “TiO2 Functionalized Nanofibrous Membranes for Removal of Organic (Micro)Pollutants from Water.” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i>, vol. 179, 2017, pp. 533–41, doi:10.1016/j.seppur.2017.02.037.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Geltmeyer J, Teixido H, Meire M, Van Acker T, Deventer K, Vanhaecke F, et al. TiO2 functionalized nanofibrous membranes for removal of organic (micro)pollutants from water. SEPARATION AND PURIFICATION TECHNOLOGY. 2017;179:533–41.</div>
       </div>
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keyword:
- TiO2 nanoparticles
- Photodegradation
- Polyamide nanofibers
- Silica nanofibers
- Isoproturon
- PHOTOCATALYTIC DEGRADATION
- COMPOSITE SYSTEMS
- NANOPARTICLES
- ISOPROTURON
- POLLUTANTS
- TITANIA
- OXIDATION
- FIBERS
- DYE
language:
- eng
page:
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  last: '541'
parent:
  short_title: Sep. Purif. Technol.
  title: SEPARATION AND PURIFICATION TECHNOLOGY
publication_status: published
publication_status_sort: 2
status: public
subject:
- Earth and Environmental Sciences
- Chemistry
title: TiO2 functionalized nanofibrous membranes for removal of organic (micro)pollutants
  from water
type: journalArticle
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  apa: |2
      <div class="csl-entry">Geerinck, R., De Baere, I., De Clercq, G., De Corte, W., De Clerck, K., Ivens, J., &#38; Degrieck, J. (2017). PRODUCTION AND EVALUATION OF COMPOSITES CONSISTING OF WOVEN FABRICS WITH INTEGRATED PRISMATIC SHAPED CAVITIES. In S. Lomov, L. Gorbatikh, &#38; Y. Swolfs (Eds.), <i>8th International Conference on Composites Testing and Model Identification</i> (pp. 1–2). Leuven: KU Leuven.</div>
  chicago-author-date: |2
      <div class="csl-entry">Geerinck, Ruben, Ives De Baere, Geert De Clercq, Wouter De Corte, Karen De Clerck, Jan Ivens, and Joris Degrieck. 2017. “PRODUCTION AND EVALUATION OF COMPOSITES CONSISTING OF WOVEN FABRICS WITH INTEGRATED PRISMATIC SHAPED CAVITIES.” In <i>8th International Conference on Composites Testing and Model Identification</i>, edited by SV Lomov, L Gorbatikh, and Y Swolfs, 1–2. Leuven: KU Leuven.</div>
  fwo: |2
      <div class="csl-entry">Geerinck, Ruben, Ives De Baere, Geert De Clercq, Wouter De Corte, Karen De Clerck, Jan Ivens, and Joris Degrieck. 2017. “PRODUCTION AND EVALUATION OF COMPOSITES CONSISTING OF WOVEN FABRICS WITH INTEGRATED PRISMATIC SHAPED CAVITIES.” In <i>8th International Conference on Composites Testing and Model Identification</i>, ed by. SV Lomov, L Gorbatikh, and Y Swolfs, 1–2. Leuven: KU Leuven.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">R. Geerinck <i>et al.</i>, “PRODUCTION AND EVALUATION OF COMPOSITES CONSISTING OF WOVEN FABRICS WITH INTEGRATED PRISMATIC SHAPED CAVITIES,” in <i>8th International Conference on Composites Testing and Model Identification</i>, 2017, pp. 1–2.</div>
      </div>
  mla: |2
      <div class="csl-entry">Geerinck, Ruben, et al. “PRODUCTION AND EVALUATION OF COMPOSITES CONSISTING OF WOVEN FABRICS WITH INTEGRATED PRISMATIC SHAPED CAVITIES.” <i>8th International Conference on Composites Testing and Model Identification</i>, edited by SV Lomov et al., KU Leuven, 2017, pp. 1–2.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Geerinck R, De Baere I, De Clercq G, De Corte W, De Clerck K, Ivens J, et al. PRODUCTION AND EVALUATION OF COMPOSITES CONSISTING OF WOVEN FABRICS WITH INTEGRATED PRISMATIC SHAPED CAVITIES. In: Lomov S, Gorbatikh L, Swolfs Y, editors. 8th International Conference on Composites Testing and Model Identification. Leuven: KU Leuven; 2017. p. 1–2.</div>
       </div>
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  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
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    ugent_id: TW11
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  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8556809'
cite:
  apa: |2
      <div class="csl-entry">Schoolaert, E., D’hooge, D., Hoogenboom, R., &#38; De Clerck, K. (2017). Waterborne Electrospinning of Poly(N-Isopropyl Acrylamide) towards Stable Nanofibers. <i>ElectrospinCY_2017</i>, 81–81. Nicosia, Cyprus: University of Cyprus.</div>
  chicago-author-date: |2
      <div class="csl-entry">Schoolaert, Ella, Dagmar D’hooge, Richard Hoogenboom, and Karen De Clerck. 2017. “Waterborne Electrospinning of Poly(N-Isopropyl Acrylamide) towards Stable Nanofibers.” In <i>ElectrospinCY_2017</i>, 81–81. Nicosia, Cyprus: University of Cyprus.</div>
  fwo: |2
      <div class="csl-entry">Schoolaert, Ella, Dagmar D’hooge, Richard Hoogenboom, and Karen De Clerck. 2017. “Waterborne Electrospinning of Poly(N-Isopropyl Acrylamide) towards Stable Nanofibers.” In <i>ElectrospinCY_2017</i>, 81–81. Nicosia, Cyprus: University of Cyprus.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Schoolaert, D. D’hooge, R. Hoogenboom, and K. De Clerck, “Waterborne Electrospinning of Poly(N-Isopropyl Acrylamide) towards Stable Nanofibers,” in <i>ElectrospinCY_2017</i>, Cyprus, 2017, pp. 81–81.</div>
      </div>
  mla: |2
      <div class="csl-entry">Schoolaert, Ella, et al. “Waterborne Electrospinning of Poly(N-Isopropyl Acrylamide) towards Stable Nanofibers.” <i>ElectrospinCY_2017</i>, University of Cyprus, 2017, pp. 81–81.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Schoolaert E, D’hooge D, Hoogenboom R, De Clerck K. Waterborne Electrospinning of Poly(N-Isopropyl Acrylamide) towards Stable Nanofibers. In: ElectrospinCY_2017. Nicosia, Cyprus: University of Cyprus; 2017. p. 81–81.</div>
       </div>
classification: C3
conference:
  end_date: 2017-04-21
  location: Cyprus
  name: ElectrospinCY_2017
  organizer: University of Cyprus
  start_date: 2017-04-19
conference_type: poster
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
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    ugent_id: EB21
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  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
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date_created: 2018-03-21 12:33:02
date_updated: 2026-03-31 14:54:18
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file:
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  name: Waterborne Electrospinning of Poly(N-Isopropyl Acrylamide) towards Stable
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language:
- eng
page:
  count: '1'
  first: '81'
  last: '81'
parent:
  title: ElectrospinCY_2017
project:
- _id: 3G060518
  abstract: <p> Due to their high relative surface area, nanofibrous materials obtained
    via electrospinning have shown to be ideal candidates for high-quality sensors
    in many sectors, including environmental monitoring, food inspection and biomedicine.
    The key challenges remain (i) the controlled incorporation of analyte-sensitive
    dye molecules in the nanofibers via chemical linkage without leaching upon application
    and (ii) the identification of environmentally friendly electrospinning conditions,
    aiming at the production of sensor materials with a long-term water stability.
    In view of these challenges and benefiting from the joint expertise of the applicants
    in material science, chemical engineering, and polymer chemistry, in this project,
    electrospinning of copoly(2-oxazoline) s (PAOx) with immobilized indicator dye
    molecules is explored. Ultimately, large-scale production of water-stable PAOx-based
    nanofibrous sensors will be realized by (i) applying model-based design to control
    the microstructure of individual PAOx chains during the synthesis step and (ii)
    tuning the electrospinning conditions upon nanofiber production with respect to
    water stability and sensor accessibility. Advanced characterization techniques
    will be used to showcase the controlled dye incorporation and to confirm the superior
    behaviour of the obtained sensors, starting from pyrenebased reference dyes opening
    up a wide range of potential indicator dyes and relevant applications. </p>
  end_date: 2021-12-31
  gismo_id: 68c7d40e-8a7e-479e-8231-436053702888
  iweto_id: 3G060518
  publication_count: 2
  start_date: 2018-01-01
  title: Combining material science and chemical engineering design for novel and
    fast optical nanostructured sensors.
publication_status: published
publication_status_sort: 2
publisher:
  location: Nicosia, Cyprus
  name: University of Cyprus
status: public
title: Waterborne Electrospinning of Poly(N-Isopropyl Acrylamide) towards Stable Nanofibers
type: conference
year: '2017'
...
---
_id: '7202753'
abstract:
- 'Today, fiber-reinforced polymer composites are a standard material in applications
  where a high stiffness and strength are required at minimal weight, such as aerospace
  structures, ultralight vehicles, or even flywheels for highly efficient power storage
  systems. Although fiber-reinforced polymer composites show many advantages compared
  to other materials, delamination between reinforcing plies remains a major problem
  limiting further breakthrough. Traditional solutions that have been proposed to
  toughen the interlaminar region between reinforcing plies have already reached their
  limit or have important disadvantages such as a high cost or the need for adapted
  production processes. Recently, electrospun nanofibers have been suggested as a
  more viable interlaminar toughening method. Although the expected benefits are numerous,
  the research on composite laminates enhanced with electrospun nanofibrous veils
  is still very limited. The work that has been done so far is almost exclusively
  focused on interlaminar fracture toughness tests with different kinds of nanofibers,
  where typically a trial and error approach has been used. A thorough understanding
  of the micromechanical fracture mechanisms and the parameters to obtain toughened
  composites has not been reported as of yet, but it is crucial to advance the research
  and design highly damage-resistant composites. This article provides such insight
  by analyzing the nanofiber toughening effect on three different levels for several
  nanofiber types. Only by combining the results from different levels, a thorough
  understanding can be obtained. These levels correspond to the hierarchical nature
  of a composite: the laminate, the interlaminar region, and the matrix resin. It
  is found that each level corresponds to certain mechanisms that result in a toughening
  effect. The bridging of microcracks by electrospun nanofibers is the main toughening
  mechanism resulting in damage resistance. Nevertheless, the way in which the nanofiber
  bridging mechanism expresses itself is different for each scale and dependent on
  parameters linked to a certain scale. The multiscale analysis of the toughening
  mechanisms reported in this paper is therefore crucial for understanding the behavior
  of nanofiber toughened composites, and as such allows for designing novel, damage-resistant,
  nanofiber-toughened materials.'
abstract_full:
- lang: eng
  text: 'Today, fiber-reinforced polymer composites are a standard material in applications
    where a high stiffness and strength are required at minimal weight, such as aerospace
    structures, ultralight vehicles, or even flywheels for highly efficient power
    storage systems. Although fiber-reinforced polymer composites show many advantages
    compared to other materials, delamination between reinforcing plies remains a
    major problem limiting further breakthrough. Traditional solutions that have been
    proposed to toughen the interlaminar region between reinforcing plies have already
    reached their limit or have important disadvantages such as a high cost or the
    need for adapted production processes. Recently, electrospun nanofibers have been
    suggested as a more viable interlaminar toughening method. Although the expected
    benefits are numerous, the research on composite laminates enhanced with electrospun
    nanofibrous veils is still very limited. The work that has been done so far is
    almost exclusively focused on interlaminar fracture toughness tests with different
    kinds of nanofibers, where typically a trial and error approach has been used.
    A thorough understanding of the micromechanical fracture mechanisms and the parameters
    to obtain toughened composites has not been reported as of yet, but it is crucial
    to advance the research and design highly damage-resistant composites. This article
    provides such insight by analyzing the nanofiber toughening effect on three different
    levels for several nanofiber types. Only by combining the results from different
    levels, a thorough understanding can be obtained. These levels correspond to the
    hierarchical nature of a composite: the laminate, the interlaminar region, and
    the matrix resin. It is found that each level corresponds to certain mechanisms
    that result in a toughening effect. The bridging of microcracks by electrospun
    nanofibers is the main toughening mechanism resulting in damage resistance. Nevertheless,
    the way in which the nanofiber bridging mechanism expresses itself is different
    for each scale and dependent on parameters linked to a certain scale. The multiscale
    analysis of the toughening mechanisms reported in this paper is therefore crucial
    for understanding the behavior of nanofiber toughened composites, and as such
    allows for designing novel, damage-resistant, nanofiber-toughened materials.'
affiliation:
- name: Department of Materials Science and Engineering (ceased 1-2-2017)
  path:
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  kind: fullText
  url: http://pubs.acs.org/journal/aamick
article_type: original
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  affiliation:
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  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
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- _id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Sam
  last_name: van der Heijden
  name: Sam van der Heijden
  name_last_first: van der Heijden, Sam
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  first_name: Ives
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  name: Ives De Baere
  name_last_first: De Baere, Ives
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- first_name: Hubert
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  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
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- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '7202753'
cite:
  apa: |2
      <div class="csl-entry">Daelemans, L., van der Heijden, S., De Baere, I., Rahier, H., Van Paepegem, W., &#38; De Clerck, K. (2016). Damage-resistant composites using electrospun nanofibers: a multiscale analysis of the toughening mechanisms. <i>ACS APPLIED MATERIALS &#38; INTERFACES</i>, <i>8</i>(18), 111806–111818. https://doi.org/10.1021/acsami.6b02247</div>
  chicago-author-date: |2
      <div class="csl-entry">Daelemans, Lode, Sam van der Heijden, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2016. “Damage-Resistant Composites Using Electrospun Nanofibers: A Multiscale Analysis of the Toughening Mechanisms.” Edited by Kirk Schanze. <i>ACS APPLIED MATERIALS &#38; INTERFACES</i> 8 (18): 111806–18. https://doi.org/10.1021/acsami.6b02247.</div>
  fwo: |2
      <div class="csl-entry">Daelemans, Lode, Sam van der Heijden, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2016. “Damage-Resistant Composites Using Electrospun Nanofibers: A Multiscale Analysis of the Toughening Mechanisms.” Ed by. Kirk Schanze. <i>ACS APPLIED MATERIALS &#38; INTERFACES</i> 8 (18): 111806–11818. doi:10.1021/acsami.6b02247.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Daelemans, S. van der Heijden, I. De Baere, H. Rahier, W. Van Paepegem, and K. De Clerck, “Damage-resistant composites using electrospun nanofibers: a multiscale analysis of the toughening mechanisms,” <i>ACS APPLIED MATERIALS &#38; INTERFACES</i>, vol. 8, no. 18, pp. 111806–11818, 2016.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daelemans, Lode, et al. “Damage-Resistant Composites Using Electrospun Nanofibers: A Multiscale Analysis of the Toughening Mechanisms.” <i>ACS APPLIED MATERIALS &#38; INTERFACES</i>, edited by Kirk Schanze, vol. 8, no. 18, 2016, pp. 111806–18, doi:10.1021/acsami.6b02247.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daelemans L, van der Heijden S, De Baere I, Rahier H, Van Paepegem W, De Clerck K. Damage-resistant composites using electrospun nanofibers: a multiscale analysis of the toughening mechanisms. Schanze K, editor. ACS APPLIED MATERIALS &#38; INTERFACES. 2016;8(18):111806–18.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2016-05-02 13:41:53
date_updated: 2026-03-31 13:21:57
doi:
- 10.1021/acsami.6b02247
editor:
- first_name: Kirk
  last_name: Schanze
  name: Kirk Schanze
  name_last_first: Schanze, Kirk
external: 0
file:
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  access: restricted
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  name: ACS_appl_mat_int_Toughening_mechanisms_Daelemans_van_der_Heijden_et_al.pdf
  sha256: 42d8c7d3e3729423f711758194786562c90df28cc6d62cc48b8c1560f576f5a3
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handle: http://hdl.handle.net/1854/LU-7202753
issn:
- 1944-8252
issue: '18'
keyword:
- nanofiber bridging
- fracture toughness
- electrospinning
- nanocomposites
- veils
- fiber reinforced polymer
- DELAMINATION
- STRENGTH
- delamination
- INTERLAMINAR FRACTURE-TOUGHNESS
- MODE-I
- CARBON/EPOXY COMPOSITES
- CURING CHARACTERISTICS
- POLYMER DIFFUSION
- PHASE-SEPARATION
- EPOXY MATRIX
- NANOCOMPOSITES
language:
- eng
page:
  first: '111806'
  last: '11818'
parent:
  title: ACS APPLIED MATERIALS & INTERFACES
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: 'Damage-resistant composites using electrospun nanofibers: a multiscale analysis
  of the toughening mechanisms'
type: journalArticle
volume: '8'
wos_id: '000375521000070'
wos_type: Article
year: '2016'
...
---
_id: '8034167'
abstract:
- 'Fiber reinforced polymer composite laminates have become a standard material in
  applications were a high stiffness and high strength are required at minimal weight.
  Nevertheless, delamination between reinforcing plies and brittle matrix fracture
  remain the most important failure modes that are encountered in service for laminated
  composite materials. Although traditional solutions exist to toughen the interlaminar
  region between reinforcing plies, these systems often have important disadvantages
  which makes it too difficult to apply them to industrial scale. Recently, electrospun
  nanofibers have been suggested as an interlaminar toughening method which is much
  more viable as the electrospinning is relatively straightforward and scalable while
  the nanofibers do not affect the composite production process. Nevertheless, although
  the expected benefits are numerous, the research on composite laminates enhanced
  with electrospun nanofibrous veils is still very limited. A thorough understanding
  of the micromechanical fracture mechanisms and the parameters to obtain toughened
  composites have not been determined as of yet, but it is crucial in order to advance
  the research into these materials. In this presentation we would like to provides
  such insights by analyzing the nanofiber toughening effect on three different levels
  simultaneously for several nanofiber types: (i) the nano reinforced epoxy level,
  (ii) the interlaminar level and (iii) the laminate level. It was found that each
  level corresponds to certain (micro)mechanisms that result in a toughening effect.
  The bridging of microcracks by electrospun nanofibers is the main toughening mechanisms
  present on all levels. Nevertheless, the obtained increase in interlaminar fracture
  toughness on the interlaminar and laminate level is dependent on many more parameters
  which have been overlooked until now and are exposed by our multiscale analysis.
  In this presentation emphasis will be given on the effect of the mechanical properties
  of the nanofiber and how it influences the fracture toughness of the composites
  on these different levels.'
abstract_full:
- lang: eng
  text: 'Fiber reinforced polymer composite laminates have become a standard material
    in applications were a high stiffness and high strength are required at minimal
    weight. Nevertheless, delamination between reinforcing plies and brittle matrix
    fracture remain the most important failure modes that are encountered in service
    for laminated composite materials. Although traditional solutions exist to toughen
    the interlaminar region between reinforcing plies, these systems often have important
    disadvantages which makes it too difficult to apply them to industrial scale.
    Recently, electrospun nanofibers have been suggested as an interlaminar toughening
    method which is much more viable as the electrospinning is relatively straightforward
    and scalable while the nanofibers do not affect the composite production process.
    Nevertheless, although the expected benefits are numerous, the research on composite
    laminates enhanced with electrospun nanofibrous veils is still very limited. A
    thorough understanding of the micromechanical fracture mechanisms and the parameters
    to obtain toughened composites have not been determined as of yet, but it is crucial
    in order to advance the research into these materials. In this presentation we
    would like to provides such insights by analyzing the nanofiber toughening effect
    on three different levels simultaneously for several nanofiber types: (i) the
    nano reinforced epoxy level, (ii) the interlaminar level and (iii) the laminate
    level. It was found that each level corresponds to certain (micro)mechanisms that
    result in a toughening effect. The bridging of microcracks by electrospun nanofibers
    is the main toughening mechanisms present on all levels. Nevertheless, the obtained
    increase in interlaminar fracture toughness on the interlaminar and laminate level
    is dependent on many more parameters which have been overlooked until now and
    are exposed by our multiscale analysis. In this presentation emphasis will be
    given on the effect of the mechanical properties of the nanofiber and how it influences
    the fracture toughness of the composites on these different levels.'
affiliation:
- name: Department of Materials Science and Engineering (ceased 1-2-2017)
  path:
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  url: http://conference.unisalento.it/ocs/index.php/electrospin/electrospin2016
author:
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  affiliation:
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    path:
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  biblio_id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Sam
  last_name: van der Heijden
  name: Sam van der Heijden
  name_last_first: van der Heijden, Sam
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  first_name: Lode
  last_name: Daelemans
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  affiliation:
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    ugent_id: TW11
  biblio_id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Ives
  last_name: De Baere
  name: Ives De Baere
  name_last_first: De Baere, Ives
  orcid_id: 0000-0002-6846-0981
  ugent_id:
  - '801001866905'
  - '977854465771'
- first_name: Hubert
  last_name: Rahier
  name: Hubert Rahier
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- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
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  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8034167'
cite:
  apa: |2
      <div class="csl-entry">van der Heijden, S., Daelemans, L., De Baere, I., Rahier, H., Van Paepegem, W., &#38; De Clerck, K. (2016). TOWARDS DAMAGE RESISTANT COMPOSITES USING ELECTROSPUN NANOFIBERS: A MULTISCALE ANALYSIS OF THE TOUGHENING MECHANISMS. In D. Pisignano, L. Persano, &#38; A. Camposeo (Eds.), <i>4th International Conference on Electrospinning</i> (pp. 1–1). Otranto, Italy: Universita del Salento.</div>
  chicago-author-date: |2
      <div class="csl-entry">Heijden, Sam van der, Lode Daelemans, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2016. “TOWARDS DAMAGE RESISTANT COMPOSITES USING ELECTROSPUN NANOFIBERS: A MULTISCALE ANALYSIS OF THE TOUGHENING MECHANISMS.” In <i>4th International Conference on Electrospinning</i>, edited by Dario Pisignano, Luana Persano, and Andrea Camposeo, 1–1. Otranto, Italy: Universita del Salento.</div>
  fwo: |2
      <div class="csl-entry">van der Heijden, Sam, Lode Daelemans, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2016. “TOWARDS DAMAGE RESISTANT COMPOSITES USING ELECTROSPUN NANOFIBERS: A MULTISCALE ANALYSIS OF THE TOUGHENING MECHANISMS.” In <i>4th International Conference on Electrospinning</i>, ed by. Dario Pisignano, Luana Persano, and Andrea Camposeo, 1–1. Otranto, Italy: Universita del Salento.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. van der Heijden, L. Daelemans, I. De Baere, H. Rahier, W. Van Paepegem, and K. De Clerck, “TOWARDS DAMAGE RESISTANT COMPOSITES USING ELECTROSPUN NANOFIBERS: A MULTISCALE ANALYSIS OF THE TOUGHENING MECHANISMS,” in <i>4th International Conference on Electrospinning</i>, Otranto, Italy, 2016, pp. 1–1.</div>
      </div>
  mla: |2
      <div class="csl-entry">van der Heijden, Sam, et al. “TOWARDS DAMAGE RESISTANT COMPOSITES USING ELECTROSPUN NANOFIBERS: A MULTISCALE ANALYSIS OF THE TOUGHENING MECHANISMS.” <i>4th International Conference on Electrospinning</i>, edited by Dario Pisignano et al., Universita del Salento, 2016, pp. 1–1.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">van der Heijden S, Daelemans L, De Baere I, Rahier H, Van Paepegem W, De Clerck K. TOWARDS DAMAGE RESISTANT COMPOSITES USING ELECTROSPUN NANOFIBERS: A MULTISCALE ANALYSIS OF THE TOUGHENING MECHANISMS. In: Pisignano D, Persano L, Camposeo A, editors. 4th International Conference on Electrospinning. Otranto, Italy: Universita del Salento; 2016. p. 1–1.</div>
       </div>
classification: C3
conference:
  end_date: 2016-07-01
  location: Otranto, Italy
  name: 4th International Conference on Electrospinning (ELECTROSPIN 2016)
  start_date: 2016-06-28
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2016-07-12 11:58:08
date_updated: 2026-03-31 13:21:12
editor:
- first_name: Dario
  last_name: Pisignano
  name: Dario Pisignano
  name_last_first: Pisignano, Dario
- first_name: Luana
  last_name: Persano
  name: Luana Persano
  name_last_first: Persano, Luana
- first_name: Andrea
  last_name: Camposeo
  name: Andrea Camposeo
  name_last_first: Camposeo, Andrea
external: 0
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  access: restricted
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  kind: fullText
  name: 1108__VanderHeijden_.pdf
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  url: https://biblio.ugent.be/publication/8034167/file/8034173.pdf
- _id: '8034327'
  access: restricted
  content_type: application/pdf
  kind: toc
  name: Electrospin2016_Program_Posters_Final.pdf
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  url: https://biblio.ugent.be/publication/8034167/file/8034327.pdf
handle: http://hdl.handle.net/1854/LU-8034167
language:
- eng
page:
  first: '1'
  last: '1'
parent:
  title: 4th International Conference on Electrospinning
publication_status: published
publication_status_sort: 2
publisher:
  location: Otranto, Italy
  name: Universita del Salento
status: public
subject:
- Technology and Engineering
title: 'TOWARDS DAMAGE RESISTANT COMPOSITES USING ELECTROSPUN NANOFIBERS: A MULTISCALE
  ANALYSIS OF THE TOUGHENING MECHANISMS'
type: conference
year: '2016'
...
---
_id: '8035083'
abstract:
- "Composites, whose use has increased significantly the last decades due to their
  excellent properties, are prone to failure over time, like any other material. Self-healing
  materials are being developed to extend their lifetime. Today, most self-healing
  systems are based on the introduction of microcapsules. Although a lot of progress
  has been made, the effect of introducing such healing feature on the mechanical
  properties of the neat material is mainly overlooked, with the microcapsules creating
  potential artefacts in the neat matrix material. The use of a nanovascular network
  may show a better solution to apply self-healing systems.\r\nTherefore in the present
  paper we created a nanovascular network by pullulan sacrificial electrospun nanofibers,
  analysed the flexural properties and compared them to those of the neat matrix material
  as well as reported microcapsule-based materials. A detailed parameter analysis
  of the electrospinning process allowed for the production of tailored pullulan nanofibers.
  The introduction of the pullulan nanofibers showed no effect on the strength and
  modulus of the neat epoxy. On removal of the pullulan, the properties of the resultant
  nanovascular epoxy matrix system were somewhat reduced relative to the neat epoxy
  with an effect in proportion to the volume fraction and the diameter of the channels.
  However very interesting, the decrease of the mechanical properties of the nanovascular
  epoxy is far lower than on the introduction of microcapsules and opens potentials
  for a more appropriate introduction of self-healing systems in composite materials."
abstract_full:
- lang: eng
  text: "Composites, whose use has increased significantly the last decades due to
    their excellent properties, are prone to failure over time, like any other material.
    Self-healing materials are being developed to extend their lifetime. Today, most
    self-healing systems are based on the introduction of microcapsules. Although
    a lot of progress has been made, the effect of introducing such healing feature
    on the mechanical properties of the neat material is mainly overlooked, with the
    microcapsules creating potential artefacts in the neat matrix material. The use
    of a nanovascular network may show a better solution to apply self-healing systems.\r\nTherefore
    in the present paper we created a nanovascular network by pullulan sacrificial
    electrospun nanofibers, analysed the flexural properties and compared them to
    those of the neat matrix material as well as reported microcapsule-based materials.
    A detailed parameter analysis of the electrospinning process allowed for the production
    of tailored pullulan nanofibers. The introduction of the pullulan nanofibers showed
    no effect on the strength and modulus of the neat epoxy. On removal of the pullulan,
    the properties of the resultant nanovascular epoxy matrix system were somewhat
    reduced relative to the neat epoxy with an effect in proportion to the volume
    fraction and the diameter of the channels. However very interesting, the decrease
    of the mechanical properties of the nanovascular epoxy is far lower than on the
    introduction of microcapsules and opens potentials for a more appropriate introduction
    of self-healing systems in composite materials."
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
alternative_location:
- access: open
  kind: fullText
  url: http://conference.unisalento.it/ocs/index.php/electrospin/electrospin2016
author:
- _id: 23F44FA8-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 23F44FA8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ana
  last_name: Torre Muruzabal
  name: Ana Torre Muruzabal
  name_last_first: Torre Muruzabal, Ana
  ugent_id:
  - '000091854350'
  - '091009031436'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- first_name: G
  last_name: Van Assche
  name: G Van Assche
  name_last_first: Van Assche, G
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- first_name: Hubert
  last_name: Rahier
  name: Hubert Rahier
  name_last_first: Rahier, Hubert
biblio_id: '8035083'
cite:
  apa: |2
      <div class="csl-entry">Torre Muruzabal, A., Daelemans, L., Van Assche, G., De Clerck, K., &#38; Rahier, H. (2016). Electrospinning of sacrificial nanofibers for the creation of a self-healing nanovascular network and its effect on the properties of an epoxy matrix. In D. Pisignano, L. Persano, &#38; A. Camposeo (Eds.), <i>4th International Conference on Electrospinning</i> (pp. 1–1). Otranto, Italy: Universita del Salento.</div>
  chicago-author-date: |2
      <div class="csl-entry">Torre Muruzabal, Ana, Lode Daelemans, G Van Assche, Karen De Clerck, and Hubert Rahier. 2016. “Electrospinning of Sacrificial Nanofibers for the Creation of a Self-Healing Nanovascular Network and Its Effect on the Properties of an Epoxy Matrix.” In <i>4th International Conference on Electrospinning</i>, edited by Dario Pisignano, Luana Persano, and Andrea Camposeo, 1–1. Otranto, Italy: Universita del Salento.</div>
  fwo: |2
      <div class="csl-entry">Torre Muruzabal, Ana, Lode Daelemans, G Van Assche, Karen De Clerck, and Hubert Rahier. 2016. “Electrospinning of Sacrificial Nanofibers for the Creation of a Self-Healing Nanovascular Network and Its Effect on the Properties of an Epoxy Matrix.” In <i>4th International Conference on Electrospinning</i>, ed by. Dario Pisignano, Luana Persano, and Andrea Camposeo, 1–1. Otranto, Italy: Universita del Salento.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">A. Torre Muruzabal, L. Daelemans, G. Van Assche, K. De Clerck, and H. Rahier, “Electrospinning of sacrificial nanofibers for the creation of a self-healing nanovascular network and its effect on the properties of an epoxy matrix,” in <i>4th International Conference on Electrospinning</i>, Otranto, Italy, 2016, pp. 1–1.</div>
      </div>
  mla: |2
      <div class="csl-entry">Torre Muruzabal, Ana, et al. “Electrospinning of Sacrificial Nanofibers for the Creation of a Self-Healing Nanovascular Network and Its Effect on the Properties of an Epoxy Matrix.” <i>4th International Conference on Electrospinning</i>, edited by Dario Pisignano et al., Universita del Salento, 2016, pp. 1–1.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Torre Muruzabal A, Daelemans L, Van Assche G, De Clerck K, Rahier H. Electrospinning of sacrificial nanofibers for the creation of a self-healing nanovascular network and its effect on the properties of an epoxy matrix. In: Pisignano D, Persano L, Camposeo A, editors. 4th International Conference on Electrospinning. Otranto, Italy: Universita del Salento; 2016. p. 1–1.</div>
       </div>
classification: C3
conference:
  end_date: 2016-07-01
  location: Otranto, Italy
  name: 4th International Conference on Electrospinning (ELECTROSPIN 2016)
  start_date: 2016-06-28
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2016-07-12 16:34:14
date_updated: 2026-03-31 13:21:12
editor:
- first_name: Dario
  last_name: Pisignano
  name: Dario Pisignano
  name_last_first: Pisignano, Dario
- first_name: Luana
  last_name: Persano
  name: Luana Persano
  name_last_first: Persano, Luana
- first_name: Andrea
  last_name: Camposeo
  name: Andrea Camposeo
  name_last_first: Camposeo, Andrea
external: 0
file:
- _id: '8035138'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: 1211__Torre-Muruzabal_.pdf
  sha256: 89fd0d7309a9f93921e39aaa6475f90e7910be94b553cf2abcca0bafc6ab0ba1
  size: '87232'
  thumbnail_url: https://biblio.ugent.be/publication/8035083/file/8035138/thumbnail.png
  url: https://biblio.ugent.be/publication/8035083/file/8035138.pdf
- _id: '8035144'
  access: restricted
  content_type: application/pdf
  kind: toc
  name: Electrospin2016_Program_Posters_Final.pdf
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  url: https://biblio.ugent.be/publication/8035083/file/8035144.pdf
handle: http://hdl.handle.net/1854/LU-8035083
language:
- eng
page:
  first: '1'
  last: '1'
parent:
  title: 4th International Conference on Electrospinning
publication_status: published
publication_status_sort: 2
publisher:
  location: Otranto, Italy
  name: Universita del Salento
status: public
subject:
- Technology and Engineering
title: Electrospinning of sacrificial nanofibers for the creation of a self-healing
  nanovascular network and its effect on the properties of an epoxy matrix
type: conference
year: '2016'
...
---
_id: '8556785'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
article_type: original
author:
- first_name: Godfred
  last_name: Darko
  name: Godfred Darko
  name_last_first: Darko, Godfred
- _id: 0D9D0B96-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0D9D0B96-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Annelies
  last_name: Goethals
  name: Annelies Goethals
  name_last_first: Goethals, Annelies
  ugent_id:
  - '002004215111'
  - '802000839185'
  - '971337473685'
- first_name: Nelson
  last_name: Torto
  name: Nelson Torto
  name_last_first: Torto, Nelson
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8556785'
cite:
  apa: |2
      <div class="csl-entry">Darko, G., Goethals, A., Torto, N., &#38; De Clerck, K. (2016). Steady state electrospinning of uniform polyethersulfone nanofibers using a non-heated solvent mixture. <i>APPLIED NANOSCIENCE</i>, <i>6</i>(6), 837–845. https://doi.org/10.1007/s13204-015-0504-9</div>
  bof: |2-
      <div class="csl-entry">Darko, Godfred, Annelies Goethals, Nelson Torto, and Karen De Clerck. 2016. “Steady State Electrospinning of Uniform Polyethersulfone Nanofibers Using a Non-Heated Solvent Mixture.” <i>APPLIED NANOSCIENCE</i> 6 (6): 837–845. doi:10.1007/s13204-015-0504-9.</div>
    <div><i>Impact factor: 3.325, category: NANOSCIENCE & NANOTECHNOLOGY, rank: 35/87, quartile: 2.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Darko, Godfred, Annelies Goethals, Nelson Torto, and Karen De Clerck. 2016. “Steady State Electrospinning of Uniform Polyethersulfone Nanofibers Using a Non-Heated Solvent Mixture.” <i>APPLIED NANOSCIENCE</i> 6 (6): 837–45. https://doi.org/10.1007/s13204-015-0504-9.</div>
  fwo: |2
      <div class="csl-entry">Darko, Godfred, Annelies Goethals, Nelson Torto, and Karen De Clerck. 2016. “Steady State Electrospinning of Uniform Polyethersulfone Nanofibers Using a Non-Heated Solvent Mixture.” <i>APPLIED NANOSCIENCE</i> 6 (6): 837–845. doi:10.1007/s13204-015-0504-9.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">G. Darko, A. Goethals, N. Torto, and K. De Clerck, “Steady state electrospinning of uniform polyethersulfone nanofibers using a non-heated solvent mixture,” <i>APPLIED NANOSCIENCE</i>, vol. 6, no. 6, pp. 837–845, 2016.</div>
      </div>
  mla: |2
      <div class="csl-entry">Darko, Godfred, et al. “Steady State Electrospinning of Uniform Polyethersulfone Nanofibers Using a Non-Heated Solvent Mixture.” <i>APPLIED NANOSCIENCE</i>, vol. 6, no. 6, Springer Nature, 2016, pp. 837–45, doi:10.1007/s13204-015-0504-9.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Darko G, Goethals A, Torto N, De Clerck K. Steady state electrospinning of uniform polyethersulfone nanofibers using a non-heated solvent mixture. APPLIED NANOSCIENCE. 2016;6(6):837–45.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2018-03-21 10:32:04
date_updated: 2023-05-08 11:47:03
doi:
- 10.1007/s13204-015-0504-9
external: 0
file:
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  access: restricted
  content_type: application/pdf
  kind: fullText
  name: 10.1007_s13204-015-0504-9.pdf
  sha256: 759cabb577a7ea2da4aea0b760f08630e3f41f00a4eba06332bb5232e460ca81
  size: '1425695'
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  url: https://biblio.ugent.be/publication/8556785/file/8556786.pdf
handle: http://hdl.handle.net/1854/LU-8556785
issn:
- 2190-5509
- 2190-5517
issue: '6'
jcr:
  category: NANOSCIENCE & NANOTECHNOLOGY
  category_decile: 5
  category_quartile: 2
  category_rank: 35/87
  category_vigintile: 9
  eigenfactor: 0.00262
  immediacy_index: 0.481
  impact_factor: 3.325
  total_cites: 1287
keyword:
- AQUEOUS-SOLUTION
- MEMBRANE
- FIBERS
- JET
- FABRICATION
- MORPHOLOGY
- SYSTEM
language:
- eng
page:
  count: '9'
  first: '837'
  last: '845'
parent:
  title: APPLIED NANOSCIENCE
publication_status: published
publication_status_sort: 2
publisher:
  name: Springer Nature
status: public
title: Steady state electrospinning of uniform polyethersulfone nanofibers using a
  non-heated solvent mixture
type: journalArticle
volume: '6'
wos_id: '000381937200006'
wos_type: Article
year: '2016'
...
---
_id: '8109195'
abstract:
- Fast-response and easy-to-visualize colorimetric nanofibrous sensors show great
  potential for visual and continuous control of external stimuli. This makes them
  applicable in many fields, including wound management, where nanofibers serve as
  an optimal support material. In this paper, fast responding and user-friendly biocompatible,
  halochromic nanofibrous sensors are successfully fabricated by incorporating the
  halochromic dyes Methyl Red and Rose Bengal inside a chitosan/poly(e-caprolactone)
  nanofibrous matrix. The commonly applied dye-doping technique frequently suffers
  from dye-leaching, which not only reduces the sensor's sensitivity over time but
  can also induce adverse effects. Therefore, in this work, dye-immobilization is
  accomplished by covalent dye-modification of chitosan before blend electrospinning.
  It is shown that efficient dye-immobilization with minimal dye-leaching is achieved
  within the biomedical relevant pH-region, without significantly affecting the halochromic
  behavior of the dyes. This is in contrast to the commonly applied dye-doping technique
  and other dye-immobilization strategies stated in literature. Moreover, the nanofibers
  show high and reproducible pH-sensitivity by providing an instantaneous color change
  in response to change in pH in aqueous medium and when exposed to acidic or basic
  gases. The results stated within this work are of particular interest for natural
  (bio) polymers for which covalent modification combined with electrospinning provides
  a universal method for versatile dye-functionalization of large area nanofibrous
  membranes with proper dye-immobilization.
abstract_full:
- lang: eng
  text: Fast-response and easy-to-visualize colorimetric nanofibrous sensors show
    great potential for visual and continuous control of external stimuli. This makes
    them applicable in many fields, including wound management, where nanofibers serve
    as an optimal support material. In this paper, fast responding and user-friendly
    biocompatible, halochromic nanofibrous sensors are successfully fabricated by
    incorporating the halochromic dyes Methyl Red and Rose Bengal inside a chitosan/poly(e-caprolactone)
    nanofibrous matrix. The commonly applied dye-doping technique frequently suffers
    from dye-leaching, which not only reduces the sensor's sensitivity over time but
    can also induce adverse effects. Therefore, in this work, dye-immobilization is
    accomplished by covalent dye-modification of chitosan before blend electrospinning.
    It is shown that efficient dye-immobilization with minimal dye-leaching is achieved
    within the biomedical relevant pH-region, without significantly affecting the
    halochromic behavior of the dyes. This is in contrast to the commonly applied
    dye-doping technique and other dye-immobilization strategies stated in literature.
    Moreover, the nanofibers show high and reproducible pH-sensitivity by providing
    an instantaneous color change in response to change in pH in aqueous medium and
    when exposed to acidic or basic gases. The results stated within this work are
    of particular interest for natural (bio) polymers for which covalent modification
    combined with electrospinning provides a universal method for versatile dye-functionalization
    of large area nanofibrous membranes with proper dye-immobilization.
affiliation:
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
alternative_title:
- 'Blend electrospinning of dye-functionalized chitosan and poly(epsilon-caprolactone)
  : towards biocompatible pH-sensors'
article_type: original
author:
- _id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
  ugent_id:
  - '000100318410'
  - '802002133935'
  - '975208259089'
- _id: 0B227202-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0B227202-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Iline
  last_name: Steyaert
  name: Iline Steyaert
  name_last_first: Steyaert, Iline
  ugent_id:
  - '000060129993'
  - '802001072793'
  - '979860756278'
- _id: 0267A880-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0267A880-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Gertjan
  last_name: Vancoillie
  name: Gertjan Vancoillie
  name_last_first: Vancoillie, Gertjan
  ugent_id:
  - '000060487479'
  - '802001083911'
  - '973415065357'
- _id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
  orcid_id: 0000-0002-1281-2968
  ugent_id:
  - '000070582957'
  - '975000449525'
- _id: F55DDC50-82C3-11E2-BB4A-B55F10BDE39D
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: F55DDC50-82C3-11E2-BB4A-B55F10BDE39D
  first_name: Kathleen
  last_name: Lava
  name: Kathleen Lava
  name_last_first: Lava, Kathleen
  ugent_id:
  - '802001421589'
  - '974160946756'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8109195'
cite:
  apa: |2
      <div class="csl-entry">Schoolaert, E., Steyaert, I., Vancoillie, G., Geltmeyer, J., Lava, K., Hoogenboom, R., &#38; De Clerck, K. (2016). Blend electrospinning of dye-functionalized chitosan and poly(ε-caprolactone) : towards biocompatible pH-sensors. <i>JOURNAL OF MATERIALS CHEMISTRY B</i>, <i>4</i>(26), 4507–4516. https://doi.org/10.1039/c6tb00639f</div>
  chicago-author-date: |2
      <div class="csl-entry">Schoolaert, Ella, Iline Steyaert, Gertjan Vancoillie, Jozefien Geltmeyer, Kathleen Lava, Richard Hoogenboom, and Karen De Clerck. 2016. “Blend Electrospinning of Dye-Functionalized Chitosan and Poly(ε-Caprolactone) : Towards Biocompatible PH-Sensors.” <i>JOURNAL OF MATERIALS CHEMISTRY B</i> 4 (26): 4507–16. https://doi.org/10.1039/c6tb00639f.</div>
  fwo: |2
      <div class="csl-entry">Schoolaert, Ella, Iline Steyaert, Gertjan Vancoillie, Jozefien Geltmeyer, Kathleen Lava, Richard Hoogenboom, and Karen De Clerck. 2016. “Blend Electrospinning of Dye-Functionalized Chitosan and Poly(ε-Caprolactone) : Towards Biocompatible PH-Sensors.” <i>JOURNAL OF MATERIALS CHEMISTRY B</i> 4 (26): 4507–4516. doi:10.1039/c6tb00639f.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Schoolaert <i>et al.</i>, “Blend electrospinning of dye-functionalized chitosan and poly(ε-caprolactone) : towards biocompatible pH-sensors,” <i>JOURNAL OF MATERIALS CHEMISTRY B</i>, vol. 4, no. 26, pp. 4507–4516, 2016.</div>
      </div>
  mla: |2
      <div class="csl-entry">Schoolaert, Ella, et al. “Blend Electrospinning of Dye-Functionalized Chitosan and Poly(ε-Caprolactone) : Towards Biocompatible PH-Sensors.” <i>JOURNAL OF MATERIALS CHEMISTRY B</i>, vol. 4, no. 26, 2016, pp. 4507–16, doi:10.1039/c6tb00639f.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Schoolaert E, Steyaert I, Vancoillie G, Geltmeyer J, Lava K, Hoogenboom R, et al. Blend electrospinning of dye-functionalized chitosan and poly(ε-caprolactone) : towards biocompatible pH-sensors. JOURNAL OF MATERIALS CHEMISTRY B. 2016;4(26):4507–16.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2016-10-11 09:46:34
date_updated: 2026-03-31 14:27:46
doi:
- 10.1039/c6tb00639f
external: 0
file:
- _id: '8109230'
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  content_type: application/pdf
  kind: fullText
  name: dye-functionalized_chitosan_Journal_of_Materials_Chemistry_Schoolaert_et_al.pdf
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  url: https://biblio.ugent.be/publication/8109195/file/8109230.pdf
- _id: '8557396'
  access: open
  content_type: application/pdf
  kind: fullText
  name: Revised manuscript_versie biblio.pdf
  sha256: a7efaab096176a2890177839819d830c0b112e9b5176b4f6fcde2d5e796628f6
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  thumbnail_url: https://biblio.ugent.be/publication/8109195/file/8557396/thumbnail.png
  url: https://biblio.ugent.be/publication/8109195/file/8557396.pdf
handle: http://hdl.handle.net/1854/LU-8109195
issn:
- 2050-750X
issue: '26'
jcr:
  category: MATERIALS SCIENCE, BIOMATERIALS
  category_decile: 2
  category_quartile: 1
  category_rank: 6/33
  category_vigintile: 4
  eigenfactor: 0.03403
  immediacy_index: 0.802
  impact_factor: 4.543
  impact_factor_5yr: 4.787
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 3
  prev_impact_factor: 4.872
  total_cites: 12650
keyword:
- POLYCAPROLACTONE
- DESIGN
- CELLULOSE
- DERIVATIVES
- NANOFIBERS
- AZO-DYES
- OPTICAL SENSORS
- NITRAZINE YELLOW
- ROSE-BENGAL
- CELLULOSE
- DERIVATIVES
- DESIGN
- IMMOBILIZATION
- POLYCAPROLACTONE
- IMMOBILIZATION
language:
- eng
page:
  first: '4507'
  last: '4516'
parent:
  short_title: J. Mat. Chem. B
  title: JOURNAL OF MATERIALS CHEMISTRY B
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: 'Blend electrospinning of dye-functionalized chitosan and poly(ε-caprolactone)
  : towards biocompatible pH-sensors'
type: journalArticle
volume: '4'
wos_id: '000379486800003'
wos_type: Article
year: '2016'
...
---
_id: '8604752'
abstract:
- "The development of so-called smart materials, i.e. materials that are able to sense
  and respond to changes in their\r\nenvironment, is a hot topic in today’s research.
  Halochromic dyes show high potential within this field as\r\npH-changes are visualized
  by a fast and simple change of color.[1] A smart halochromic sensor can be\r\nfabricated
  by incorporating such halochromic dye into a suitable matrix material, resulting
  in a custom,\r\nuser-friendly product, providing clear information in a non-destructive
  way. Polymer nanofibers are a very well\r\nsuited matrix material since nanofibrous
  nonwovens are characterized by a high specific surface area, small pore\r\nsize,
  high pore volume and high absorbance capacity, making them ideal candidates for
  advanced,\r\nfast-responding sensor applications.[2] Dye-immobilization is, currently,
  a major challenge in nanofibrous\r\nsensor design as dye-doped solvent electrospinning,
  i.e.the most commonly applied processing technique, suffers\r\nfrom leaching of
  the dye out of the nanofibrous network.[3] Our research focuses on dye-immobilization
  through\r\ncovalent dye-modification, where the polymer backbone is modified with
  a halochromic dye before the\r\nelectrospinning process, providing a covalent linkage
  between the dye and the polymer. This technique is of\r\nparticular interest for
  the application of natural (bio)polymers, such as chitosan.[4] The nanofibrous structure
  is\r\nideally produced via blend electrospinning, which allows for the selection
  of a suitable carrier polymer that is\r\nwidely available and well electrospinnable
  along with an appropriate amount of dye-modified polymer for the\r\nspecific application.
  Of course, the question arises, if the modification of the polymer has a significant
  influence\r\non the electrospinning process and, moreover, if the halochromic properties
  of the dye are maintained within the\r\nnanofibrous network. Within our research,
  chitosan was successfully modified and blend electrospun for the\r\nproduction of
  halochromic nanofibers. We found that the covalent modification could both positively
  as well as\r\nnegatively affect the electrospinnability of the polymer. Additionally,
  dye-migration was significantly reduced\r\nwithin the entire pH-range, without majorly
  affecting the halochromic properties of the dyes. Future work will\r\ninclude the
  selection of a dye with a suitable pH-range for the intended application, without
  negatively affecting\r\nthe electrospinning process. Nevertheless, our research
  already showed the great potential of the combination of\r\ncovalent modification
  with electrospinning, especially for natural (bio)polymers, as it provides a universal\r\nmethod
  for versatile dye-functionalization of large-area nanofibrous nonwovens."
abstract_full:
- lang: eng
  text: "The development of so-called smart materials, i.e. materials that are able
    to sense and respond to changes in their\r\nenvironment, is a hot topic in today’s
    research. Halochromic dyes show high potential within this field as\r\npH-changes
    are visualized by a fast and simple change of color.[1] A smart halochromic sensor
    can be\r\nfabricated by incorporating such halochromic dye into a suitable matrix
    material, resulting in a custom,\r\nuser-friendly product, providing clear information
    in a non-destructive way. Polymer nanofibers are a very well\r\nsuited matrix
    material since nanofibrous nonwovens are characterized by a high specific surface
    area, small pore\r\nsize, high pore volume and high absorbance capacity, making
    them ideal candidates for advanced,\r\nfast-responding sensor applications.[2]
    Dye-immobilization is, currently, a major challenge in nanofibrous\r\nsensor design
    as dye-doped solvent electrospinning, i.e.the most commonly applied processing
    technique, suffers\r\nfrom leaching of the dye out of the nanofibrous network.[3]
    Our research focuses on dye-immobilization through\r\ncovalent dye-modification,
    where the polymer backbone is modified with a halochromic dye before the\r\nelectrospinning
    process, providing a covalent linkage between the dye and the polymer. This technique
    is of\r\nparticular interest for the application of natural (bio)polymers, such
    as chitosan.[4] The nanofibrous structure is\r\nideally produced via blend electrospinning,
    which allows for the selection of a suitable carrier polymer that is\r\nwidely
    available and well electrospinnable along with an appropriate amount of dye-modified
    polymer for the\r\nspecific application. Of course, the question arises, if the
    modification of the polymer has a significant influence\r\non the electrospinning
    process and, moreover, if the halochromic properties of the dye are maintained
    within the\r\nnanofibrous network. Within our research, chitosan was successfully
    modified and blend electrospun for the\r\nproduction of halochromic nanofibers.
    We found that the covalent modification could both positively as well as\r\nnegatively
    affect the electrospinnability of the polymer. Additionally, dye-migration was
    significantly reduced\r\nwithin the entire pH-range, without majorly affecting
    the halochromic properties of the dyes. Future work will\r\ninclude the selection
    of a dye with a suitable pH-range for the intended application, without negatively
    affecting\r\nthe electrospinning process. Nevertheless, our research already showed
    the great potential of the combination of\r\ncovalent modification with electrospinning,
    especially for natural (bio)polymers, as it provides a universal\r\nmethod for
    versatile dye-functionalization of large-area nanofibrous nonwovens."
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
author:
- _id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
  ugent_id:
  - '000100318410'
  - '802002133935'
  - '975208259089'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8604752'
cite:
  apa: |2
      <div class="csl-entry">Schoolaert, E., Hoogenboom, R., &#38; De Clerck, K. (2016). Blend electrospinning of dye-functionalized chitosan and polycaprolactoe : towards biocompatible pH-sensors. <i>BPG Annual Meeting 2016_Book of Abstracts</i>, 129–129.</div>
  bof: |2
      <div class="csl-entry">Schoolaert, Ella, Richard Hoogenboom, and Karen De Clerck. 2016. “Blend Electrospinning of Dye-Functionalized Chitosan and Polycaprolactoe : Towards Biocompatible PH-Sensors.” In <i>BPG Annual Meeting 2016_Book of Abstracts</i>, 129–129.</div>
  chicago-author-date: |2
      <div class="csl-entry">Schoolaert, Ella, Richard Hoogenboom, and Karen De Clerck. 2016. “Blend Electrospinning of Dye-Functionalized Chitosan and Polycaprolactoe : Towards Biocompatible PH-Sensors.” In <i>BPG Annual Meeting 2016_Book of Abstracts</i>, 129–129.</div>
  fwo: |2
      <div class="csl-entry">Schoolaert, Ella, Richard Hoogenboom, and Karen De Clerck. 2016. “Blend Electrospinning of Dye-Functionalized Chitosan and Polycaprolactoe : Towards Biocompatible PH-Sensors.” In <i>BPG Annual Meeting 2016_Book of Abstracts</i>, 129–129.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Schoolaert, R. Hoogenboom, and K. De Clerck, “Blend electrospinning of dye-functionalized chitosan and polycaprolactoe : towards biocompatible pH-sensors,” in <i>BPG Annual Meeting 2016_Book of Abstracts</i>, Hasselt, Belgium, 2016, pp. 129–129.</div>
      </div>
  mla: |2
      <div class="csl-entry">Schoolaert, Ella, et al. “Blend Electrospinning of Dye-Functionalized Chitosan and Polycaprolactoe : Towards Biocompatible PH-Sensors.” <i>BPG Annual Meeting 2016_Book of Abstracts</i>, 2016, pp. 129–129.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Schoolaert E, Hoogenboom R, De Clerck K. Blend electrospinning of dye-functionalized chitosan and polycaprolactoe : towards biocompatible pH-sensors. In: BPG Annual Meeting 2016_Book of Abstracts. 2016. p. 129–129.</div>
       </div>
classification: C3
conference:
  end_date: 2016-05-24
  location: Hasselt, Belgium
  name: BPG Annual Meeting 2016
  start_date: 2016-05-23
conference_type: poster
copyright_statement: No license (in copyright)
created_by:
  _id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
  ugent_id:
  - '000100318410'
  - '802002133935'
  - '975208259089'
date_created: 2019-02-27 15:34:22
date_updated: 2023-05-08 11:49:18
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handle: http://hdl.handle.net/1854/LU-8604752
jcr: {}
keyword:
- Nanofibers
- Electrospinning
- stimuli-sensitive dyes
- optical sensor
language:
- und
page:
  first: '129'
  last: '129'
parent:
  title: BPG Annual Meeting 2016_Book of Abstracts
publication_status: published
publication_status_sort: 2
series_title: BPG Annual Meeting 2016_Book of Abstracts
status: public
subject:
- Technology and Engineering
title: 'Blend electrospinning of dye-functionalized chitosan and polycaprolactoe :
  towards biocompatible pH-sensors'
type: conference
year: '2016'
...
---
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article_type: original
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  biblio_id: 018BF682-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Thierry
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  first_name: Richard
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  name: Richard Hoogenboom
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  first_name: Veronique
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  name: Veronique Van Speybroeck
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  first_name: Karen
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biblio_id: '6998491'
cite:
  apa: |2
      <div class="csl-entry">De Meyer, T., Steyaert, I., Hemelsoet, K., Hoogenboom, R., Van Speybroeck, V., &#38; De Clerck, K. (2016). Halochromic properties of sulfonphthaleine dyes in a textile environment: the influence of substituents. <i>DYES AND PIGMENTS</i>, <i>124</i>, 249–257. https://doi.org/10.1016/j.dyepig.2015.09.007</div>
  chicago-author-date: |2
      <div class="csl-entry">De Meyer, Thierry, Iline Steyaert, Karen Hemelsoet, Richard Hoogenboom, Veronique Van Speybroeck, and Karen De Clerck. 2016. “Halochromic Properties of Sulfonphthaleine Dyes in a Textile Environment: The Influence of Substituents.” <i>DYES AND PIGMENTS</i> 124: 249–57. https://doi.org/10.1016/j.dyepig.2015.09.007.</div>
  fwo: |2
      <div class="csl-entry">De Meyer, Thierry, Iline Steyaert, Karen Hemelsoet, Richard Hoogenboom, Veronique Van Speybroeck, and Karen De Clerck. 2016. “Halochromic Properties of Sulfonphthaleine Dyes in a Textile Environment: The Influence of Substituents.” <i>DYES AND PIGMENTS</i> 124: 249–257. doi:10.1016/j.dyepig.2015.09.007.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">T. De Meyer, I. Steyaert, K. Hemelsoet, R. Hoogenboom, V. Van Speybroeck, and K. De Clerck, “Halochromic properties of sulfonphthaleine dyes in a textile environment: the influence of substituents,” <i>DYES AND PIGMENTS</i>, vol. 124, pp. 249–257, 2016.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Meyer, Thierry, et al. “Halochromic Properties of Sulfonphthaleine Dyes in a Textile Environment: The Influence of Substituents.” <i>DYES AND PIGMENTS</i>, vol. 124, 2016, pp. 249–57, doi:10.1016/j.dyepig.2015.09.007.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Meyer T, Steyaert I, Hemelsoet K, Hoogenboom R, Van Speybroeck V, De Clerck K. Halochromic properties of sulfonphthaleine dyes in a textile environment: the influence of substituents. DYES AND PIGMENTS. 2016;124:249–57.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
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  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
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  - '801000739277'
  - '977385781070'
date_created: 2015-12-01 15:20:07
date_updated: 2026-03-31 14:23:41
doi:
- 10.1016/j.dyepig.2015.09.007
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handle: http://hdl.handle.net/1854/LU-6998491
issn:
- 0143-7208
jcr:
  category: MATERIALS SCIENCE, TEXTILES
  category_decile: 1
  category_quartile: 1
  category_rank: 1/24
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  eigenfactor: 0.0145
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  total_cites: 12003
keyword:
- Halogen bonding
- Polyamide 6
- Dyes
- Sensor materials
- Sulfonphthaleine
- Halochromism
- DENSITY-FUNCTIONAL THEORY
- SEAWATER PH MEASUREMENTS
- ELECTROSPUN NANOFIBERS
- BROMOPHENOL BLUE
- PHENOL RED
- AZO DYES
- SPECTROPHOTOMETRIC DETERMINATION
- BROMOCRESOL PURPLE
- ABSORPTION-SPECTRA
- SENSITIVE FUNCTION
language:
- eng
page:
  first: '249'
  last: '257'
parent:
  short_title: Dyes Pigment.
  title: DYES AND PIGMENTS
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: 'Halochromic properties of sulfonphthaleine dyes in a textile environment:
  the influence of substituents'
type: journalArticle
volume: '124'
wos_id: '000368045600030'
wos_type: Article
year: '2016'
...
---
_id: '6959183'
abstract:
- The critical parameters determining the electrospinning of silica nanofibers starting
  from tetraethoxysilane sols are reported. By controlling the reaction conditions,
  the rheological properties of the sol allowed for electrospinning without needing
  the addition of an organic polymer. This allows the polymer removal step, which
  is deleterious to the fibers and an economic and ecological inconvenience, to be
  skipped. The effects on the electrospinning process of the viscosity of the sol,
  the concentration of ethanol, the degree of crosslinking and the size of the colloidal
  species were studied in depth with ATR-FTIR, Si-29 NMR, H-1 NMR and DLS. Moreover,
  to separate the contributions of the different parameters three different set-ups
  for sol preparation were used. An optimum amount of 9 mol L-1 ethanol for electrospinning
  was determined. In addition, the optimum degree of crosslinking and size of colloidal
  particles, approximately 3.5-7 nm, were obtained for stable electrospinning and
  for producing uniform, beadless nanofibers that were stable in time. The optimum
  viscosity range is in between 100 and 200 mPa s, which is in line with previous
  work. Using these optimum conditions, continuous electrospinning was carried out
  for 3 h, resulting in large flexible silica nanofibrous membranes.
abstract_full:
- lang: eng
  text: The critical parameters determining the electrospinning of silica nanofibers
    starting from tetraethoxysilane sols are reported. By controlling the reaction
    conditions, the rheological properties of the sol allowed for electrospinning
    without needing the addition of an organic polymer. This allows the polymer removal
    step, which is deleterious to the fibers and an economic and ecological inconvenience,
    to be skipped. The effects on the electrospinning process of the viscosity of
    the sol, the concentration of ethanol, the degree of crosslinking and the size
    of the colloidal species were studied in depth with ATR-FTIR, Si-29 NMR, H-1 NMR
    and DLS. Moreover, to separate the contributions of the different parameters three
    different set-ups for sol preparation were used. An optimum amount of 9 mol L-1
    ethanol for electrospinning was determined. In addition, the optimum degree of
    crosslinking and size of colloidal particles, approximately 3.5-7 nm, were obtained
    for stable electrospinning and for producing uniform, beadless nanofibers that
    were stable in time. The optimum viscosity range is in between 100 and 200 mPa
    s, which is in line with previous work. Using these optimum conditions, continuous
    electrospinning was carried out for 3 h, resulting in large flexible silica nanofibrous
    membranes.
affiliation:
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  - ugent_id: WE06*
  ugent_id: WE06*
- name: Department of Organic and Macromolecular Chemistry
  path:
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  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
- name: Department of Materials, Textiles and Chemical Engineering
  path:
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  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
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  ugent_id: TW11*
article_type: original
author:
- _id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
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- _id: 07343BB2-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: 07343BB2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jonathan
  last_name: De Roo
  name: Jonathan De Roo
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  orcid_id: 0000-0002-1264-9312
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  - '000070278722'
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  - '975366723747'
- _id: 0504890A-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: 0504890A-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Freya
  last_name: Van den Broeck
  name: Freya Van den Broeck
  name_last_first: Van den Broeck, Freya
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  affiliation:
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  first_name: José
  last_name: Martins
  name: José Martins
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- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '6959183'
cite:
  apa: |2
      <div class="csl-entry">Geltmeyer, J., De Roo, J., Van den Broeck, F., Martins, J., De Buysser, K., &#38; De Clerck, K. (2016). The influence of tetraethoxysilane sol preparation on the electrospinning of silica nanofibers. <i>JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY</i>, <i>77</i>(2), 453–462. https://doi.org/10.1007/s10971-015-3875-1</div>
  chicago-author-date: |2
      <div class="csl-entry">Geltmeyer, Jozefien, Jonathan De Roo, Freya Van den Broeck, José Martins, Klaartje De Buysser, and Karen De Clerck. 2016. “The Influence of Tetraethoxysilane Sol Preparation on the Electrospinning of Silica Nanofibers.” <i>JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY</i> 77 (2): 453–62. https://doi.org/10.1007/s10971-015-3875-1.</div>
  fwo: |2
      <div class="csl-entry">Geltmeyer, Jozefien, Jonathan De Roo, Freya Van den Broeck, José Martins, Klaartje De Buysser, and Karen De Clerck. 2016. “The Influence of Tetraethoxysilane Sol Preparation on the Electrospinning of Silica Nanofibers.” <i>JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY</i> 77 (2): 453–462. doi:10.1007/s10971-015-3875-1.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">J. Geltmeyer, J. De Roo, F. Van den Broeck, J. Martins, K. De Buysser, and K. De Clerck, “The influence of tetraethoxysilane sol preparation on the electrospinning of silica nanofibers,” <i>JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY</i>, vol. 77, no. 2, pp. 453–462, 2016.</div>
      </div>
  mla: |2
      <div class="csl-entry">Geltmeyer, Jozefien, et al. “The Influence of Tetraethoxysilane Sol Preparation on the Electrospinning of Silica Nanofibers.” <i>JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY</i>, vol. 77, no. 2, 2016, pp. 453–62, doi:10.1007/s10971-015-3875-1.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Geltmeyer J, De Roo J, Van den Broeck F, Martins J, De Buysser K, De Clerck K. The influence of tetraethoxysilane sol preparation on the electrospinning of silica nanofibers. JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY. 2016;77(2):453–62.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2015-10-13 13:17:24
date_updated: 2026-03-31 14:23:13
doi:
- 10.1007/s10971-015-3875-1
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-6959183
issn:
- 0928-0707
issue: '2'
jcr:
  category: MATERIALS SCIENCE, CERAMICS
  category_decile: 3
  category_quartile: 1
  category_rank: 6/26
  category_vigintile: 5
  eigenfactor: 0.00627
  immediacy_index: 0.291
  impact_factor: 1.575
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  prev_category_decile: 3
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  prev_category_vigintile: 5
  prev_impact_factor: 1.473
  total_cites: 5662
keyword:
- NMR
- Sol-gel
- TEOS
- Nanofibers
- GEL PROCESS
- FIBERS
- FABRICATION
- COMPOSITE
- SPECTROSCOPY
- SPECTRA
- SOLVENT
- Electrospinning
language:
- eng
page:
  first: '453'
  last: '462'
parent:
  short_title: J. Sol-Gel Sci. Technol.
  title: JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: The influence of tetraethoxysilane sol preparation on the electrospinning of
  silica nanofibers
type: journalArticle
volume: '77'
wos_id: '000369002400022'
wos_type: Article
year: '2016'
...
---
_id: '8507692'
abstract:
- Today, fiber reinforced polymer composites are a standard material in applications
  where a high stiffness and strength are required at minimal weight. Although fiber
  reinforced polymer composites show many advantages compared to other materials,
  delamination between reinforcing plies remains a major problem limiting further
  breakthrough. Previous work has shown that electrospun nanofibers can significantly
  improve the interlaminar fracture toughness of fiber reinforced composites thus
  preventing delaminations. In the present paper, the effect of the morphology of
  the toughening polymer is analyzed by incorporating different polycaprolactone structures
  in the interlaminar regions. Both Mode I and Mode II interlaminar facture toughness
  of composites containing five different electrospun morphologies - nanofibers, microfibers,
  microspheres, dense films, and PCL spray coated glass fibers - were evaluated. Analyzing
  the fracture behavior of the PCL toughened laminates ensures a better insight in
  the micro mechanical fracture mechanisms behind the observed interlaminar fracture
  toughness and results in guidelines on the optimal interleave morphology. The results
  clearly demonstrate the distribution of PCL in the interlayer has a large effect
  on the crack path of the delamination and the resulting interlaminar fracture toughness.
  In order to improve the interlaminar fracture toughness in both Mode I as well as
  Mode II without adverse effects, porous PCL structures such as PCL nanofibers, microfibers,
  and micro spheres are much more suitable than non-porous structures such as PCL
  films or spray-coated glass fibers. Among the porous structures, the nanofibers
  had an overall better performance with an increase in Mode I and Mode II interlaminar
  fracture toughness of about 60% and 80% respectively. (C) 2016 Elsevier Ltd. All
  rights reserved.
abstract_full:
- lang: eng
  text: Today, fiber reinforced polymer composites are a standard material in applications
    where a high stiffness and strength are required at minimal weight. Although fiber
    reinforced polymer composites show many advantages compared to other materials,
    delamination between reinforcing plies remains a major problem limiting further
    breakthrough. Previous work has shown that electrospun nanofibers can significantly
    improve the interlaminar fracture toughness of fiber reinforced composites thus
    preventing delaminations. In the present paper, the effect of the morphology of
    the toughening polymer is analyzed by incorporating different polycaprolactone
    structures in the interlaminar regions. Both Mode I and Mode II interlaminar facture
    toughness of composites containing five different electrospun morphologies - nanofibers,
    microfibers, microspheres, dense films, and PCL spray coated glass fibers - were
    evaluated. Analyzing the fracture behavior of the PCL toughened laminates ensures
    a better insight in the micro mechanical fracture mechanisms behind the observed
    interlaminar fracture toughness and results in guidelines on the optimal interleave
    morphology. The results clearly demonstrate the distribution of PCL in the interlayer
    has a large effect on the crack path of the delamination and the resulting interlaminar
    fracture toughness. In order to improve the interlaminar fracture toughness in
    both Mode I as well as Mode II without adverse effects, porous PCL structures
    such as PCL nanofibers, microfibers, and micro spheres are much more suitable
    than non-porous structures such as PCL films or spray-coated glass fibers. Among
    the porous structures, the nanofibers had an overall better performance with an
    increase in Mode I and Mode II interlaminar fracture toughness of about 60% and
    80% respectively. (C) 2016 Elsevier Ltd. All rights reserved.
affiliation:
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article_type: original
author:
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    ugent_id: UGent
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  first_name: Lode
  last_name: Daelemans
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- _id: 2D12E8D8-F0EE-11E1-A9DE-61C894A0A6B4
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  first_name: Timo
  last_name: Meireman
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  first_name: Ives
  last_name: De Baere
  name: Ives De Baere
  name_last_first: De Baere, Ives
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  - '801001866905'
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- first_name: Hubert
  last_name: Rahier
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  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
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  ugent_id:
  - '801001240344'
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- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
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  - '801000947425'
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biblio_id: '8507692'
cite:
  apa: |2
      <div class="csl-entry">van der Heijden, S., Daelemans, L., Meireman, T., De Baere, I., Rahier, H., Van Paepegem, W., &#38; De Clerck, K. (2016). Interlaminar toughening of resin transfer molded laminates by electrospun polycaprolactone structures : effect of the interleave morphology. <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, <i>136</i>, 10–17. https://doi.org/10.1016/j.compscitech.2016.09.024</div>
  chicago-author-date: |2
      <div class="csl-entry">Heijden, Sam van der, Lode Daelemans, Timo Meireman, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2016. “Interlaminar Toughening of Resin Transfer Molded Laminates by Electrospun Polycaprolactone Structures : Effect of the Interleave Morphology.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i> 136: 10–17. https://doi.org/10.1016/j.compscitech.2016.09.024.</div>
  fwo: |2
      <div class="csl-entry">van der Heijden, Sam, Lode Daelemans, Timo Meireman, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2016. “Interlaminar Toughening of Resin Transfer Molded Laminates by Electrospun Polycaprolactone Structures : Effect of the Interleave Morphology.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i> 136: 10–17. doi:10.1016/j.compscitech.2016.09.024.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. van der Heijden <i>et al.</i>, “Interlaminar toughening of resin transfer molded laminates by electrospun polycaprolactone structures : effect of the interleave morphology,” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, vol. 136, pp. 10–17, 2016.</div>
      </div>
  mla: |2
      <div class="csl-entry">van der Heijden, Sam, et al. “Interlaminar Toughening of Resin Transfer Molded Laminates by Electrospun Polycaprolactone Structures : Effect of the Interleave Morphology.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, vol. 136, Elsevier Sci Ltd, 2016, pp. 10–17, doi:10.1016/j.compscitech.2016.09.024.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">van der Heijden S, Daelemans L, Meireman T, De Baere I, Rahier H, Van Paepegem W, et al. Interlaminar toughening of resin transfer molded laminates by electrospun polycaprolactone structures : effect of the interleave morphology. COMPOSITES SCIENCE AND TECHNOLOGY. 2016;136:10–7.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
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    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2017-02-06 10:25:19
date_updated: 2026-03-31 14:29:32
doi:
- 10.1016/j.compscitech.2016.09.024
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-8507692
issn:
- 0266-3538
- 1879-1050
jcr:
  category: MATERIALS SCIENCE, COMPOSITES
  category_decile: 1
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  impact_factor: 4.873
  impact_factor_5yr: 5.126
  prev_category_decile: 1
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  prev_impact_factor: 3.897
  total_cites: 25854
keyword:
- MECHANICAL-PROPERTIES
- MODE-I
- COMPOSITE-MATERIALS
- FRACTURE-TOUGHNESS
- NANOFIBROUS MATS
- EPOXY-RESIN
- FIBER
- NANOCOMPOSITES
- INTERFACE
- BEHAVIOR
- Nano-structures
- Resin transfer moulding (RTM)
- Delamination
language:
- eng
page:
  count: '8'
  first: '10'
  last: '17'
parent:
  short_title: Compos. Sci. Technol.
  title: COMPOSITES SCIENCE AND TECHNOLOGY
publication_status: published
publication_status_sort: 2
publisher:
  location: Oxford
  name: Elsevier Sci Ltd
status: public
title: 'Interlaminar toughening of resin transfer molded laminates by electrospun
  polycaprolactone structures : effect of the interleave morphology'
type: journalArticle
volume: '136'
wos_id: '000388775800002'
wos_type: Article
year: '2016'
...
---
_id: '8501546'
abstract:
- 'pH-Sensitive dyes are increasingly applied on polymer substrates for the creation
  of novel sensor materials. Recently, these dye molecules were modified to form a
  covalent bond with the polymer host. This had a large influence on the pH-sensitive
  properties, in particular on the acidity constant (pKa). Obtaining molecular control
  over the factors that influence the pK(a) value is mandatory for the future intelligent
  design of sensor materials. Herein, we show that advanced molecular dynamics (MD)
  methods have reached the level at which the pK(a) values of large solvated dye molecules
  can be predicted with high accuracy. Two MD methods were used in this work: steered
  or restrained MD and the insertion/deletion scheme. Both were first calibrated on
  a set of phenol derivatives and afterwards applied to the dye molecule bromothymol
  blue. Excellent agreement with experimental values was obtained, which opens perspectives
  for using these methods for designing dye molecules.'
abstract_full:
- lang: eng
  text: 'pH-Sensitive dyes are increasingly applied on polymer substrates for the
    creation of novel sensor materials. Recently, these dye molecules were modified
    to form a covalent bond with the polymer host. This had a large influence on the
    pH-sensitive properties, in particular on the acidity constant (pKa). Obtaining
    molecular control over the factors that influence the pK(a) value is mandatory
    for the future intelligent design of sensor materials. Herein, we show that advanced
    molecular dynamics (MD) methods have reached the level at which the pK(a) values
    of large solvated dye molecules can be predicted with high accuracy. Two MD methods
    were used in this work: steered or restrained MD and the insertion/deletion scheme.
    Both were first calibrated on a set of phenol derivatives and afterwards applied
    to the dye molecule bromothymol blue. Excellent agreement with experimental values
    was obtained, which opens perspectives for using these methods for designing dye
    molecules.'
affiliation:
- name: Department of Applied physics
  path:
  - ugent_id: UGent
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  - ugent_id: TW17
  ugent_id: TW17
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
- name: Department of Physics and astronomy
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE05
  ugent_id: WE05
alternative_title:
- 'Acidity constant (pK(a)) calculation of large solvated dye molecules : evaluation
  of two advanced molecular dynamics methods'
article_type: original
author:
- _id: 018BF682-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 018BF682-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Thierry
  last_name: De Meyer
  name: Thierry De Meyer
  name_last_first: De Meyer, Thierry
  ugent_id:
  - '000060024711'
  - '802001054912'
  - '976159278112'
- first_name: Bernd
  last_name: Ensing
  name: Bernd Ensing
  name_last_first: Ensing, Bernd
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  affiliation:
  - path:
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    ugent_id: TW17
  biblio_id: 1DA6787E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Sven
  last_name: Rogge
  name: Sven Rogge
  name_last_first: Rogge, Sven
  orcid_id: 0000-0003-4493-5708
  ugent_id:
  - '802001863547'
  - '974472205006'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- first_name: Evert Jan
  last_name: Meijer
  name: Evert Jan Meijer
  name_last_first: Meijer, Evert Jan
- _id: F542886E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW17
    ugent_id: TW17
  - path:
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    - ugent_id: WE05
    ugent_id: WE05
  biblio_id: F542886E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Veronique
  last_name: Van Speybroeck
  name: Veronique Van Speybroeck
  name_last_first: Van Speybroeck, Veronique
  orcid_id: 0000-0003-2206-178X
  ugent_id:
  - '801001153549'
  - '919016668139'
  - '976495757166'
biblio_id: '8501546'
cite:
  apa: |2
      <div class="csl-entry">De Meyer, T., Ensing, B., Rogge, S., De Clerck, K., Meijer, E. J., &#38; Van Speybroeck, V. (2016). Acidity constant (pKa) calculation of large solvated dye molecules : evaluation of two advanced molecular dynamics methods. <i>CHEMPHYSCHEM</i>, <i>17</i>(21), 3447–3459. https://doi.org/10.1002/cphc.201600734</div>
  chicago-author-date: |2
      <div class="csl-entry">De Meyer, Thierry, Bernd Ensing, Sven Rogge, Karen De Clerck, Evert Jan Meijer, and Veronique Van Speybroeck. 2016. “Acidity Constant (PKa) Calculation of Large Solvated Dye Molecules : Evaluation of Two Advanced Molecular Dynamics Methods.” <i>CHEMPHYSCHEM</i> 17 (21): 3447–59. https://doi.org/10.1002/cphc.201600734.</div>
  fwo: |2
      <div class="csl-entry">De Meyer, Thierry, Bernd Ensing, Sven Rogge, Karen De Clerck, Evert Jan Meijer, and Veronique Van Speybroeck. 2016. “Acidity Constant (PKa) Calculation of Large Solvated Dye Molecules : Evaluation of Two Advanced Molecular Dynamics Methods.” <i>CHEMPHYSCHEM</i> 17 (21): 3447–3459. doi:10.1002/cphc.201600734.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">T. De Meyer, B. Ensing, S. Rogge, K. De Clerck, E. J. Meijer, and V. Van Speybroeck, “Acidity constant (pKa) calculation of large solvated dye molecules : evaluation of two advanced molecular dynamics methods,” <i>CHEMPHYSCHEM</i>, vol. 17, no. 21, pp. 3447–3459, 2016.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Meyer, Thierry, et al. “Acidity Constant (PKa) Calculation of Large Solvated Dye Molecules : Evaluation of Two Advanced Molecular Dynamics Methods.” <i>CHEMPHYSCHEM</i>, vol. 17, no. 21, 2016, pp. 3447–59, doi:10.1002/cphc.201600734.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Meyer T, Ensing B, Rogge S, De Clerck K, Meijer EJ, Van Speybroeck V. Acidity constant (pKa) calculation of large solvated dye molecules : evaluation of two advanced molecular dynamics methods. CHEMPHYSCHEM. 2016;17(21):3447–59.</div>
       </div>
classification: A1
copyright_statement: Creative Commons Attribution-NonCommercial-NoDerivatives 4.0
  International Public License (CC BY-NC-ND 4.0)
created_by:
  _id: F93A4808-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: UGent
  biblio_id: F93A4808-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Dewitte
  name: Wim Dewitte
  name_last_first: Dewitte, Wim
  ugent_id:
  - '972352832707'
date_created: 2017-01-11 15:16:00
date_updated: 2026-03-31 14:29:18
doi:
- 10.1002/cphc.201600734
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file:
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handle: http://hdl.handle.net/1854/LU-8501546
issn:
- 1439-4235
- 1439-7641
issue: '21'
jcr:
  category: PHYSICS, ATOMIC, MOLECULAR & CHEMICAL
  category_decile: 3
  category_quartile: 1
  category_rank: 8/35
  category_vigintile: 5
  eigenfactor: 0.02898
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  impact_factor: 3.075
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  prev_impact_factor: 3.138
  total_cites: 14256
keyword:
- Physical and Theoretical Chemistry
- Atomic and Molecular Physics
- and Optics
- DENSITY-FUNCTIONAL THEORY
- PH-SENSITIVE FUNCTION
- TEXTILE MATERIALS
- AQUEOUS-SOLUTION
- LIQUID WATER
- FREE-ENERGY
- PKA VALUES
- HALOCHROMIC PROPERTIES
- SULFONPHTHALEINE DYES
- NITRAZINE YELLOW
- acidity
- dyes/pigments
- free energy methods
- molecular dynamics
- steered molecular dynamics
language:
- eng
page:
  first: '3447'
  last: '3459'
parent:
  short_title: ChemPhysChem
  title: CHEMPHYSCHEM
publication_status: published
publication_status_sort: 2
pubmed_id: '27570194'
status: public
subject:
- Technology and Engineering
- Chemistry
- Physics and Astronomy
title: 'Acidity constant (pKa) calculation of large solvated dye molecules : evaluation
  of two advanced molecular dynamics methods'
type: journalArticle
volume: '17'
wos_id: '000388629200018'
wos_type: Article
year: '2016'
...
---
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affiliation:
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  ugent_id: TW10
- name: Department of Textiles (ceased 1-2-2017)
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  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
- name: Department of Materials, Textiles and Chemical Engineering
  path:
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  ugent_id: TW11
article_type: original
author:
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  affiliation:
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  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
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  - '802001635191'
  - '971650880382'
- _id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Sam
  last_name: van der Heijden
  name: Sam van der Heijden
  name_last_first: van der Heijden, Sam
  ugent_id:
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  - '802001291348'
  - '972120157894'
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  affiliation:
  - path:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Ives
  last_name: De Baere
  name: Ives De Baere
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- first_name: Hubert
  last_name: Rahier
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  affiliation:
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    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '7159952'
cite:
  apa: |2
      <div class="csl-entry">Daelemans, L., van der Heijden, S., De Baere, I., Rahier, H., Van Paepegem, W., &#38; De Clerck, K. (2016). Using aligned nanofibres for identifying the toughening micromechanisms in nanofibre interleaved laminates. <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, <i>124</i>, 17–26. https://doi.org/10.1016/j.compscitech.2015.11.021</div>
  chicago-author-date: |2
      <div class="csl-entry">Daelemans, Lode, Sam van der Heijden, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2016. “Using Aligned Nanofibres for Identifying the Toughening Micromechanisms in Nanofibre Interleaved Laminates.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i> 124: 17–26. https://doi.org/10.1016/j.compscitech.2015.11.021.</div>
  fwo: |2
      <div class="csl-entry">Daelemans, Lode, Sam van der Heijden, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2016. “Using Aligned Nanofibres for Identifying the Toughening Micromechanisms in Nanofibre Interleaved Laminates.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i> 124: 17–26. doi:10.1016/j.compscitech.2015.11.021.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Daelemans, S. van der Heijden, I. De Baere, H. Rahier, W. Van Paepegem, and K. De Clerck, “Using aligned nanofibres for identifying the toughening micromechanisms in nanofibre interleaved laminates,” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, vol. 124, pp. 17–26, 2016.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daelemans, Lode, et al. “Using Aligned Nanofibres for Identifying the Toughening Micromechanisms in Nanofibre Interleaved Laminates.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, vol. 124, Elsevier, 2016, pp. 17–26, doi:10.1016/j.compscitech.2015.11.021.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daelemans L, van der Heijden S, De Baere I, Rahier H, Van Paepegem W, De Clerck K. Using aligned nanofibres for identifying the toughening micromechanisms in nanofibre interleaved laminates. COMPOSITES SCIENCE AND TECHNOLOGY. 2016;124:17–26.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2016-03-23 13:47:34
date_updated: 2026-03-31 14:25:06
doi:
- 10.1016/j.compscitech.2015.11.021
external: 0
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handle: http://hdl.handle.net/1854/LU-7159952
issn:
- 0266-3538
jcr:
  category: MATERIALS SCIENCE, COMPOSITES
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  prev_category_decile: 1
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  prev_category_vigintile: 1
  prev_impact_factor: 3.897
  total_cites: 25854
keyword:
- Fibre bridging
- Damage tolerance
- Nano particles
- Delamination
- Electro-spinning
- INTERLAMINAR FRACTURE-TOUGHNESS
- MODE-I
- COMPOSITE-MATERIALS
- CARBON/EPOXY COMPOSITES
- ELECTROSPUN FIBERS
- DAMAGE RESISTANCE
- PHASE-SEPARATION
- DELAMINATION
- INTERLAYERS
- MECHANISM
language:
- eng
page:
  first: '17'
  last: '26'
parent:
  title: COMPOSITES SCIENCE AND TECHNOLOGY
publication_status: published
publication_status_sort: 2
publisher:
  name: Elsevier
status: public
subject:
- Technology and Engineering
title: Using aligned nanofibres for identifying the toughening micromechanisms in
  nanofibre interleaved laminates
type: journalArticle
volume: '124'
wos_id: '000371361900003'
wos_type: Article
year: '2016'
...
---
_id: '7159968'
affiliation:
- name: Department of Organic and Macromolecular Chemistry
  path:
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  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_type: original
author:
- _id: 0B227202-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0B227202-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Iline
  last_name: Steyaert
  name: Iline Steyaert
  name_last_first: Steyaert, Iline
  ugent_id:
  - '000060129993'
  - '802001072793'
  - '979860756278'
- first_name: Hubert
  last_name: Rahier
  name: Hubert Rahier
  name_last_first: Rahier, Hubert
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  affiliation:
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    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: F6EFF23C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Sandra
  last_name: Van Vlierberghe
  name: Sandra Van Vlierberghe
  name_last_first: Van Vlierberghe, Sandra
  orcid_id: 0000-0001-7688-1682
  ugent_id:
  - '801001801429'
  - '971159275288'
- first_name: Jos
  last_name: Olijve
  name: Jos Olijve
  name_last_first: Olijve, Jos
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '7159968'
cite:
  apa: |2
      <div class="csl-entry">Steyaert, I., Rahier, H., Van Vlierberghe, S., Olijve, J., &#38; De Clerck, K. (2016). Gelatin nanofibers: analysis of triple helix dissociation temperature and cold-water-solubility. <i>FOOD HYDROCOLLOIDS</i>, <i>57</i>, 200–208. https://doi.org/10.1016/j.foodhyd.2016.01.016</div>
  chicago-author-date: |2
      <div class="csl-entry">Steyaert, Iline, Hubert Rahier, Sandra Van Vlierberghe, Jos Olijve, and Karen De Clerck. 2016. “Gelatin Nanofibers: Analysis of Triple Helix Dissociation Temperature and Cold-Water-Solubility.” <i>FOOD HYDROCOLLOIDS</i> 57: 200–208. https://doi.org/10.1016/j.foodhyd.2016.01.016.</div>
  fwo: |2
      <div class="csl-entry">Steyaert, Iline, Hubert Rahier, Sandra Van Vlierberghe, Jos Olijve, and Karen De Clerck. 2016. “Gelatin Nanofibers: Analysis of Triple Helix Dissociation Temperature and Cold-Water-Solubility.” <i>FOOD HYDROCOLLOIDS</i> 57: 200–208. doi:10.1016/j.foodhyd.2016.01.016.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">I. Steyaert, H. Rahier, S. Van Vlierberghe, J. Olijve, and K. De Clerck, “Gelatin nanofibers: analysis of triple helix dissociation temperature and cold-water-solubility,” <i>FOOD HYDROCOLLOIDS</i>, vol. 57, pp. 200–208, 2016.</div>
      </div>
  mla: |2
      <div class="csl-entry">Steyaert, Iline, et al. “Gelatin Nanofibers: Analysis of Triple Helix Dissociation Temperature and Cold-Water-Solubility.” <i>FOOD HYDROCOLLOIDS</i>, vol. 57, 2016, pp. 200–08, doi:10.1016/j.foodhyd.2016.01.016.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Steyaert I, Rahier H, Van Vlierberghe S, Olijve J, De Clerck K. Gelatin nanofibers: analysis of triple helix dissociation temperature and cold-water-solubility. FOOD HYDROCOLLOIDS. 2016;57:200–8.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2016-03-23 14:02:37
date_updated: 2026-03-31 14:25:06
doi:
- 10.1016/j.foodhyd.2016.01.016
external: 0
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  name: FOODHYD-paper_gelatine-Iline-final_version.pdf
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handle: http://hdl.handle.net/1854/LU-7159968
issn:
- 0268-005X
jcr:
  category: FOOD SCIENCE & TECHNOLOGY
  category_decile: 1
  category_quartile: 1
  category_rank: 5/129
  category_vigintile: 1
  eigenfactor: 0.02215
  immediacy_index: 1.247
  impact_factor: 4.747
  impact_factor_5yr: 5.459
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 2
  prev_impact_factor: 3.858
  total_cites: 15392
keyword:
- Modulated temperature differential
- Cold-gelling
- scanning calorimetry
- Cold-water-soluble
- Gelatin
- Nanofiber
- Electrospinning
- DIFFERENTIAL SCANNING CALORIMETRY
- ELECTROSPUN NANOFIBERS
- BIOMEDICAL APPLICATIONS
- BIOPOLYMER NANOFIBERS
- DRUG-DELIVERY
- FIBER MATS
- NANOPARTICLES
- SCAFFOLDS
- SELECTION
- FILMS
language:
- eng
page:
  first: '200'
  last: '208'
parent:
  short_title: Food Hydrocolloids
  title: FOOD HYDROCOLLOIDS
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: 'Gelatin nanofibers: analysis of triple helix dissociation temperature and
  cold-water-solubility'
type: journalArticle
volume: '57'
wos_id: '000371812600022'
wos_type: Article
year: '2016'
...
---
_id: '7197165'
abstract:
- Nanofibre membranes are studied extensively in water treatment. Inappropriate storage,
  however, could alter their performance, e.g. regarding water filtration. This shows
  the need for investigating this effect in more detail so as to offer a solution
  for long-term behaviour and stability. In this study, polyamide nanofibre membranes
  were treated under different conditions, simulating the diverse storage conditions
  and to simulate their use in water filtration systems. Under all these different
  settings, nanofibre properties (scanning electron microscope pictures, dimensional
  changes, tensile strength) and water filtration performance (clean water permeability
  (CWP), bacterial removal) were investigated. The results demonstrate that, as soon
  as the dimensional change of a membrane is >2%, the CWP, tensile strength and bacterial
  removal significantly decrease. These dimensional changes occurred when the membrane
  became dry after it had been in contact with water. As such, it is important to
  keep the membrane either in dry or in wet conditions to store its unique properties.
  When heat-treated, the membrane had a higher tensile strength and kept its morphology
  and characteristics better during storage.
abstract_full:
- lang: eng
  text: Nanofibre membranes are studied extensively in water treatment. Inappropriate
    storage, however, could alter their performance, e.g. regarding water filtration.
    This shows the need for investigating this effect in more detail so as to offer
    a solution for long-term behaviour and stability. In this study, polyamide nanofibre
    membranes were treated under different conditions, simulating the diverse storage
    conditions and to simulate their use in water filtration systems. Under all these
    different settings, nanofibre properties (scanning electron microscope pictures,
    dimensional changes, tensile strength) and water filtration performance (clean
    water permeability (CWP), bacterial removal) were investigated. The results demonstrate
    that, as soon as the dimensional change of a membrane is >2%, the CWP, tensile
    strength and bacterial removal significantly decrease. These dimensional changes
    occurred when the membrane became dry after it had been in contact with water.
    As such, it is important to keep the membrane either in dry or in wet conditions
    to store its unique properties. When heat-treated, the membrane had a higher tensile
    strength and kept its morphology and characteristics better during storage.
affiliation:
- name: Department of Mathematical Modelling, Statistics and Bio-informatics (ceased
    1-1-2018)
  path:
  - ugent_id: UGent
  - ugent_id: LA
  - ugent_id: LA10
  ugent_id: LA10
- name: Department of Sustainable Organic Chemistry and Technology (ceased 1-1-2018)
  path:
  - ugent_id: UGent
  - ugent_id: LA
  - ugent_id: LA11
  ugent_id: LA11
- name: Department of Industrial Biological Sciences (ceased 1-1-2018)
  path:
  - ugent_id: UGent
  - ugent_id: LA
  - ugent_id: LA16
  ugent_id: LA16
- name: Department of Materials, Textiles and Chemical Engineering
  path:
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  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_type: original
author:
- _id: 1C30272E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 1C30272E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Nele
  last_name: Daels
  name: Nele Daels
  name_last_first: Daels, Nele
  ugent_id:
  - '002003290072'
  - '802000583955'
  - '977784615061'
- _id: ECCBC23C-82C3-11E2-BB4A-B55F10BDE39D
  affiliation:
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    - ugent_id: LA24
    ugent_id: LA24
  biblio_id: ECCBC23C-82C3-11E2-BB4A-B55F10BDE39D
  first_name: Lies
  last_name: Harinck
  name: Lies Harinck
  name_last_first: Harinck, Lies
  ugent_id:
  - '802001417650'
  - '972688684190'
- _id: 0D9D0B96-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0D9D0B96-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Annelies
  last_name: Goethals
  name: Annelies Goethals
  name_last_first: Goethals, Annelies
  ugent_id:
  - '002004215111'
  - '802000839185'
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- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: FAD54460-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: LA
    - ugent_id: LA24
    ugent_id: LA24
  biblio_id: FAD54460-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Stijn
  last_name: Van Hulle
  name: Stijn Van Hulle
  name_last_first: Van Hulle, Stijn
  orcid_id: 0000-0001-5773-7773
  ugent_id:
  - '801001539933'
  - '919019834884'
  - '971483871644'
biblio_id: '7197165'
cite:
  apa: |2
      <div class="csl-entry">Daels, N., Harinck, L., Goethals, A., De Clerck, K., &#38; Van Hulle, S. (2016). Structure changes and water filtration properties of electrospun polyamide nanofibre membranes. <i>WATER SCIENCE AND TECHNOLOGY</i>, <i>73</i>(8), 1920–1926. https://doi.org/10.2166/wst.2016.033</div>
  chicago-author-date: |2
      <div class="csl-entry">Daels, Nele, Lies Harinck, Annelies Goethals, Karen De Clerck, and Stijn Van Hulle. 2016. “Structure Changes and Water Filtration Properties of Electrospun Polyamide Nanofibre Membranes.” <i>WATER SCIENCE AND TECHNOLOGY</i> 73 (8): 1920–26. https://doi.org/10.2166/wst.2016.033.</div>
  fwo: |2
      <div class="csl-entry">Daels, Nele, Lies Harinck, Annelies Goethals, Karen De Clerck, and Stijn Van Hulle. 2016. “Structure Changes and Water Filtration Properties of Electrospun Polyamide Nanofibre Membranes.” <i>WATER SCIENCE AND TECHNOLOGY</i> 73 (8): 1920–1926. doi:10.2166/wst.2016.033.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">N. Daels, L. Harinck, A. Goethals, K. De Clerck, and S. Van Hulle, “Structure changes and water filtration properties of electrospun polyamide nanofibre membranes,” <i>WATER SCIENCE AND TECHNOLOGY</i>, vol. 73, no. 8, pp. 1920–1926, 2016.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daels, Nele, et al. “Structure Changes and Water Filtration Properties of Electrospun Polyamide Nanofibre Membranes.” <i>WATER SCIENCE AND TECHNOLOGY</i>, vol. 73, no. 8, 2016, pp. 1920–26, doi:10.2166/wst.2016.033.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daels N, Harinck L, Goethals A, De Clerck K, Van Hulle S. Structure changes and water filtration properties of electrospun polyamide nanofibre membranes. WATER SCIENCE AND TECHNOLOGY. 2016;73(8):1920–6.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
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    - ugent_id: LA24
    ugent_id: LA24
  biblio_id: FAD54460-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Stijn
  last_name: Van Hulle
  name: Stijn Van Hulle
  name_last_first: Van Hulle, Stijn
  orcid_id: 0000-0001-5773-7773
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  - '801001539933'
  - '919019834884'
  - '971483871644'
date_created: 2016-04-27 18:06:53
date_updated: 2026-03-31 14:25:25
doi:
- 10.2166/wst.2016.033
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handle: http://hdl.handle.net/1854/LU-7197165
issn:
- 0273-1223
issue: '8'
jcr:
  category: WATER RESOURCES
  category_decile: 7
  category_quartile: 3
  category_rank: 61/88
  category_vigintile: 14
  eigenfactor: 0.01289
  immediacy_index: 0.149
  impact_factor: 1.197
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  prev_impact_factor: 1.064
  total_cites: 18652
keyword:
- electrospinning
- membrane stability
- microfiltration
- nanofibres
- 3D FIBER ORIENTATION
- OPTIMIZATION
- PERFORMANCE
- PARAMETERS
- MORPHOLOGY
- EFFICIENCY
- NETWORKS
- HUMIDITY
- FILTERS
- MBR
language:
- eng
page:
  first: '1920'
  last: '1926'
parent:
  short_title: Water Sci. Technol.
  title: WATER SCIENCE AND TECHNOLOGY
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Structure changes and water filtration properties of electrospun polyamide
  nanofibre membranes
type: journalArticle
volume: '73'
wos_id: '000374979500019'
wos_type: Article
year: '2016'
...
---
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abstract:
- "Delamination between reinforcing plies is one of the most important failure mechanisms
  encountered in composite laminates during use. Interleaving composites with electrospun
  nanofibrous veils is proving to be a viable technique in order to increase the delamination
  resistance. The veils can easily be placed in the resin rich interlayers prior to
  production and do not require a dispersion in the matrix resin such as traditional
  particle toughening techniques. Furthermore, they are easily produced by electrospinning.
  Although there are many expected obvious benefits, the research on composites toughened
  with electrospun nanofibres is still very limited.\r\nWe will give thorough insight
  into the toughening micromechanisms that are present in laminates interleaved with
  nanofibrous veils. The bridging of microcracks by nanofibres is shown to be the
  main mechanism resulting in an increased interlaminar fracture toughness. Upon crack
  extension, nanofibres will bridge the newly formed crack surfaces and take up energy
  by straining, yielding and fracture. Several parameters are identified which influence
  this nanofibre bridging, and thus the observed interlaminar fracture toughness.
  This allows us to accurately determine the crucial parameters and toughening mechanisms
  which is necessary for the design of advanced damage resistance composite materials."
abstract_full:
- lang: eng
  text: "Delamination between reinforcing plies is one of the most important failure
    mechanisms encountered in composite laminates during use. Interleaving composites
    with electrospun nanofibrous veils is proving to be a viable technique in order
    to increase the delamination resistance. The veils can easily be placed in the
    resin rich interlayers prior to production and do not require a dispersion in
    the matrix resin such as traditional particle toughening techniques. Furthermore,
    they are easily produced by electrospinning. Although there are many expected
    obvious benefits, the research on composites toughened with electrospun nanofibres
    is still very limited.\r\nWe will give thorough insight into the toughening micromechanisms
    that are present in laminates interleaved with nanofibrous veils. The bridging
    of microcracks by nanofibres is shown to be the main mechanism resulting in an
    increased interlaminar fracture toughness. Upon crack extension, nanofibres will
    bridge the newly formed crack surfaces and take up energy by straining, yielding
    and fracture. Several parameters are identified which influence this nanofibre
    bridging, and thus the observed interlaminar fracture toughness. This allows us
    to accurately determine the crucial parameters and toughening mechanisms which
    is necessary for the design of advanced damage resistance composite materials."
affiliation:
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  ugent_id: TW10
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  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
- name: Department of Materials, Textiles and Chemical Engineering
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  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
author:
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
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  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Sam
  last_name: van der Heijden
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    ugent_id: TW11
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  first_name: Ives
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  orcid_id: 0000-0002-6846-0981
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  - '801001866905'
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- first_name: Hubert
  last_name: Rahier
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  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
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  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
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  - '801000947425'
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biblio_id: '8050496'
cite:
  apa: |2
      <div class="csl-entry">Daelemans, L., van der Heijden, S., De Baere, I., Rahier, H., Van Paepegem, W., &#38; De Clerck, K. (2016). Increasing the damage resistance of composites by interleaving them with electrospun nanofibrous veils. <i>17th European Conference on Composite Materials</i>, 1–8. European Society for Composite Materials (ESCM).</div>
  chicago-author-date: |2
      <div class="csl-entry">Daelemans, Lode, Sam van der Heijden, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2016. “Increasing the Damage Resistance of Composites by Interleaving Them with Electrospun Nanofibrous Veils.” In <i>17th European Conference on Composite Materials</i>, 1–8. European Society for Composite Materials (ESCM).</div>
  fwo: |2
      <div class="csl-entry">Daelemans, Lode, Sam van der Heijden, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2016. “Increasing the Damage Resistance of Composites by Interleaving Them with Electrospun Nanofibrous Veils.” In <i>17th European Conference on Composite Materials</i>, 1–8. European Society for Composite Materials (ESCM).</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Daelemans, S. van der Heijden, I. De Baere, H. Rahier, W. Van Paepegem, and K. De Clerck, “Increasing the damage resistance of composites by interleaving them with electrospun nanofibrous veils,” in <i>17th European Conference on Composite Materials</i>, Munich, Germany, 2016, pp. 1–8.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daelemans, Lode, et al. “Increasing the Damage Resistance of Composites by Interleaving Them with Electrospun Nanofibrous Veils.” <i>17th European Conference on Composite Materials</i>, European Society for Composite Materials (ESCM), 2016, pp. 1–8.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daelemans L, van der Heijden S, De Baere I, Rahier H, Van Paepegem W, De Clerck K. Increasing the damage resistance of composites by interleaving them with electrospun nanofibrous veils. In: 17th European Conference on Composite Materials. European Society for Composite Materials (ESCM); 2016. p. 1–8.</div>
       </div>
classification: C1
conference:
  end_date: 2016-06-30
  location: Munich, Germany
  name: 17th European Conference on Composite Materials (ECCM17)
  start_date: 2016-06-26
copyright_statement: No license (in copyright)
created_by:
  _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
date_created: 2016-08-18 11:37:30
date_updated: 2026-03-31 14:27:17
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handle: http://hdl.handle.net/1854/LU-8050496
isbn:
- 978-3-00-053387-7
keyword:
- Nanofibres
- Electrospinning
- Fracture toughness
- Damage resistance
- Delaminaion
language:
- eng
page:
  first: '1'
  last: '8'
parent:
  title: 17th European Conference on Composite Materials
publication_status: published
publication_status_sort: 2
publisher:
  name: European Society for Composite Materials (ESCM)
status: public
subject:
- Technology and Engineering
title: Increasing the damage resistance of composites by interleaving them with electrospun
  nanofibrous veils
type: conference
year: '2016'
...
---
_id: '8040538'
affiliation:
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  path:
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  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
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article_type: original
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    ugent_id: UGent
  biblio_id: 23F44FA8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ana
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  first_name: Lode
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  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
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  orcid_id: 0000-0002-5650-3075
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- first_name: Hubert
  last_name: Rahier
  name: Hubert Rahier
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biblio_id: '8040538'
cite:
  apa: |2
      <div class="csl-entry">Torre Muruzabal, A., Daelemans, L., Van Assche, G., De Clerck, K., &#38; Rahier, H. (2016). Creation of a nanovascular network by electrospun sacrificial nanofibers for self-healing applications and its effect on the flexural properties of the bulk material. <i>POLYMER TESTING</i>, <i>54</i>, 78–83. https://doi.org/10.1016/j.polymertesting.2016.06.026</div>
  chicago-author-date: |2
      <div class="csl-entry">Torre Muruzabal, Ana, Lode Daelemans, Guy Van Assche, Karen De Clerck, and Hubert Rahier. 2016. “Creation of a Nanovascular Network by Electrospun Sacrificial Nanofibers for Self-Healing Applications and Its Effect on the Flexural Properties of the Bulk Material.” <i>POLYMER TESTING</i> 54: 78–83. https://doi.org/10.1016/j.polymertesting.2016.06.026.</div>
  fwo: |2
      <div class="csl-entry">Torre Muruzabal, Ana, Lode Daelemans, Guy Van Assche, Karen De Clerck, and Hubert Rahier. 2016. “Creation of a Nanovascular Network by Electrospun Sacrificial Nanofibers for Self-Healing Applications and Its Effect on the Flexural Properties of the Bulk Material.” <i>POLYMER TESTING</i> 54: 78–83. doi:10.1016/j.polymertesting.2016.06.026.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">A. Torre Muruzabal, L. Daelemans, G. Van Assche, K. De Clerck, and H. Rahier, “Creation of a nanovascular network by electrospun sacrificial nanofibers for self-healing applications and its effect on the flexural properties of the bulk material,” <i>POLYMER TESTING</i>, vol. 54, pp. 78–83, 2016.</div>
      </div>
  mla: |2
      <div class="csl-entry">Torre Muruzabal, Ana, et al. “Creation of a Nanovascular Network by Electrospun Sacrificial Nanofibers for Self-Healing Applications and Its Effect on the Flexural Properties of the Bulk Material.” <i>POLYMER TESTING</i>, vol. 54, Elsevier, 2016, pp. 78–83, doi:10.1016/j.polymertesting.2016.06.026.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Torre Muruzabal A, Daelemans L, Van Assche G, De Clerck K, Rahier H. Creation of a nanovascular network by electrospun sacrificial nanofibers for self-healing applications and its effect on the flexural properties of the bulk material. POLYMER TESTING. 2016;54:78–83.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
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date_created: 2016-07-27 11:47:18
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keyword:
- RELATIVE-HUMIDITY
- COMPOSITE
- NANOCHANNELS
- EVAPORATION
- MORPHOLOGY
- FIBERS
language:
- eng
page:
  first: '78'
  last: '83'
parent:
  title: POLYMER TESTING
publication_status: published
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publisher:
  name: Elsevier
status: public
subject:
- Technology and Engineering
title: Creation of a nanovascular network by electrospun sacrificial nanofibers for
  self-healing applications and its effect on the flexural properties of the bulk
  material
type: journalArticle
volume: '54'
wos_id: '000382798300010'
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...
---
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      <div class="csl-entry">De Clerck, K., Schoolaert, E., Geltmeyer, J., Steyaert, I., Vancoillie, G., &#38; Hoogenboom, R. (2016). Blend electrospinning of dye functionalized polymer nanofibres for colorimetric sensors. <i>Electrospinning, 4th International Conference, Abstracts</i>. Presented at the 4th International conference on Electrospinning (Electrospin 2016), Otranto, Italy.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Clerck, Karen, Ella Schoolaert, Jozefien Geltmeyer, Iline Steyaert, Gertjan Vancoillie, and Richard Hoogenboom. 2016. “Blend Electrospinning of Dye Functionalized Polymer Nanofibres for Colorimetric Sensors.” In <i>Electrospinning, 4th International Conference, Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, Ella Schoolaert, Jozefien Geltmeyer, Iline Steyaert, Gertjan Vancoillie, and Richard Hoogenboom. 2016. “Blend Electrospinning of Dye Functionalized Polymer Nanofibres for Colorimetric Sensors.” In <i>Electrospinning, 4th International Conference, Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck, E. Schoolaert, J. Geltmeyer, I. Steyaert, G. Vancoillie, and R. Hoogenboom, “Blend electrospinning of dye functionalized polymer nanofibres for colorimetric sensors,” in <i>Electrospinning, 4th International conference, Abstracts</i>, Otranto, Italy, 2016.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Clerck, Karen, et al. “Blend Electrospinning of Dye Functionalized Polymer Nanofibres for Colorimetric Sensors.” <i>Electrospinning, 4th International Conference, Abstracts</i>, 2016.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, Schoolaert E, Geltmeyer J, Steyaert I, Vancoillie G, Hoogenboom R. Blend electrospinning of dye functionalized polymer nanofibres for colorimetric sensors. In: Electrospinning, 4th International conference, Abstracts. 2016.</div>
       </div>
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  apa: |2
      <div class="csl-entry">Geltmeyer, J., Vancoillie, G., Hoogenboom, R., De Buysser, K., &#38; De Clerck, K. (2016). Colorimetric HCl and NH3 sensing via dye modified silicon oxide nanofibrous membranes. <i>Electrospinning, 4th International Conference, Abstracts</i>. Presented at the 4th International conference on Electrospinning (Electrospin 2016), Otranto, Italy.</div>
  chicago-author-date: |2
      <div class="csl-entry">Geltmeyer, Jozefien, Gertjan Vancoillie, Richard Hoogenboom, Klaartje De Buysser, and Karen De Clerck. 2016. “Colorimetric HCl and NH3 Sensing via Dye Modified Silicon Oxide Nanofibrous Membranes.” In <i>Electrospinning, 4th International Conference, Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">Geltmeyer, Jozefien, Gertjan Vancoillie, Richard Hoogenboom, Klaartje De Buysser, and Karen De Clerck. 2016. “Colorimetric HCl and NH3 Sensing via Dye Modified Silicon Oxide Nanofibrous Membranes.” In <i>Electrospinning, 4th International Conference, Abstracts</i>.</div>
  ieee: |2
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        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">J. Geltmeyer, G. Vancoillie, R. Hoogenboom, K. De Buysser, and K. De Clerck, “Colorimetric HCl and NH3 sensing via dye modified silicon oxide nanofibrous membranes,” in <i>Electrospinning, 4th International conference, Abstracts</i>, Otranto, Italy, 2016.</div>
      </div>
  mla: |2
      <div class="csl-entry">Geltmeyer, Jozefien, et al. “Colorimetric HCl and NH3 Sensing via Dye Modified Silicon Oxide Nanofibrous Membranes.” <i>Electrospinning, 4th International Conference, Abstracts</i>, 2016.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Geltmeyer J, Vancoillie G, Hoogenboom R, De Buysser K, De Clerck K. Colorimetric HCl and NH3 sensing via dye modified silicon oxide nanofibrous membranes. In: Electrospinning, 4th International conference, Abstracts. 2016.</div>
       </div>
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      <div class="csl-entry">De Clerck, K., Schoolaert, E., Geltmeyer, J., Vancoillie, G., Steyaert, I., De Buysser, K., &#38; Hoogenboom, R. (2016). Dye-functionalized electrospun nanofibers for colorimetric sensors. <i>Electrospinning : Science and Application, EMPA Workshop, Abstracts</i>. Presented at the EMPA workshop on Electrospinning : Science and Application, St-Gallen, Switzerland.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Clerck, Karen, Ella Schoolaert, Jozefien Geltmeyer, Gertjan Vancoillie, Iline Steyaert, Klaartje De Buysser, and Richard Hoogenboom. 2016. “Dye-Functionalized Electrospun Nanofibers for Colorimetric Sensors.” In <i>Electrospinning : Science and Application, EMPA Workshop, Abstracts</i>. St-Gallen, Switzerland: EMPA.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, Ella Schoolaert, Jozefien Geltmeyer, Gertjan Vancoillie, Iline Steyaert, Klaartje De Buysser, and Richard Hoogenboom. 2016. “Dye-Functionalized Electrospun Nanofibers for Colorimetric Sensors.” In <i>Electrospinning : Science and Application, EMPA Workshop, Abstracts</i>. St-Gallen, Switzerland: EMPA.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck <i>et al.</i>, “Dye-functionalized electrospun nanofibers for colorimetric sensors,” in <i>Electrospinning : science and application, EMPA workshop, Abstracts</i>, St-Gallen, Switzerland, 2016.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Clerck, Karen, et al. “Dye-Functionalized Electrospun Nanofibers for Colorimetric Sensors.” <i>Electrospinning : Science and Application, EMPA Workshop, Abstracts</i>, EMPA, 2016.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, Schoolaert E, Geltmeyer J, Vancoillie G, Steyaert I, De Buysser K, et al. Dye-functionalized electrospun nanofibers for colorimetric sensors. In: Electrospinning : science and application, EMPA workshop, Abstracts. St-Gallen, Switzerland: EMPA; 2016.</div>
       </div>
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    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
  ugent_id:
  - '000100318410'
  - '802002133935'
  - '975208259089'
- _id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
  orcid_id: 0000-0002-1281-2968
  ugent_id:
  - '000070582957'
  - '975000449525'
- _id: 0B227202-F0EE-11E1-A9DE-61C894A0A6B4
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  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0B227202-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Iline
  last_name: Steyaert
  name: Iline Steyaert
  name_last_first: Steyaert, Iline
  ugent_id:
  - '000060129993'
  - '802001072793'
  - '979860756278'
- _id: 0267A880-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0267A880-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Gertjan
  last_name: Vancoillie
  name: Gertjan Vancoillie
  name_last_first: Vancoillie, Gertjan
  ugent_id:
  - '000060487479'
  - '802001083911'
  - '973415065357'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
biblio_id: '8127485'
cite:
  apa: |2
      <div class="csl-entry">De Clerck, K., Schoolaert, E., Geltmeyer, J., Steyaert, I., Vancoillie, G., &#38; Hoogenboom, R. (2016). Dye functionalized nanofibers for fast, reversible and easy read-out colorimetric sensor materials. <i>IC<sup>3</sup>EM 2016 Book of Abstracts</i>, 104–104.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Clerck, Karen, Ella Schoolaert, Jozefien Geltmeyer, Iline Steyaert, Gertjan Vancoillie, and Richard Hoogenboom. 2016. “Dye Functionalized Nanofibers for Fast, Reversible and Easy Read-out Colorimetric Sensor Materials.” In <i>IC<sup>3</sup>EM 2016 Book of Abstracts</i>, 104–104.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, Ella Schoolaert, Jozefien Geltmeyer, Iline Steyaert, Gertjan Vancoillie, and Richard Hoogenboom. 2016. “Dye Functionalized Nanofibers for Fast, Reversible and Easy Read-out Colorimetric Sensor Materials.” In <i>IC<sup>3</sup>EM 2016 Book of Abstracts</i>, 104–104.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck, E. Schoolaert, J. Geltmeyer, I. Steyaert, G. Vancoillie, and R. Hoogenboom, “Dye functionalized nanofibers for fast, reversible and easy read-out colorimetric sensor materials,” in <i>IC<sup>3</sup>EM 2016 book of abstracts</i>, Lisbon, Portugal, 2016, pp. 104–104.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Clerck, Karen, et al. “Dye Functionalized Nanofibers for Fast, Reversible and Easy Read-out Colorimetric Sensor Materials.” <i>IC<sup>3</sup>EM 2016 Book of Abstracts</i>, 2016, pp. 104–104.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, Schoolaert E, Geltmeyer J, Steyaert I, Vancoillie G, Hoogenboom R. Dye functionalized nanofibers for fast, reversible and easy read-out colorimetric sensor materials. In: IC<sup>3</sup>EM 2016 book of abstracts. 2016. p. 104–104.</div>
       </div>
classification: C3
conference:
  end_date: 2016-09-08
  location: Lisbon, Portugal
  name: 2nd International Caparica conference on Chromogenic and Emissive Materials
    (IC³EM 2016)
  start_date: 2016-09-05
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2016-10-26 11:24:46
date_updated: 2026-03-31 14:27:57
external: 0
file:
- _id: '8127499'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: IC3EM2016_De_Clerck.pdf
  sha256: c5f826270d413a03cd2cc0e8de9023b5f88a410b5a953cb5e28064e5c015db3a
  size: '2765772'
  thumbnail_url: https://biblio.ugent.be/publication/8127485/file/8127499/thumbnail.png
  url: https://biblio.ugent.be/publication/8127485/file/8127499.pdf
handle: http://hdl.handle.net/1854/LU-8127485
isbn:
- '9789899963900'
language:
- eng
page:
  first: '104'
  last: '104'
parent:
  title: IC³EM 2016 book of abstracts
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Dye functionalized nanofibers for fast, reversible and easy read-out colorimetric
  sensor materials
type: conference
year: '2016'
...
---
_id: '8127502'
affiliation:
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_number: abstract SG 6 (P28)
author:
- _id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2A465AC2-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ella
  last_name: Schoolaert
  name: Ella Schoolaert
  name_last_first: Schoolaert, Ella
  orcid_id: 0000-0003-4345-8225
  ugent_id:
  - '000100318410'
  - '802002133935'
  - '975208259089'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8127502'
cite:
  apa: |2
      <div class="csl-entry">Schoolaert, E., Hoogenboom, R., &#38; De Clerck, K. (2016). Blend electrospinning of dye-functionalized chitosan and polycaprolactone: towards biocompatible PH-sensors. <i>IC<sup>3</sup>EM 2016 Book of Abstracts</i>, 126–126.</div>
  chicago-author-date: |2
      <div class="csl-entry">Schoolaert, Ella, Richard Hoogenboom, and Karen De Clerck. 2016. “Blend Electrospinning of Dye-Functionalized Chitosan and Polycaprolactone: Towards Biocompatible PH-Sensors.” In <i>IC<sup>3</sup>EM 2016 Book of Abstracts</i>, 126–126.</div>
  fwo: |2
      <div class="csl-entry">Schoolaert, Ella, Richard Hoogenboom, and Karen De Clerck. 2016. “Blend Electrospinning of Dye-Functionalized Chitosan and Polycaprolactone: Towards Biocompatible PH-Sensors.” In <i>IC<sup>3</sup>EM 2016 Book of Abstracts</i>, 126–126.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Schoolaert, R. Hoogenboom, and K. De Clerck, “Blend electrospinning of dye-functionalized chitosan and polycaprolactone: towards biocompatible PH-sensors,” in <i>IC<sup>3</sup>EM 2016 book of abstracts</i>, Lisbon, Portugal, 2016, pp. 126–126.</div>
      </div>
  mla: |2
      <div class="csl-entry">Schoolaert, Ella, et al. “Blend Electrospinning of Dye-Functionalized Chitosan and Polycaprolactone: Towards Biocompatible PH-Sensors.” <i>IC<sup>3</sup>EM 2016 Book of Abstracts</i>, 2016, pp. 126–126.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Schoolaert E, Hoogenboom R, De Clerck K. Blend electrospinning of dye-functionalized chitosan and polycaprolactone: towards biocompatible PH-sensors. In: IC<sup>3</sup>EM 2016 book of abstracts. 2016. p. 126–126.</div>
       </div>
classification: C3
conference:
  end_date: 2016-09-08
  location: Lisbon, Portugal
  name: 2nd International Caparica conference on Chromogenic and Emissive Materials
    (IC³EM 2016)
  start_date: 2016-09-05
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2016-10-26 11:33:15
date_updated: 2026-03-31 14:27:57
external: 0
file:
- _id: '8127507'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: IC3EM2016_Schoolaert.pdf
  sha256: 0271e7db5dcfb1faa5c83cdedabc8e20d5e79d9d5b4e639f551318ff9eaa4b1f
  size: '2782296'
  thumbnail_url: https://biblio.ugent.be/publication/8127502/file/8127507/thumbnail.png
  url: https://biblio.ugent.be/publication/8127502/file/8127507.pdf
handle: http://hdl.handle.net/1854/LU-8127502
isbn:
- '9789899963900'
language:
- eng
page:
  first: '126'
  last: '126'
parent:
  title: IC³EM 2016 book of abstracts
publication_status: published
publication_status_sort: 2
status: public
subject:
- Chemistry
title: 'Blend electrospinning of dye-functionalized chitosan and polycaprolactone:
  towards biocompatible PH-sensors'
type: conference
year: '2016'
...
---
_id: '8127546'
affiliation:
- name: Department of Materials Science and Engineering (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW10
  ugent_id: TW10
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
author:
- _id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Sam
  last_name: van der Heijden
  name: Sam van der Heijden
  name_last_first: van der Heijden, Sam
  ugent_id:
  - '000070168988'
  - '802001291348'
  - '972120157894'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Ives
  last_name: De Baere
  name: Ives De Baere
  name_last_first: De Baere, Ives
  orcid_id: 0000-0002-6846-0981
  ugent_id:
  - '801001866905'
  - '977854465771'
- first_name: Hubert
  last_name: Rahier
  name: Hubert Rahier
  name_last_first: Rahier, Hubert
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8127546'
cite:
  apa: |2
      <div class="csl-entry">van der Heijden, S., Daelemans, L., De Baere, I., Rahier, H., Van Paepegem, W., &#38; De Clerck, K. (2016). TOWARDS DAMAGE RESISTANT COMPOSITES USING ELECTROSPUN NANOFIBERS: A MULTISCALE ANALYSIS OF THE TOUGHENING MECHANISMS. <i>4th International Conference on Electrospinning</i>, 1–1. Otranto, Italy.</div>
  chicago-author-date: |2
      <div class="csl-entry">Heijden, Sam van der, Lode Daelemans, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2016. “TOWARDS DAMAGE RESISTANT COMPOSITES USING ELECTROSPUN NANOFIBERS: A MULTISCALE ANALYSIS OF THE TOUGHENING MECHANISMS.” In <i>4th International Conference on Electrospinning</i>, 1–1. Otranto, Italy.</div>
  fwo: |2
      <div class="csl-entry">van der Heijden, Sam, Lode Daelemans, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2016. “TOWARDS DAMAGE RESISTANT COMPOSITES USING ELECTROSPUN NANOFIBERS: A MULTISCALE ANALYSIS OF THE TOUGHENING MECHANISMS.” In <i>4th International Conference on Electrospinning</i>, 1–1. Otranto, Italy.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. van der Heijden, L. Daelemans, I. De Baere, H. Rahier, W. Van Paepegem, and K. De Clerck, “TOWARDS DAMAGE RESISTANT COMPOSITES USING ELECTROSPUN NANOFIBERS: A MULTISCALE ANALYSIS OF THE TOUGHENING MECHANISMS,” in <i>4th International Conference on Electrospinning</i>, Otranto, Italy, 2016, pp. 1–1.</div>
      </div>
  mla: |2
      <div class="csl-entry">van der Heijden, Sam, et al. “TOWARDS DAMAGE RESISTANT COMPOSITES USING ELECTROSPUN NANOFIBERS: A MULTISCALE ANALYSIS OF THE TOUGHENING MECHANISMS.” <i>4th International Conference on Electrospinning</i>, 2016, pp. 1–1.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">van der Heijden S, Daelemans L, De Baere I, Rahier H, Van Paepegem W, De Clerck K. TOWARDS DAMAGE RESISTANT COMPOSITES USING ELECTROSPUN NANOFIBERS: A MULTISCALE ANALYSIS OF THE TOUGHENING MECHANISMS. In: 4th International Conference on Electrospinning. Otranto, Italy; 2016. p. 1–1.</div>
       </div>
classification: C3
conference:
  end_date: 2016-09-08
  location: Otranto, Italy
  name: ELECTROSPIN 2016 - 4th International Conference on Electrospinning
  start_date: 2016-09-05
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2016-10-26 11:45:09
date_updated: 2026-03-31 14:27:57
external: 0
file:
- _id: '8127561'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: Electrospin_2016_Vanderheijden.pdf
  sha256: eac13df331e7f8cc5c15238c436c518f38ef786c262013a058df8c94d0dfcd65
  size: '803642'
  thumbnail_url: https://biblio.ugent.be/publication/8127546/file/8127561/thumbnail.png
  url: https://biblio.ugent.be/publication/8127546/file/8127561.pdf
handle: http://hdl.handle.net/1854/LU-8127546
language:
- eng
page:
  first: '1'
  last: '1'
parent:
  title: 4th International Conference on Electrospinning
publication_status: published
publication_status_sort: 2
publisher:
  location: Otranto, Italy
status: public
subject:
- Technology and Engineering
title: 'TOWARDS DAMAGE RESISTANT COMPOSITES USING ELECTROSPUN NANOFIBERS: A MULTISCALE
  ANALYSIS OF THE TOUGHENING MECHANISMS'
type: conference
year: '2016'
...
---
_id: '8127576'
abstract:
- "Composites, whose use has increased significantly the last decades due to their
  excellent\r\nproperties, are prone to failure over time, like any other material.
  Self-healing materials are\r\nbeing developed to extend their lifetime. Today, most
  self-healing systems are based on the\r\nintroduction of microcapsules. Although
  a lot of progress has been made, the effect of\r\nintroducing such healing feature
  on the mechanical properties of the neat material is mainly\r\noverlooked, with
  the microcapsules creating potential artefacts in the neat matrix material.\r\nThe
  use of a nanovascular network may show a better solution to apply self-healing systems.\r\nTherefore
  in the present paper we created a nanovascular network by pullulan sacrificial\r\nelectrospun
  nanofibers, analysed the flexural properties and compared them to those of the\r\nneat
  matrix material as well as reported microcapsule-based materials. A detailed parameter\r\nanalysis
  of the electrospinning process allowed for the production of tailored pullulan\r\nnanofibers.
  The introduction of the pullulan nanofibers showed no effect on the strength and\r\nmodulus
  of the neat epoxy. On removal of the pullulan, the properties of the resultant\r\nnanovascular
  epoxy matrix system were somewhat reduced relative to the neat epoxy with an\r\neffect
  in proportion to the volume fraction and the diameter of the channels. However very\r\ninteresting,
  the decrease of the mechanical properties of the nanovascular epoxy is far lower\r\nthan
  on the introduction of microcapsules and opens potentials for a more appropriate\r\nintroduction
  of self-healing systems in composite materials."
abstract_full:
- lang: eng
  text: "Composites, whose use has increased significantly the last decades due to
    their excellent\r\nproperties, are prone to failure over time, like any other
    material. Self-healing materials are\r\nbeing developed to extend their lifetime.
    Today, most self-healing systems are based on the\r\nintroduction of microcapsules.
    Although a lot of progress has been made, the effect of\r\nintroducing such healing
    feature on the mechanical properties of the neat material is mainly\r\noverlooked,
    with the microcapsules creating potential artefacts in the neat matrix material.\r\nThe
    use of a nanovascular network may show a better solution to apply self-healing
    systems.\r\nTherefore in the present paper we created a nanovascular network by
    pullulan sacrificial\r\nelectrospun nanofibers, analysed the flexural properties
    and compared them to those of the\r\nneat matrix material as well as reported
    microcapsule-based materials. A detailed parameter\r\nanalysis of the electrospinning
    process allowed for the production of tailored pullulan\r\nnanofibers. The introduction
    of the pullulan nanofibers showed no effect on the strength and\r\nmodulus of
    the neat epoxy. On removal of the pullulan, the properties of the resultant\r\nnanovascular
    epoxy matrix system were somewhat reduced relative to the neat epoxy with an\r\neffect
    in proportion to the volume fraction and the diameter of the channels. However
    very\r\ninteresting, the decrease of the mechanical properties of the nanovascular
    epoxy is far lower\r\nthan on the introduction of microcapsules and opens potentials
    for a more appropriate\r\nintroduction of self-healing systems in composite materials."
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  biblio_id: 23F44FA8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Ana
  last_name: Torre Muruzabal
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  - '091009031436'
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  first_name: Lode
  last_name: Daelemans
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  orcid_id: 0000-0001-6214-3785
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  - '802001635191'
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- first_name: Guy
  last_name: Van Assche
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  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- first_name: Hubert
  last_name: Rahier
  name: Hubert Rahier
  name_last_first: Rahier, Hubert
biblio_id: '8127576'
cite:
  apa: |2
      <div class="csl-entry">Torre Muruzabal, A., Daelemans, L., Van Assche, G., De Clerck, K., &#38; Rahier, H. (2016). Electrospinning of sacrificial nanofibers for the creation of a self-healing nanovascular network and its effect on the properties of an epoxy matrix. <i>4th International Conference on Electrospinning</i>, 1–1. Otranto, Italy.</div>
  chicago-author-date: |2
      <div class="csl-entry">Torre Muruzabal, Ana, Lode Daelemans, Guy Van Assche, Karen De Clerck, and Hubert Rahier. 2016. “Electrospinning of Sacrificial Nanofibers for the Creation of a Self-Healing Nanovascular Network and Its Effect on the Properties of an Epoxy Matrix.” In <i>4th International Conference on Electrospinning</i>, 1–1. Otranto, Italy.</div>
  fwo: |2
      <div class="csl-entry">Torre Muruzabal, Ana, Lode Daelemans, Guy Van Assche, Karen De Clerck, and Hubert Rahier. 2016. “Electrospinning of Sacrificial Nanofibers for the Creation of a Self-Healing Nanovascular Network and Its Effect on the Properties of an Epoxy Matrix.” In <i>4th International Conference on Electrospinning</i>, 1–1. Otranto, Italy.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">A. Torre Muruzabal, L. Daelemans, G. Van Assche, K. De Clerck, and H. Rahier, “Electrospinning of sacrificial nanofibers for the creation of a self-healing nanovascular network and its effect on the properties of an epoxy matrix,” in <i>4th International Conference on Electrospinning</i>, Otranto, Italy, 2016, pp. 1–1.</div>
      </div>
  mla: |2
      <div class="csl-entry">Torre Muruzabal, Ana, et al. “Electrospinning of Sacrificial Nanofibers for the Creation of a Self-Healing Nanovascular Network and Its Effect on the Properties of an Epoxy Matrix.” <i>4th International Conference on Electrospinning</i>, 2016, pp. 1–1.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Torre Muruzabal A, Daelemans L, Van Assche G, De Clerck K, Rahier H. Electrospinning of sacrificial nanofibers for the creation of a self-healing nanovascular network and its effect on the properties of an epoxy matrix. In: 4th International Conference on Electrospinning. Otranto, Italy; 2016. p. 1–1.</div>
       </div>
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parent:
  title: 4th International Conference on Electrospinning
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publication_status_sort: 2
publisher:
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status: public
subject:
- Technology and Engineering
title: Electrospinning of sacrificial nanofibers for the creation of a self-healing
  nanovascular network and its effect on the properties of an epoxy matrix
type: conference
year: '2016'
...
---
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  apa: |2
      <div class="csl-entry">Schoolaert, E., Hoogenboom, R., &#38; De Clerck, K. (2016). Blend electrospinning of dye-functionalized chitosan and polycaprolactone: towards biocompatible pH-sensors. <i>Electrospinning, 4th International Conference, Abstracts</i>. Presented at the 4th International conference on Electrospinning (Electrospin 2016), Otranto, Italy.</div>
  chicago-author-date: |2
      <div class="csl-entry">Schoolaert, Ella, Richard Hoogenboom, and Karen De Clerck. 2016. “Blend Electrospinning of Dye-Functionalized Chitosan and Polycaprolactone: Towards Biocompatible PH-Sensors.” In <i>Electrospinning, 4th International Conference, Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">Schoolaert, Ella, Richard Hoogenboom, and Karen De Clerck. 2016. “Blend Electrospinning of Dye-Functionalized Chitosan and Polycaprolactone: Towards Biocompatible PH-Sensors.” In <i>Electrospinning, 4th International Conference, Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Schoolaert, R. Hoogenboom, and K. De Clerck, “Blend electrospinning of dye-functionalized chitosan and polycaprolactone: towards biocompatible pH-sensors,” in <i>Electrospinning, 4th International conference, Abstracts</i>, Otranto, Italy, 2016.</div>
      </div>
  mla: |2
      <div class="csl-entry">Schoolaert, Ella, et al. “Blend Electrospinning of Dye-Functionalized Chitosan and Polycaprolactone: Towards Biocompatible PH-Sensors.” <i>Electrospinning, 4th International Conference, Abstracts</i>, 2016.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Schoolaert E, Hoogenboom R, De Clerck K. Blend electrospinning of dye-functionalized chitosan and polycaprolactone: towards biocompatible pH-sensors. In: Electrospinning, 4th International conference, Abstracts. 2016.</div>
       </div>
classification: C3
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  location: Otranto, Italy
  name: 4th International conference on Electrospinning (Electrospin 2016)
  start_date: 2016-06-28
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language:
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parent:
  title: Electrospinning, 4th International conference, Abstracts
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publication_status_sort: 2
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subject:
- Chemistry
title: 'Blend electrospinning of dye-functionalized chitosan and polycaprolactone:
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type: conference
year: '2016'
...
---
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affiliation:
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cite:
  apa: |2
      <div class="csl-entry">Rambour, S., Daelemans, L., Kolgjini, B., De Clerck, K., D’hooge, D., &#38; Kiekens, P. (2016). The impact of processing parameters on the production of monofilaments for artificial turf applications. In K. Ragaert, L. Delva, &#38; L. Cardon (Eds.), <i>7th bi-annual international conference of polymers and moulds innovations</i> (pp. 111–111). Ghent: Universiteit Gent, Department of Materials Science and Engineering.</div>
  chicago-author-date: |2
      <div class="csl-entry">Rambour, Stijn, Lode Daelemans, Blerina Kolgjini, Karen De Clerck, Dagmar D’hooge, and Paul Kiekens. 2016. “The Impact of Processing Parameters on the Production of Monofilaments for Artificial Turf Applications.” In <i>7th Bi-Annual International Conference of Polymers and Moulds Innovations</i>, edited by Kim Ragaert, Laurens Delva, and Ludwig Cardon, 111–111. Ghent: Universiteit Gent, Department of Materials Science and Engineering.</div>
  fwo: |2
      <div class="csl-entry">Rambour, Stijn, Lode Daelemans, Blerina Kolgjini, Karen De Clerck, Dagmar D’hooge, and Paul Kiekens. 2016. “The Impact of Processing Parameters on the Production of Monofilaments for Artificial Turf Applications.” In <i>7th Bi-Annual International Conference of Polymers and Moulds Innovations</i>, ed by. Kim Ragaert, Laurens Delva, and Ludwig Cardon, 111–111. Ghent: Universiteit Gent, Department of Materials Science and Engineering.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. Rambour, L. Daelemans, B. Kolgjini, K. De Clerck, D. D’hooge, and P. Kiekens, “The impact of processing parameters on the production of monofilaments for artificial turf applications,” in <i>7th bi-annual international conference of polymers and moulds innovations</i>, Gent, 2016, pp. 111–111.</div>
      </div>
  mla: |2
      <div class="csl-entry">Rambour, Stijn, et al. “The Impact of Processing Parameters on the Production of Monofilaments for Artificial Turf Applications.” <i>7th Bi-Annual International Conference of Polymers and Moulds Innovations</i>, edited by Kim Ragaert et al., Universiteit Gent, Department of Materials Science and Engineering, 2016, pp. 111–111.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Rambour S, Daelemans L, Kolgjini B, De Clerck K, D’hooge D, Kiekens P. The impact of processing parameters on the production of monofilaments for artificial turf applications. In: Ragaert K, Delva L, Cardon L, editors. 7th bi-annual international conference of polymers and moulds innovations. Ghent: Universiteit Gent, Department of Materials Science and Engineering; 2016. p. 111–111.</div>
       </div>
classification: C3
conference:
  end_date: 2016-09-23
  location: Gent
  name: 7th bi-annual international conference of polymers and moulds innovations
  start_date: 2016-09-22
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created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
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date_created: 2016-10-27 12:15:01
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  - '973230779808'
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  first_name: Ludwig
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  first: '111'
  last: '111'
parent:
  title: 7th bi-annual international conference of polymers and moulds innovations
publication_status: published
publication_status_sort: 2
publisher:
  location: Ghent
  name: Universiteit Gent, Department of Materials Science and Engineering
status: public
subject:
- Technology and Engineering
title: The impact of processing parameters on the production of monofilaments for
  artificial turf applications
type: conference
year: '2016'
...
---
_id: '8166617'
abstract:
- 'Colorimetric sensors for monitoring and visual reporting of acidic environments
  both in water and air are highly valuable in various fields, such as safety and
  technical textiles. Until now sol-gel-based colorimetric sensors are usually nonflexible
  bulk glass or thin-film sensors. Large-area, flexible sensors usable in strong acidic
  environments are not available. Therefore, in this study organically modified silicon
  oxide nanofibrous membranes are produced by combining electrospinning and sol-gel
  technology. Two pH-indicator dyes are immobilized in the nanofibrous membranes:
  methyl yellow via doping, methyl red via both doping, and covalent bonding. This
  resulted in sensor materials with a fast response time and high sensitivity for
  pH-change in water. The covalent bond between dye and the sol-gel network showed
  to be essential to obtain a reusable pH-sensor in aqueous environment. Also a high
  sensitivity is obtained for sensing of HCl and NH3 vapors, including a memory function
  allowing visual read-out up to 20 min after exposure. These fast and reversible,
  large-area flexible nanofibrous colorimetric sensors are highly interesting for
  use in multiple applications such as protective clothing and equipment. Moreover,
  the sensitivity to biogenic amines is demonstrated, offering potential for control
  and monitoring of food quality.'
abstract_full:
- lang: eng
  text: 'Colorimetric sensors for monitoring and visual reporting of acidic environments
    both in water and air are highly valuable in various fields, such as safety and
    technical textiles. Until now sol-gel-based colorimetric sensors are usually nonflexible
    bulk glass or thin-film sensors. Large-area, flexible sensors usable in strong
    acidic environments are not available. Therefore, in this study organically modified
    silicon oxide nanofibrous membranes are produced by combining electrospinning
    and sol-gel technology. Two pH-indicator dyes are immobilized in the nanofibrous
    membranes: methyl yellow via doping, methyl red via both doping, and covalent
    bonding. This resulted in sensor materials with a fast response time and high
    sensitivity for pH-change in water. The covalent bond between dye and the sol-gel
    network showed to be essential to obtain a reusable pH-sensor in aqueous environment.
    Also a high sensitivity is obtained for sensing of HCl and NH3 vapors, including
    a memory function allowing visual read-out up to 20 min after exposure. These
    fast and reversible, large-area flexible nanofibrous colorimetric sensors are
    highly interesting for use in multiple applications such as protective clothing
    and equipment. Moreover, the sensitivity to biogenic amines is demonstrated, offering
    potential for control and monitoring of food quality.'
affiliation:
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
- name: Department of Inorganic and physical chemistry (ceased 1-1-2018)
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE06*
  ugent_id: WE06*
article_type: original
author:
- _id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
  orcid_id: 0000-0002-1281-2968
  ugent_id:
  - '000070582957'
  - '975000449525'
- _id: 0267A880-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0267A880-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Gertjan
  last_name: Vancoillie
  name: Gertjan Vancoillie
  name_last_first: Vancoillie, Gertjan
  ugent_id:
  - '000060487479'
  - '802001083911'
  - '973415065357'
- _id: 0B227202-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0B227202-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Iline
  last_name: Steyaert
  name: Iline Steyaert
  name_last_first: Steyaert, Iline
  ugent_id:
  - '000060129993'
  - '802001072793'
  - '979860756278'
- _id: 288CFE98-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 288CFE98-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Bet
  last_name: Breyne
  name: Bet Breyne
  name_last_first: Breyne, Bet
  ugent_id:
  - '000100486946'
- _id: A006AE8C-114E-11E5-9012-F819B5D1D7B1
  biblio_id: A006AE8C-114E-11E5-9012-F819B5D1D7B1
  first_name: Gabriella
  last_name: Cousins
  name: Gabriella Cousins
  name_last_first: Cousins, Gabriella
  ugent_id:
  - '000141364766'
- _id: F55DDC50-82C3-11E2-BB4A-B55F10BDE39D
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: F55DDC50-82C3-11E2-BB4A-B55F10BDE39D
  first_name: Kathleen
  last_name: Lava
  name: Kathleen Lava
  name_last_first: Lava, Kathleen
  ugent_id:
  - '802001421589'
  - '974160946756'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8166617'
cite:
  apa: |2
      <div class="csl-entry">Geltmeyer, J., Vancoillie, G., Steyaert, I., Breyne, B., Cousins, G., Lava, K., … De Clerck, K. (2016). Dye modification of nanofibrous silicon oxide membranes for colorimetric HCl and NH3 sensing. <i>ADVANCED FUNCTIONAL MATERIALS</i>, <i>26</i>(33), 5987–5996. https://doi.org/10.1002/adfm.201602351</div>
  chicago-author-date: |2
      <div class="csl-entry">Geltmeyer, Jozefien, Gertjan Vancoillie, Iline Steyaert, Bet Breyne, Gabriella Cousins, Kathleen Lava, Richard Hoogenboom, Klaartje De Buysser, and Karen De Clerck. 2016. “Dye Modification of Nanofibrous Silicon Oxide Membranes for Colorimetric HCl and NH3 Sensing.” <i>ADVANCED FUNCTIONAL MATERIALS</i> 26 (33): 5987–96. https://doi.org/10.1002/adfm.201602351.</div>
  fwo: |2
      <div class="csl-entry">Geltmeyer, Jozefien, Gertjan Vancoillie, Iline Steyaert, Bet Breyne, Gabriella Cousins, Kathleen Lava, Richard Hoogenboom, Klaartje De Buysser, and Karen De Clerck. 2016. “Dye Modification of Nanofibrous Silicon Oxide Membranes for Colorimetric HCl and NH3 Sensing.” <i>ADVANCED FUNCTIONAL MATERIALS</i> 26 (33): 5987–5996. doi:10.1002/adfm.201602351.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">J. Geltmeyer <i>et al.</i>, “Dye modification of nanofibrous silicon oxide membranes for colorimetric HCl and NH3 sensing,” <i>ADVANCED FUNCTIONAL MATERIALS</i>, vol. 26, no. 33, pp. 5987–5996, 2016.</div>
      </div>
  mla: |2
      <div class="csl-entry">Geltmeyer, Jozefien, et al. “Dye Modification of Nanofibrous Silicon Oxide Membranes for Colorimetric HCl and NH3 Sensing.” <i>ADVANCED FUNCTIONAL MATERIALS</i>, vol. 26, no. 33, 2016, pp. 5987–96, doi:10.1002/adfm.201602351.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Geltmeyer J, Vancoillie G, Steyaert I, Breyne B, Cousins G, Lava K, et al. Dye modification of nanofibrous silicon oxide membranes for colorimetric HCl and NH3 sensing. ADVANCED FUNCTIONAL MATERIALS. 2016;26(33):5987–96.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: FBA76C4C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: FBA76C4C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Queenie
  last_name: Van Muylem
  name: Queenie Van Muylem
  name_last_first: Van Muylem, Queenie
  ugent_id:
  - '802000474124'
  - '979218934560'
date_created: 2016-11-24 13:08:58
date_updated: 2026-03-31 14:28:19
doi:
- 10.1002/adfm.201602351
external: 0
file:
- _id: '8166629'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: Geltmeyer_et_al-2016-Advanced_Functional_Materials.pdf
  sha256: 9fe718a1fce18a35372c80e04a458d0e32714eb62a0e74ec494b4a3c9a286ec8
  size: '1608188'
  thumbnail_url: https://biblio.ugent.be/publication/8166617/file/8166629/thumbnail.png
  url: https://biblio.ugent.be/publication/8166617/file/8166629.pdf
- _id: '8561081'
  access: open
  content_type: application/pdf
  kind: fullText
  name: Manuscript JGeltmeyer_revision data Methyl Yellow_2-kdc.pdf
  sha256: 4d36cfd13c573b626549d2734d180a7d38e84a7ff56055185ee73362df61f84c
  size: '1900132'
  thumbnail_url: https://biblio.ugent.be/publication/8166617/file/8561081/thumbnail.png
  url: https://biblio.ugent.be/publication/8166617/file/8561081.pdf
handle: http://hdl.handle.net/1854/LU-8166617
issn:
- 1616-301X
issue: '33'
jcr:
  category: MATERIALS SCIENCE, MULTIDISCIPLINARY
  category_decile: 1
  category_quartile: 1
  category_rank: 13/275
  category_vigintile: 1
  eigenfactor: 0.14787
  immediacy_index: 2.258
  impact_factor: 12.124
  impact_factor_5yr: 12.362
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 1
  prev_impact_factor: 11.382
  total_cites: 67188
keyword:
- ACID-BASE EQUILIBRIA
- ELECTROSPUN NANOFIBERS
- SOL-GEL MATRIX
- PH-INDICATOR
- METHYL RED
- TEXTILE MATERIALS
- NITRAZINE YELLOW
- OPTICAL SENSORS
- GAS
- NANOPARTICLES
language:
- eng
page:
  first: '5987'
  last: '5996'
parent:
  short_title: Adv. Funct. Mater.
  title: ADVANCED FUNCTIONAL MATERIALS
publication_status: published
publication_status_sort: 2
status: public
subject:
- Chemistry
title: Dye modification of nanofibrous silicon oxide membranes for colorimetric HCl
  and NH3 sensing
type: journalArticle
volume: '26'
wos_id: '000383609100004'
wos_type: Article
year: '2016'
...
---
_id: '8166658'
abstract:
- Crosslinked hydrophilic poly(2-oxazoline)-based nanofibers amenable to facile multifunctionalization
  are fabricated using alkene-containing poly(2-alkyl-2-oxazoline)s (PAOx) via in
  situ photoinitiated radical thiol-ene crosslinking during electrospinning. The resulting
  crosslinked nanofibers are demonstrated to be multifunctionalizable using different
  chemistries as they contain two functional handles, being the alkene moieties from
  the parent copolymer and the residual thiol groups from the tetra-thiol-based crosslinker.
  While the thiol groups in these nanofibers could be passivated or conjugated to
  install functional molecules through thiol-maleimide conjugation, the alkene groups
  could sequentially be modified with thiol-containing molecules using photoinitiated
  radical thiol-ene reactions. Utilization of the photochemically induced conjugation
  of thiol-bearing molecules to the alkene groups on the nanofibers is used to obtain
  functionalization in a spatially controlled manner.
abstract_full:
- lang: eng
  text: Crosslinked hydrophilic poly(2-oxazoline)-based nanofibers amenable to facile
    multifunctionalization are fabricated using alkene-containing poly(2-alkyl-2-oxazoline)s
    (PAOx) via in situ photoinitiated radical thiol-ene crosslinking during electrospinning.
    The resulting crosslinked nanofibers are demonstrated to be multifunctionalizable
    using different chemistries as they contain two functional handles, being the
    alkene moieties from the parent copolymer and the residual thiol groups from the
    tetra-thiol-based crosslinker. While the thiol groups in these nanofibers could
    be passivated or conjugated to install functional molecules through thiol-maleimide
    conjugation, the alkene groups could sequentially be modified with thiol-containing
    molecules using photoinitiated radical thiol-ene reactions. Utilization of the
    photochemically induced conjugation of thiol-bearing molecules to the alkene groups
    on the nanofibers is used to obtain functionalization in a spatially controlled
    manner.
affiliation:
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_type: original
author:
- first_name: Ozlem I
  last_name: Kalaoglu-Altan
  name: Ozlem I Kalaoglu-Altan
  name_last_first: Kalaoglu-Altan, Ozlem I
- _id: 2F398BDA-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2F398BDA-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Bart
  last_name: Verbraeken
  name: Bart Verbraeken
  name_last_first: Verbraeken, Bart
  ugent_id:
  - '000100832106'
  - '802001272756'
  - '976690032204'
- _id: F55DDC50-82C3-11E2-BB4A-B55F10BDE39D
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: F55DDC50-82C3-11E2-BB4A-B55F10BDE39D
  first_name: Kathleen
  last_name: Lava
  name: Kathleen Lava
  name_last_first: Lava, Kathleen
  ugent_id:
  - '802001421589'
  - '974160946756'
- first_name: Tugce Nihal
  last_name: Gevrek
  name: Tugce Nihal Gevrek
  name_last_first: Gevrek, Tugce Nihal
- first_name: Rana
  last_name: Sanyal
  name: Rana Sanyal
  name_last_first: Sanyal, Rana
- first_name: Tim
  last_name: Dargaville
  name: Tim Dargaville
  name_last_first: Dargaville, Tim
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- first_name: Amitav
  last_name: Sanyal
  name: Amitav Sanyal
  name_last_first: Sanyal, Amitav
biblio_id: '8166658'
cite:
  apa: |2
      <div class="csl-entry">Kalaoglu-Altan, O. I., Verbraeken, B., Lava, K., Gevrek, T. N., Sanyal, R., Dargaville, T., … Sanyal, A. (2016). Multireactive poly(2-oxazoline) nanofibers through electrospinning with crosslinking on the fly. <i>ACS MACRO LETTERS</i>, <i>5</i>(6), 676–681. https://doi.org/10.1021/acsmacrolett.6b00188</div>
  chicago-author-date: |2
      <div class="csl-entry">Kalaoglu-Altan, Ozlem I, Bart Verbraeken, Kathleen Lava, Tugce Nihal Gevrek, Rana Sanyal, Tim Dargaville, Karen De Clerck, Richard Hoogenboom, and Amitav Sanyal. 2016. “Multireactive Poly(2-Oxazoline) Nanofibers through Electrospinning with Crosslinking on the Fly.” <i>ACS MACRO LETTERS</i> 5 (6): 676–81. https://doi.org/10.1021/acsmacrolett.6b00188.</div>
  fwo: |2
      <div class="csl-entry">Kalaoglu-Altan, Ozlem I, Bart Verbraeken, Kathleen Lava, Tugce Nihal Gevrek, Rana Sanyal, Tim Dargaville, Karen De Clerck, Richard Hoogenboom, and Amitav Sanyal. 2016. “Multireactive Poly(2-Oxazoline) Nanofibers through Electrospinning with Crosslinking on the Fly.” <i>ACS MACRO LETTERS</i> 5 (6): 676–681. doi:10.1021/acsmacrolett.6b00188.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">O. I. Kalaoglu-Altan <i>et al.</i>, “Multireactive poly(2-oxazoline) nanofibers through electrospinning with crosslinking on the fly,” <i>ACS MACRO LETTERS</i>, vol. 5, no. 6, pp. 676–681, 2016.</div>
      </div>
  mla: |2
      <div class="csl-entry">Kalaoglu-Altan, Ozlem I., et al. “Multireactive Poly(2-Oxazoline) Nanofibers through Electrospinning with Crosslinking on the Fly.” <i>ACS MACRO LETTERS</i>, vol. 5, no. 6, 2016, pp. 676–81, doi:10.1021/acsmacrolett.6b00188.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Kalaoglu-Altan OI, Verbraeken B, Lava K, Gevrek TN, Sanyal R, Dargaville T, et al. Multireactive poly(2-oxazoline) nanofibers through electrospinning with crosslinking on the fly. ACS MACRO LETTERS. 2016;5(6):676–81.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: FBA76C4C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: FBA76C4C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Queenie
  last_name: Van Muylem
  name: Queenie Van Muylem
  name_last_first: Van Muylem, Queenie
  ugent_id:
  - '802000474124'
  - '979218934560'
date_created: 2016-11-24 13:12:07
date_updated: 2026-03-31 14:28:19
doi:
- 10.1021/acsmacrolett.6b00188
external: 0
file:
- _id: '8166669'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: acsmacrolett_2E6b00188.pdf
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  size: '6369579'
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  url: https://biblio.ugent.be/publication/8166658/file/8166669.pdf
handle: http://hdl.handle.net/1854/LU-8166658
issn:
- 2161-1653
issue: '6'
jcr:
  category: POLYMER SCIENCE
  category_decile: 1
  category_quartile: 1
  category_rank: 3/86
  category_vigintile: 1
  eigenfactor: 0.02779
  immediacy_index: 1.444
  impact_factor: 6.185
  impact_factor_5yr: 6.073
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 1
  prev_impact_factor: 5.766
  total_cites: 7015
keyword:
- POLYMER NANOFIBERS
- ENE CLICK CHEMISTRY
- LCST BEHAVIOR
- TUNABLE LCST
- FIBERS
- FUNCTIONALIZATION
- IMMOBILIZATION
- CYCLOADDITION
- STRATEGIES
- SCAFFOLDS
language:
- eng
page:
  first: '676'
  last: '681'
parent:
  short_title: ACS Macro Lett.
  title: ACS MACRO LETTERS
publication_status: published
publication_status_sort: 2
source:
  record: |
    VR 1.0
    PT J
    AU Kalaoglu-Altan, OI
       Verbraeken, B
       Lava, K
       Gevrek, TN
       Sanyal, R
       Dargaville, T
       De Clerck, K
       Hoogenboom, R
       Sanyal, A
    AF Kalaoglu-Altan, Ozlem I.
       Verbraeken, Bart
       Lava, Kathleen
       Gevrek, Tugce Nihal
       Sanyal, Rana
       Dargaville, Tim
       De Clerck, Karen
       Hoogenboom, Richard
       Sanyal, Amitav
    TI Multireactive Poly(2-oxazoline) Nanofibers through Electrospinning with
       Crosslinking on the Fly
    SO ACS MACRO LETTERS
    LA English
    DT Article
    ID ENE CLICK CHEMISTRY; POLYMER NANOFIBERS; LCST BEHAVIOR; TUNABLE LCST;
       FIBERS; FUNCTIONALIZATION; IMMOBILIZATION; CYCLOADDITION; STRATEGIES;
       SCAFFOLDS
    AB Crosslinked hydrophilic poly(2-oxazoline)-based nanofibers amenable to facile multifunctionalization are fabricated using alkene-containing poly(2-alkyl-2-oxazoline)s (PAOx) via in situ photoinitiated radical thiol-ene crosslinking during electrospinning. The resulting crosslinked nanofibers are demonstrated to be multifunctionalizable using different chemistries as they contain two functional handles, being the alkene moieties from the parent copolymer and the residual thiol groups from the tetra-thiol-based crosslinker. While the thiol groups in these nanofibers could be passivated or conjugated to install functional molecules through thiol-maleimide conjugation, the alkene groups could sequentially be modified with thiol-containing molecules using photoinitiated radical thiol-ene reactions. Utilization of the photochemically induced conjugation of thiol-bearing molecules to the alkene groups on the nanofibers is used to obtain functionalization in a spatially controlled manner.
    C1 [Kalaoglu-Altan, Ozlem I.; Gevrek, Tugce Nihal; Sanyal, Rana; Sanyal, Amitav] Bogazici Univ, Dept Chem, TR-34342 Istanbul, Turkey.
       [Sanyal, Rana; Sanyal, Amitav] Bogazici Univ, Ctr Life Sci & Technol, Istanbul, Turkey.
       [Verbraeken, Bart; Lava, Kathleen; Hoogenboom, Richard] Univ Ghent, Dept Organ & Macromol Chem, Supramol Chem Grp, Krijgslaan 281 S4, B-9000 Ghent, Belgium.
       [Dargaville, Tim] Queensland Univ Technol, 2 George St, Brisbane, Qld 4001, Australia.
       [De Clerck, Karen] Univ Ghent, Dept Text, Technol Pk 907, B-9052 Ghent, Belgium.
    RP Sanyal, A (reprint author), Bogazici Univ, Dept Chem, TR-34342 Istanbul, Turkey.; Sanyal, A (reprint author), Bogazici Univ, Ctr Life Sci & Technol, Istanbul, Turkey.; Hoogenboom, R (reprint author), Univ Ghent, Dept Organ & Macromol Chem, Supramol Chem Grp, Krijgslaan 281 S4, B-9000 Ghent, Belgium.
    EM richard.hoogenboom@ugent.be; amitav.sanyal@boun.edu.tr
    RI Hoogenboom, Richard/B-8977-2008
    OI Hoogenboom, Richard/0000-0001-7398-2058
    FU Ministry of Development of Turkey [2009K120520]; ANT; FWO Flanders
    FX R.S. acknowledges funding from Ministry of Development of Turkey for
       Grant No. 2009K120520. B.V. and RH. acknowledge financial support from
       ANT and FWO Flanders.
    NR 43
    U1 15
    U2 15
    PU AMER CHEMICAL SOC
    PI WASHINGTON
    PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
    SN 2161-1653
    J9 ACS MACRO LETT
    JI ACS Macro Lett.
    PD JUN
    PY 2016
    VL 5
    IS 6
    BP 676
    EP 681
    DI 10.1021/acsmacrolett.6b00188
    PG 6
    WC Polymer Science
    SC Polymer Science
    GA DP6AF
    UT WOS:000378578600008
status: public
subject:
- Chemistry
title: Multireactive poly(2-oxazoline) nanofibers through electrospinning with crosslinking
  on the fly
type: journalArticle
volume: '5'
wos_id: '000378578600008'
wos_type: Article
year: '2016'
...
---
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- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
- name: Department of Organic and Macromolecular Chemistry
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  - ugent_id: WE07
  ugent_id: WE07
article_type: original
author:
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  biblio_id: 7C93C83A-2C77-11E3-8FFE-9F6610BDE39D
  first_name: Yin
  last_name: Li
  name: Yin Li
  name_last_first: Li, Yin
  ugent_id:
  - '000131149050'
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  - '975949733557'
- _id: 116B8CE8-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
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    ugent_id: UGent
  biblio_id: 116B8CE8-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Maarten
  last_name: Vergaelen
  name: Maarten Vergaelen
  name_last_first: Vergaelen, Maarten
  ugent_id:
  - '000080251635'
  - '802001657928'
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- _id: F6EFF23C-F0ED-11E1-A9DE-61C894A0A6B4
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    ugent_id: WE07
  biblio_id: F6EFF23C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Sandra
  last_name: Van Vlierberghe
  name: Sandra Van Vlierberghe
  name_last_first: Van Vlierberghe, Sandra
  orcid_id: 0000-0001-7688-1682
  ugent_id:
  - '801001801429'
  - '971159275288'
- _id: F59A8316-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: F59A8316-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Peter
  last_name: Dubruel
  name: Peter Dubruel
  name_last_first: Dubruel, Peter
  orcid_id: 0000-0002-5928-7726
  ugent_id:
  - '801001311476'
  - '978203976171'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
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    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
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biblio_id: '8507699'
cite:
  apa: |2
      <div class="csl-entry">Stubbe, B., Li, Y., Vergaelen, M., Van Vlierberghe, S., Dubruel, P., De Clerck, K., &#38; Hoogenboom, R. (2016). Aqueous electrospinning of poly(2-ethyl-2-oxazoline) : mapping the parameter space. <i>EUROPEAN POLYMER JOURNAL</i>, <i>88</i>, 724–732. https://doi.org/10.1016/j.eurpolymj.2016.09.014</div>
  chicago-author-date: |2
      <div class="csl-entry">Stubbe, Birgit, Yin Li, Maarten Vergaelen, Sandra Van Vlierberghe, Peter Dubruel, Karen De Clerck, and Richard Hoogenboom. 2016. “Aqueous Electrospinning of Poly(2-Ethyl-2-Oxazoline) : Mapping the Parameter Space.” <i>EUROPEAN POLYMER JOURNAL</i> 88: 724–32. https://doi.org/10.1016/j.eurpolymj.2016.09.014.</div>
  fwo: |2
      <div class="csl-entry">Stubbe, Birgit, Yin Li, Maarten Vergaelen, Sandra Van Vlierberghe, Peter Dubruel, Karen De Clerck, and Richard Hoogenboom. 2016. “Aqueous Electrospinning of Poly(2-Ethyl-2-Oxazoline) : Mapping the Parameter Space.” <i>EUROPEAN POLYMER JOURNAL</i> 88: 724–732. doi:10.1016/j.eurpolymj.2016.09.014.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. Stubbe <i>et al.</i>, “Aqueous electrospinning of poly(2-ethyl-2-oxazoline) : mapping the parameter space,” <i>EUROPEAN POLYMER JOURNAL</i>, vol. 88, pp. 724–732, 2016.</div>
      </div>
  mla: |2
      <div class="csl-entry">Stubbe, Birgit, et al. “Aqueous Electrospinning of Poly(2-Ethyl-2-Oxazoline) : Mapping the Parameter Space.” <i>EUROPEAN POLYMER JOURNAL</i>, vol. 88, 2016, pp. 724–32, doi:10.1016/j.eurpolymj.2016.09.014.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Stubbe B, Li Y, Vergaelen M, Van Vlierberghe S, Dubruel P, De Clerck K, et al. Aqueous electrospinning of poly(2-ethyl-2-oxazoline) : mapping the parameter space. EUROPEAN POLYMER JOURNAL. 2016;88:724–32.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2017-02-06 10:31:40
date_updated: 2026-03-31 14:29:42
doi:
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external: 0
file:
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handle: http://hdl.handle.net/1854/LU-8507699
issn:
- 0014-3057
jcr:
  category: POLYMER SCIENCE
  category_decile: 2
  category_quartile: 1
  category_rank: 13/86
  category_vigintile: 3
  eigenfactor: 0.01868
  immediacy_index: 0.797
  impact_factor: 3.531
  impact_factor_5yr: 3.658
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 3
  prev_impact_factor: 3.485
  total_cites: 16506
keyword:
- Electrospinning
- Poly(2-ethyl-2-oxazoline)
- Lab scale
- Pilot scale
- Aqueous
- RING-OPENING POLYMERIZATION
- POLY(2-OXAZOLINE) HYDROGELS
- BIOMEDICAL APPLICATIONS
- NANOFIBERS
- POLYMERS
- FIBERS
- 2-ETHYL-2-OXAZOLINE
- FABRICATION
- MORPHOLOGY
language:
- eng
page:
  first: '724'
  last: '732'
parent:
  short_title: Eur. Polym. J.
  title: EUROPEAN POLYMER JOURNAL
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
- Chemistry
title: 'Aqueous electrospinning of poly(2-ethyl-2-oxazoline) : mapping the parameter
  space'
type: journalArticle
volume: '88'
wos_id: '000396952500060'
wos_type: Article
year: '2016'
...
---
_id: '8037278'
abstract:
- "Delamination and brittle matrix fracture has since long been a problem of fibre
  reinforced composites. This paper investigates if polycaprolactone (PCL) nanofibre
  nonwovens can increase the interlaminar fracture toughness of resin transfer moulded
  glass fibre/epoxy laminates, without causing problems during impregnation and without
  negatively affecting other (mechanical) properties.\r\nThe mode I fracture toughness
  was shown to be dependent on both the nanofibre content as well as on how the nanofibres
  were introduced into the laminates. Almost 100% improvement in fracture toughness
  could be achieved by electrospinning the PCL nanofibres on both sides of the glass
  fibre mats prior to impregnation. This led to a mode I fracture toughness of over
  1200 J/m2. It could be concluded that even state of the art infusion resins with
  a high intrinsic fracture toughness can benefit significantly from nanofibre toughening."
abstract_full:
- lang: eng
  text: "Delamination and brittle matrix fracture has since long been a problem of
    fibre reinforced composites. This paper investigates if polycaprolactone (PCL)
    nanofibre nonwovens can increase the interlaminar fracture toughness of resin
    transfer moulded glass fibre/epoxy laminates, without causing problems during
    impregnation and without negatively affecting other (mechanical) properties.\r\nThe
    mode I fracture toughness was shown to be dependent on both the nanofibre content
    as well as on how the nanofibres were introduced into the laminates. Almost 100%
    improvement in fracture toughness could be achieved by electrospinning the PCL
    nanofibres on both sides of the glass fibre mats prior to impregnation. This led
    to a mode I fracture toughness of over 1200 J/m2. It could be concluded that even
    state of the art infusion resins with a high intrinsic fracture toughness can
    benefit significantly from nanofibre toughening."
affiliation:
- name: Department of Materials Science and Engineering (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW10
  ugent_id: TW10
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
alternative_location:
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  kind: fullText
  url: http://iccm20.org/fullpapers/file?f=dRpeDO2RaA
author:
- _id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Sam
  last_name: van der Heijden
  name: Sam van der Heijden
  name_last_first: van der Heijden, Sam
  ugent_id:
  - '000070168988'
  - '802001291348'
  - '972120157894'
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Ives
  last_name: De Baere
  name: Ives De Baere
  name_last_first: De Baere, Ives
  orcid_id: 0000-0002-6846-0981
  ugent_id:
  - '801001866905'
  - '977854465771'
- first_name: Huber
  last_name: Rahier
  name: Huber Rahier
  name_last_first: Rahier, Huber
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
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    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '8037278'
cite:
  apa: |2
      <div class="csl-entry">van der Heijden, S., Daelemans, L., De Baere, I., Rahier, H., Van Paepegem, W., &#38; De Clerck, K. (2015). Interlaminar toughening of resin transfer moulded glass fibre epoxy laminates by polycaprolactone electrospun nanofibres. <i>20th International Conference on Composite Material</i>. Presented at the 20th International Conference on Composite Materials (ICCM-20), Copenhagen, Denmark.</div>
  chicago-author-date: |2
      <div class="csl-entry">Heijden, Sam van der, Lode Daelemans, Ives De Baere, Huber Rahier, Wim Van Paepegem, and Karen De Clerck. 2015. “Interlaminar Toughening of Resin Transfer Moulded Glass Fibre Epoxy Laminates by Polycaprolactone Electrospun Nanofibres.” In <i>20th International Conference on Composite Material</i>.</div>
  fwo: |2
      <div class="csl-entry">van der Heijden, Sam, Lode Daelemans, Ives De Baere, Huber Rahier, Wim Van Paepegem, and Karen De Clerck. 2015. “Interlaminar Toughening of Resin Transfer Moulded Glass Fibre Epoxy Laminates by Polycaprolactone Electrospun Nanofibres.” In <i>20th International Conference on Composite Material</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. van der Heijden, L. Daelemans, I. De Baere, H. Rahier, W. Van Paepegem, and K. De Clerck, “Interlaminar toughening of resin transfer moulded glass fibre epoxy laminates by polycaprolactone electrospun nanofibres,” in <i>20th International Conference on Composite Material</i>, Copenhagen, Denmark, 2015.</div>
      </div>
  mla: |2
      <div class="csl-entry">van der Heijden, Sam, et al. “Interlaminar Toughening of Resin Transfer Moulded Glass Fibre Epoxy Laminates by Polycaprolactone Electrospun Nanofibres.” <i>20th International Conference on Composite Material</i>, 2015.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">van der Heijden S, Daelemans L, De Baere I, Rahier H, Van Paepegem W, De Clerck K. Interlaminar toughening of resin transfer moulded glass fibre epoxy laminates by polycaprolactone electrospun nanofibres. In: 20th International Conference on Composite Material. 2015.</div>
       </div>
classification: C1
conference:
  end_date: 2015-07-24
  location: Copenhagen, Denmark
  name: 20th International Conference on Composite Materials (ICCM-20)
  start_date: 2015-07-19
copyright_statement: No license (in copyright)
created_by:
  _id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Sam
  last_name: van der Heijden
  name: Sam van der Heijden
  name_last_first: van der Heijden, Sam
  ugent_id:
  - '000070168988'
  - '802001291348'
  - '972120157894'
date_created: 2016-07-14 15:58:00
date_updated: 2026-03-31 13:23:44
external: 0
file:
- _id: '8037313'
  access: open
  content_type: application/vnd.openxmlformats-officedocument.wordprocessingml.document
  kind: fullText
  name: versie_iccm.docx
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  size: '237878'
  url: https://biblio.ugent.be/publication/8037278/file/8037313.docx
handle: http://hdl.handle.net/1854/LU-8037278
language:
- eng
page:
  count: '8'
parent:
  title: 20th International Conference on Composite Material
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Interlaminar toughening of resin transfer moulded glass fibre epoxy laminates
  by polycaprolactone electrospun nanofibres
type: conference
year: '2015'
...
---
_id: '5967681'
abstract:
- Sensors supplying a change in optical properties, easily detectable with the naked
  eye (visual) or inexpensive equipment such as compact spectrometers (optical), are
  a very powerful tool to visualise a wide range of parameters, including temperature,
  light, pH and concentration of chemical substances. Most of these sensors rely on
  indicator compounds showing a change in optical absorbance (colour) or fluorescence
  under the influence of a certain parameter. Halochromic dyes, for instance, change
  colour with pH. Since the use of nanofibres improves sensor sensitivity and response
  time due to their large surface area to volume ratio, the incorporation of indicator
  compounds into nanofibres is one of the current challenges in sensor design. This
  chapter discusses the production of colorimetric and fluorescent nanofibrous membranes
  for visual and optical monitoring (Sects. 7.3 and 7.4), supplemented by some fundamental
  information on those sensing systems (Sect. 7.2) and some interesting applications
  (Sect. 7.5).
abstract_full:
- lang: eng
  text: Sensors supplying a change in optical properties, easily detectable with the
    naked eye (visual) or inexpensive equipment such as compact spectrometers (optical),
    are a very powerful tool to visualise a wide range of parameters, including temperature,
    light, pH and concentration of chemical substances. Most of these sensors rely
    on indicator compounds showing a change in optical absorbance (colour) or fluorescence
    under the influence of a certain parameter. Halochromic dyes, for instance, change
    colour with pH. Since the use of nanofibres improves sensor sensitivity and response
    time due to their large surface area to volume ratio, the incorporation of indicator
    compounds into nanofibres is one of the current challenges in sensor design. This
    chapter discusses the production of colorimetric and fluorescent nanofibrous membranes
    for visual and optical monitoring (Sects. 7.3 and 7.4), supplemented by some fundamental
    information on those sensing systems (Sect. 7.2) and some interesting applications
    (Sect. 7.5).
affiliation:
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  affiliation:
  - name: Ghent University
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    ugent_id: UGent
  biblio_id: 0B227202-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Iline
  last_name: Steyaert
  name: Iline Steyaert
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- first_name: Hubert
  last_name: Rahier
  name: Hubert Rahier
  name_last_first: Rahier, Hubert
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  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
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  - '801000947425'
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biblio_id: '5967681'
cite:
  apa: |2
      <div class="csl-entry">Steyaert, I., Rahier, H., &#38; De Clerck, K. (2015). Nanofibre-based sensors for visual and optical monitoring. In A. Macagnano, E. Zampetti, &#38; E. Kny (Eds.), <i>Nanoscience and Technology</i> (pp. 157–177). https://doi.org/10.1007/978-3-319-14406-1_7</div>
  chicago-author-date: |2
      <div class="csl-entry">Steyaert, Iline, Hubert Rahier, and Karen De Clerck. 2015. “Nanofibre-Based Sensors for Visual and Optical Monitoring.” In <i>Nanoscience and Technology</i>, edited by Antonella Macagnano, Emiliano Zampetti, and Erich Kny, 157–77. Springer. https://doi.org/10.1007/978-3-319-14406-1_7.</div>
  fwo: |2
      <div class="csl-entry">Steyaert, Iline, Hubert Rahier, and Karen De Clerck. 2015. “Nanofibre-Based Sensors for Visual and Optical Monitoring.” In <i>Nanoscience and Technology</i>, ed by. Antonella Macagnano, Emiliano Zampetti, and Erich Kny, 157–177. Springer. doi:10.1007/978-3-319-14406-1_7.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">I. Steyaert, H. Rahier, and K. De Clerck, “Nanofibre-based sensors for visual and optical monitoring,” in <i>Nanoscience and Technology</i>, Natl ResCouncil, Inst Atmospher Pollut Res, Rome, ITALY, 2015, pp. 157–177.</div>
      </div>
  mla: |2
      <div class="csl-entry">Steyaert, Iline, et al. “Nanofibre-Based Sensors for Visual and Optical Monitoring.” <i>Nanoscience and Technology</i>, edited by Antonella Macagnano et al., Springer, 2015, pp. 157–77, doi:10.1007/978-3-319-14406-1_7.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Steyaert I, Rahier H, De Clerck K. Nanofibre-based sensors for visual and optical monitoring. In: Macagnano A, Zampetti E, Kny E, editors. Nanoscience and Technology. Springer; 2015. p. 157–77.</div>
       </div>
classification: P1
conference:
  end_date: 2014-04-30
  location: Natl ResCouncil, Inst Atmospher Pollut Res, Rome, ITALY
  name: 1st International Workshop on Electrospinning for High Performance Sensing
    (EHPS)
  start_date: 2014-04-29
conference_type: proceedingsPaper
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
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    ugent_id: EB21
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  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2015-05-28 09:14:51
date_updated: 2026-03-31 13:23:36
doi:
- 10.1007/978-3-319-14406-1_7
editor:
- first_name: Antonella
  last_name: Macagnano
  name: Antonella Macagnano
  name_last_first: Macagnano, Antonella
- first_name: Emiliano
  last_name: Zampetti
  name: Emiliano Zampetti
  name_last_first: Zampetti, Emiliano
- first_name: Erich
  last_name: Kny
  name: Erich Kny
  name_last_first: Kny, Erich
external: 0
file:
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  size: '16760438'
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  url: https://biblio.ugent.be/publication/5967681/file/5967800.pdf
handle: http://hdl.handle.net/1854/LU-5967681
isbn:
- '9783319144061'
issn:
- 1434-4904
issue_title: ELECTROSPINNING FOR HIGH PERFORMANCE SENSORS
keyword:
- DYE NITRAZINE YELLOW
- VOLATILE ORGANIC-COMPOUNDS
- CONJUGATED POLYMER
- ELECTROSPUN NANOFIBERS
- CHEMICAL SENSORS
- AZO-DYES
- PH SENSOR
- FLUORESCENCE
- BIOSENSORS
- MEMBRANES
language:
- eng
page:
  first: '157'
  last: '177'
parent:
  title: Nanoscience and Technology
publication_status: published
publication_status_sort: 2
publisher:
  name: Springer
status: public
subject:
- Technology and Engineering
title: Nanofibre-based sensors for visual and optical monitoring
type: conference
wos_id: '000364182700009'
wos_type: Proceedings Paper
year: '2015'
...
---
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  first_name: Ives
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- first_name: Irfan
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  - '801001240344'
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- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
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cite:
  apa: |2
      <div class="csl-entry">Daelemans, L., van der Heijden, S., De Baere, I., Muhammad, I., Van Paepegem, W., Rahier, H., &#38; De Clerck, K. (2015). Bisphenol A based polyester binder as an effective interlaminar toughener. <i>COMPOSITES PART B-ENGINEERING</i>, <i>80</i>, 145–153. https://doi.org/10.1016/j.compositesb.2015.05.044</div>
  chicago-author-date: |2
      <div class="csl-entry">Daelemans, Lode, Sam van der Heijden, Ives De Baere, Irfan Muhammad, Wim Van Paepegem, Hubert Rahier, and Karen De Clerck. 2015. “Bisphenol A Based Polyester Binder as an Effective Interlaminar Toughener.” <i>COMPOSITES PART B-ENGINEERING</i> 80: 145–53. https://doi.org/10.1016/j.compositesb.2015.05.044.</div>
  fwo: |2
      <div class="csl-entry">Daelemans, Lode, Sam van der Heijden, Ives De Baere, Irfan Muhammad, Wim Van Paepegem, Hubert Rahier, and Karen De Clerck. 2015. “Bisphenol A Based Polyester Binder as an Effective Interlaminar Toughener.” <i>COMPOSITES PART B-ENGINEERING</i> 80: 145–153. doi:10.1016/j.compositesb.2015.05.044.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Daelemans <i>et al.</i>, “Bisphenol A based polyester binder as an effective interlaminar toughener,” <i>COMPOSITES PART B-ENGINEERING</i>, vol. 80, pp. 145–153, 2015.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daelemans, Lode, et al. “Bisphenol A Based Polyester Binder as an Effective Interlaminar Toughener.” <i>COMPOSITES PART B-ENGINEERING</i>, vol. 80, Elsevier, 2015, pp. 145–53, doi:10.1016/j.compositesb.2015.05.044.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daelemans L, van der Heijden S, De Baere I, Muhammad I, Van Paepegem W, Rahier H, et al. Bisphenol A based polyester binder as an effective interlaminar toughener. COMPOSITES PART B-ENGINEERING. 2015;80:145–53.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
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  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2015-07-14 16:01:08
date_updated: 2026-03-31 13:22:45
doi:
- 10.1016/j.compositesb.2015.05.044
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-6880529
issn:
- 1359-8368
jcr:
  category: ENGINEERING, MULTIDISCIPLINARY
  category_decile: 1
  category_quartile: 1
  category_rank: 4/85
  category_vigintile: 1
  eigenfactor: 0.02689
  immediacy_index: 1.018
  impact_factor: 3.85
  impact_factor_5yr: 3.901
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 2
  prev_impact_factor: 2.983
  total_cites: 11701
keyword:
- Preform
- Fracture toughness
- BLENDS
- POLYMER
- Tackifier
- Delamination
- SURFACE FINISH
- MODIFIED RESIN
- EPOXY COMPOSITES
- Resin transfer moulding (RTM)
- MECHANICAL-BEHAVIOR
- FRACTURE-TOUGHNESS IMPROVEMENT
- POLY(METHYL METHACRYLATE)
- THERMOPLASTIC PREFORMING BINDER
language:
- eng
page:
  first: '145'
  last: '153'
parent:
  title: COMPOSITES PART B-ENGINEERING
publication_status: published
publication_status_sort: 2
publisher:
  name: Elsevier
status: public
subject:
- Technology and Engineering
title: Bisphenol A based polyester binder as an effective interlaminar toughener
type: journalArticle
volume: '80'
wos_id: '000358968800018'
wos_type: Article
year: '2015'
...
---
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  first_name: Lode
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    ugent_id: UGent
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cite:
  apa: |2
      <div class="csl-entry">Daelemans, L., van der Heijden, S., De Baere, I., Rahier, H., Van Paepegem, W., &#38; De Clerck, K. (2015). Nanofibre bridging as a toughening mechanism in carbon/epoxy composite laminates interleaved with electrospun polyamide nanofibrous veils. <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, <i>117</i>, 244–256. https://doi.org/10.1016/j.compscitech.2015.06.021</div>
  chicago-author-date: |2
      <div class="csl-entry">Daelemans, Lode, Sam van der Heijden, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2015. “Nanofibre Bridging as a Toughening Mechanism in Carbon/Epoxy Composite Laminates Interleaved with Electrospun Polyamide Nanofibrous Veils.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i> 117: 244–56. https://doi.org/10.1016/j.compscitech.2015.06.021.</div>
  fwo: |2
      <div class="csl-entry">Daelemans, Lode, Sam van der Heijden, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2015. “Nanofibre Bridging as a Toughening Mechanism in Carbon/Epoxy Composite Laminates Interleaved with Electrospun Polyamide Nanofibrous Veils.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i> 117: 244–256. doi:10.1016/j.compscitech.2015.06.021.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Daelemans, S. van der Heijden, I. De Baere, H. Rahier, W. Van Paepegem, and K. De Clerck, “Nanofibre bridging as a toughening mechanism in carbon/epoxy composite laminates interleaved with electrospun polyamide nanofibrous veils,” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, vol. 117, pp. 244–256, 2015.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daelemans, Lode, et al. “Nanofibre Bridging as a Toughening Mechanism in Carbon/Epoxy Composite Laminates Interleaved with Electrospun Polyamide Nanofibrous Veils.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, vol. 117, Elsevier, 2015, pp. 244–56, doi:10.1016/j.compscitech.2015.06.021.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daelemans L, van der Heijden S, De Baere I, Rahier H, Van Paepegem W, De Clerck K. Nanofibre bridging as a toughening mechanism in carbon/epoxy composite laminates interleaved with electrospun polyamide nanofibrous veils. COMPOSITES SCIENCE AND TECHNOLOGY. 2015;117:244–56.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
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    ugent_id: EB21
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  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2015-07-14 16:15:31
date_updated: 2026-03-31 13:22:45
doi:
- 10.1016/j.compscitech.2015.06.021
external: 0
file:
- _id: '6880579'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: comp_scitech_Daelemans_et_al.pdf
  sha256: ab13119fc3e2b624e733c915ab01131f12b74bdd94f5872e99520ad122f69c2f
  size: '3965730'
  thumbnail_url: https://biblio.ugent.be/publication/6880573/file/6880579/thumbnail.png
  url: https://biblio.ugent.be/publication/6880573/file/6880579.pdf
handle: http://hdl.handle.net/1854/LU-6880573
issn:
- 0266-3538
jcr:
  category: MATERIALS SCIENCE, COMPOSITES
  category_decile: 1
  category_quartile: 1
  category_rank: 1/25
  category_vigintile: 1
  eigenfactor: 0.02307
  immediacy_index: 0.663
  impact_factor: 3.897
  impact_factor_5yr: 4.502
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 1
  prev_impact_factor: 3.569
  total_cites: 22010
keyword:
- NANOCOMPOSITES
- DELAMINATION
- INTERLAYERS
- MORPHOLOGY
- Nano particles
- Delamination
- Damage tolerance
- Electro-spinning
- Fibre bridging
- EPOXY MATRIX
- INTERLAMINAR FRACTURE-TOUGHNESS
- MODE-I
- CURING CHARACTERISTICS
- DAMAGE RESISTANCE
- PHASE-SEPARATION
language:
- eng
page:
  first: '244'
  last: '256'
parent:
  title: COMPOSITES SCIENCE AND TECHNOLOGY
publication_status: published
publication_status_sort: 2
publisher:
  name: Elsevier
status: public
subject:
- Technology and Engineering
title: Nanofibre bridging as a toughening mechanism in carbon/epoxy composite laminates
  interleaved with electrospun polyamide nanofibrous veils
type: journalArticle
volume: '117'
wos_id: '000362132900031'
wos_type: Article
year: '2015'
...
---
_id: '6976872'
abstract:
- Bisphenol A based polyester is commonly used in the industry as a binder, or tackifier,
  to produce cost-saving preforms in Liquid Composite Moulding processes such as Vacuum
  Assisted Resin Transfer Moulding (VARTM). However, it is often reported that the
  presence of these polyesters has a detrimental effect on the mechanical properties
  of the resulting composite laminates. This study shows that interlaminar toughness
  can be increased without negatively affecting other properties by a applying a bisphenol
  A based polyester binder. Both polyester modified epoxy resin as well as polyester
  modified glass/epoxy laminates are studied. It is shown that the presence of the
  polyester has a profound effect on the curing characteristics and glass transition
  temperature of the epoxy resin. Furthermore, fracture toughness experiments (Single
  Edge Notch Bending) show that there is an optimum polyester concentration which
  leads to a toughened epoxy matrix. Composite laminates are produced from binder
  coated glass fibre plies with VARTM. Double Cantilever Beam fracture experiments
  show that the polyester binder increases the Mode I interlaminar toughness by 60
  %. Three point bending experiments show that the flexural properties were not negatively
  affected by the presence of the polyester in the interlaminar region between plies.
abstract_full:
- lang: eng
  text: Bisphenol A based polyester is commonly used in the industry as a binder,
    or tackifier, to produce cost-saving preforms in Liquid Composite Moulding processes
    such as Vacuum Assisted Resin Transfer Moulding (VARTM). However, it is often
    reported that the presence of these polyesters has a detrimental effect on the
    mechanical properties of the resulting composite laminates. This study shows that
    interlaminar toughness can be increased without negatively affecting other properties
    by a applying a bisphenol A based polyester binder. Both polyester modified epoxy
    resin as well as polyester modified glass/epoxy laminates are studied. It is shown
    that the presence of the polyester has a profound effect on the curing characteristics
    and glass transition temperature of the epoxy resin. Furthermore, fracture toughness
    experiments (Single Edge Notch Bending) show that there is an optimum polyester
    concentration which leads to a toughened epoxy matrix. Composite laminates are
    produced from binder coated glass fibre plies with VARTM. Double Cantilever Beam
    fracture experiments show that the polyester binder increases the Mode I interlaminar
    toughness by 60 %. Three point bending experiments show that the flexural properties
    were not negatively affected by the presence of the polyester in the interlaminar
    region between plies.
affiliation:
- name: Department of Materials Science and Engineering (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW10
  ugent_id: TW10
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
author:
- _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
- _id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Sam
  last_name: van der Heijden
  name: Sam van der Heijden
  name_last_first: van der Heijden, Sam
  ugent_id:
  - '000070168988'
  - '802001291348'
  - '972120157894'
- _id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Ives
  last_name: De Baere
  name: Ives De Baere
  name_last_first: De Baere, Ives
  orcid_id: 0000-0002-6846-0981
  ugent_id:
  - '801001866905'
  - '977854465771'
- first_name: Hubert
  last_name: Rahier
  name: Hubert Rahier
  name_last_first: Rahier, Hubert
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '6976872'
cite:
  apa: |2
      <div class="csl-entry">Daelemans, L., van der Heijden, S., De Baere, I., Rahier, H., Van Paepegem, W., &#38; De Clerck, K. (2015). Using a polyester binder for the interlaminar toughening of glass/epoxy composite laminates. <i>20TH INTERNATIONAL CONFERENCE ON COMPOSITE MATERIALS</i>. Presented at the 20th International Conference on Composite Materials (ICCM-20), Copenhagen, Denmark.</div>
  chicago-author-date: |2
      <div class="csl-entry">Daelemans, Lode, Sam van der Heijden, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2015. “Using a Polyester Binder for the Interlaminar Toughening of Glass/Epoxy Composite Laminates.” In <i>20TH INTERNATIONAL CONFERENCE ON COMPOSITE MATERIALS</i>.</div>
  fwo: |2
      <div class="csl-entry">Daelemans, Lode, Sam van der Heijden, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2015. “Using a Polyester Binder for the Interlaminar Toughening of Glass/Epoxy Composite Laminates.” In <i>20TH INTERNATIONAL CONFERENCE ON COMPOSITE MATERIALS</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Daelemans, S. van der Heijden, I. De Baere, H. Rahier, W. Van Paepegem, and K. De Clerck, “Using a polyester binder for the interlaminar toughening of glass/epoxy composite laminates,” in <i>20TH INTERNATIONAL CONFERENCE ON COMPOSITE MATERIALS</i>, Copenhagen, Denmark, 2015.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daelemans, Lode, et al. “Using a Polyester Binder for the Interlaminar Toughening of Glass/Epoxy Composite Laminates.” <i>20TH INTERNATIONAL CONFERENCE ON COMPOSITE MATERIALS</i>, 2015.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daelemans L, van der Heijden S, De Baere I, Rahier H, Van Paepegem W, De Clerck K. Using a polyester binder for the interlaminar toughening of glass/epoxy composite laminates. In: 20TH INTERNATIONAL CONFERENCE ON COMPOSITE MATERIALS. 2015.</div>
       </div>
classification: P1
conference:
  end_date: 2015-07-24
  location: Copenhagen, Denmark
  name: 20th International Conference on Composite Materials (ICCM-20)
  start_date: 2015-07-19
conference_type: proceedingsPaper
copyright_statement: No license (in copyright)
created_by:
  _id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 11F04C9E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lode
  last_name: Daelemans
  name: Lode Daelemans
  name_last_first: Daelemans, Lode
  orcid_id: 0000-0001-6214-3785
  ugent_id:
  - '802001635191'
  - '971650880382'
date_created: 2015-11-06 17:45:08
date_updated: 2026-03-31 13:26:29
external: 0
file:
- _id: '6976874'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: USING_A_POLYESTER_BINDER_FOR_THE_INTERLAMINAR_TOUGHENING_OF_GLASS.pdf
  publication_version: publishedVersion
  sha256: c68660dd171cd65f2c181528f361e7e64b80aa174f1ec10d2bf24387cd03a70a
  size: '665692'
  thumbnail_url: https://biblio.ugent.be/publication/6976872/file/6976874/thumbnail.png
  url: https://biblio.ugent.be/publication/6976872/file/6976874.pdf
handle: http://hdl.handle.net/1854/LU-6976872
keyword:
- Double cantilever beam
- Fracture toughness
- Binder/tackifier
- Vacuum assisted resin transfer moulding
language:
- eng
page:
  count: '10'
parent:
  title: 20TH INTERNATIONAL CONFERENCE ON COMPOSITE MATERIALS
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Using a polyester binder for the interlaminar toughening of glass/epoxy composite
  laminates
type: conference
wos_id: '000614628004029'
wos_type: Proceedings Paper
year: '2015'
...
---
_id: '5954540'
abstract:
- '''Smart'' materials can be defined as materials that respond to a certain stimulus
  with a change in their properties. A specific class herein is halochromic textiles,
  i.e. fibrous materials that change color with pH. Such halochromic textiles play
  an important role in the continuous monitoring and visual reporting of the pH with
  applications in various fields, such as wound treatment and protective clothing.
  pH-sensitive nanofibrous nonwovens have high sensitivity and a fast response time,
  and are mostly fabricated by introducing a pH-responsive dye via dye-doping of the
  feed mixture before fabrication. However, this method suffers from leaching of the
  dye, which is an undesirable effect that not only reduces the output signal strength
  but can also be detrimental to the environment by causing, for instance, toxicological
  responses. In this paper, a new strategy is demonstrated for the reduction of dye
  leaching in electrospun, nanofibrous materials. Through blend electrospinning of
  polyamide-6 (PA6) with a dye-functionalized copolymer, large sheets of uniform,
  halochromic nanofibrous material can be fabricated showing a fast pH-sensitive color
  change. Polymeric entanglements within the nanofiber are proposed to immobilize
  the dye-functionalized copolymer in the PA6 matrix, resulting in drastically reduced
  dye leaching. Such stable nanofibrous, PA6-based, halochromic materials are particularly
  interesting in the design of new colorimetric sensors applicable in several sectors,
  including the biomedical field, agriculture, safety and technical textiles.'
abstract_full:
- lang: eng
  text: '''Smart'' materials can be defined as materials that respond to a certain
    stimulus with a change in their properties. A specific class herein is halochromic
    textiles, i.e. fibrous materials that change color with pH. Such halochromic textiles
    play an important role in the continuous monitoring and visual reporting of the
    pH with applications in various fields, such as wound treatment and protective
    clothing. pH-sensitive nanofibrous nonwovens have high sensitivity and a fast
    response time, and are mostly fabricated by introducing a pH-responsive dye via
    dye-doping of the feed mixture before fabrication. However, this method suffers
    from leaching of the dye, which is an undesirable effect that not only reduces
    the output signal strength but can also be detrimental to the environment by causing,
    for instance, toxicological responses. In this paper, a new strategy is demonstrated
    for the reduction of dye leaching in electrospun, nanofibrous materials. Through
    blend electrospinning of polyamide-6 (PA6) with a dye-functionalized copolymer,
    large sheets of uniform, halochromic nanofibrous material can be fabricated showing
    a fast pH-sensitive color change. Polymeric entanglements within the nanofiber
    are proposed to immobilize the dye-functionalized copolymer in the PA6 matrix,
    resulting in drastically reduced dye leaching. Such stable nanofibrous, PA6-based,
    halochromic materials are particularly interesting in the design of new colorimetric
    sensors applicable in several sectors, including the biomedical field, agriculture,
    safety and technical textiles.'
additional_info: the first two authors contributed equally to the work
affiliation:
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_type: original
author:
- _id: 0B227202-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0B227202-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Iline
  last_name: Steyaert
  name: Iline Steyaert
  name_last_first: Steyaert, Iline
  ugent_id:
  - '000060129993'
  - '802001072793'
  - '979860756278'
- _id: 0267A880-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0267A880-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Gertjan
  last_name: Vancoillie
  name: Gertjan Vancoillie
  name_last_first: Vancoillie, Gertjan
  ugent_id:
  - '000060487479'
  - '802001083911'
  - '973415065357'
- _id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: 2A45E056-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Richard
  last_name: Hoogenboom
  name: Richard Hoogenboom
  name_last_first: Hoogenboom, Richard
  orcid_id: 0000-0001-7398-2058
  ugent_id:
  - '802000620432'
  - '975196852903'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '5954540'
cite:
  apa: |2
      <div class="csl-entry">Steyaert, I., Vancoillie, G., Hoogenboom, R., &#38; De Clerck, K. (2015). Dye immobilization in halochromic nanofibers through blend electrospinning of a dye-containing copolymer and polyamide-6. <i>POLYMER CHEMISTRY</i>, <i>6</i>(14), 2685–2694. https://doi.org/10.1039/c5py00060b</div>
  bof: |2-
      <div class="csl-entry">Steyaert, Iline, Gertjan Vancoillie, Richard Hoogenboom, and Karen De Clerck. 2015. “Dye Immobilization in Halochromic Nanofibers through Blend Electrospinning of a Dye-Containing Copolymer and Polyamide-6.” <i>POLYMER CHEMISTRY</i> 6 (14): 2685–2694. doi:10.1039/c5py00060b.</div>
    <div><i>Impact factor: 5.687, category: POLYMER SCIENCE, rank: 4/85, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Steyaert, Iline, Gertjan Vancoillie, Richard Hoogenboom, and Karen De Clerck. 2015. “Dye Immobilization in Halochromic Nanofibers through Blend Electrospinning of a Dye-Containing Copolymer and Polyamide-6.” <i>POLYMER CHEMISTRY</i> 6 (14): 2685–94. https://doi.org/10.1039/c5py00060b.</div>
  fwo: |2
      <div class="csl-entry">Steyaert, Iline, Gertjan Vancoillie, Richard Hoogenboom, and Karen De Clerck. 2015. “Dye Immobilization in Halochromic Nanofibers through Blend Electrospinning of a Dye-Containing Copolymer and Polyamide-6.” <i>POLYMER CHEMISTRY</i> 6 (14): 2685–2694. doi:10.1039/c5py00060b.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">I. Steyaert, G. Vancoillie, R. Hoogenboom, and K. De Clerck, “Dye immobilization in halochromic nanofibers through blend electrospinning of a dye-containing copolymer and polyamide-6,” <i>POLYMER CHEMISTRY</i>, vol. 6, no. 14, pp. 2685–2694, 2015.</div>
      </div>
  mla: |2
      <div class="csl-entry">Steyaert, Iline, et al. “Dye Immobilization in Halochromic Nanofibers through Blend Electrospinning of a Dye-Containing Copolymer and Polyamide-6.” <i>POLYMER CHEMISTRY</i>, vol. 6, no. 14, 2015, pp. 2685–94, doi:10.1039/c5py00060b.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Steyaert I, Vancoillie G, Hoogenboom R, De Clerck K. Dye immobilization in halochromic nanofibers through blend electrospinning of a dye-containing copolymer and polyamide-6. POLYMER CHEMISTRY. 2015;6(14):2685–94.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2015-05-12 11:45:33
date_updated: 2026-03-31 14:18:22
doi:
- 10.1039/c5py00060b
external: 0
file:
- _id: '5954548'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: c5py00060b_asap.pdf
  sha256: d7c19eeee06e5eb02e3135adc7af19d12f91c6da12722ce9dbc317c348fa2609
  size: '1846803'
  thumbnail_url: https://biblio.ugent.be/publication/5954540/file/5954548/thumbnail.png
  url: https://biblio.ugent.be/publication/5954540/file/5954548.pdf
handle: http://hdl.handle.net/1854/LU-5954540
issn:
- 1759-9954
issue: '14'
jcr:
  category: POLYMER SCIENCE
  category_decile: 1
  category_quartile: 1
  category_rank: 4/85
  category_vigintile: 1
  eigenfactor: 0.04193
  immediacy_index: 1.408
  impact_factor: 5.687
  impact_factor_5yr: 5.632
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 2
  prev_impact_factor: 5.52
  total_cites: 14308
keyword:
- OPTICAL SENSORS
- PH SENSOR
- NITRAZINE YELLOW
- CHEMICAL SENSORS
- VOLATILE ORGANIC-COMPOUNDS
- AZO-DYES
- POLYMER
- FLUORESCENCE
- DESIGN
- FIBERS
language:
- eng
page:
  first: '2685'
  last: '2694'
parent:
  short_title: Polym. Chem.
  title: POLYMER CHEMISTRY
publication_status: published
publication_status_sort: 2
source:
  record: |
    VR 1.0
    PT J
    AU Steyaert, I
       Vancoillie, G
       Hoogenboom, R
       De Clerck, K
    AF Steyaert, Iline
       Vancoillie, Gertjan
       Hoogenboom, Richard
       De Clerck, Karen
    TI Dye immobilization in halochromic nanofibers through blend
       electrospinning of a dye-containing copolymer and polyamide-6
    SO POLYMER CHEMISTRY
    LA English
    DT Article
    ID VOLATILE ORGANIC-COMPOUNDS; CHEMICAL SENSORS; NITRAZINE YELLOW; OPTICAL
       SENSORS; PH SENSOR; AZO-DYES; POLYMER; FLUORESCENCE; DESIGN; FIBERS
    AB 'Smart' materials can be defined as materials that respond to a certain stimulus with a change in their properties. A specific class herein is halochromic textiles, i.e. fibrous materials that change color with pH. Such halochromic textiles play an important role in the continuous monitoring and visual reporting of the pH with applications in various fields, such as wound treatment and protective clothing. pH-sensitive nanofibrous nonwovens have high sensitivity and a fast response time, and are mostly fabricated by introducing a pH-responsive dye via dye-doping of the feed mixture before fabrication. However, this method suffers from leaching of the dye, which is an undesirable effect that not only reduces the output signal strength but can also be detrimental to the environment by causing, for instance, toxicological responses. In this paper, a new strategy is demonstrated for the reduction of dye leaching in electrospun, nanofibrous materials. Through blend electrospinning of polyamide-6 (PA6) with a dye-functionalized copolymer, large sheets of uniform, halochromic nanofibrous material can be fabricated showing a fast pH-sensitive color change. Polymeric entanglements within the nanofiber are proposed to immobilize the dye-functionalized copolymer in the PA6 matrix, resulting in drastically reduced dye leaching. Such stable nanofibrous, PA6-based, halochromic materials are particularly interesting in the design of new colorimetric sensors applicable in several sectors, including the biomedical field, agriculture, safety and technical textiles.
    C1 [Steyaert, Iline; De Clerck, Karen] Univ Ghent, Dept Text, Fibre & Colourat Technol Res Grp, B-9052 Ghent, Belgium.
       [Vancoillie, Gertjan; Hoogenboom, Richard] Univ Ghent, Dept Organ & Macromol Chem, Supramol Chem Grp, B-9000 Ghent, Belgium.
       [Steyaert, Iline] Vrije Univ Brussel, Dept Mat & Chem, Res Unit Phys Chem & Polymer Sci, B-1050 Brussels, Belgium.
    RP De Clerck, K (reprint author), Univ Ghent, Dept Text, Fibre & Colourat Technol Res Grp, Technol Pk 907, B-9052 Ghent, Belgium.
    EM richard.hoogenboom@ugent.be; karen.declerck@ugent.be
    FU Agency for Innovation by Science and Technology of Flanders (IWT); IWT
       Strategic Basic Research [111158, 111141]
    FX Financial support from The Agency for Innovation by Science and
       Technology of Flanders (IWT) is gratefully acknowledged. Results in this
       paper were obtained within the framework of the IWT Strategic Basic
       Research grants 111158 and 111141.
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    NR 62
    PU ROYAL SOC CHEMISTRY
    PI CAMBRIDGE
    PA THOMAS GRAHAM HOUSE, SCIENCE PARK, MILTON RD, CAMBRIDGE CB4 0WF, CAMBS,
       ENGLAND
    SN 1759-9954
    EI 1759-9962
    J9 POLYM CHEM-UK
    JI Polym. Chem.
    PY 2015
    VL 6
    IS 14
    BP 2685
    EP 2694
    DI 10.1039/c5py00060b
    PG 10
    WC Polymer Science
    SC Polymer Science
    GA CE3IO
    UT WOS:000351720100010
status: public
subject:
- Chemistry
title: Dye immobilization in halochromic nanofibers through blend electrospinning
  of a dye-containing copolymer and polyamide-6
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alternative_title:
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  phosphate primer layer on electrospun poly(epsilon-caprolactone)
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cite:
  apa: |2
      <div class="csl-entry">Luickx, N., Van den Vreken, N., D’Oosterlinck, W., Van der Schueren, L., Declercq, H., De Clerck, K., … Verbeeck, R. (2015). Optimization of the activation and nucleation steps in the precipitation of a calcium phosphate primer layer on electrospun poly(ε-caprolactone). <i>JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A</i>, <i>103</i>(2), 511–524. https://doi.org/10.1002/jbm.a.35191</div>
  chicago-author-date: |2
      <div class="csl-entry">Luickx, Nathalie, Natasja Van den Vreken, Willem D’Oosterlinck, Lien Van der Schueren, Heidi Declercq, Karen De Clerck, Maria Cornelissen, and Ronald Verbeeck. 2015. “Optimization of the Activation and Nucleation Steps in the Precipitation of a Calcium Phosphate Primer Layer on Electrospun Poly(ε-Caprolactone).” <i>JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A</i> 103 (2): 511–24. https://doi.org/10.1002/jbm.a.35191.</div>
  fwo: |2
      <div class="csl-entry">Luickx, Nathalie, Natasja Van den Vreken, Willem D’Oosterlinck, Lien Van der Schueren, Heidi Declercq, Karen De Clerck, Maria Cornelissen, and Ronald Verbeeck. 2015. “Optimization of the Activation and Nucleation Steps in the Precipitation of a Calcium Phosphate Primer Layer on Electrospun Poly(ε-Caprolactone).” <i>JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A</i> 103 (2): 511–524. doi:10.1002/jbm.a.35191.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">N. Luickx <i>et al.</i>, “Optimization of the activation and nucleation steps in the precipitation of a calcium phosphate primer layer on electrospun poly(ε-caprolactone),” <i>JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A</i>, vol. 103, no. 2, pp. 511–524, 2015.</div>
      </div>
  mla: |2
      <div class="csl-entry">Luickx, Nathalie, et al. “Optimization of the Activation and Nucleation Steps in the Precipitation of a Calcium Phosphate Primer Layer on Electrospun Poly(ε-Caprolactone).” <i>JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A</i>, vol. 103, no. 2, 2015, pp. 511–24, doi:10.1002/jbm.a.35191.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Luickx N, Van den Vreken N, D’Oosterlinck W, Van der Schueren L, Declercq H, De Clerck K, et al. Optimization of the activation and nucleation steps in the precipitation of a calcium phosphate primer layer on electrospun poly(ε-caprolactone). JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A. 2015;103(2):511–24.</div>
       </div>
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keyword:
- electrospinning
- coating
- poly(epsilon-caprolactone)
- calcium phosphate
- nanofibers
- NANOFIBROUS SCAFFOLDS
- SURFACE MODIFICATION
- EXTRACELLULAR-MATRIX
- POLY(L-LACTIC ACID)
- BONE REGENERATION
- TISSUE
- HYDROXYAPATITE
- FIBERS
- MINERALIZATION
- FABRICATION
language:
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  title: JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A
publication_status: published
publication_status_sort: 2
status: public
subject:
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title: Optimization of the activation and nucleation steps in the precipitation of
  a calcium phosphate primer layer on electrospun poly(ε-caprolactone)
type: journalArticle
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  first_name: Pieter
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biblio_id: '5966384'
cite:
  apa: |2
      <div class="csl-entry">Vanraes, P., Willems, G., Daels, N., Van Hulle, S., De Clerck, K., Surmont, P., … Leys, C. (2015). Decomposition of atrazine traces in water by combination of non-thermal electrical discharge and adsorption on nanofiber membrane. <i>WATER RESEARCH</i>, <i>72</i>, 361–371. https://doi.org/10.1016/j.watres.2014.11.009</div>
  chicago-author-date: |2
      <div class="csl-entry">Vanraes, Patrick, Gert Willems, Nele Daels, Stijn Van Hulle, Karen De Clerck, Pieter Surmont, Frederic Lynen, et al. 2015. “Decomposition of Atrazine Traces in Water by Combination of Non-Thermal Electrical Discharge and Adsorption on Nanofiber Membrane.” <i>WATER RESEARCH</i> 72: 361–71. https://doi.org/10.1016/j.watres.2014.11.009.</div>
  fwo: |2
      <div class="csl-entry">Vanraes, Patrick, Gert Willems, Nele Daels, Stijn Van Hulle, Karen De Clerck, Pieter Surmont, Frederic Lynen, Jeroen Vandamme, Jim Van Durme, Anton Nikiforov, and Christophe Leys. 2015. “Decomposition of Atrazine Traces in Water by Combination of Non-Thermal Electrical Discharge and Adsorption on Nanofiber Membrane.” <i>WATER RESEARCH</i> 72: 361–371. doi:10.1016/j.watres.2014.11.009.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">P. Vanraes <i>et al.</i>, “Decomposition of atrazine traces in water by combination of non-thermal electrical discharge and adsorption on nanofiber membrane,” <i>WATER RESEARCH</i>, vol. 72, pp. 361–371, 2015.</div>
      </div>
  mla: |2
      <div class="csl-entry">Vanraes, Patrick, et al. “Decomposition of Atrazine Traces in Water by Combination of Non-Thermal Electrical Discharge and Adsorption on Nanofiber Membrane.” <i>WATER RESEARCH</i>, vol. 72, 2015, pp. 361–71, doi:10.1016/j.watres.2014.11.009.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Vanraes P, Willems G, Daels N, Van Hulle S, De Clerck K, Surmont P, et al. Decomposition of atrazine traces in water by combination of non-thermal electrical discharge and adsorption on nanofiber membrane. WATER RESEARCH. 2015;72:361–71.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
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    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2015-05-27 12:47:21
date_updated: 2026-03-31 14:18:46
doi:
- 10.1016/j.watres.2014.11.009
external: 0
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handle: http://hdl.handle.net/1854/LU-5966384
issn:
- 0043-1354
jcr:
  category: WATER RESOURCES
  category_decile: 1
  category_quartile: 1
  category_rank: 1/85
  category_vigintile: 1
  eigenfactor: 0.0782
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  prev_impact_factor: 5.528
  total_cites: 61285
keyword:
- DIELECTRIC BARRIER DISCHARGE
- Energy efficiency
- WASTE-WATER
- ADVANCED OXIDATION
- PEROXONE PROCESS
- DEGRADATION
- PLASMA
- PRODUCTS
- REACTOR
- H2O2
- OZONATION
- Degradation by-products
- Peroxone
- Advanced oxidation processes
- Wastewater treatment
- Dielectric barrier discharge
language:
- eng
page:
  first: '361'
  last: '371'
parent:
  short_title: Water Res.
  title: WATER RESEARCH
publication_status: published
publication_status_sort: 2
source:
  record: |
    VR 1.0
    PT J
    AU Vanraes, P
       Willems, G
       Daels, N
       Van Hulle, SWH
       De Clerck, K
       Surmont, P
       Lynen, F
       Vandamme, J
       Van Durme, J
       Nikiforov, A
       Leys, C
    AF Vanraes, Patrick
       Willems, Gert
       Daels, Nele
       Van Hulle, Stijn W. H.
       De Clerck, Karen
       Surmont, Pieter
       Lynen, Frederic
       Vandamme, Jeroen
       Van Durme, Jim
       Nikiforov, Anton
       Leys, Christophe
    TI Decomposition of atrazine traces in water by combination of non-thermal
       electrical discharge and adsorption on nanofiber membrane
    SO WATER RESEARCH
    LA English
    DT Article
    DE Dielectric barrier discharge; Wastewater treatment; Advanced oxidation
       processes; Peroxone; Energy efficiency; Degradation by-products
    ID DIELECTRIC BARRIER DISCHARGE; WASTE-WATER; ADVANCED OXIDATION; PEROXONE
       PROCESS; DEGRADATION; PLASMA; PRODUCTS; REACTOR; H2O2; OZONATION
    AB In recent decades, several types of persistent substances are detected in the aquatic environment at very low concentrations. Unfortunately, conventional water treatment processes are not able to remove these micropollutants. As such, advanced treatment methods are required to meet both current and anticipated maximally allowed concentrations. Plasma discharge in contact with water is a promising new technology, since it produces a wide spectrum of oxidizing species. In this study, a new type of reactor is tested, in which decomposition by atmospheric pulsed direct barrier discharge (pDBD) plasma is combined with micropollutant adsorption on a nanofiber polyamide membrane. Atrazine is chosen as model micropollutant with an initial concentration of 30 mu g/L. While the H2O2 and O-3 production in the reactor is not influenced by the presence of the membrane, there is a significant increase in atrazine decomposition when the membrane is added. With membrane, 85% atrazine removal can be obtained in comparison to only 61% removal without membrane, at the same experimental parameters. The by-products of atrazine decomposition identified by HPLC-MS are deethylatrazine and ammelide. Formation of these by-products is more pronounced when the membrane is added. These results indicate the synergetic effect of plasma discharge and pollutant adsorption, which is attractive for future applications of water treatment. (C) 2014 Elsevier Ltd. All rights reserved.
    C1 [Vanraes, Patrick; Willems, Gert; Nikiforov, Anton; Leys, Christophe] Univ Ghent, Dept Appl Phys, B-9000 Ghent, Belgium.
       [Daels, Nele; De Clerck, Karen] Univ Ghent, Dept Text, B-9052 Zwijnaarde, Belgium.
       [Daels, Nele; Van Hulle, Stijn W. H.] Univ Ghent, Dept Ind Biol Sci, B-8500 Kortrijk, Belgium.
       [Surmont, Pieter; Lynen, Frederic] Univ Ghent, Separat Sci Grp, Dept Organ Chem, B-9000 Ghent, Belgium.
       [Vandamme, Jeroen; Van Durme, Jim] Katholieke Univ Leuven, Res Grp Mol Odor Chem, Dept Microbial & Mol Syst M2S, B-9000 Ghent, Belgium.
       [Nikiforov, Anton] Inst Solut Chem RAS, Ivanovo 153012, Russia.
    RP Vanraes, P (reprint author), Univ Ghent, Dept Appl Phys, Sint Pietersnieuwstr 41 B4, B-9000 Ghent, Belgium.
    EM patrick.vanraes@ugent.be
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    NR 51
    PU PERGAMON-ELSEVIER SCIENCE LTD
    PI OXFORD
    PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND
    SN 0043-1354
    J9 WATER RES
    JI Water Res.
    PD APR 1
    PY 2015
    VL 72
    SI SI
    BP 361
    EP 371
    DI 10.1016/j.watres.2014.11.009
    PG 11
    WC Engineering, Environmental; Environmental Sciences; Water Resources
    SC Engineering; Environmental Sciences & Ecology; Water Resources
    GA CG8ZU
    UT WOS:000353605000029
    PM 25482844
status: public
subject:
- Earth and Environmental Sciences
title: Decomposition of atrazine traces in water by combination of non-thermal electrical
  discharge and adsorption on nanofiber membrane
type: journalArticle
volume: '72'
wos_id: '000353605000029'
wos_type: Article
year: '2015'
...
---
_id: '6999403'
abstract:
- This work focuses on the application of a novel click chemistry approach, based
  on triazolinediones (TAD), to produce elastomeric membranes by electrospinning.
  TAD chemistry has been applied as a post-treatment to tune the mechanical properties
  of fibrous membranes consisting of styrene-butadiene-styrene (SBS) triblock copolymers.
  In addition, an eco-friendly SBS electrospinning solution was developed by electrospinning
  the SBS fibers from a butyl acetate solution to which LiBr and a bifunctional TAD
  molecule were added to increase the conductivity and the amount of polymer entanglements,
  respectively. Straightforward postmodification of these fibers was achieved by submerging
  the SBS membranes in a TAD-acetone solution. The use of, respectively, phenyl TAD
  or bifunctional TAD allowed for the introduction of phenyl groups as well as chemical
  cross-links and thus to tune the mechanical properties of the fibers, resulting
  in an elongation at break between 90 and 700% and a modulus from 100 to over 120
  MPa.
abstract_full:
- lang: eng
  text: This work focuses on the application of a novel click chemistry approach,
    based on triazolinediones (TAD), to produce elastomeric membranes by electrospinning.
    TAD chemistry has been applied as a post-treatment to tune the mechanical properties
    of fibrous membranes consisting of styrene-butadiene-styrene (SBS) triblock copolymers.
    In addition, an eco-friendly SBS electrospinning solution was developed by electrospinning
    the SBS fibers from a butyl acetate solution to which LiBr and a bifunctional
    TAD molecule were added to increase the conductivity and the amount of polymer
    entanglements, respectively. Straightforward postmodification of these fibers
    was achieved by submerging the SBS membranes in a TAD-acetone solution. The use
    of, respectively, phenyl TAD or bifunctional TAD allowed for the introduction
    of phenyl groups as well as chemical cross-links and thus to tune the mechanical
    properties of the fibers, resulting in an elongation at break between 90 and 700%
    and a modulus from 100 to over 120 MPa.
affiliation:
- name: Department of Organic and Macromolecular Chemistry
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE07
  ugent_id: WE07
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_type: original
author:
- _id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Sam
  last_name: van der Heijden
  name: Sam van der Heijden
  name_last_first: van der Heijden, Sam
  ugent_id:
  - '000070168988'
  - '802001291348'
  - '972120157894'
- _id: 0FD8C422-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: 0FD8C422-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Kevin
  last_name: De Bruycker
  name: Kevin De Bruycker
  name_last_first: De Bruycker, Kevin
  orcid_id: 0000-0002-1438-4872
  ugent_id:
  - '000080073092'
  - '802001637518'
  - '971541586846'
- _id: 29F3953A-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 29F3953A-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Robin
  last_name: Simal
  name: Robin Simal
  name_last_first: Simal, Robin
  ugent_id:
  - '000100362260'
- _id: F4AC5984-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: WE
    - ugent_id: WE07
    ugent_id: WE07
  biblio_id: F4AC5984-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Filip
  last_name: Du Prez
  name: Filip Du Prez
  name_last_first: Du Prez, Filip
  orcid_id: 0000-0001-7727-4155
  ugent_id:
  - '801000886393'
  - '976639179245'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '6999403'
cite:
  apa: |2
      <div class="csl-entry">van der Heijden, S., De Bruycker, K., Simal, R., Du Prez, F., &#38; De Clerck, K. (2015). Use of triazolinedione click chemistry for tuning the mechanical properties of electrospun SBS-fibers. <i>MACROMOLECULES</i>, <i>48</i>(18), 6474–6481. https://doi.org/10.1021/acs.macromol.5b01569</div>
  chicago-author-date: |2
      <div class="csl-entry">Heijden, Sam van der, Kevin De Bruycker, Robin Simal, Filip Du Prez, and Karen De Clerck. 2015. “Use of Triazolinedione Click Chemistry for Tuning the Mechanical Properties of Electrospun SBS-Fibers.” <i>MACROMOLECULES</i> 48 (18): 6474–81. https://doi.org/10.1021/acs.macromol.5b01569.</div>
  fwo: |2
      <div class="csl-entry">van der Heijden, Sam, Kevin De Bruycker, Robin Simal, Filip Du Prez, and Karen De Clerck. 2015. “Use of Triazolinedione Click Chemistry for Tuning the Mechanical Properties of Electrospun SBS-Fibers.” <i>MACROMOLECULES</i> 48 (18): 6474–6481. doi:10.1021/acs.macromol.5b01569.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. van der Heijden, K. De Bruycker, R. Simal, F. Du Prez, and K. De Clerck, “Use of triazolinedione click chemistry for tuning the mechanical properties of electrospun SBS-fibers,” <i>MACROMOLECULES</i>, vol. 48, no. 18, pp. 6474–6481, 2015.</div>
      </div>
  mla: |2
      <div class="csl-entry">van der Heijden, Sam, et al. “Use of Triazolinedione Click Chemistry for Tuning the Mechanical Properties of Electrospun SBS-Fibers.” <i>MACROMOLECULES</i>, vol. 48, no. 18, 2015, pp. 6474–81, doi:10.1021/acs.macromol.5b01569.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">van der Heijden S, De Bruycker K, Simal R, Du Prez F, De Clerck K. Use of triazolinedione click chemistry for tuning the mechanical properties of electrospun SBS-fibers. MACROMOLECULES. 2015;48(18):6474–81.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
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  first_name: Queenie
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  name: Queenie Van Muylem
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  ugent_id:
  - '802000474124'
  - '979218934560'
date_created: 2015-12-02 10:42:53
date_updated: 2026-03-31 14:23:42
doi:
- 10.1021/acs.macromol.5b01569
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issn:
- 0024-9297
issue: '18'
jcr:
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  category_decile: 1
  category_quartile: 1
  category_rank: 7/85
  category_vigintile: 2
  eigenfactor: 0.10802
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keyword:
- UV-IRRADIATION
- POLYBUTADIENE
- ENE REACTION
- BLOCK-COPOLYMERS
- DIENE POLYMERS
- TRIBLOCK COPOLYMERS
- CHEMICAL-REACTIONS
- POLYMER NANOFIBERS
- COMPOSITES
- SCAFFOLDS
language:
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page:
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  short_title: Macromolecules
  title: MACROMOLECULES
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source:
  record: |
    VR 1.0
    PT J
    AU van der Heijden, S
       De Bruycker, K
       Simal, R
       Du Prez, F
       De Clerck, K
    AF van der Heijden, Sam
       De Bruycker, Kevin
       Simal, Robin
       Du Prez, Filip
       De Clerck, Karen
    TI Use of Triazolinedione Click Chemistry for Tuning the Mechanical
       Properties of Electrospun SBS-Fibers
    SO MACROMOLECULES
    LA English
    DT Article
    ID TRIBLOCK COPOLYMERS; POLYMER NANOFIBERS; CHEMICAL-REACTIONS;
       BLOCK-COPOLYMERS; DIENE POLYMERS; UV-IRRADIATION; ENE REACTION;
       POLYBUTADIENE; SCAFFOLDS; COMPOSITES
    AB This work focuses on the application of a novel click chemistry approach, based on triazolinediones (TAD), to produce elastomeric membranes by electrospinning. TAD chemistry has been applied as a post-treatment to tune the mechanical properties of fibrous membranes consisting of styrene-butadiene-styrene (SBS) triblock copolymers. In addition, an eco-friendly SBS electrospinning solution was developed by electrospinning the SBS fibers from a butyl acetate solution to which LiBr and a bifunctional TAD molecule were added to increase the conductivity and the amount of polymer entanglements, respectively. Straightforward postmodification of these fibers was achieved by submerging the SBS membranes in a TAD-acetone solution. The use of, respectively, phenyl TAD or bifunctional TAD allowed for the introduction of phenyl groups as well as chemical cross-links and thus to tune the mechanical properties of the fibers, resulting in an elongation at break between 90 and 700% and a modulus from 100 to over 120 MPa.
    C1 [van der Heijden, Sam; Simal, Robin; De Clerck, Karen] Univ Ghent, Dept Text, B-9052 Ghent, Belgium.
       [De Bruycker, Kevin; Du Prez, Filip] Univ Ghent, Polymer Chem Res Grp, Dept Organ & Macromol Chem, B-9000 Ghent, Belgium.
    RP Du Prez, F (reprint author), Univ Ghent, Polymer Chem Res Grp, Dept Organ & Macromol Chem, Krijgslaan 281 S4 Bis, B-9000 Ghent, Belgium.
    EM Filip.DuPrez@UGent.be; Karen.DeClerck@ugent.be
    RI Du Prez, Filip/B-6411-2008
    OI Du Prez, Filip/0000-0001-7727-4155
    FU Agency for Innovation by Science and Technology of Flanders (IWT); IWT
       Strategic Basic Research Grant [121156]; Research Foundation-Flanders
       (FWO)
    FX Special thanks go to Bernhard De Meyer for his help in analyzing the
       polymers via SEC. Financial support from The Agency for Innovation by
       Science and Technology of Flanders (IWT) is gratefully acknowledged.
       Results in this paper were obtained within the framework of the IWT
       Strategic Basic Research Grant 121156. K.D.B. thanks the Research
       Foundation-Flanders (FWO) for the funding of his fellowship.
    NR 41
    U1 9
    U2 9
    PU AMER CHEMICAL SOC
    PI WASHINGTON
    PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
    SN 0024-9297
    EI 1520-5835
    J9 MACROMOLECULES
    JI Macromolecules
    PD SEP 22
    PY 2015
    VL 48
    IS 18
    BP 6474
    EP 6481
    DI 10.1021/acs.macromol.5b01569
    PG 8
    WC Polymer Science
    SC Polymer Science
    GA CS2XP
    UT WOS:000361935600013
status: public
subject:
- Chemistry
title: Use of triazolinedione click chemistry for tuning the mechanical properties
  of electrospun SBS-fibers
type: journalArticle
volume: '48'
wos_id: '000361935600013'
wos_type: Article
year: '2015'
...
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cite:
  apa: |2
      <div class="csl-entry">Daels, N., Radoicic, M., Radetic, M., De Clerck, K., &#38; Van Hulle, S. (2015). Electrospun nanofibre membranes functionalised with TiO2 nanoparticles : evaluation of humic acid and bacterial removal from polluted water. <i>SEPARATION AND PURIFICATION TECHNOLOGY</i>, <i>149</i>, 488–494. https://doi.org/10.1016/j.seppur.2015.06.016</div>
  chicago-author-date: |2
      <div class="csl-entry">Daels, Nele, Marija Radoicic, Maja Radetic, Karen De Clerck, and Stijn Van Hulle. 2015. “Electrospun Nanofibre Membranes Functionalised with TiO2 Nanoparticles : Evaluation of Humic Acid and Bacterial Removal from Polluted Water.” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i> 149: 488–94. https://doi.org/10.1016/j.seppur.2015.06.016.</div>
  fwo: |2
      <div class="csl-entry">Daels, Nele, Marija Radoicic, Maja Radetic, Karen De Clerck, and Stijn Van Hulle. 2015. “Electrospun Nanofibre Membranes Functionalised with TiO2 Nanoparticles : Evaluation of Humic Acid and Bacterial Removal from Polluted Water.” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i> 149: 488–494. doi:10.1016/j.seppur.2015.06.016.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">N. Daels, M. Radoicic, M. Radetic, K. De Clerck, and S. Van Hulle, “Electrospun nanofibre membranes functionalised with TiO2 nanoparticles : evaluation of humic acid and bacterial removal from polluted water,” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i>, vol. 149, pp. 488–494, 2015.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daels, Nele, et al. “Electrospun Nanofibre Membranes Functionalised with TiO2 Nanoparticles : Evaluation of Humic Acid and Bacterial Removal from Polluted Water.” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i>, vol. 149, 2015, pp. 488–94, doi:10.1016/j.seppur.2015.06.016.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daels N, Radoicic M, Radetic M, De Clerck K, Van Hulle S. Electrospun nanofibre membranes functionalised with TiO2 nanoparticles : evaluation of humic acid and bacterial removal from polluted water. SEPARATION AND PURIFICATION TECHNOLOGY. 2015;149:488–94.</div>
       </div>
classification: A1
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date_created: 2015-09-11 10:39:38
date_updated: 2026-03-31 14:22:55
doi:
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keyword:
- Electrospinning
- Microfiltration
- Nanofibres
- Photodegradation
- TiO2 nanoparticles
- PHOTOCATALYTIC DEGRADATION
- TITANIUM-DIOXIDE
- STAPHYLOCOCCUS-AUREUS
- METHYLENE-BLUE
- WASTE-WATER
- IN-VITRO
- PHOTODEGRADATION
- FILTRATION
- TURBIDITY
- COLI
language:
- eng
page:
  first: '488'
  last: '494'
parent:
  short_title: Sep. Purif. Technol.
  title: SEPARATION AND PURIFICATION TECHNOLOGY
publication_status: published
publication_status_sort: 2
status: public
title: 'Electrospun nanofibre membranes functionalised with TiO2 nanoparticles : evaluation
  of humic acid and bacterial removal from polluted water'
type: journalArticle
volume: '149'
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wos_type: Article
year: '2015'
...
---
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  orcid_id: 0000-0002-8280-2108
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biblio_id: '8157397'
cite:
  apa: |2
      <div class="csl-entry">De Clerck, K., &#38; Kiekens, P. (2015). Electrospun nanofibres: new potentials and challenges for textile materials. In L. Walter (Ed.), <i>ETP CONFERENCE</i> (pp. 1–43). BRUSSEL: EURATEX.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Clerck, Karen, and Paul Kiekens. 2015. “Electrospun Nanofibres: New Potentials and Challenges for Textile Materials.” In <i>ETP CONFERENCE</i>, edited by Lutz Walter, 1–43. BRUSSEL: EURATEX.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, and Paul Kiekens. 2015. “Electrospun Nanofibres: New Potentials and Challenges for Textile Materials.” In <i>ETP CONFERENCE</i>, ed by. Lutz Walter, 1–43. BRUSSEL: EURATEX.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck and P. Kiekens, “Electrospun nanofibres: new potentials and challenges for textile materials,” in <i>ETP CONFERENCE</i>, BRUSSEL, 2015, pp. 1–43.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Clerck, Karen, and Paul Kiekens. “Electrospun Nanofibres: New Potentials and Challenges for Textile Materials.” <i>ETP CONFERENCE</i>, edited by Lutz Walter, EURATEX, 2015, pp. 1–43.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, Kiekens P. Electrospun nanofibres: new potentials and challenges for textile materials. In: Walter L, editor. ETP CONFERENCE. BRUSSEL: EURATEX; 2015. p. 1–43.</div>
       </div>
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...
---
_id: '4420867'
abstract:
- The moisture sorption behavior of white and naturally colored cotton fibers is studied
  by dynamic vapor sorption. Dark brown and brown fibers show a higher sorption capacity
  compared to beige and white fibers. The differences in sorption capacity are found
  to be related to the maturity and crystallinity index of the fibers. All fibers
  exhibited sorption hysteresis to varying degrees throughout the full relative humidity
  range. The variations in hysteresis behavior are mainly attributed to the differences
  in crystallinity index of the fibers. In addition the monolayer and polylayer moisture
  content is analyzed using the Hailwood Horrobin model. Monolayer sorption is most
  closely related to the crystallinity index and, to a lower extent, maturity of the
  fibers. For beige and white fibers monolayer sorption remains almost constant, whereas
  for darker fibers it shows a substantial increase with increasing color difference.
  In contrast, polylayer sorption shows a general increasing trend over the whole
  studied color spectrum. Also a noticeable relationship was found between the total
  hysteresis and the monolayer sorption. Yet such relation was less evident for polylayer
  sorption. This study contributes to the better understanding of the dynamic moisture
  sorption behavior of white and naturally colored cotton fibers. This improved understanding
  is important for optimal application of naturally colored cotton fibers in novel
  materials.
abstract_full:
- lang: eng
  text: The moisture sorption behavior of white and naturally colored cotton fibers
    is studied by dynamic vapor sorption. Dark brown and brown fibers show a higher
    sorption capacity compared to beige and white fibers. The differences in sorption
    capacity are found to be related to the maturity and crystallinity index of the
    fibers. All fibers exhibited sorption hysteresis to varying degrees throughout
    the full relative humidity range. The variations in hysteresis behavior are mainly
    attributed to the differences in crystallinity index of the fibers. In addition
    the monolayer and polylayer moisture content is analyzed using the Hailwood Horrobin
    model. Monolayer sorption is most closely related to the crystallinity index and,
    to a lower extent, maturity of the fibers. For beige and white fibers monolayer
    sorption remains almost constant, whereas for darker fibers it shows a substantial
    increase with increasing color difference. In contrast, polylayer sorption shows
    a general increasing trend over the whole studied color spectrum. Also a noticeable
    relationship was found between the total hysteresis and the monolayer sorption.
    Yet such relation was less evident for polylayer sorption. This study contributes
    to the better understanding of the dynamic moisture sorption behavior of white
    and naturally colored cotton fibers. This improved understanding is important
    for optimal application of naturally colored cotton fibers in novel materials.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
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  url: http://www.researchgate.net/publication/260478924_Dynamic_moisture_sorption_behavior_of_cotton_fibers_with_natural_brown_pigments
article_type: original
author:
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  affiliation:
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  biblio_id: FBC58A9C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Özgür
  last_name: Ceylan
  name: Özgür Ceylan
  name_last_first: Ceylan, Özgür
  ugent_id:
  - '002005040722'
  - '802000481295'
  - '972618734561'
- first_name: Florence
  last_name: Goubet
  name: Florence Goubet
  name_last_first: Goubet, Florence
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
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biblio_id: '4420867'
cite:
  apa: |2
      <div class="csl-entry">Ceylan, Ö., Goubet, F., &#38; De Clerck, K. (2014). Dynamic moisture sorption behavior of cotton fibers with natural brown pigments. <i>CELLULOSE</i>, <i>21</i>(3), 1149–1161. https://doi.org/10.1007/s10570-014-0206-6</div>
  chicago-author-date: |2
      <div class="csl-entry">Ceylan, Özgür, Florence Goubet, and Karen De Clerck. 2014. “Dynamic Moisture Sorption Behavior of Cotton Fibers with Natural Brown Pigments.” <i>CELLULOSE</i> 21 (3): 1149–61. https://doi.org/10.1007/s10570-014-0206-6.</div>
  fwo: |2
      <div class="csl-entry">Ceylan, Özgür, Florence Goubet, and Karen De Clerck. 2014. “Dynamic Moisture Sorption Behavior of Cotton Fibers with Natural Brown Pigments.” <i>CELLULOSE</i> 21 (3): 1149–1161. doi:10.1007/s10570-014-0206-6.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Ö. Ceylan, F. Goubet, and K. De Clerck, “Dynamic moisture sorption behavior of cotton fibers with natural brown pigments,” <i>CELLULOSE</i>, vol. 21, no. 3, pp. 1149–1161, 2014.</div>
      </div>
  mla: |2
      <div class="csl-entry">Ceylan, Özgür, et al. “Dynamic Moisture Sorption Behavior of Cotton Fibers with Natural Brown Pigments.” <i>CELLULOSE</i>, vol. 21, no. 3, 2014, pp. 1149–61, doi:10.1007/s10570-014-0206-6.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Ceylan Ö, Goubet F, De Clerck K. Dynamic moisture sorption behavior of cotton fibers with natural brown pigments. CELLULOSE. 2014;21(3):1149–61.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
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  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2014-06-17 14:48:52
date_updated: 2026-03-31 13:22:16
doi:
- 10.1007/s10570-014-0206-6
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-4420867
issn:
- 0969-0239
issue: '3'
jcr:
  category: MATERIALS SCIENCE, PAPER & WOOD
  category_decile: 1
  category_quartile: 1
  category_rank: 1/21
  category_vigintile: 1
  eigenfactor: 0.00994
  immediacy_index: 0.655
  impact_factor: 3.573
  impact_factor_5yr: 4.285
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 1
  prev_impact_factor: 3.033
  total_cites: 5929
keyword:
- NATURALLY COLORED COTTON
- WATER-VAPOR SORPTION
- ADSORPTION-ISOTHERMS
- ORGANIC-MATTER
- CELLULOSE
- MATURITY
- KINETICS
- MODEL
- WOOD
- HYSTERESIS
- Moisture sorption
- Naturally colored cotton
- Dynamic vapor sorption
- Hailwood and Horrobin model
language:
- eng
page:
  first: '1149'
  last: '1161'
parent:
  title: CELLULOSE
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Dynamic moisture sorption behavior of cotton fibers with natural brown pigments
type: journalArticle
volume: '21'
wos_id: '000336322800008'
wos_type: Article
year: '2014'
...
---
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  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: 0B227202-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Iline
  last_name: Steyaert
  name: Iline Steyaert
  name_last_first: Steyaert, Iline
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  - '000060129993'
  - '802001072793'
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- first_name: Guy
  last_name: Van Assche
  name: Guy Van Assche
  name_last_first: Van Assche, Guy
- first_name: Hubert
  last_name: Rahier
  name: Hubert Rahier
  name_last_first: Rahier, Hubert
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  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
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biblio_id: '5643926'
cite:
  apa: |2
      <div class="csl-entry">Steyaert, I., Van Assche, G., Rahier, H., &#38; De Clerck, K. (2014). Melting behaviour and crystal structure of polyamide nanofibres analysed using a fast-scanning calorimeter. <i>BPG Annual Meeting 2014, Abstracts</i>, 130–130. Gent, Belgium: Belgian Polymer Group.</div>
  chicago-author-date: |2
      <div class="csl-entry">Steyaert, Iline, Guy Van Assche, Hubert Rahier, and Karen De Clerck. 2014. “Melting Behaviour and Crystal Structure of Polyamide Nanofibres Analysed Using a Fast-Scanning Calorimeter.” In <i>BPG Annual Meeting 2014, Abstracts</i>, 130–130. Gent, Belgium: Belgian Polymer Group.</div>
  fwo: |2
      <div class="csl-entry">Steyaert, Iline, Guy Van Assche, Hubert Rahier, and Karen De Clerck. 2014. “Melting Behaviour and Crystal Structure of Polyamide Nanofibres Analysed Using a Fast-Scanning Calorimeter.” In <i>BPG Annual Meeting 2014, Abstracts</i>, 130–130. Gent, Belgium: Belgian Polymer Group.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">I. Steyaert, G. Van Assche, H. Rahier, and K. De Clerck, “Melting behaviour and crystal structure of polyamide nanofibres analysed using a fast-scanning calorimeter,” in <i>BPG Annual Meeting 2014, Abstracts</i>, Gent, Belgium, 2014, pp. 130–130.</div>
      </div>
  mla: |2
      <div class="csl-entry">Steyaert, Iline, et al. “Melting Behaviour and Crystal Structure of Polyamide Nanofibres Analysed Using a Fast-Scanning Calorimeter.” <i>BPG Annual Meeting 2014, Abstracts</i>, Belgian Polymer Group, 2014, pp. 130–130.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Steyaert I, Van Assche G, Rahier H, De Clerck K. Melting behaviour and crystal structure of polyamide nanofibres analysed using a fast-scanning calorimeter. In: BPG Annual Meeting 2014, Abstracts. Gent, Belgium: Belgian Polymer Group; 2014. p. 130–130.</div>
       </div>
classification: C3
conference:
  end_date: 2014-05-20
  location: Gent, Belgium
  name: BPG Annual Meeting 2014
  start_date: 2014-05-19
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
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  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
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date_created: 2014-07-08 15:35:27
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handle: http://hdl.handle.net/1854/LU-5643926
language:
- eng
page:
  first: '130'
  last: '130'
parent:
  title: BPG Annual Meeting 2014, Abstracts
publication_status: published
publication_status_sort: 2
publisher:
  location: Gent, Belgium
  name: Belgian Polymer Group
status: public
subject:
- Technology and Engineering
title: Melting behaviour and crystal structure of polyamide nanofibres analysed using
  a fast-scanning calorimeter
type: conference
year: '2014'
...
---
_id: '5718747'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
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author:
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  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
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  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Sam
  last_name: van der Heijden
  name: Sam van der Heijden
  name_last_first: van der Heijden, Sam
  ugent_id:
  - '000070168988'
  - '802001291348'
  - '972120157894'
biblio_id: '5718747'
cite:
  apa: |2
      <div class="csl-entry">De Clerck, K., &#38; van der Heijden, S. (2014). Nieuws uit de Vakgroep Textielkunde: semi-industriële lijn voor productie van nanovezelmembranen. <i>UNITEX : TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i>, (3), 44–44.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Clerck, Karen, and Sam van der Heijden. 2014. “Nieuws Uit de Vakgroep Textielkunde: Semi-Industriële Lijn Voor Productie van Nanovezelmembranen.” <i>UNITEX : TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i>, no. 3: 44–44.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, and Sam van der Heijden. 2014. “Nieuws Uit de Vakgroep Textielkunde: Semi-Industriële Lijn Voor Productie van Nanovezelmembranen.” <i>UNITEX : TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i> (3): 44–44.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck and S. van der Heijden, “Nieuws uit de Vakgroep Textielkunde: semi-industriële lijn voor productie van nanovezelmembranen,” <i>UNITEX : TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i>, no. 3, pp. 44–44, 2014.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Clerck, Karen, and Sam van der Heijden. “Nieuws Uit de Vakgroep Textielkunde: Semi-Industriële Lijn Voor Productie van Nanovezelmembranen.” <i>UNITEX : TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i>, no. 3, 2014, pp. 44–44.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, van der Heijden S. Nieuws uit de Vakgroep Textielkunde: semi-industriële lijn voor productie van nanovezelmembranen. UNITEX : TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE. 2014;(3):44–44.</div>
       </div>
classification: A4
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
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  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
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date_created: 2014-10-07 14:45:47
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handle: http://hdl.handle.net/1854/LU-5718747
issn:
- 0040-5280
issue: '3'
language:
- dut
page:
  first: '44'
  last: '44'
parent:
  title: 'UNITEX : TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: 'Nieuws uit de Vakgroep Textielkunde: semi-industriële lijn voor productie
  van nanovezelmembranen'
type: journalArticle
year: '2014'
...
---
_id: '5808152'
affiliation:
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author:
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  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
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  ugent_id:
  - '000070582957'
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- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
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  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
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    ugent_id: TW11
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  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '5808152'
cite:
  apa: |2
      <div class="csl-entry">Geltmeyer, J., De Buysser, K., &#38; De Clerck, K. (2014). The influence of viscosity on the stable electrospinning of silica nanofibers. <i>3rd International Conference on Electrospinning, Abstracts</i>, 27–27. San Francisco, USA: The American Ceramic Society.</div>
  chicago-author-date: |2
      <div class="csl-entry">Geltmeyer, Jozefien, Klaartje De Buysser, and Karen De Clerck. 2014. “The Influence of Viscosity on the Stable Electrospinning of Silica Nanofibers.” In <i>3rd International Conference on Electrospinning, Abstracts</i>, 27–27. San Francisco, USA: The American Ceramic Society.</div>
  fwo: |2
      <div class="csl-entry">Geltmeyer, Jozefien, Klaartje De Buysser, and Karen De Clerck. 2014. “The Influence of Viscosity on the Stable Electrospinning of Silica Nanofibers.” In <i>3rd International Conference on Electrospinning, Abstracts</i>, 27–27. San Francisco, USA: The American Ceramic Society.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">J. Geltmeyer, K. De Buysser, and K. De Clerck, “The influence of viscosity on the stable electrospinning of silica nanofibers,” in <i>3rd International Conference on Electrospinning, Abstracts</i>, Westin San Francisco, USA, 2014, pp. 27–27.</div>
      </div>
  mla: |2
      <div class="csl-entry">Geltmeyer, Jozefien, et al. “The Influence of Viscosity on the Stable Electrospinning of Silica Nanofibers.” <i>3rd International Conference on Electrospinning, Abstracts</i>, The American Ceramic Society, 2014, pp. 27–27.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Geltmeyer J, De Buysser K, De Clerck K. The influence of viscosity on the stable electrospinning of silica nanofibers. In: 3rd International Conference on Electrospinning, Abstracts. San Francisco, USA: The American Ceramic Society; 2014. p. 27–27.</div>
       </div>
classification: C3
conference:
  end_date: 2014-08-07
  location: Westin San Francisco, USA
  name: 3rd International Conference on Electrospinning
  start_date: 2014-08-04
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2015-01-16 11:13:30
date_updated: 2026-03-31 14:14:31
external: 0
file:
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  url: https://biblio.ugent.be/publication/5808152/file/5808644.pdf
handle: http://hdl.handle.net/1854/LU-5808152
language:
- eng
page:
  first: '27'
  last: '27'
parent:
  title: 3rd International Conference on Electrospinning, Abstracts
publication_status: published
publication_status_sort: 2
publisher:
  location: San Francisco, USA
  name: The American Ceramic Society
status: public
subject:
- Technology and Engineering
title: The influence of viscosity on the stable electrospinning of silica nanofibers
type: conference
year: '2014'
...
---
_id: '5808130'
abstract:
- This study describes the importance of heating rate when analysing nanofibres using
  differential scanning calorimetry and illustrates some pitfalls related to the use
  of conventional rates (-20 K min-1). The melting behaviour of several polyamide
  (PA) types was researched using a fast-scanning calorimeter (RHC, T A Instruments)
  capable of controlled heating rates above 1000 K min-1. Past heating suppresses
  kinetic processes such as cold crystallization, crystal reorganization and crystalline
  perfectioning, which can be necessary for a correct-analysis of crystal structures,
  especially in oriented polymorphous structures such as PA nanofibres. For PA69,
  for instance, analysis at higher rates reveals that nanofibres have a much more
  stable crystal structure than bulk material (only 15% of low-melting phase vs. 71
  % in bulk). This difference cannot be seen at 20 K min-1 since this crystal phase
  recrystallizes during heating, indicating the importance of a higher rate. However,
  high heating rates may result in thermal lag and a reduced resolution. Our results
  indicate that this effect becomes significant for all samples at rates above 500
  K min-1 due to the high porosity of nanofibrous sample (-90%) and thus low thermal
  conductivity. Finding the golden mean between suppression of kinetic processes and
  limitation of thermal lag is key and a comparison of the melting behaviour at high
  and low scan rates is recommended.
abstract_full:
- lang: eng
  text: This study describes the importance of heating rate when analysing nanofibres
    using differential scanning calorimetry and illustrates some pitfalls related
    to the use of conventional rates (-20 K min-1). The melting behaviour of several
    polyamide (PA) types was researched using a fast-scanning calorimeter (RHC, T
    A Instruments) capable of controlled heating rates above 1000 K min-1. Past heating
    suppresses kinetic processes such as cold crystallization, crystal reorganization
    and crystalline perfectioning, which can be necessary for a correct-analysis of
    crystal structures, especially in oriented polymorphous structures such as PA
    nanofibres. For PA69, for instance, analysis at higher rates reveals that nanofibres
    have a much more stable crystal structure than bulk material (only 15% of low-melting
    phase vs. 71 % in bulk). This difference cannot be seen at 20 K min-1 since this
    crystal phase recrystallizes during heating, indicating the importance of a higher
    rate. However, high heating rates may result in thermal lag and a reduced resolution.
    Our results indicate that this effect becomes significant for all samples at rates
    above 500 K min-1 due to the high porosity of nanofibrous sample (-90%) and thus
    low thermal conductivity. Finding the golden mean between suppression of kinetic
    processes and limitation of thermal lag is key and a comparison of the melting
    behaviour at high and low scan rates is recommended.
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- first_name: H
  last_name: Rahier
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  apa: |2
      <div class="csl-entry">Steyaert, I., Van Assche, G., Rahier, H., &#38; De Clerck, K. (2014). (ICE-036-2014) Thermal analysis of nanofibres: the importance of heating rate. <i>3rd International Conference on Electrospinning, Abstracts</i>, 26–26. San Francisco, USA: The American Ceramic Society.</div>
  bof: |2
      <div class="csl-entry">Steyaert, Iline, G Van Assche, H Rahier, and Karen De Clerck. 2014. “(ICE-036-2014) Thermal Analysis of Nanofibres: The Importance of Heating Rate.” In <i>3rd International Conference on Electrospinning, Abstracts</i>, 26–26. San Francisco, USA: The American Ceramic Society.</div>
  chicago-author-date: |2
      <div class="csl-entry">Steyaert, Iline, G Van Assche, H Rahier, and Karen De Clerck. 2014. “(ICE-036-2014) Thermal Analysis of Nanofibres: The Importance of Heating Rate.” In <i>3rd International Conference on Electrospinning, Abstracts</i>, 26–26. San Francisco, USA: The American Ceramic Society.</div>
  fwo: |2
      <div class="csl-entry">Steyaert, Iline, G Van Assche, H Rahier, and Karen De Clerck. 2014. “(ICE-036-2014) Thermal Analysis of Nanofibres: The Importance of Heating Rate.” In <i>3rd International Conference on Electrospinning, Abstracts</i>, 26–26. San Francisco, USA: The American Ceramic Society.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">I. Steyaert, G. Van Assche, H. Rahier, and K. De Clerck, “(ICE-036-2014) Thermal analysis of nanofibres: the importance of heating rate,” in <i>3rd International Conference on Electrospinning, Abstracts</i>, Westin San Francisco, USA, 2014, pp. 26–26.</div>
      </div>
  mla: |2
      <div class="csl-entry">Steyaert, Iline, et al. “(ICE-036-2014) Thermal Analysis of Nanofibres: The Importance of Heating Rate.” <i>3rd International Conference on Electrospinning, Abstracts</i>, The American Ceramic Society, 2014, pp. 26–26.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Steyaert I, Van Assche G, Rahier H, De Clerck K. (ICE-036-2014) Thermal analysis of nanofibres: the importance of heating rate. In: 3rd International Conference on Electrospinning, Abstracts. San Francisco, USA: The American Ceramic Society; 2014. p. 26–26.</div>
       </div>
classification: C3
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  end_date: 2014-08-07
  location: Westin San Francisco, USA
  name: 3rd International Conference on Electrospinning
  start_date: 2014-08-04
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  title: 3rd International Conference on Electrospinning, Abstracts
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publisher:
  location: San Francisco, USA
  name: The American Ceramic Society
status: public
subject:
- Technology and Engineering
title: '(ICE-036-2014) Thermal analysis of nanofibres: the importance of heating rate'
type: conference
year: '2014'
...
---
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affiliation:
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author:
- first_name: Emanuela
  last_name: Guido
  name: Emanuela Guido
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- first_name: Claudio
  last_name: Colleoni
  name: Claudio Colleoni
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- first_name: Maria Rosaria
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  name: Maria Rosaria Plutino
  name_last_first: Plutino, Maria Rosaria
- first_name: Giuseppe
  last_name: Rosace
  name: Giuseppe Rosace
  name_last_first: Rosace, Giuseppe
biblio_id: '5808655'
cite:
  apa: |2
      <div class="csl-entry">Guido, E., Colleoni, C., De Clerck, K., Plutino, M. R., &#38; Rosace, G. (2014). Influence of catalyst in the synthesis of a cellulose-based sensor: kinetic study of 3-glycidoxypropyltrimethoxysilane epoxy ring opening by Lewis acid. <i>SENSORS AND ACTUATORS B-CHEMICAL</i>, <i>203</i>, 213–222. https://doi.org/10.1016/j.snb.2014.06.126</div>
  bof: |2-
      <div class="csl-entry">Guido, Emanuela, Claudio Colleoni, Karen De Clerck, Maria Rosaria Plutino, and Giuseppe Rosace. 2014. “Influence of Catalyst in the Synthesis of a Cellulose-Based Sensor: Kinetic Study of 3-Glycidoxypropyltrimethoxysilane Epoxy Ring Opening by Lewis Acid.” <i>SENSORS AND ACTUATORS B-CHEMICAL</i> 203: 213–222. doi:10.1016/j.snb.2014.06.126.</div>
    <div><i>Impact factor: 4.097, category: INSTRUMENTS & INSTRUMENTATION, rank: 3/56, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Guido, Emanuela, Claudio Colleoni, Karen De Clerck, Maria Rosaria Plutino, and Giuseppe Rosace. 2014. “Influence of Catalyst in the Synthesis of a Cellulose-Based Sensor: Kinetic Study of 3-Glycidoxypropyltrimethoxysilane Epoxy Ring Opening by Lewis Acid.” <i>SENSORS AND ACTUATORS B-CHEMICAL</i> 203: 213–22. https://doi.org/10.1016/j.snb.2014.06.126.</div>
  fwo: |2
      <div class="csl-entry">Guido, Emanuela, Claudio Colleoni, Karen De Clerck, Maria Rosaria Plutino, and Giuseppe Rosace. 2014. “Influence of Catalyst in the Synthesis of a Cellulose-Based Sensor: Kinetic Study of 3-Glycidoxypropyltrimethoxysilane Epoxy Ring Opening by Lewis Acid.” <i>SENSORS AND ACTUATORS B-CHEMICAL</i> 203: 213–222. doi:10.1016/j.snb.2014.06.126.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Guido, C. Colleoni, K. De Clerck, M. R. Plutino, and G. Rosace, “Influence of catalyst in the synthesis of a cellulose-based sensor: kinetic study of 3-glycidoxypropyltrimethoxysilane epoxy ring opening by Lewis acid,” <i>SENSORS AND ACTUATORS B-CHEMICAL</i>, vol. 203, pp. 213–222, 2014.</div>
      </div>
  mla: |2
      <div class="csl-entry">Guido, Emanuela, et al. “Influence of Catalyst in the Synthesis of a Cellulose-Based Sensor: Kinetic Study of 3-Glycidoxypropyltrimethoxysilane Epoxy Ring Opening by Lewis Acid.” <i>SENSORS AND ACTUATORS B-CHEMICAL</i>, vol. 203, 2014, pp. 213–22, doi:10.1016/j.snb.2014.06.126.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Guido E, Colleoni C, De Clerck K, Plutino MR, Rosace G. Influence of catalyst in the synthesis of a cellulose-based sensor: kinetic study of 3-glycidoxypropyltrimethoxysilane epoxy ring opening by Lewis acid. SENSORS AND ACTUATORS B-CHEMICAL. 2014;203:213–22.</div>
       </div>
classification: A1
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  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
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date_created: 2015-01-16 16:44:17
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  total_cites: 41690
keyword:
- Coating
- Hybrid organic-inorganic materials
- Sol-gel
- Epoxy-ring opening
- DIRECT DYES
- Wearable sensor
- METHYL RED
- SYSTEMS
- COTTON
- NMR
- FT IR kinetics
- NITRAZINE YELLOW
- WEARABLE SENSORS
- SOL-GEL PROCESS
- ORGANIC-INORGANIC MATERIALS
- WASH FASTNESS
language:
- eng
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  first: '213'
  last: '222'
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  title: SENSORS AND ACTUATORS B-CHEMICAL
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  record: |
    VR 1.0
    PT J
    AU Guido, Emanuela
       Colleoni, Claudio
       De Clerck, Karen
       Plutino, Maria Rosaria
       Rosace, Giuseppe
    TI Influence of catalyst in the synthesis of a cellulose-based sensor:
       Kinetic study of 3-glycidoxypropyltrimethoxysilane epoxy ring opening by
       Lewis acid
    SO SENSORS AND ACTUATORS B-CHEMICAL
    VL 203
    BP 213
    EP 222
    DI 10.1016/j.snb.2014.06.126
    PD NOV 2014
    PY 2014
    AB Hybrid halochromic sensor coatings were realized immobilizing Nitrazine
       Yellow (NY) onto cotton fabrics via the epoxy group of
       3-glycidoxypropyltrimethoxysilane (GPTMS) silica precursor in acidic
       condition. Boron trifluoride diethyl etherate (BF3OEt2) in a various
       percentage range (1-10%, w/w GPTMS) has been used to catalyze the
       epoxide ring opening. In order to optimize the system, an FTIR study has
       been developed and kinetic data were obtained for the epoxy ring opening
       process. A linear correlation between the obtained kinetic rates and
       BF3percentage was observed. By nuclear magnetic resonance (NMR) analysis
       in solution the real structure of NY, derived from an attack of
       diazonium salt to parahydroxyl position, was confirmed and the final
       product of the reaction between NY and GPTMS was characterized. Finally,
       the different amounts of catalyst were found to affect the coatings wash
       fastness and the halochromic response of the cellulose-based sensors.
       (C) 2014 Elsevier B. V. All rights reserved.
    SN 0925-4005
    UT WOS:000341455400029
status: public
subject:
- Technology and Engineering
title: 'Influence of catalyst in the synthesis of a cellulose-based sensor: kinetic
  study of 3-glycidoxypropyltrimethoxysilane epoxy ring opening by Lewis acid'
type: journalArticle
volume: '203'
wos_id: '000341455400029'
wos_type: Article
year: '2014'
...
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article_type: original
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    ugent_id: UGent
  biblio_id: 065A1108-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Sam
  last_name: van der Heijden
  name: Sam van der Heijden
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  first_name: Wim
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cite:
  apa: |2
      <div class="csl-entry">van der Heijden, S., Daelemans, L., De Schoenmaker, B., De Baere, I., Rahier, H., Van Paepegem, W., &#38; De Clerck, K. (2014). Interlaminar toughening of resin transfer moulded glass fibre epoxy laminates by polycaprolactone electrospun nanofibres. <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, <i>104</i>, 66–73. https://doi.org/10.1016/j.compscitech.2014.09.005</div>
  bof: |2-
      <div class="csl-entry">van der Heijden, Sam, Lode Daelemans, Bert De Schoenmaker, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2014. “Interlaminar Toughening of Resin Transfer Moulded Glass Fibre Epoxy Laminates by Polycaprolactone Electrospun Nanofibres.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i> 104: 66–73. doi:10.1016/j.compscitech.2014.09.005.</div>
    <div><i>Impact factor: 3.569, category: MATERIALS SCIENCE, COMPOSITES, rank: 1/24, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Heijden, Sam van der, Lode Daelemans, Bert De Schoenmaker, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2014. “Interlaminar Toughening of Resin Transfer Moulded Glass Fibre Epoxy Laminates by Polycaprolactone Electrospun Nanofibres.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i> 104: 66–73. https://doi.org/10.1016/j.compscitech.2014.09.005.</div>
  fwo: |2
      <div class="csl-entry">van der Heijden, Sam, Lode Daelemans, Bert De Schoenmaker, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2014. “Interlaminar Toughening of Resin Transfer Moulded Glass Fibre Epoxy Laminates by Polycaprolactone Electrospun Nanofibres.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i> 104: 66–73. doi:10.1016/j.compscitech.2014.09.005.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. van der Heijden <i>et al.</i>, “Interlaminar toughening of resin transfer moulded glass fibre epoxy laminates by polycaprolactone electrospun nanofibres,” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, vol. 104, pp. 66–73, 2014.</div>
      </div>
  mla: |2
      <div class="csl-entry">van der Heijden, Sam, et al. “Interlaminar Toughening of Resin Transfer Moulded Glass Fibre Epoxy Laminates by Polycaprolactone Electrospun Nanofibres.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, vol. 104, 2014, pp. 66–73, doi:10.1016/j.compscitech.2014.09.005.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">van der Heijden S, Daelemans L, De Schoenmaker B, De Baere I, Rahier H, Van Paepegem W, et al. Interlaminar toughening of resin transfer moulded glass fibre epoxy laminates by polycaprolactone electrospun nanofibres. COMPOSITES SCIENCE AND TECHNOLOGY. 2014;104:66–73.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
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date_created: 2015-01-16 17:05:04
date_updated: 2026-03-31 14:14:33
doi:
- 10.1016/j.compscitech.2014.09.005
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handle: http://hdl.handle.net/1854/LU-5808688
issn:
- 0266-3538
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  category: MATERIALS SCIENCE, COMPOSITES
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keyword:
- FRACTURE-TOUGHNESS
- NANOTUBE-POLYMER COMPOSITES
- MATRIX RESIN
- MECHANICAL-PROPERTIES
- DELAMINATION
- MORPHOLOGY
- INTERLAYER
- STRENGTH
- MODE
- Nano composites
- Resin transfer moulding (RTM)
- Delamination
- Fracture toughness
language:
- eng
page:
  first: '66'
  last: '73'
parent:
  title: COMPOSITES SCIENCE AND TECHNOLOGY
publication_status: published
publication_status_sort: 2
source:
  record: |
    VR 1.0
    PT J
    AU van der Heijden, Sam
       Daelemans, Lode
       De Schoenmaker, Bert
       De Baere, Ives
       Rahier, Hubert
       Van Paepegem, Wim
       De Clerck, Karen
    TI Interlaminar toughening of resin transfer moulded glass fibre epoxy
       laminates by polycaprolactone electrospun nanofibres
    SO COMPOSITES SCIENCE AND TECHNOLOGY
    VL 104
    BP 66
    EP 73
    DI 10.1016/j.compscitech.2014.09.005
    PD NOV 19 2014
    PY 2014
    AB Delamination and brittle matrix fracture has since long been a problem
       of fibre reinforced composites. This paper investigates if
       polycaprolactone (PCL) nanofibre nonwovens can increase the interlaminar
       fracture toughness of resin transfer moulded glass fibre/epoxy
       laminates, without causing problems during impregnation and without
       negatively affecting other (mechanical) properties.
       The mode I fracture toughness was shown to be dependent on both the
       nanofibre content as well as on how the nanofibres were introduced into
       the laminates. Almost 100% improvement in fracture toughness could be
       achieved by electrospinning the PCL nanofibres on both sides of the
       glass fibre mats prior to impregnation. This led to a model fracture
       toughness of over 1200 J/m(2). Tensile and dynamic mechanical properties
       of the toughened laminates were not affected by the PCL nanofibres. It
       could be concluded that even state of the art infusion resins with a
       high intrinsic fracture toughness can benefit significantly from
       nanofibre toughening. (C) 2014 Elsevier Ltd. All rights reserved.
    SN 0266-3538
    UT WOS:000344422000010
status: public
subject:
- Technology and Engineering
title: Interlaminar toughening of resin transfer moulded glass fibre epoxy laminates
  by polycaprolactone electrospun nanofibres
type: journalArticle
volume: '104'
wos_id: '000344422000010'
wos_type: Article
year: '2014'
...
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  first_name: Nele
  last_name: Daels
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- first_name: Maja
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cite:
  apa: |2
      <div class="csl-entry">Daels, N., Radoicic, M., Radetic, M., Van Hulle, S., &#38; De Clerck, K. (2014). Functionalisation of electrospun polymer nanofibre membranes with TiO2 nanoparticles in view of dissolved organic matter photodegradation. <i>SEPARATION AND PURIFICATION TECHNOLOGY</i>, <i>133</i>, 282–290. https://doi.org/10.1016/j.seppur.2014.06.040</div>
  chicago-author-date: |2
      <div class="csl-entry">Daels, Nele, Marija Radoicic, Maja Radetic, Stijn Van Hulle, and Karen De Clerck. 2014. “Functionalisation of Electrospun Polymer Nanofibre Membranes with TiO2 Nanoparticles in View of Dissolved Organic Matter Photodegradation.” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i> 133: 282–90. https://doi.org/10.1016/j.seppur.2014.06.040.</div>
  fwo: |2
      <div class="csl-entry">Daels, Nele, Marija Radoicic, Maja Radetic, Stijn Van Hulle, and Karen De Clerck. 2014. “Functionalisation of Electrospun Polymer Nanofibre Membranes with TiO2 Nanoparticles in View of Dissolved Organic Matter Photodegradation.” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i> 133: 282–290. doi:10.1016/j.seppur.2014.06.040.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">N. Daels, M. Radoicic, M. Radetic, S. Van Hulle, and K. De Clerck, “Functionalisation of electrospun polymer nanofibre membranes with TiO2 nanoparticles in view of dissolved organic matter photodegradation,” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i>, vol. 133, pp. 282–290, 2014.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daels, Nele, et al. “Functionalisation of Electrospun Polymer Nanofibre Membranes with TiO2 Nanoparticles in View of Dissolved Organic Matter Photodegradation.” <i>SEPARATION AND PURIFICATION TECHNOLOGY</i>, vol. 133, 2014, pp. 282–90, doi:10.1016/j.seppur.2014.06.040.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daels N, Radoicic M, Radetic M, Van Hulle S, De Clerck K. Functionalisation of electrospun polymer nanofibre membranes with TiO2 nanoparticles in view of dissolved organic matter photodegradation. SEPARATION AND PURIFICATION TECHNOLOGY. 2014;133:282–90.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
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date_created: 2014-07-16 14:36:22
date_updated: 2026-03-31 14:10:21
doi:
- 10.1016/j.seppur.2014.06.040
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handle: http://hdl.handle.net/1854/LU-5659166
issn:
- 1383-5866
jcr:
  category: ENGINEERING, CHEMICAL
  category_decile: 2
  category_quartile: 1
  category_rank: 16/135
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  eigenfactor: 0.02714
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  total_cites: 14804
keyword:
- Microfiltration
- Nanofibres
- Electrospinning
- Photodegradation
- TiO2 nanoparticles
- PHOTOCATALYTIC DEGRADATION
- METHYLENE-BLUE
- AZO DYES
- WATER
- NANOCOMPOSITES
- FILTRATION
- ANATASE
- SIZE
language:
- eng
page:
  first: '282'
  last: '290'
parent:
  short_title: Sep. Purif. Technol.
  title: SEPARATION AND PURIFICATION TECHNOLOGY
publication_status: published
publication_status_sort: 2
status: public
subject:
- Earth and Environmental Sciences
title: Functionalisation of electrospun polymer nanofibre membranes with TiO2 nanoparticles
  in view of dissolved organic matter photodegradation
type: journalArticle
volume: '133'
wos_id: '000341552900034'
wos_type: Article
year: '2014'
...
---
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cite:
  apa: |2
      <div class="csl-entry">Vanraes, P., Willems, G., Nikiforov, A., Daels, N., De Clerck, K., Surmont, P., … Leys, C. (2014). The use of pulsed DBD discharge above water in combination with nano-fiber filtration for control of micro-pollutants in water. <i>XXII Europhysics Conference on Atomic and Molecular Physics of Ionized Gases, Abstracts</i>, 344–345.</div>
  chicago-author-date: |2
      <div class="csl-entry">Vanraes, Patrick, G Willems, Anton Nikiforov, Nele Daels, Karen De Clerck, Pieter Surmont, Frederic Lynen, and Christophe Leys. 2014. “The Use of Pulsed DBD Discharge above Water in Combination with Nano-Fiber Filtration for Control of Micro-Pollutants in Water.” In <i>XXII Europhysics Conference on Atomic and Molecular Physics of Ionized Gases, Abstracts</i>, 344–45.</div>
  fwo: |2
      <div class="csl-entry">Vanraes, Patrick, G Willems, Anton Nikiforov, Nele Daels, Karen De Clerck, Pieter Surmont, Frederic Lynen, and Christophe Leys. 2014. “The Use of Pulsed DBD Discharge above Water in Combination with Nano-Fiber Filtration for Control of Micro-Pollutants in Water.” In <i>XXII Europhysics Conference on Atomic and Molecular Physics of Ionized Gases, Abstracts</i>, 344–345.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">P. Vanraes <i>et al.</i>, “The use of pulsed DBD discharge above water in combination with nano-fiber filtration for control of micro-pollutants in water,” in <i>XXII Europhysics Conference on Atomic and Molecular Physics of Ionized Gases, Abstracts</i>, Greifswald, Germany, 2014, pp. 344–345.</div>
      </div>
  mla: |2
      <div class="csl-entry">Vanraes, Patrick, et al. “The Use of Pulsed DBD Discharge above Water in Combination with Nano-Fiber Filtration for Control of Micro-Pollutants in Water.” <i>XXII Europhysics Conference on Atomic and Molecular Physics of Ionized Gases, Abstracts</i>, 2014, pp. 344–45.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Vanraes P, Willems G, Nikiforov A, Daels N, De Clerck K, Surmont P, et al. The use of pulsed DBD discharge above water in combination with nano-fiber filtration for control of micro-pollutants in water. In: XXII Europhysics Conference on Atomic and Molecular Physics of Ionized Gases, Abstracts. 2014. p. 344–5.</div>
       </div>
classification: C3
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  end_date: 2014-07-19
  location: Greifswald, Germany
  name: XXII Europhysics Conference on Atomic and Molecular Physics of Ionized Gases
    (scampig - XXII)
  start_date: 2014-07-15
copyright_statement: No license (in copyright)
created_by:
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date_created: 2014-07-21 21:55:26
date_updated: 2026-03-31 14:10:23
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handle: http://hdl.handle.net/1854/LU-5660842
isbn:
- 291477186X
language:
- eng
page:
  first: '344'
  last: '345'
parent:
  title: XXII Europhysics Conference on Atomic and Molecular Physics of Ionized Gases,
    Abstracts
publication_status: published
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- Technology and Engineering
title: The use of pulsed DBD discharge above water in combination with nano-fiber
  filtration for control of micro-pollutants in water
type: conference
year: '2014'
...
---
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cite:
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      <div class="csl-entry">van der Heijden, S., De Schoenmaker, B., Rahier, H., Van Assche, G., &#38; De Clerck, K. (2014). The effect of the moisture content on the curing characteristics of an epoxy matrix in the presence of nanofibrous structures. <i>POLYMER TESTING</i>, <i>40</i>, 265–272. https://doi.org/10.1016/j.polymertesting.2014.08.019</div>
  bof: |2-
      <div class="csl-entry">van der Heijden, Sam, Bert De Schoenmaker, Hubert Rahier, Guy Van Assche, and Karen De Clerck. 2014. “The Effect of the Moisture Content on the Curing Characteristics of an Epoxy Matrix in the Presence of Nanofibrous Structures.” <i>POLYMER TESTING</i> 40: 265–272. doi:10.1016/j.polymertesting.2014.08.019.</div>
    <div><i>Impact factor: 2.24, category: MATERIALS SCIENCE, CHARACTERIZATION & TESTING, rank: 2/33, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Heijden, Sam van der, Bert De Schoenmaker, Hubert Rahier, Guy Van Assche, and Karen De Clerck. 2014. “The Effect of the Moisture Content on the Curing Characteristics of an Epoxy Matrix in the Presence of Nanofibrous Structures.” <i>POLYMER TESTING</i> 40: 265–72. https://doi.org/10.1016/j.polymertesting.2014.08.019.</div>
  fwo: |2
      <div class="csl-entry">van der Heijden, Sam, Bert De Schoenmaker, Hubert Rahier, Guy Van Assche, and Karen De Clerck. 2014. “The Effect of the Moisture Content on the Curing Characteristics of an Epoxy Matrix in the Presence of Nanofibrous Structures.” <i>POLYMER TESTING</i> 40: 265–272. doi:10.1016/j.polymertesting.2014.08.019.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. van der Heijden, B. De Schoenmaker, H. Rahier, G. Van Assche, and K. De Clerck, “The effect of the moisture content on the curing characteristics of an epoxy matrix in the presence of nanofibrous structures,” <i>POLYMER TESTING</i>, vol. 40, pp. 265–272, 2014.</div>
      </div>
  mla: |2
      <div class="csl-entry">van der Heijden, Sam, et al. “The Effect of the Moisture Content on the Curing Characteristics of an Epoxy Matrix in the Presence of Nanofibrous Structures.” <i>POLYMER TESTING</i>, vol. 40, 2014, pp. 265–72, doi:10.1016/j.polymertesting.2014.08.019.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">van der Heijden S, De Schoenmaker B, Rahier H, Van Assche G, De Clerck K. The effect of the moisture content on the curing characteristics of an epoxy matrix in the presence of nanofibrous structures. POLYMER TESTING. 2014;40:265–72.</div>
       </div>
classification: A1
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  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
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  - '977385781070'
date_created: 2015-05-27 12:36:55
date_updated: 2026-03-31 14:18:46
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keyword:
- MODULATED-TEMPERATURE DSC
- MECHANICAL-PROPERTIES
- DIFFERENTIAL SCANNING CALORIMETRY
- FRACTURE-TOUGHNESS
- THERMAL-PROPERTIES
- CARBON NANOTUBES
- CURE KINETICS
- COMPOSITE
- INTERPHASE
- SYSTEMS
- Nano-structures
- Cure behaviour
- Thermal analysis
language:
- eng
page:
  first: '265'
  last: '272'
parent:
  short_title: Polym. Test
  title: POLYMER TESTING
publication_status: published
publication_status_sort: 2
source:
  record: "VR 1.0\nPT J\nAU van der Heijden, S\n   De Schoenmaker, B\n   Rahier, H\n
    \  Van Assche, G\n   De Clerck, K\nAF van der Heijden, Sam\n   De Schoenmaker,
    Bert\n   Rahier, Hubert\n   Van Assche, Guy\n   De Clerck, Karen\nTI The effect
    of the moisture content on the curing characteristics of an\n   epoxy matrix in
    the presence of nanofibrous structures\nSO POLYMER TESTING\nLA English\nDT Article\nDE
    Nano-structures; Cure behaviour; Thermal analysis\nID DIFFERENTIAL SCANNING CALORIMETRY;
    MODULATED-TEMPERATURE DSC;\n   MECHANICAL-PROPERTIES; FRACTURE-TOUGHNESS; THERMAL-PROPERTIES;
    CARBON\n   NANOTUBES; CURE KINETICS; COMPOSITE; INTERPHASE; SYSTEMS\nAB This paper
    investigates the effect of polyamide 6 (PA 6) nanofibres and microfibres, as well
    as the effect of moisture present in these structures, on the curing kinetics
    of a diglycidyl ether of bisphenol A (DGEBA)-methylenedianiline (MDA) system.
    Modulated temperature differential scanning calorimetry measurements show that
    the initial reaction rate follows a linearly increasing trend as a function of
    the moisture content present in the nanofibrous structures. Compared to PA 6 microfibrous
    structures, incorporating PA 6 nanofibrous structures exposed to the same humidity
    resulted in a higher initial reaction rate, which is in agreement with the higher
    water absorption of the nanofibrous structure, measured with differential vapour
    sorption. Overall, the nanofibres themselves affect the curing characteristics,
    and the moisture present in the structures enhances this effect. (C) 2014 Elsevier
    Ltd. All rights reserved.\nC1 [van der Heijden, Sam; De Schoenmaker, Bert; De
    Clerck, Karen] Univ Ghent, Dept Text, B-9052 Ghent, Belgium.\n   [Rahier, Hubert;
    Van Assche, Guy] Vrije Univ Brussel, Dept Mat & Chem, B-1050 Brussels, Belgium.\nRP
    De Clerck, K (reprint author), Univ Ghent, Dept Text, Technol Pk 907, B-9052 Ghent,
    Belgium.\nEM Karen.DeClerck@ugent.be\nRI Van Assche, Guy/B-5061-2011\nOI Van Assche,
    Guy/0000-0003-0452-6272\nFU Agency for Innovation by Science and Technology, Flanders
    (IWT); \n   [121156]\nFX Financial support from The Agency for Innovation by Science
    and\n   Technology, Flanders (IWT) is gratefully acknowledged. Results in this\n
    \  paper were obtained within the framework of the IWT Strategic Basic\n   Research
    Grant 121156.\nCR Akangah P, 2010, COMPOS STRUCT, V92, P1432, DOI 10.1016/j.compstruct.2009.11.009\n
    \  Ashrafi B, 2011, COMPOS SCI TECHNOL, V71, P1569, DOI 10.1016/j.compscitech.2011.06.015\n
    \  Aussawasathien D, 2008, MACROMOL SYMP, V264, P26, DOI 10.1002/masy.200850405\n
    \  Bilge K, 2014, COMPOS PART A-APPL S, V58, P73, DOI 10.1016/j.compositesa.2013.12.001\n
    \  Boogh L, 1999, POLYMER, V40, P2249, DOI 10.1016/S0032-3861(98)00464-9\n   Cabanelas
    JC, 2003, J MATER PROCESS TECH, V143, P311, DOI 10.1016/S0924-0136(03)00480-1\n
    \  Ceylan O, 2012, CELLULOSE, V19, P1517, DOI 10.1007/s10570-012-9737-x\n   Chou
    TW, 2010, COMPOS SCI TECHNOL, V70, P1, DOI 10.1016/j.compscitech.2009.10.004\n
    \  Coleman JN, 2006, CARBON, V44, P1624, DOI 10.1016/j.carbon.2006.02.038\n   DANIELEY
    ND, 1981, J POLYM SCI POL CHEM, V19, P2443, DOI 10.1002/pol.1981.170191007\n   De
    Schoenmaker B, 2013, POLYM TEST, V32, P1495, DOI 10.1016/j.polymertesting.2013.09.015\n
    \  De Schoenmaker B, 2013, COMPOS SCI TECHNOL, V79, P35, DOI 10.1016/j.compscitech.2013.02.009\n
    \  Kim KY, 2004, COMPOS PART A-APPL S, V35, P477, DOI 10.1016/j.compositesa.2003.10.005\n
    \  Munz M, 2008, J ADHESION, V84, P445, DOI 10.1080/00218460802089312\n   Munz
    M, 2006, J PHYS D APPL PHYS, V39, P4044, DOI 10.1088/0022-3727/39/18/016\n   Musto
    P, 2000, HIGH PERFORM POLYM, V12, P155, DOI 10.1088/0954-0083/12/1/312\n   Nam
    IW, 2011, COMPOS PART A-APPL S, V42, P1110, DOI 10.1016/j.compositesa.2011.04.016\n
    \  Nuhiji B, 2011, COMPOS SCI TECHNOL, V71, P1761, DOI 10.1016/j.compscitech.2011.08.011\n
    \  Palazzetti R, 2012, COMPOS STRUCT, V94, P571, DOI 10.1016/j.compstruct.2011.08.019\n
    \  PALMESE GR, 1994, J ADHESION, V44, P29, DOI 10.1080/00218469408026615\n   Palmese
    GR, 1999, COMPOS PART A-APPL S, V30, P11, DOI 10.1016/S1359-835X(98)00108-0\n
    \  Qian H, 2010, J MATER CHEM, V20, P4751, DOI 10.1039/c000041h\n   Reading M.,
    2006, MODULATED TEMPERATUR, P83\n   Sangwichien C, 2002, COLLOID SURFACE A, V206,
    P313, DOI 10.1016/S0927-7757(02)00048-1\n   Savolainen K, 2010, SAFETY SCI, V48,
    P957, DOI 10.1016/j.ssci.2010.03.006\n   Singh B.P., 2012, AIP ADV, V2\n   Swier
    S, 2004, J APPL POLYM SCI, V91, P2814, DOI 10.1002/app.13467\n   Swier S, 2003,
    J POLYM SCI POL PHYS, V41, P594, DOI 10.1002/polb.10413\n   Swier S, 2004, J APPL
    POLYM SCI, V91, P2798, DOI 10.1002/app.13466\n   Tang LC, 2013, COMPOS PART A-APPL
    S, V45, P95, DOI 10.1016/j.compositesa.2012.09.012\n   VanAssche G, 1995, THERMOCHIM
    ACTA, V268, P121, DOI 10.1016/0040-6031(95)02693-2\n   WILKINSON SP, 1993, POLYMER,
    V34, P870, DOI 10.1016/0032-3861(93)90376-L\nNR 32\nPU ELSEVIER SCI LTD\nPI OXFORD\nPA
    THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND\nSN 0142-9418\nEI
    1873-2348\nJ9 POLYM TEST\nJI Polym. Test\nPD DEC\nPY 2014\nVL 40\nBP 265\nEP 272\nDI
    10.1016/j.polymertesting.2014.08.019\nPG 8\nWC Materials Science, Characterization
    & Testing; Polymer Science\nSC Materials Science; Polymer Science\nGA AU3WP\nUT
    WOS:000345541800033\n"
status: public
subject:
- Technology and Engineering
title: The effect of the moisture content on the curing characteristics of an epoxy
  matrix in the presence of nanofibrous structures
type: journalArticle
volume: '40'
wos_id: '000345541800033'
wos_type: Article
year: '2014'
...
---
_id: '4353650'
abstract:
- Sulfonphthaleine dyes are an important class of pH indicators, finding applications
  in novel (textile) sensors. In this paper, we present a combined experimental and
  theoretical study to elucidate the halochromic behaviour of a large set of sulfonphthaleine
  compounds. Starting from an experimental analysis consisting of UV-Vis spectroscopy,
  the pH region and the absorption wavelengths related to the colour shift are obtained
  and pK(a) values are derived. The effect of the substituents on the pH region can
  be traced back to their electron donating/withdrawing properties. Time-Dependent
  Density Functional Theory (TD-DFT) is able to adequately produce the trend in experimental
  wavelengths. Proton affinities are used to assess the effect of substituents on
  the pH region. The combination of theory and experiment is able to give a better
  understanding of the pH sensitivity; the methodology in this work will be useful
  in future dye design and is applicable to other dye classes as well. (C) 2013 Elsevier
  Ltd. All rights reserved.
abstract_full:
- lang: eng
  text: Sulfonphthaleine dyes are an important class of pH indicators, finding applications
    in novel (textile) sensors. In this paper, we present a combined experimental
    and theoretical study to elucidate the halochromic behaviour of a large set of
    sulfonphthaleine compounds. Starting from an experimental analysis consisting
    of UV-Vis spectroscopy, the pH region and the absorption wavelengths related to
    the colour shift are obtained and pK(a) values are derived. The effect of the
    substituents on the pH region can be traced back to their electron donating/withdrawing
    properties. Time-Dependent Density Functional Theory (TD-DFT) is able to adequately
    produce the trend in experimental wavelengths. Proton affinities are used to assess
    the effect of substituents on the pH region. The combination of theory and experiment
    is able to give a better understanding of the pH sensitivity; the methodology
    in this work will be useful in future dye design and is applicable to other dye
    classes as well. (C) 2013 Elsevier Ltd. All rights reserved.
affiliation:
- name: Department of Applied physics
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  - ugent_id: TW
  - ugent_id: TW17
  ugent_id: TW17
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
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  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_type: original
author:
- _id: 018BF682-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 018BF682-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Thierry
  last_name: De Meyer
  name: Thierry De Meyer
  name_last_first: De Meyer, Thierry
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  - '802001054912'
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  affiliation:
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    - ugent_id: TW
    - ugent_id: TW08
    ugent_id: TW08
  biblio_id: F698F216-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: Hemelsoet
  name: Karen Hemelsoet
  name_last_first: Hemelsoet, Karen
  orcid_id: 0000-0002-6537-9731
  ugent_id:
  - '801001688867'
  - '919018664016'
  - '971341725622'
- _id: F542886E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW17
    ugent_id: TW17
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    - ugent_id: WE05
    ugent_id: WE05
  biblio_id: F542886E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Veronique
  last_name: Van Speybroeck
  name: Veronique Van Speybroeck
  name_last_first: Van Speybroeck, Veronique
  orcid_id: 0000-0003-2206-178X
  ugent_id:
  - '801001153549'
  - '919016668139'
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- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
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  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
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  - '801000947425'
  - '976215851340'
biblio_id: '4353650'
cite:
  apa: |2
      <div class="csl-entry">De Meyer, T., Hemelsoet, K., Van Speybroeck, V., &#38; De Clerck, K. (2014). Substituent effects on absorption spectra of pH indicators: an experimental and computational study of sulfonphthaleine dyes. <i>DYES AND PIGMENTS</i>, <i>102</i>, 241–250. https://doi.org/10.1016/j.dyepig.2013.10.048</div>
  bof: |2-
      <div class="csl-entry">De Meyer, Thierry, Karen Hemelsoet, Veronique Van Speybroeck, and Karen De Clerck. 2014. “Substituent Effects on Absorption Spectra of PH Indicators: An Experimental and Computational Study of Sulfonphthaleine Dyes.” <i>DYES AND PIGMENTS</i> 102: 241–250. doi:10.1016/j.dyepig.2013.10.048.</div>
    <div><i>Impact factor: 3.966, category: MATERIALS SCIENCE, TEXTILES, rank: 1/22, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">De Meyer, Thierry, Karen Hemelsoet, Veronique Van Speybroeck, and Karen De Clerck. 2014. “Substituent Effects on Absorption Spectra of PH Indicators: An Experimental and Computational Study of Sulfonphthaleine Dyes.” <i>DYES AND PIGMENTS</i> 102: 241–50. https://doi.org/10.1016/j.dyepig.2013.10.048.</div>
  fwo: |2
      <div class="csl-entry">De Meyer, Thierry, Karen Hemelsoet, Veronique Van Speybroeck, and Karen De Clerck. 2014. “Substituent Effects on Absorption Spectra of PH Indicators: An Experimental and Computational Study of Sulfonphthaleine Dyes.” <i>DYES AND PIGMENTS</i> 102: 241–250. doi:10.1016/j.dyepig.2013.10.048.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">T. De Meyer, K. Hemelsoet, V. Van Speybroeck, and K. De Clerck, “Substituent effects on absorption spectra of pH indicators: an experimental and computational study of sulfonphthaleine dyes,” <i>DYES AND PIGMENTS</i>, vol. 102, pp. 241–250, 2014.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Meyer, Thierry, et al. “Substituent Effects on Absorption Spectra of PH Indicators: An Experimental and Computational Study of Sulfonphthaleine Dyes.” <i>DYES AND PIGMENTS</i>, vol. 102, ELSEVIER SCI LTD, 2014, pp. 241–50, doi:10.1016/j.dyepig.2013.10.048.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Meyer T, Hemelsoet K, Van Speybroeck V, De Clerck K. Substituent effects on absorption spectra of pH indicators: an experimental and computational study of sulfonphthaleine dyes. DYES AND PIGMENTS. 2014;102:241–50.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F93A4808-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
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    ugent_id: UGent
  biblio_id: F93A4808-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Dewitte
  name: Wim Dewitte
  name_last_first: Dewitte, Wim
  ugent_id:
  - '972352832707'
date_created: 2014-04-04 15:24:12
date_updated: 2026-03-31 13:59:19
doi:
- 10.1016/j.dyepig.2013.10.048
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handle: http://hdl.handle.net/1854/LU-4353650
issn:
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jcr:
  category: MATERIALS SCIENCE, TEXTILES
  category_decile: 1
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keyword:
- GLASSY-CARBON ELECTRODE
- GENERALIZED-GRADIENT-APPROXIMATION
- DENSITY-FUNCTIONAL THEORY
- CONTINUUM SOLVATION METHODS
- EXCITED-STATE PROPERTIES
- AB-INITIO CALCULATIONS
- COMPLETE BASIS-SET
- TD-DFT
- AZO DYES
- THYMOL BLUE
- Sulfonphthaleine dyes
- Halochromism
- TD-DFT
- UV-Vis spectroscopy
- Substituent effects
- pK(a)
language:
- eng
page:
  first: '241'
  last: '250'
parent:
  short_title: Dyes Pigment.
  title: DYES AND PIGMENTS
publication_status: published
publication_status_sort: 2
publisher:
  name: ELSEVIER SCI LTD
source:
  record: |
    VR 1.0
    PT J
    AU De Meyer, T
       Hemelsoet, K
       Van Speybroeck, V
       De Clerck, K
    AF De Meyer, Thierry
       Hemelsoet, Karen
       Van Speybroeck, Veronique
       De Clerck, Karen
    TI Substituent effects on absorption spectra of pH indicators: An
       experimental and computational study of sulfonphthaleine dyes
    SO DYES AND PIGMENTS
    LA English
    DT Article
    DE Sulfonphthaleine dyes; Halochromism; TD-DFT; UV-Vis spectroscopy;
       Substituent effects; pK(a)
    ID DENSITY-FUNCTIONAL THEORY; GLASSY-CARBON ELECTRODE;
       GENERALIZED-GRADIENT-APPROXIMATION; CONTINUUM SOLVATION METHODS;
       EXCITED-STATE PROPERTIES; AB-INITIO CALCULATIONS; COMPLETE BASIS-SET;
       TD-DFT; AZO DYES; THYMOL BLUE
    AB Sulfonphthaleine dyes are an important class of pH indicators, finding applications in novel (textile) sensors. In this paper, we present a combined experimental and theoretical study to elucidate the halochromic behaviour of a large set of sulfonphthaleine compounds. Starting from an experimental analysis consisting of UV-Vis spectroscopy, the pH region and the absorption wavelengths related to the colour shift are obtained and pK(a) values are derived. The effect of the substituents on the pH region can be traced back to their electron donating/withdrawing properties. Time-Dependent Density Functional Theory (TD-DFT) is able to adequately produce the trend in experimental wavelengths. Proton affinities are used to assess the effect of substituents on the pH region. The combination of theory and experiment is able to give a better understanding of the pH sensitivity; the methodology in this work will be useful in future dye design and is applicable to other dye classes as well. (C) 2013 Elsevier Ltd. All rights reserved.
    C1 [De Meyer, Thierry; De Clerck, Karen] Dept Text, B-9052 Zwijnaarde, Belgium.
       [De Meyer, Thierry; Hemelsoet, Karen; Van Speybroeck, Veronique] Ctr Mol Modeling, B-9052 Zwijnaarde, Belgium.
    RP De Clerck, K (reprint author), Univ Ghent, Dept Text, Technol Pk 907, B-9052 Zwijnaarde, Belgium.
    EM thierry.demeyer@ugent.be; karen.hemelsoet@ugent.be;
       veronique.vanspeybroeck@ugent.be; karen.declerck@ugent.be
    FU Fund for Scientific Research Flanders (FWO); Research Board of Ghent
       University (BOF); Interuniversity Attraction Poles Programme [P7/05];
       Belgian Science Policy Office
    FX The Fund for Scientific Research Flanders (FWO) and the Research Board
       of Ghent University (BOF) are acknowledged for their financial support.
       Computational and experimental resources and services used in this work
       were provided by Ghent University. Support is acknowledged by the
       Interuniversity Attraction Poles Programme (P7/05) initiated by the
       Belgian Science Policy Office. The authors would also like to thank
       Prof. Denis Jacquemin for the helpful suggestions and Andy Van Yperen -
       De Deyne, Lien Van der Schueren and Lennart Joos for fruitful
       discussions.
    NR 123
    PU ELSEVIER SCI LTD
    PI OXFORD
    PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
    SN 0143-7208
    EI 1873-3743
    J9 DYES PIGMENTS
    JI Dyes Pigment.
    PD MAR
    PY 2014
    VL 102
    BP 241
    EP 250
    DI 10.1016/j.dyepig.2013.10.048
    PG 10
    WC Chemistry, Applied; Engineering, Chemical; Materials Science, Textiles
    SC Chemistry; Engineering; Materials Science
    GA AB0LO
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title: 'Substituent effects on absorption spectra of pH indicators: an experimental
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      <div class="csl-entry">Steyaert, I., &#38; De Clerck, K. (2014). Nanofibrous membranes for visual and optical monitoring: a focus on pH-­‐sensors. <i>Electrospinning for High Performance Sensing, Abstracts</i>, 25–26. Monterotondo, Rome, Italy: CNR-IIA.</div>
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      <div class="csl-entry">Steyaert, Iline, and Karen De Clerck. 2014. “Nanofibrous Membranes for Visual and Optical Monitoring: A Focus on PH-­‐sensors.” In <i>Electrospinning for High Performance Sensing, Abstracts</i>, 25–26. Monterotondo, Rome, Italy: CNR-IIA.</div>
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  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">I. Steyaert and K. De Clerck, “Nanofibrous membranes for visual and optical monitoring: a focus on pH-­‐sensors,” in <i>Electrospinning for High Performance Sensing, Abstracts</i>, Rome, Italy, 2014, pp. 25–26.</div>
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  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Steyaert I, De Clerck K. Nanofibrous membranes for visual and optical monitoring: a focus on pH-­‐sensors. In: Electrospinning for High Performance Sensing, Abstracts. Monterotondo, Rome, Italy: CNR-IIA; 2014. p. 25–6.</div>
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      <div class="csl-entry">Goethals, A., Mugadza, T., Arslanoglu, Y., Zugle, R., Antunes, E., Van Hulle, S., … De Clerck, K. (2014). Polyamide nanofiber membranes functionalized with zinc phthalocyanines. <i>JOURNAL OF APPLIED POLYMER SCIENCE</i>, <i>131</i>(13). https://doi.org/10.1002/app.40486</div>
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  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">A. Goethals <i>et al.</i>, “Polyamide nanofiber membranes functionalized with zinc phthalocyanines,” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i>, vol. 131, no. 13, 2014.</div>
      </div>
  mla: |2
      <div class="csl-entry">Goethals, Annelies, et al. “Polyamide Nanofiber Membranes Functionalized with Zinc Phthalocyanines.” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i>, vol. 131, no. 13, 2014, doi:10.1002/app.40486.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Goethals A, Mugadza T, Arslanoglu Y, Zugle R, Antunes E, Van Hulle S, et al. Polyamide nanofiber membranes functionalized with zinc phthalocyanines. JOURNAL OF APPLIED POLYMER SCIENCE. 2014;131(13).</div>
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keyword:
- SCAFFOLDS
- FILTRATION
- BACTERIA
- SINGLET OXYGEN
- ELECTROSPUN
- CHITOSAN
- PHOTOSENSITIZERS
- functionalization of polymers
- photochemistry
- separation techniques
- PHOTODYNAMIC THERAPY
- METAL-PHTHALOCYANINES
- TITANIUM-DIOXIDE
- electrospinning
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    VR 1.0
    PT J
    AU Goethals, A
       Mugadza, T
       Arslanoglu, Y
       Zugle, R
       Antunes, E
       Van Hulle, SWH
       Nyokong, T
       De Clerck, K
    AF Goethals, Annelies
       Mugadza, Tawanda
       Arslanoglu, Yasin
       Zugle, Ruphino
       Antunes, Edith
       Van Hulle, Stijn W. H.
       Nyokong, Tebello
       De Clerck, Karen
    TI Polyamide Nanofiber Membranes Functionalized with Zinc Phthalocyanines
    SO JOURNAL OF APPLIED POLYMER SCIENCE
    LA English
    DT Article
    DE electrospinning; functionalization of polymers; photochemistry;
       separation techniques
    ID PHOTODYNAMIC THERAPY; METAL-PHTHALOCYANINES; TITANIUM-DIOXIDE; SINGLET
       OXYGEN; ELECTROSPUN; CHITOSAN; PHOTOSENSITIZERS; FILTRATION; SCAFFOLDS;
       BACTERIA
    AB Electrospinning is an efficient method for the production of polyamide nanofiber membranes that are suitable for water filtration. Previous studies have shown that nanofiber membranes have high clean water permeability. The pathogen removal efficiency can be improved by functionalization with (organic) biocides. However, these membranes, like other membranes, are vulnerable to fouling which reduces the filtration efficiency. Therefore the present article investigates the potential of zinc phthalocyanines, which can produce singlet oxygen in the presence of visible light, as a functionalizing agent. The polyamide nanofiber membranes were functionalized with phthalocyanines using both a pre-functionalizing and post-functionalizing method. Only the post-functionalization method shows to result in nanofiber membranes capable of producing singlet oxygen. After 30 min 45% of 1,2-diphenylisobenzofuran (DPBF), used as an oxygen quencher, was removed by reaction with singlet oxygen. This resulted in a removal rate of 0.33 mol DBPF mol(-1)Zn min(-1). During short term leaching tests, phthalocyanines could not be detected. (c) 2014 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2014, 131, 40486.
    C1 [Goethals, Annelies; De Clerck, Karen] Univ Ghent, Dept Text, B-9052 Ghent, Belgium.
       [Mugadza, Tawanda; Arslanoglu, Yasin; Zugle, Ruphino; Antunes, Edith; Nyokong, Tebello] Rhodes Univ, Dept Chem, ZA-6140 Grahamstown, South Africa.
       [Van Hulle, Stijn W. H.] Univ Ghent, Dept Ind Biol Sci, LIWET, B-8500 Kortrijk, Belgium.
       [Van Hulle, Stijn W. H.] Univ Ghent, BIOMATH, Dept Math Modeling Stat & Bioinformat, B-9000 Ghent, Belgium.
    RP Van Hulle, SWH (reprint author), Univ Ghent, Dept Ind Biol Sci, LIWET, Graaf Karel de Goedelaan 5, B-8500 Kortrijk, Belgium.
    FU Agency for Innovation by Science and Technology of Flanders (IWT); Ghent
       University Special Research Fund; Department of Science and Technology
       (DST); National Research Foundation (NRF) of South Africa through
       DST/NRF South African Research Chairs Initiative for Professors of
       Medicinal Chemistry and Nanotechnology; FP7-PEOPLE-IRSES PROCOTEX
    FX Financial support from The Agency for Innovation by Science and
       Technology of Flanders (IWT) and the Ghent University Special Research
       Fund is gratefully acknowledged. The work was also funded by the
       Department of Science and Technology (DST) and the National Research
       Foundation (NRF) of South Africa through DST/NRF South African Research
       Chairs Initiative for Professors of Medicinal Chemistry and
       Nanotechnology. The project was partially funded by
       FP7-PEOPLE-2009-IRSES PROCOTEX.
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    DI 10.1002/app.40486
    PG 7
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    SC Polymer Science
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title: Polyamide nanofiber membranes functionalized with zinc phthalocyanines
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cite:
  apa: |2
      <div class="csl-entry">Van Yperen-De Deyne, A., De Meyer, T., Pauwels, E., Ghysels, A., De Clerck, K., Waroquier, M., … Hemelsoet, K. (2014). Exploring the vibrational fingerprint of the electronic excitation energy via molecular dynamics. <i>JOURNAL OF CHEMICAL PHYSICS</i>, <i>140</i>(13). https://doi.org/10.1063/1.4869937</div>
  bof: |2-
      <div class="csl-entry">Van Yperen-De Deyne, Andy, Thierry De Meyer, Ewald Pauwels, An Ghysels, Karen De Clerck, Michel Waroquier, Veronique Van Speybroeck, and Karen Hemelsoet. 2014. “Exploring the Vibrational Fingerprint of the Electronic Excitation Energy via Molecular Dynamics.” <i>JOURNAL OF CHEMICAL PHYSICS</i> 140 (13). doi:10.1063/1.4869937.</div>
    <div><i>Impact factor: 2.952, category: PHYSICS, ATOMIC, MOLECULAR & CHEMICAL, rank: 8/34, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Van Yperen-De Deyne, Andy, Thierry De Meyer, Ewald Pauwels, An Ghysels, Karen De Clerck, Michel Waroquier, Veronique Van Speybroeck, and Karen Hemelsoet. 2014. “Exploring the Vibrational Fingerprint of the Electronic Excitation Energy via Molecular Dynamics.” <i>JOURNAL OF CHEMICAL PHYSICS</i> 140 (13). https://doi.org/10.1063/1.4869937.</div>
  fwo: |2
      <div class="csl-entry">Van Yperen-De Deyne, Andy, Thierry De Meyer, Ewald Pauwels, An Ghysels, Karen De Clerck, Michel Waroquier, Veronique Van Speybroeck, and Karen Hemelsoet. 2014. “Exploring the Vibrational Fingerprint of the Electronic Excitation Energy via Molecular Dynamics.” <i>JOURNAL OF CHEMICAL PHYSICS</i> 140 (13). doi:10.1063/1.4869937.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">A. Van Yperen-De Deyne <i>et al.</i>, “Exploring the vibrational fingerprint of the electronic excitation energy via molecular dynamics,” <i>JOURNAL OF CHEMICAL PHYSICS</i>, vol. 140, no. 13, 2014.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van Yperen-De Deyne, Andy, et al. “Exploring the Vibrational Fingerprint of the Electronic Excitation Energy via Molecular Dynamics.” <i>JOURNAL OF CHEMICAL PHYSICS</i>, vol. 140, no. 13, 2014, doi:10.1063/1.4869937.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van Yperen-De Deyne A, De Meyer T, Pauwels E, Ghysels A, De Clerck K, Waroquier M, et al. Exploring the vibrational fingerprint of the electronic excitation energy via molecular dynamics. JOURNAL OF CHEMICAL PHYSICS. 2014;140(13).</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F93A4808-F0ED-11E1-A9DE-61C894A0A6B4
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  biblio_id: F93A4808-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Dewitte
  name: Wim Dewitte
  name_last_first: Dewitte, Wim
  ugent_id:
  - '972352832707'
date_created: 2014-05-23 10:04:12
date_updated: 2026-03-31 14:55:37
doi:
- 10.1063/1.4869937
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handle: http://hdl.handle.net/1854/LU-4396662
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issue: '13'
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keyword:
- MAGNETIC-PROPERTIES
- AB-INITIO CALCULATIONS
- DENSITY-FUNCTIONAL THEORY
- SIMULATIONS
- SPECTRA
- MONTE-CARLO
- FRANCK-CONDON
- HERZBERG-TELLER
- RESONANCE RAMAN
- AQUEOUS-SOLUTION
language:
- eng
page:
  count: '14'
parent:
  short_title: J. Phys. Chem.
  title: JOURNAL OF CHEMICAL PHYSICS
publication_status: published
publication_status_sort: 2
source:
  record: |
    VR 1.0
    PT J
    AU Van Yperen-De Deyne, A
       De Meyer, T
       Pauwels, E
       Ghysels, A
       De Clerck, K
       Waroquier, M
       Van Speybroeck, V
       Hemelsoet, K
    AF Van Yperen-De Deyne, Andy
       De Meyer, Thierry
       Pauwels, Ewald
       Ghysels, An
       De Clerck, Karen
       Waroquier, Michel
       Van Speybroeck, Veronique
       Hemelsoet, Karen
    TI Exploring the vibrational fingerprint of the electronic excitation
       energy via molecular dynamics
    SO JOURNAL OF CHEMICAL PHYSICS
    AB A Fourier-based method is presented to relate changes of the molecular structure during a molecular dynamics simulation with fluctuations in the electronic excitation energy. The method implies sampling of the ground state potential energy surface. Subsequently, the power spectrum of the velocities is compared with the power spectrum of the excitation energy computed using time-dependent density functional theory. Peaks in both spectra are compared, and motions exhibiting a linear or quadratic behavior can be distinguished. The quadratically active motions are mainly responsible for the changes in the excitation energy and hence cause shifts between the dynamic and static values of the spectral property. Moreover, information about the potential energy surface of various excited states can be obtained. The procedure is illustrated with three case studies. The first electronic excitation is explored in detail and dominant vibrational motions responsible for changes in the excitation energy are identified for ethylene, biphenyl, and hexamethylbenzene. The proposed method is also extended to other low-energy excitations. Finally, the vibrational fingerprint of the excitation energy of a more complex molecule, in particular the azo dye ethyl orange in a water environment, is analyzed. (C) 2014 AIP Publishing LLC.
    SN 0021-9606
    EI 1089-7690
    PD APR 7
    PY 2014
    VL 140
    IS 13
    AR 134105
    DI 10.1063/1.4869937
    UT WOS:000334577300006
status: public
subject:
- Physics and Astronomy
title: Exploring the vibrational fingerprint of the electronic excitation energy via
  molecular dynamics
type: journalArticle
vabb_approved: 0
vabb_id: c:vabb:393777
vabb_type: VABB-1
vabb_year:
- '2015'
volume: '140'
wos_id: '000334577300006'
wos_type: Article
year: '2014'
...
---
_id: '3228837'
abstract:
- Silica nanofibres have promising characteristics for multiple applications, such
  as composites, filtration, catalysis, etc. Electrospinning of silica nanofibres
  through the sol-gel process has been carried out, but the parameters influencing
  the electrospinning stability have not been studied in detail. However, this knowledge
  is necessary for upscaling the process. In this study, the optimum viscosity to
  electrospin in a stable manner is determined and the preparation procedure to obtain
  this viscosity is evaluated. A narrow viscosity region in which electrospinning
  is stable could be determined, moreover this region corresponded with nanofibres
  having the smallest mean diameter. Uniform nanofibres could be obtained with freshly
  prepared sols and diluted sols, however electrospinning of the fresh sols was more
  stable. These results demonstrate the feasibility of upscaling the electrospinning
  of silica nanofibres, since they are electrospinnable in a stable, reproducible
  manner.
abstract_full:
- lang: eng
  text: Silica nanofibres have promising characteristics for multiple applications,
    such as composites, filtration, catalysis, etc. Electrospinning of silica nanofibres
    through the sol-gel process has been carried out, but the parameters influencing
    the electrospinning stability have not been studied in detail. However, this knowledge
    is necessary for upscaling the process. In this study, the optimum viscosity to
    electrospin in a stable manner is determined and the preparation procedure to
    obtain this viscosity is evaluated. A narrow viscosity region in which electrospinning
    is stable could be determined, moreover this region corresponded with nanofibres
    having the smallest mean diameter. Uniform nanofibres could be obtained with freshly
    prepared sols and diluted sols, however electrospinning of the fresh sols was
    more stable. These results demonstrate the feasibility of upscaling the electrospinning
    of silica nanofibres, since they are electrospinnable in a stable, reproducible
    manner.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
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  ugent_id: TW11
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  ugent_id: TW11*
author:
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  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
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  affiliation:
  - name: Ghent University
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    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
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  first_name: Klaartje
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  orcid_id: 0000-0001-7462-2484
  ugent_id:
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  affiliation:
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    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '3228837'
cite:
  apa: |2
      <div class="csl-entry">Geltmeyer, J., Van der Schueren, L., De Buysser, K., &#38; De Clerck, K. (2013). Stable electrospinning of silica nanofibres: viscosity study. In C. Cherif (Ed.), <i>13th Autex World Textile Conference, Proceedings</i> (pp. 1–4). Dresden, Germany: Autex.</div>
  bof: |2
      <div class="csl-entry">Geltmeyer, Jozefien, Lien Van der Schueren, Klaartje De Buysser, and Karen De Clerck. 2013. “Stable Electrospinning of Silica Nanofibres: Viscosity Study.” In <i>13th Autex World Textile Conference, Proceedings</i>, ed by. Chokri Cherif, 1–4. Dresden, Germany: Autex.</div>
  chicago-author-date: |2
      <div class="csl-entry">Geltmeyer, Jozefien, Lien Van der Schueren, Klaartje De Buysser, and Karen De Clerck. 2013. “Stable Electrospinning of Silica Nanofibres: Viscosity Study.” In <i>13th Autex World Textile Conference, Proceedings</i>, edited by Chokri Cherif, 1–4. Dresden, Germany: Autex.</div>
  fwo: |2
      <div class="csl-entry">Geltmeyer, Jozefien, Lien Van der Schueren, Klaartje De Buysser, and Karen De Clerck. 2013. “Stable Electrospinning of Silica Nanofibres: Viscosity Study.” In <i>13th Autex World Textile Conference, Proceedings</i>, ed by. Chokri Cherif, 1–4. Dresden, Germany: Autex.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">J. Geltmeyer, L. Van der Schueren, K. De Buysser, and K. De Clerck, “Stable electrospinning of silica nanofibres: viscosity study,” in <i>13th Autex World Textile Conference, Proceedings</i>, Dresden, Germany, 2013, pp. 1–4.</div>
      </div>
  mla: |2
      <div class="csl-entry">Geltmeyer, Jozefien, et al. “Stable Electrospinning of Silica Nanofibres: Viscosity Study.” <i>13th Autex World Textile Conference, Proceedings</i>, edited by Chokri Cherif, Autex, 2013, pp. 1–4.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Geltmeyer J, Van der Schueren L, De Buysser K, De Clerck K. Stable electrospinning of silica nanofibres: viscosity study. In: Cherif C, editor. 13th Autex World Textile Conference, Proceedings. Dresden, Germany: Autex; 2013. p. 1–4.</div>
       </div>
classification: C1
conference:
  end_date: 2013-05-24
  location: Dresden, Germany
  name: 13th Autex World Textile Conference
  start_date: 2013-05-22
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
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    ugent_id: EB21
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  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2013-05-29 14:21:43
date_updated: 2026-03-31 13:05:31
editor:
- first_name: Chokri
  last_name: Cherif
  name: Chokri Cherif
  name_last_first: Cherif, Chokri
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-3228837
isbn:
- '9783867803434'
jcr: {}
keyword:
- electrospinning
- silica
- sol-gel
- tetraethyl orthosilicate
language:
- eng
page:
  first: '1'
  last: '4'
parent:
  title: 13th Autex World Textile Conference, Proceedings
publication_status: published
publication_status_sort: 2
publisher:
  location: Dresden, Germany
  name: Autex
status: public
subject:
- Technology and Engineering
title: 'Stable electrospinning of silica nanofibres: viscosity study'
type: conference
year: '2013'
...
---
_id: '3230371'
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  first_name: Jozefien
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biblio_id: '3230371'
cite:
  apa: |2
      <div class="csl-entry">De Clerck, K., Geltmeyer, J., Steyaert, I., &#38; Van der Schueren, L. (2013). Halochromic textile materials as innovative pH-sensors. <i>XXIII International IFATCC Congress, Proceedings</i>, 1–6. Budapest, Hungary: IFATCC.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Clerck, Karen, Jozefien Geltmeyer, Iline Steyaert, and Lien Van der Schueren. 2013. “Halochromic Textile Materials as Innovative PH-Sensors.” In <i>XXIII International IFATCC Congress, Proceedings</i>, 1–6. Budapest, Hungary: IFATCC.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, Jozefien Geltmeyer, Iline Steyaert, and Lien Van der Schueren. 2013. “Halochromic Textile Materials as Innovative PH-Sensors.” In <i>XXIII International IFATCC Congress, Proceedings</i>, 1–6. Budapest, Hungary: IFATCC.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck, J. Geltmeyer, I. Steyaert, and L. Van der Schueren, “Halochromic textile materials as innovative pH-sensors,” in <i>XXIII International IFATCC Congress, Proceedings</i>, Budapest, Hungary, 2013, pp. 1–6.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Clerck, Karen, et al. “Halochromic Textile Materials as Innovative PH-Sensors.” <i>XXIII International IFATCC Congress, Proceedings</i>, IFATCC, 2013, pp. 1–6.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, Geltmeyer J, Steyaert I, Van der Schueren L. Halochromic textile materials as innovative pH-sensors. In: XXIII International IFATCC Congress, Proceedings. Budapest, Hungary: IFATCC; 2013. p. 1–6.</div>
       </div>
classification: C1
conference:
  end_date: 2013-05-10
  location: Budapest, Hungary
  name: XXIII International IFATCC Congress
  start_date: 2013-05-08
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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  abstract: <p>The aim of the project is to obtain a better understanding of the interactions
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      <div class="csl-entry">De Clerck, K. (2013). Nieuws uit de Vakgroep Textielkunde: composieten versterkt met nanovezels. <i>UNITEX : TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i>, <i>1</i>(maart), 34–34.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Clerck, Karen. 2013. “Nieuws Uit de Vakgroep Textielkunde: Composieten Versterkt Met Nanovezels.” <i>UNITEX : TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i> 1 (maart): 34–34.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen. 2013. “Nieuws Uit de Vakgroep Textielkunde: Composieten Versterkt Met Nanovezels.” <i>UNITEX : TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i> 1 (maart): 34–34.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck, “Nieuws uit de Vakgroep Textielkunde: composieten versterkt met nanovezels,” <i>UNITEX : TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i>, vol. 1, no. maart, pp. 34–34, 2013.</div>
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  mla: |2
      <div class="csl-entry">De Clerck, Karen. “Nieuws Uit de Vakgroep Textielkunde: Composieten Versterkt Met Nanovezels.” <i>UNITEX : TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i>, vol. 1, no. maart, 2013, pp. 34–34.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K. Nieuws uit de Vakgroep Textielkunde: composieten versterkt met nanovezels. UNITEX : TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE. 2013;1(maart):34–34.</div>
       </div>
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  short_title: UNITEX (Deinze)
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title: 'Nieuws uit de Vakgroep Textielkunde: composieten versterkt met nanovezels'
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...
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      <div class="csl-entry">De Clerck, K., van der Heijden, S., De Schoenmaker, B., De Baere, I., Van Paepegem, W., &#38; Rahier, H. (2013). The use of nanofibre structures in fibre-reinforced composites: challenges and opportunities. <i>International Istanbul Textile Congress 2013 Innovative and Functional Textiles, Abstracts</i>, 68–68. Istanbul, Turkey: Istanbul Technical University.</div>
  bof: |2
      <div class="csl-entry">De Clerck, Karen, Sam van der Heijden, Bert De Schoenmaker, Ives De Baere, Wim Van Paepegem, and Hubert Rahier. 2013. “The Use of Nanofibre Structures in Fibre-Reinforced Composites: Challenges and Opportunities.” In <i>International Istanbul Textile Congress 2013 Innovative and Functional Textiles, Abstracts</i>, 68–68. Istanbul, Turkey: Istanbul Technical University.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Clerck, Karen, Sam van der Heijden, Bert De Schoenmaker, Ives De Baere, Wim Van Paepegem, and Hubert Rahier. 2013. “The Use of Nanofibre Structures in Fibre-Reinforced Composites: Challenges and Opportunities.” In <i>International Istanbul Textile Congress 2013 Innovative and Functional Textiles, Abstracts</i>, 68–68. Istanbul, Turkey: Istanbul Technical University.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, Sam van der Heijden, Bert De Schoenmaker, Ives De Baere, Wim Van Paepegem, and Hubert Rahier. 2013. “The Use of Nanofibre Structures in Fibre-Reinforced Composites: Challenges and Opportunities.” In <i>International Istanbul Textile Congress 2013 Innovative and Functional Textiles, Abstracts</i>, 68–68. Istanbul, Turkey: Istanbul Technical University.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck, S. van der Heijden, B. De Schoenmaker, I. De Baere, W. Van Paepegem, and H. Rahier, “The use of nanofibre structures in fibre-reinforced composites: challenges and opportunities,” in <i>International Istanbul Textile Congress 2013 Innovative and Functional Textiles, Abstracts</i>, Istanbul, Turkey, 2013, pp. 68–68.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Clerck, Karen, et al. “The Use of Nanofibre Structures in Fibre-Reinforced Composites: Challenges and Opportunities.” <i>International Istanbul Textile Congress 2013 Innovative and Functional Textiles, Abstracts</i>, Istanbul Technical University, 2013, pp. 68–68.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, van der Heijden S, De Schoenmaker B, De Baere I, Van Paepegem W, Rahier H. The use of nanofibre structures in fibre-reinforced composites: challenges and opportunities. In: International Istanbul Textile Congress 2013 Innovative and Functional Textiles, Abstracts. Istanbul, Turkey: Istanbul Technical University; 2013. p. 68–68.</div>
       </div>
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      <div class="csl-entry">De Schoenmaker, B., van der Heijden, S., Moorkens, S., Rahier, H., Van Assche, G., &#38; De Clerck, K. (2013). Effect of nanofibres on the curing characteristics of an epoxy matrix. <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, <i>79</i>, 35–41. https://doi.org/10.1016/j.compscitech.2013.02.009</div>
  bof: |2-
      <div class="csl-entry">De Schoenmaker, Bert, Sam van der Heijden, Sofie Moorkens, Hubert Rahier, Guy Van Assche, and Karen De Clerck. 2013. “Effect of Nanofibres on the Curing Characteristics of an Epoxy Matrix.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i> 79: 35–41. doi:10.1016/j.compscitech.2013.02.009.</div>
    <div><i>Impact factor: 3.633, category: MATERIALS SCIENCE, COMPOSITES, rank: 1/24, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">De Schoenmaker, Bert, Sam van der Heijden, Sofie Moorkens, Hubert Rahier, Guy Van Assche, and Karen De Clerck. 2013. “Effect of Nanofibres on the Curing Characteristics of an Epoxy Matrix.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i> 79: 35–41. https://doi.org/10.1016/j.compscitech.2013.02.009.</div>
  fwo: |2
      <div class="csl-entry">De Schoenmaker, Bert, Sam van der Heijden, Sofie Moorkens, Hubert Rahier, Guy Van Assche, and Karen De Clerck. 2013. “Effect of Nanofibres on the Curing Characteristics of an Epoxy Matrix.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i> 79: 35–41. doi:10.1016/j.compscitech.2013.02.009.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. De Schoenmaker, S. van der Heijden, S. Moorkens, H. Rahier, G. Van Assche, and K. De Clerck, “Effect of nanofibres on the curing characteristics of an epoxy matrix,” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, vol. 79, pp. 35–41, 2013.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Schoenmaker, Bert, et al. “Effect of Nanofibres on the Curing Characteristics of an Epoxy Matrix.” <i>COMPOSITES SCIENCE AND TECHNOLOGY</i>, vol. 79, 2013, pp. 35–41, doi:10.1016/j.compscitech.2013.02.009.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Schoenmaker B, van der Heijden S, Moorkens S, Rahier H, Van Assche G, De Clerck K. Effect of nanofibres on the curing characteristics of an epoxy matrix. COMPOSITES SCIENCE AND TECHNOLOGY. 2013;79:35–41.</div>
       </div>
classification: A1
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keyword:
- THERMOSETTING SYSTEMS
- RESIN
- CURE KINETICS
- MULTIWALLED CARBON NANOTUBES
- ELECTROSPUN
- COMPOSITES
- GLASS-TRANSITION TEMPERATURE
- DIFFERENTIAL SCANNING CALORIMETRY
- NANOCOMPOSITES
- MORPHOLOGY
- Nano composites
- Textile composites
- Curing
- Differential scanning calorimetry (DSC)
- Electro-spinning
language:
- eng
page:
  first: '35'
  last: '41'
parent:
  short_title: Compos. Sci. Technol.
  title: COMPOSITES SCIENCE AND TECHNOLOGY
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  record: |
    VR 1.0
    PT J
    AU De Schoenmaker, B
       van der Heijden, S
       Moorkens, S
       Rahier, H
       Van Assche, G
       De Clerck, K
    AF De Schoenmaker, Bert
       van der Heijden, Sam
       Moorkens, Sofie
       Rahier, Hubert
       Van Assche, Guy
       De Clerck, Karen
    TI Effect of nanofibres on the curing characteristics of an epoxy matrix
    SO COMPOSITES SCIENCE AND TECHNOLOGY
    LA English
    DT Article
    DE Nano composites; Textile composites; Curing; Differential scanning
       calorimetry (DSC); Electro-spinning
    ID DIFFERENTIAL SCANNING CALORIMETRY; GLASS-TRANSITION TEMPERATURE;
       MULTIWALLED CARBON NANOTUBES; CURE KINETICS; THERMOSETTING SYSTEMS;
       RESIN; COMPOSITES; ELECTROSPUN; NANOCOMPOSITES; MORPHOLOGY
    AB Recently it is shown that nanofibrous structures have the potential to enhance the mechanical properties of epoxy composites. Even though it is well know that the curing cycle affects the final properties of the composites, up till today the effect of these nanofibrous structures on the curing characteristics of epoxies is not studied in detail. Therefore the influence of nanofibres of different polyamide types (PA 6, PA 6.6, PA 6.9 and PA 4.6) and of polyvinyl alcohol (PVAL) on the curing reaction of a diglycidyl ether of bisphenol A (DGEBA)-methylenedianiline (MDA) system was investigated, using non-isothermal and quasi-isothermal (modulated temperature) differential scanning calorimetry ((MT)DSC) measurements. The effect of the nanofibre fraction and polyamide type is examined, and a comparison with conventional PA 6 fibres is made. For polyamide nanofibres, the accelerating effect seems to result mainly from water present in the nano- and microfibers. PVAL nanofibres accelerated the curing more strongly than the PA nanofibres, though their moisture content was lower, indicating a catalytic effect of the surface hydroxyls. (C) 2013 Elsevier Ltd. All rights reserved.
    C1 Univ Ghent, Dept Text, B-9052 Ghent, Belgium.
       Vrije Univ Brussel, Dept Mat & Chem, B-1050 Brussels, Belgium.
    RP De Clerck, K (reprint author), Univ Ghent, Dept Text, Technol Pk 907, B-9052 Ghent, Belgium.
    EM Karen.DeClerck@ugent.be
    NR 40
    PU ELSEVIER SCI LTD
    PI OXFORD
    PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
    SN 0266-3538
    J9 COMPOS SCI TECHNOL
    JI Compos. Sci. Technol.
    PD APR 18
    PY 2013
    VL 79
    BP 35
    EP 41
    DI 10.1016/j.compscitech.2013.02.009
    PG 7
    WC Materials Science, Composites
    SC Materials Science
    GA 136QG
    UT WOS:000318377900006
status: public
subject:
- Technology and Engineering
title: Effect of nanofibres on the curing characteristics of an epoxy matrix
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cite:
  apa: |2
      <div class="csl-entry">De Clerck, K., van der Heijden, S., De Schoenmaker, B., De Baere, I., Van Paepegem, W., &#38; Rahier, H. (2013). The use of nanofibre structures in fibre-reinforced composites: challenges and opportunities. In F. Kalaoglu (Ed.), <i>International Istanbul Textile Congress 2013 Innovative and Functional Textiles, Proceedings</i> (pp. 1–5). Istanbul, Turkey: ITU / ITKIB-ITA.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Clerck, Karen, Sam van der Heijden, Bert De Schoenmaker, Ives De Baere, Wim Van Paepegem, and Hubert Rahier. 2013. “The Use of Nanofibre Structures in Fibre-Reinforced Composites: Challenges and Opportunities.” In <i>International Istanbul Textile Congress 2013 Innovative and Functional Textiles, Proceedings</i>, edited by Fatma Kalaoglu, 1–5. Istanbul, Turkey: ITU / ITKIB-ITA.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, Sam van der Heijden, Bert De Schoenmaker, Ives De Baere, Wim Van Paepegem, and Hubert Rahier. 2013. “The Use of Nanofibre Structures in Fibre-Reinforced Composites: Challenges and Opportunities.” In <i>International Istanbul Textile Congress 2013 Innovative and Functional Textiles, Proceedings</i>, ed by. Fatma Kalaoglu, 1–5. Istanbul, Turkey: ITU / ITKIB-ITA.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck, S. van der Heijden, B. De Schoenmaker, I. De Baere, W. Van Paepegem, and H. Rahier, “The use of nanofibre structures in fibre-reinforced composites: challenges and opportunities,” in <i>International Istanbul Textile Congress 2013 Innovative and Functional Textiles, Proceedings</i>, Istanbul, Turkey, 2013, pp. 1–5.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Clerck, Karen, et al. “The Use of Nanofibre Structures in Fibre-Reinforced Composites: Challenges and Opportunities.” <i>International Istanbul Textile Congress 2013 Innovative and Functional Textiles, Proceedings</i>, edited by Fatma Kalaoglu, ITU / ITKIB-ITA, 2013, pp. 1–5.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, van der Heijden S, De Schoenmaker B, De Baere I, Van Paepegem W, Rahier H. The use of nanofibre structures in fibre-reinforced composites: challenges and opportunities. In: Kalaoglu F, editor. International Istanbul Textile Congress 2013 Innovative and Functional Textiles, Proceedings. Istanbul, Turkey: ITU / ITKIB-ITA; 2013. p. 1–5.</div>
       </div>
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date_created: 2013-06-06 17:28:41
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handle: http://hdl.handle.net/1854/LU-3237366
keyword:
- fibre-reinforced composites
- Nanofibres
- mechanical properties
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- eng
page:
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parent:
  title: International Istanbul Textile Congress 2013 Innovative and Functional Textiles,
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title: 'The use of nanofibre structures in fibre-reinforced composites: challenges
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...
---
_id: '4142174'
abstract:
- Recently, several types of nanoparticles are frequently incorporated in reinforced
  epoxy resin composites. Since it is difficult to obtain a homogeneous dispersion
  of these nanoparticles, the mechanical improvement of the composites is very moderate.
  Thermoplastic nanofibrous structures can overcome this issue. Therefore, this paper
  investigated the effect of electrospun polyamide 6 nanofibrous structures on the
  mechanical properties of a glass fiber/epoxy composite. The nanofibers are incorporated
  in the glass fiber/epoxy composite as stand-alone interlayered structures and directly
  spun on the glass fiber reinforcement. Both incorporation procedures have no negative
  effect on the impregnation of the epoxy.  Incorporation of nanofibers increases
  the stress at failure in the 0°-direction, the best results are obtained when the
  nanofibers are directly electrospun on the glass fibers. Optical microscopic images
  also demonstrate that nanofibers prevent delamination when a 90° crack reaches a
  neighbourly 0° ply. When the composites are loaded under 45°, it is proven that
  for an identical stress, the glass fiber composite with deposited nanofibers has
  less cracks than when interlayered nanofibrous structures are incorporated.
abstract_full:
- lang: eng
  text: Recently, several types of nanoparticles are frequently incorporated in reinforced
    epoxy resin composites. Since it is difficult to obtain a homogeneous dispersion
    of these nanoparticles, the mechanical improvement of the composites is very moderate.
    Thermoplastic nanofibrous structures can overcome this issue. Therefore, this
    paper investigated the effect of electrospun polyamide 6 nanofibrous structures
    on the mechanical properties of a glass fiber/epoxy composite. The nanofibers
    are incorporated in the glass fiber/epoxy composite as stand-alone interlayered
    structures and directly spun on the glass fiber reinforcement. Both incorporation
    procedures have no negative effect on the impregnation of the epoxy.  Incorporation
    of nanofibers increases the stress at failure in the 0°-direction, the best results
    are obtained when the nanofibers are directly electrospun on the glass fibers.
    Optical microscopic images also demonstrate that nanofibers prevent delamination
    when a 90° crack reaches a neighbourly 0° ply. When the composites are loaded
    under 45°, it is proven that for an identical stress, the glass fiber composite
    with deposited nanofibers has less cracks than when interlayered nanofibrous structures
    are incorporated.
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  first_name: Ives
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  first_name: Karen
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biblio_id: '4142174'
cite:
  apa: |2
      <div class="csl-entry">De Baere, I., De Schoenmaker, B., van der Heijden, S., Van Paepegem, W., &#38; De Clerck, K. (2013). Modifying the crack growth in a glass fiber reinforced epoxy by adding polyamide 6 nanofibers. In L. Gorbatikh (Ed.), <i>CompositesWeek@Leuven</i>. Leuven, Belgium.</div>
  bof: |2
      <div class="csl-entry">De Baere, Ives, Bert De Schoenmaker, Sam van der Heijden, Wim Van Paepegem, and Karen De Clerck. 2013. “Modifying the Crack Growth in a Glass Fiber Reinforced Epoxy by Adding Polyamide 6 Nanofibers.” In <i>CompositesWeek@Leuven</i>, ed by. Larissa Gorbatikh. Leuven, Belgium.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Baere, Ives, Bert De Schoenmaker, Sam van der Heijden, Wim Van Paepegem, and Karen De Clerck. 2013. “Modifying the Crack Growth in a Glass Fiber Reinforced Epoxy by Adding Polyamide 6 Nanofibers.” In <i>CompositesWeek@Leuven</i>, edited by Larissa Gorbatikh. Leuven, Belgium.</div>
  fwo: |2
      <div class="csl-entry">De Baere, Ives, Bert De Schoenmaker, Sam van der Heijden, Wim Van Paepegem, and Karen De Clerck. 2013. “Modifying the Crack Growth in a Glass Fiber Reinforced Epoxy by Adding Polyamide 6 Nanofibers.” In <i>CompositesWeek@Leuven</i>, ed by. Larissa Gorbatikh. Leuven, Belgium.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">I. De Baere, B. De Schoenmaker, S. van der Heijden, W. Van Paepegem, and K. De Clerck, “Modifying the crack growth in a glass fiber reinforced epoxy by adding polyamide 6 nanofibers,” in <i>CompositesWeek@Leuven</i>, Leuven, Belgium, 2013.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Baere, Ives, et al. “Modifying the Crack Growth in a Glass Fiber Reinforced Epoxy by Adding Polyamide 6 Nanofibers.” <i>CompositesWeek@Leuven</i>, edited by Larissa Gorbatikh, 2013.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Baere I, De Schoenmaker B, van der Heijden S, Van Paepegem W, De Clerck K. Modifying the crack growth in a glass fiber reinforced epoxy by adding polyamide 6 nanofibers. In: Gorbatikh L, editor. CompositesWeek@Leuven. Leuven, Belgium; 2013.</div>
       </div>
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  first_name: Ives
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date_created: 2013-09-23 09:33:30
date_updated: 2026-03-31 13:31:38
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  last_name: Gorbatikh
  name: Larissa Gorbatikh
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subject:
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title: Modifying the crack growth in a glass fiber reinforced epoxy by adding polyamide
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  apa: |2
      <div class="csl-entry">Steyaert, I., Van der Schueren, L., Rahier, H., &#38; De Clerck, K. (2013). Poster: blend electrospinning of polycaprolactone/chitosan nanofibres. <i>Frontiers in Polymer Science</i>, 1–1. Sitges, Spain.</div>
  bof: |2
      <div class="csl-entry">Steyaert, Iline, Lien Van der Schueren, Hubert Rahier, and Karen De Clerck. 2013. “Poster: Blend Electrospinning of Polycaprolactone/Chitosan Nanofibres.” In <i>Frontiers in Polymer Science</i>, 1–1. Sitges, Spain.</div>
  chicago-author-date: |2
      <div class="csl-entry">Steyaert, Iline, Lien Van der Schueren, Hubert Rahier, and Karen De Clerck. 2013. “Poster: Blend Electrospinning of Polycaprolactone/Chitosan Nanofibres.” In <i>Frontiers in Polymer Science</i>, 1–1. Sitges, Spain.</div>
  fwo: |2
      <div class="csl-entry">Steyaert, Iline, Lien Van der Schueren, Hubert Rahier, and Karen De Clerck. 2013. “Poster: Blend Electrospinning of Polycaprolactone/Chitosan Nanofibres.” In <i>Frontiers in Polymer Science</i>, 1–1. Sitges, Spain.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">I. Steyaert, L. Van der Schueren, H. Rahier, and K. De Clerck, “Poster: blend electrospinning of polycaprolactone/chitosan nanofibres,” in <i>Frontiers in Polymer Science</i>, Sitges, Spain, 2013, pp. 1–1.</div>
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  mla: |2
      <div class="csl-entry">Steyaert, Iline, et al. “Poster: Blend Electrospinning of Polycaprolactone/Chitosan Nanofibres.” <i>Frontiers in Polymer Science</i>, 2013, pp. 1–1.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Steyaert I, Van der Schueren L, Rahier H, De Clerck K. Poster: blend electrospinning of polycaprolactone/chitosan nanofibres. In: Frontiers in Polymer Science. Sitges, Spain; 2013. p. 1–1.</div>
       </div>
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title: 'Poster: blend electrospinning of polycaprolactone/chitosan nanofibres'
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...
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      <div class="csl-entry">Geltmeyer, J., De Buysser, K., &#38; De Clerck, K. (2013). Stable electrospinning of silica nanofibres : influence of viscosity. <i>Sol-Gel, 17th International Conference, Abstracts</i>. Presented at the 17th International Sol-Gel Conference (Sol-Gel 2013), Madrid, Spain.</div>
  bof: |2
      <div class="csl-entry">Geltmeyer, Jozefien, Klaartje De Buysser, and Karen De Clerck. 2013. “Stable Electrospinning of Silica Nanofibres : Influence of Viscosity.” In <i>Sol-Gel, 17th International Conference, Abstracts</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">Geltmeyer, Jozefien, Klaartje De Buysser, and Karen De Clerck. 2013. “Stable Electrospinning of Silica Nanofibres : Influence of Viscosity.” In <i>Sol-Gel, 17th International Conference, Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">Geltmeyer, Jozefien, Klaartje De Buysser, and Karen De Clerck. 2013. “Stable Electrospinning of Silica Nanofibres : Influence of Viscosity.” In <i>Sol-Gel, 17th International Conference, Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">J. Geltmeyer, K. De Buysser, and K. De Clerck, “Stable electrospinning of silica nanofibres : influence of viscosity,” in <i>Sol-Gel, 17th International conference, Abstracts</i>, Madrid, Spain, 2013.</div>
      </div>
  mla: |2
      <div class="csl-entry">Geltmeyer, Jozefien, et al. “Stable Electrospinning of Silica Nanofibres : Influence of Viscosity.” <i>Sol-Gel, 17th International Conference, Abstracts</i>, 2013.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Geltmeyer J, De Buysser K, De Clerck K. Stable electrospinning of silica nanofibres : influence of viscosity. In: Sol-Gel, 17th International conference, Abstracts. 2013.</div>
       </div>
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  name: 17th International Sol-Gel Conference (Sol-Gel 2013)
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---
_id: '4185120'
abstract:
- The decomposition behavior of cotton fibers is examined using thermogravimetric
  analysis. The effect of the test parameters on the thermal degradation of raw cotton
  fibers is determined. Focus is given to the influence of water immersion on the
  thermal behavior of cotton fibers. For less mature fibers a clear difference is
  noted between the degradation profiles of the water-immersed and untreated samples.
  On the contrary, only a small change is noted on the degradation profile for more
  mature fibers after water immersion. The maturity and variations in water-soluble
  content of the fiber are found to be important factors influencing the thermal behavior
  of raw cotton fibers. Inductively coupled plasma atomic emission spectrometry (ICP-AES)
  is used to underpin the effect of water immersion on cotton fibers. This improved
  understanding for the role of maturity and water soluble constituents in thermal
  degradation of cotton fibers may lead to develop routes that improve thermal stability
  and smoldering characteristics of cotton fibers as relevant for future applications.
abstract_full:
- lang: eng
  text: The decomposition behavior of cotton fibers is examined using thermogravimetric
    analysis. The effect of the test parameters on the thermal degradation of raw
    cotton fibers is determined. Focus is given to the influence of water immersion
    on the thermal behavior of cotton fibers. For less mature fibers a clear difference
    is noted between the degradation profiles of the water-immersed and untreated
    samples. On the contrary, only a small change is noted on the degradation profile
    for more mature fibers after water immersion. The maturity and variations in water-soluble
    content of the fiber are found to be important factors influencing the thermal
    behavior of raw cotton fibers. Inductively coupled plasma atomic emission spectrometry
    (ICP-AES) is used to underpin the effect of water immersion on cotton fibers.
    This improved understanding for the role of maturity and water soluble constituents
    in thermal degradation of cotton fibers may lead to develop routes that improve
    thermal stability and smoldering characteristics of cotton fibers as relevant
    for future applications.
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  biblio_id: FBC58A9C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Özgür
  last_name: Ceylan
  name: Özgür Ceylan
  name_last_first: Ceylan, Özgür
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  first_name: Lieve
  last_name: Van Landuyt
  name: Lieve Van Landuyt
  name_last_first: Van Landuyt, Lieve
  ugent_id:
  - '801001285006'
- first_name: Hubert
  last_name: Rahier
  name: Hubert Rahier
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  first_name: Karen
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  orcid_id: 0000-0002-5650-3075
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cite:
  apa: |2
      <div class="csl-entry">Ceylan, Ö., Van Landuyt, L., Rahier, H., &#38; De Clerck, K. (2013). The effect of water immersion on the thermal degradation of cotton fibers. <i>CELLULOSE</i>, <i>20</i>(4), 1603–1612. https://doi.org/10.1007/s10570-013-9936-0</div>
  bof: |2-
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, Hubert Rahier, and Karen De Clerck. 2013. “The Effect of Water Immersion on the Thermal Degradation of Cotton Fibers.” <i>CELLULOSE</i> 20 (4): 1603–1612. doi:10.1007/s10570-013-9936-0.</div>
    <div><i>Impact factor: 3.033, category: MATERIALS SCIENCE, PAPER & WOOD, rank: 1/21, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, Hubert Rahier, and Karen De Clerck. 2013. “The Effect of Water Immersion on the Thermal Degradation of Cotton Fibers.” <i>CELLULOSE</i> 20 (4): 1603–12. https://doi.org/10.1007/s10570-013-9936-0.</div>
  fwo: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, Hubert Rahier, and Karen De Clerck. 2013. “The Effect of Water Immersion on the Thermal Degradation of Cotton Fibers.” <i>CELLULOSE</i> 20 (4): 1603–1612. doi:10.1007/s10570-013-9936-0.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Ö. Ceylan, L. Van Landuyt, H. Rahier, and K. De Clerck, “The effect of water immersion on the thermal degradation of cotton fibers,” <i>CELLULOSE</i>, vol. 20, no. 4, pp. 1603–1612, 2013.</div>
      </div>
  mla: |2
      <div class="csl-entry">Ceylan, Özgür, et al. “The Effect of Water Immersion on the Thermal Degradation of Cotton Fibers.” <i>CELLULOSE</i>, vol. 20, no. 4, 2013, pp. 1603–12, doi:10.1007/s10570-013-9936-0.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Ceylan Ö, Van Landuyt L, Rahier H, De Clerck K. The effect of water immersion on the thermal degradation of cotton fibers. CELLULOSE. 2013;20(4):1603–12.</div>
       </div>
classification: A1
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date_created: 2013-11-14 20:42:20
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handle: http://hdl.handle.net/1854/LU-4185120
issn:
- 0969-0239
issue: '4'
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  category: MATERIALS SCIENCE, PAPER & WOOD
  category_decile: 1
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keyword:
- Thermal degradation
- PYROLYSIS
- Thermogravimetric analysis
- AIR
- Water immersion
- Cotton
- FABRICS
- DECOMPOSITION
- CELLULOSE
- THERMOGRAVIMETRIC ANALYSIS
- FINE-STRUCTURE
language:
- eng
page:
  first: '1603'
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  short_title: Cellulose
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    VR 1.0
    PT J
    AU Ceylan, O
       Van Landuyt, L
       Rahier, H
       De Clerck, K
    AF Ceylan, Ozgur
       Van Landuyt, Lieve
       Rahier, Hubert
       De Clerck, Karen
    TI The effect of water immersion on the thermal degradation of cotton
       fibers
    SO CELLULOSE
    LA English
    DT Article
    DE Thermal degradation; Cotton; Thermogravimetric analysis; Water immersion
    ID THERMOGRAVIMETRIC ANALYSIS; FINE-STRUCTURE; CELLULOSE; DECOMPOSITION;
       FABRICS; AIR; PYROLYSIS
    AB The decomposition behavior of cotton fibers is examined using thermogravimetric analysis. The effect of the test parameters on the thermal degradation of raw cotton fibers is determined. Focus is given to the influence of water immersion on the thermal behavior of cotton fibers. For less mature fibers a clear difference is noted between the degradation profiles of the water-immersed and untreated samples. On the contrary, only a small change is noted on the degradation profile for more mature fibers after water immersion. The maturity and variations in water-soluble content of the fiber are found to be important factors influencing the thermal behavior of raw cotton fibers. Inductively coupled plasma atomic emission spectrometry (ICP-AES) is used to underpin the effect of water immersion on cotton fibers. This improved understanding for the role of maturity and water soluble constituents in thermal degradation of cotton fibers may lead to develop routes that improve thermal stability and smoldering characteristics of cotton fibers as relevant for future applications.
    C1 [Ceylan, Ozgur; Van Landuyt, Lieve; De Clerck, Karen] Univ Ghent, Dept Text, B-9052 Ghent, Belgium.
       [Ceylan, Ozgur] Anadolu Univ, Dept Fash Design, TR-26470 Eskisehir, Turkey.
       [Rahier, Hubert] Univ Libre Brussels, Dept Phys Chem & Polymer Sci, B-1050 Brussels, Belgium.
    RP De Clerck, K (reprint author), Univ Ghent, Dept Text, Technol Pk 907, B-9052 Ghent, Belgium.
    EM Karen.DeClerck@UGent.be
    RI Rahier, Hubert/F-1568-2010
    FU Agency for Innovation by Science and Technology in Flanders (IWT)
       [IWT090505]
    FX This work was supported by the Agency for Innovation by Science and
       Technology in Flanders (IWT) [project number IWT090505].
    NR 38
    PU SPRINGER
    PI DORDRECHT
    PA VAN GODEWIJCKSTRAAT 30, 3311 GZ DORDRECHT, NETHERLANDS
    SN 0969-0239
    J9 CELLULOSE
    JI Cellulose
    PD AUG
    PY 2013
    VL 20
    IS 4
    BP 1603
    EP 1612
    DI 10.1007/s10570-013-9936-0
    PG 10
    WC Materials Science, Paper & Wood; Materials Science, Textiles; Polymer
       Science
    SC Materials Science; Polymer Science
    GA 195AE
    UT WOS:000322673000006
status: public
subject:
- Technology and Engineering
title: The effect of water immersion on the thermal degradation of cotton fibers
type: journalArticle
volume: '20'
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cite:
  apa: |2
      <div class="csl-entry">Daels, N., Goethals, A., De Clerck, K., &#38; Van Hulle, S. (2013). Functionalisation of electrospun nanofibre membranes with titaniumdioxide nanoparticles for water treatment. <i>IWA BeNeLux Regional Young Water Professionals Conference, 3rd, Abstracts</i>. Presented at the 3rd IWA BeNeLux Regional Young Water Professionals Conference, Belval, Luxembourg.</div>
  bof: |2
      <div class="csl-entry">Daels, Nele, Annelies Goethals, Karen De Clerck, and Stijn Van Hulle. 2013. “Functionalisation of Electrospun Nanofibre Membranes with Titaniumdioxide Nanoparticles for Water Treatment.” In <i>IWA BeNeLux Regional Young Water Professionals Conference, 3rd, Abstracts</i>. International Water Association (IWA).</div>
  chicago-author-date: |2
      <div class="csl-entry">Daels, Nele, Annelies Goethals, Karen De Clerck, and Stijn Van Hulle. 2013. “Functionalisation of Electrospun Nanofibre Membranes with Titaniumdioxide Nanoparticles for Water Treatment.” In <i>IWA BeNeLux Regional Young Water Professionals Conference, 3rd, Abstracts</i>. International Water Association (IWA).</div>
  fwo: |2
      <div class="csl-entry">Daels, Nele, Annelies Goethals, Karen De Clerck, and Stijn Van Hulle. 2013. “Functionalisation of Electrospun Nanofibre Membranes with Titaniumdioxide Nanoparticles for Water Treatment.” In <i>IWA BeNeLux Regional Young Water Professionals Conference, 3rd, Abstracts</i>. International Water Association (IWA).</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">N. Daels, A. Goethals, K. De Clerck, and S. Van Hulle, “Functionalisation of electrospun nanofibre membranes with titaniumdioxide nanoparticles for water treatment,” in <i>IWA BeNeLux Regional Young Water Professionals Conference, 3rd, Abstracts</i>, Belval, Luxembourg, 2013.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daels, Nele, et al. “Functionalisation of Electrospun Nanofibre Membranes with Titaniumdioxide Nanoparticles for Water Treatment.” <i>IWA BeNeLux Regional Young Water Professionals Conference, 3rd, Abstracts</i>, International Water Association (IWA), 2013.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daels N, Goethals A, De Clerck K, Van Hulle S. Functionalisation of electrospun nanofibre membranes with titaniumdioxide nanoparticles for water treatment. In: IWA BeNeLux Regional Young Water Professionals Conference, 3rd, Abstracts. International Water Association (IWA); 2013.</div>
       </div>
classification: C3
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  end_date: 2013-10-04
  location: Belval, Luxembourg
  name: 3rd IWA BeNeLux Regional Young Water Professionals Conference
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copyright_statement: No license (in copyright)
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parent:
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publication_status: published
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publisher:
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status: public
subject:
- Technology and Engineering
title: Functionalisation of electrospun nanofibre membranes with titaniumdioxide nanoparticles
  for water treatment
type: conference
year: '2013'
...
---
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cite:
  apa: |2
      <div class="csl-entry">Daels, N., Goethals, A., De Clerck, K., &#38; Van Hulle, S. (2013). Functionalisation of electrospun nanofibre membranes with titaniumdioxide nanoparticles. <i>Water and Waste Water Technologies, 10th IWA Leading Edge Conference, Abstracts</i>. Presented at the 10th IWA Leading edge conference on Water and Waste Water Technologies, Bordeaux, France.</div>
  bof: |2
      <div class="csl-entry">Daels, Nele, Annelies Goethals, Karen De Clerck, and Stijn Van Hulle. 2013. “Functionalisation of Electrospun Nanofibre Membranes with Titaniumdioxide Nanoparticles.” In <i>Water and Waste Water Technologies, 10th IWA Leading Edge Conference, Abstracts</i>. International Water Association (IWA).</div>
  chicago-author-date: |2
      <div class="csl-entry">Daels, Nele, Annelies Goethals, Karen De Clerck, and Stijn Van Hulle. 2013. “Functionalisation of Electrospun Nanofibre Membranes with Titaniumdioxide Nanoparticles.” In <i>Water and Waste Water Technologies, 10th IWA Leading Edge Conference, Abstracts</i>. International Water Association (IWA).</div>
  fwo: |2
      <div class="csl-entry">Daels, Nele, Annelies Goethals, Karen De Clerck, and Stijn Van Hulle. 2013. “Functionalisation of Electrospun Nanofibre Membranes with Titaniumdioxide Nanoparticles.” In <i>Water and Waste Water Technologies, 10th IWA Leading Edge Conference, Abstracts</i>. International Water Association (IWA).</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">N. Daels, A. Goethals, K. De Clerck, and S. Van Hulle, “Functionalisation of electrospun nanofibre membranes with titaniumdioxide nanoparticles,” in <i>Water and Waste Water Technologies, 10th IWA Leading edge conference, Abstracts</i>, Bordeaux, France, 2013.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daels, Nele, et al. “Functionalisation of Electrospun Nanofibre Membranes with Titaniumdioxide Nanoparticles.” <i>Water and Waste Water Technologies, 10th IWA Leading Edge Conference, Abstracts</i>, International Water Association (IWA), 2013.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daels N, Goethals A, De Clerck K, Van Hulle S. Functionalisation of electrospun nanofibre membranes with titaniumdioxide nanoparticles. In: Water and Waste Water Technologies, 10th IWA Leading edge conference, Abstracts. International Water Association (IWA); 2013.</div>
       </div>
classification: C3
conference:
  end_date: 2013-06-06
  location: Bordeaux, France
  name: 10th IWA Leading edge conference on Water and Waste Water Technologies
  start_date: 2013-06-02
copyright_statement: No license (in copyright)
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  biblio_id: 1C30272E-F0EE-11E1-A9DE-61C894A0A6B4
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  last_name: Daels
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  title: Water and Waste Water Technologies, 10th IWA Leading edge conference, Abstracts
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type: conference
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...
---
_id: '4208761'
abstract:
- Previous research reported on a screening method to assess the functionalisation
  of bioengineered cotton fibres through the absorption of CI Acid Orange 7. The aim
  of the present paper is to extend this study to different dye classes. Thus the
  dye absorption of bioengineered cotton fibres containing oligochitin is studied
  for a series of dye classes. Statistically significant differences were found between
  cotton lines designed to produce oligochitin in the fibre and their respective controls
  for all tested dyes, confirming previous results with CI Acid Orange 7. Further,
  although variations in micronaire influenced dye absorption, it was confirmed for
  all dyes tested as well as for CI Acid Orange 7 that the oligochitin production
  had a larger impact on the exhaustion values than the differences in micronaire.
  The method described in this paper can be applied as a screening tool to meet the
  challenge of working with small quantities of fibrous materials. Moreover it shows
  the potential that the incorporated oligochitin has for increasing dyeability with
  a wide range of dyes and creating fibres with more versatile reactivity.
abstract_full:
- lang: eng
  text: Previous research reported on a screening method to assess the functionalisation
    of bioengineered cotton fibres through the absorption of CI Acid Orange 7. The
    aim of the present paper is to extend this study to different dye classes. Thus
    the dye absorption of bioengineered cotton fibres containing oligochitin is studied
    for a series of dye classes. Statistically significant differences were found
    between cotton lines designed to produce oligochitin in the fibre and their respective
    controls for all tested dyes, confirming previous results with CI Acid Orange
    7. Further, although variations in micronaire influenced dye absorption, it was
    confirmed for all dyes tested as well as for CI Acid Orange 7 that the oligochitin
    production had a larger impact on the exhaustion values than the differences in
    micronaire. The method described in this paper can be applied as a screening tool
    to meet the challenge of working with small quantities of fibrous materials. Moreover
    it shows the potential that the incorporated oligochitin has for increasing dyeability
    with a wide range of dyes and creating fibres with more versatile reactivity.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
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  - ugent_id: TW11
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  - ugent_id: TW
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  ugent_id: TW11*
article_type: original
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  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: FBC58A9C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Özgür
  last_name: Ceylan
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  first_name: Lieve
  last_name: Van Landuyt
  name: Lieve Van Landuyt
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  ugent_id:
  - '801001285006'
- first_name: Florence
  last_name: Goubet
  name: Florence Goubet
  name_last_first: Goubet, Florence
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    ugent_id: TW11
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  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '4208761'
cite:
  apa: |2
      <div class="csl-entry">Ceylan, Ö., Van Landuyt, L., Goubet, F., &#38; De Clerck, K. (2013). The sensitivity and impact of dye structure and fibre micronaire on the increased dyeability of bioengineered cotton fibres. <i>COLORATION TECHNOLOGY</i>, <i>129</i>(4), 239–245. https://doi.org/10.1111/cote.12043</div>
  bof: |2-
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, Florence Goubet, and Karen De Clerck. 2013. “The Sensitivity and Impact of Dye Structure and Fibre Micronaire on the Increased Dyeability of Bioengineered Cotton Fibres.” <i>COLORATION TECHNOLOGY</i> 129 (4): 239–245. doi:10.1111/cote.12043.</div>
    <div><i>Impact factor: 1.173, category: MATERIALS SCIENCE, TEXTILES, rank: 5/22, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, Florence Goubet, and Karen De Clerck. 2013. “The Sensitivity and Impact of Dye Structure and Fibre Micronaire on the Increased Dyeability of Bioengineered Cotton Fibres.” <i>COLORATION TECHNOLOGY</i> 129 (4): 239–45. https://doi.org/10.1111/cote.12043.</div>
  fwo: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, Florence Goubet, and Karen De Clerck. 2013. “The Sensitivity and Impact of Dye Structure and Fibre Micronaire on the Increased Dyeability of Bioengineered Cotton Fibres.” <i>COLORATION TECHNOLOGY</i> 129 (4): 239–245. doi:10.1111/cote.12043.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Ö. Ceylan, L. Van Landuyt, F. Goubet, and K. De Clerck, “The sensitivity and impact of dye structure and fibre micronaire on the increased dyeability of bioengineered cotton fibres,” <i>COLORATION TECHNOLOGY</i>, vol. 129, no. 4, pp. 239–245, 2013.</div>
      </div>
  mla: |2
      <div class="csl-entry">Ceylan, Özgür, et al. “The Sensitivity and Impact of Dye Structure and Fibre Micronaire on the Increased Dyeability of Bioengineered Cotton Fibres.” <i>COLORATION TECHNOLOGY</i>, vol. 129, no. 4, 2013, pp. 239–45, doi:10.1111/cote.12043.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Ceylan Ö, Van Landuyt L, Goubet F, De Clerck K. The sensitivity and impact of dye structure and fibre micronaire on the increased dyeability of bioengineered cotton fibres. COLORATION TECHNOLOGY. 2013;129(4):239–45.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
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    ugent_id: EB21
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  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2013-12-13 11:11:14
date_updated: 2026-03-31 10:27:28
doi:
- 10.1111/cote.12043
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handle: http://hdl.handle.net/1854/LU-4208761
issn:
- 1472-3581
issue: '4'
jcr:
  category: MATERIALS SCIENCE, TEXTILES
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  immediacy_index: 0.155
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  total_cites: 787
keyword:
- CHITOSAN
- FABRICS
- MATURITY
language:
- eng
page:
  first: '239'
  last: '245'
parent:
  short_title: Color. Technol.
  title: COLORATION TECHNOLOGY
publication_status: published
publication_status_sort: 2
source:
  record: |
    VR 1.0
    PT J
    AU Ceylan, O
       Van Landuyt, L
       Goubet, F
       De Clerck, K
    AF Ceylan, Ozgur
       Van Landuyt, Lieve
       Goubet, Florence
       De Clerck, Karen
    TI The sensitivity and impact of dye structure and fibre micronaire on the
       increased dyeability of bioengineered cotton fibres
    SO COLORATION TECHNOLOGY
    LA English
    DT Article
    ID MATURITY; CHITOSAN; FABRICS
    AB Previous research reported on a screening method to assess the functionalisation of bioengineered cotton fibres through the absorption of CI Acid Orange 7. The aim of the present paper is to extend this study to different dye classes. Thus the dye absorption of bioengineered cotton fibres containing oligochitin is studied for a series of dye classes. Statistically significant differences were found between cotton lines designed to produce oligochitin in the fibre and their respective controls for all tested dyes, confirming previous results with CI Acid Orange 7. Further, although variations in micronaire influenced dye absorption, it was confirmed for all dyes tested as well as for CI Acid Orange 7 that the oligochitin production had a larger impact on the exhaustion values than the differences in micronaire. The method described in this paper can be applied as a screening tool to meet the challenge of working with small quantities of fibrous materials. Moreover it shows the potential that the incorporated oligochitin has for increasing dyeability with a wide range of dyes and creating fibres with more versatile reactivity.
    C1 [Ceylan, Ozgur; Van Landuyt, Lieve; De Clerck, Karen] Univ Ghent, Dept Text, B-9052 Ghent, Belgium.
       [Ceylan, Ozgur] Anadolu Univ, Dept Fash Design, TR-26470 Eskisehir, Turkey.
       [Goubet, Florence] Bayer CropSci NV, B-9052 Ghent, Belgium.
    RP De Clerck, K (reprint author), Univ Ghent, Dept Text, Technol Pk 907, B-9052 Ghent, Belgium.
    EM Karen.DeClerck@UGent.be
    FU Institute for the Promotion of Innovation by Science and Technology in
       Flanders (IWT) [IWT090505]
    FX This work was supported by the Institute for the Promotion of Innovation
       by Science and Technology in Flanders (IWT) (project number IWT090505).
    NR 15
    PU WILEY-BLACKWELL
    PI HOBOKEN
    PA 111 RIVER ST, HOBOKEN 07030-5774, NJ USA
    SN 1472-3581
    J9 COLOR TECHNOL
    JI Color. Technol.
    PD AUG
    PY 2013
    VL 129
    IS 4
    BP 239
    EP 245
    DI 10.1111/cote.12043
    PG 7
    WC Chemistry, Applied; Engineering, Chemical; Materials Science, Textiles
    SC Chemistry; Engineering; Materials Science
    GA 182PV
    UT WOS:000321757100001
status: public
subject:
- Technology and Engineering
title: The sensitivity and impact of dye structure and fibre micronaire on the increased
  dyeability of bioengineered cotton fibres
type: journalArticle
volume: '129'
wos_id: '000321757100001'
wos_type: Article
year: '2013'
...
---
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  apa: |2
      <div class="csl-entry">Steyaert, I., Rahier, H., &#38; De Clerck, K. (2013). Electrospinnability of a polycaprolactone/chitosan polymer blend using a novel solvent system. <i>13th Biennial Bayreuth Polymer Symposium, Abstracts</i>, 1–1. Universität Bayreuth.</div>
  bof: |2
      <div class="csl-entry">Steyaert, Iline, Hubert Rahier, and Karen De Clerck. 2013. “Electrospinnability of a Polycaprolactone/Chitosan Polymer Blend Using a Novel Solvent System.” In <i>13th Biennial Bayreuth Polymer Symposium, Abstracts</i>, 1–1. Universität Bayreuth.</div>
  chicago-author-date: |2
      <div class="csl-entry">Steyaert, Iline, Hubert Rahier, and Karen De Clerck. 2013. “Electrospinnability of a Polycaprolactone/Chitosan Polymer Blend Using a Novel Solvent System.” In <i>13th Biennial Bayreuth Polymer Symposium, Abstracts</i>, 1–1. Universität Bayreuth.</div>
  fwo: |2
      <div class="csl-entry">Steyaert, Iline, Hubert Rahier, and Karen De Clerck. 2013. “Electrospinnability of a Polycaprolactone/Chitosan Polymer Blend Using a Novel Solvent System.” In <i>13th Biennial Bayreuth Polymer Symposium, Abstracts</i>, 1–1. Universität Bayreuth.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">I. Steyaert, H. Rahier, and K. De Clerck, “Electrospinnability of a polycaprolactone/chitosan polymer blend using a novel solvent system,” in <i>13th Biennial Bayreuth Polymer Symposium, Abstracts</i>, Bayreuth, Germany, 2013, pp. 1–1.</div>
      </div>
  mla: |2
      <div class="csl-entry">Steyaert, Iline, et al. “Electrospinnability of a Polycaprolactone/Chitosan Polymer Blend Using a Novel Solvent System.” <i>13th Biennial Bayreuth Polymer Symposium, Abstracts</i>, Universität Bayreuth, 2013, pp. 1–1.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Steyaert I, Rahier H, De Clerck K. Electrospinnability of a polycaprolactone/chitosan polymer blend using a novel solvent system. In: 13th Biennial Bayreuth Polymer Symposium, Abstracts. Universität Bayreuth; 2013. p. 1–1.</div>
       </div>
classification: C3
conference:
  end_date: 2013-09-17
  location: Bayreuth, Germany
  name: 13th Biennial Bayreuth Polymer Symposium
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copyright_statement: No license (in copyright)
created_by:
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date_created: 2013-12-13 11:51:10
date_updated: 2026-03-31 13:40:11
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parent:
  title: 13th Biennial Bayreuth Polymer Symposium, Abstracts
publication_status: published
publication_status_sort: 2
publisher:
  name: Universität Bayreuth
status: public
subject:
- Technology and Engineering
title: Electrospinnability of a polycaprolactone/chitosan polymer blend using a novel
  solvent system
type: conference
year: '2013'
...
---
_id: '3237648'
abstract:
- In this study, three important subjects, electrospinning of nanofibrous materials
  suited for biomedical, antibacterial, nanocomposite and electromagnetic shielding
  applications are mentioned.  Electrospinning of any biodegradable and biocompatible
  polymer is possible by adjusting electrospinning process parameters such as voltage,
  polymer viscosity, polymer conductivity, polymer flow rate, etc.  In this project,
  it is aimed to make reproducible production of electrospun nanofibrous membranes
  with using polymers as poly (e-caprolactone) (pcl), polyglycolyde (pga), poly (lactic-colycolic
  aid) (plga), polylactide (pla) etc. for antibacterial, biomedical, nanocomposite
  and electromagnetic shielding applications.
abstract_full:
- lang: eng
  text: In this study, three important subjects, electrospinning of nanofibrous materials
    suited for biomedical, antibacterial, nanocomposite and electromagnetic shielding
    applications are mentioned.  Electrospinning of any biodegradable and biocompatible
    polymer is possible by adjusting electrospinning process parameters such as voltage,
    polymer viscosity, polymer conductivity, polymer flow rate, etc.  In this project,
    it is aimed to make reproducible production of electrospun nanofibrous membranes
    with using polymers as poly (e-caprolactone) (pcl), polyglycolyde (pga), poly
    (lactic-colycolic aid) (plga), polylactide (pla) etc. for antibacterial, biomedical,
    nanocomposite and electromagnetic shielding applications.
affiliation:
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author:
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  name: F Kalaoglu
  name_last_first: Kalaoglu, F
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biblio_id: '3237648'
cite:
  apa: |2
      <div class="csl-entry">Karakas, H., De Clerck, K., Sezai Saraç, A., Kalaoglu, F., &#38; Baskan, H. (2013). Electrospinning of nanofibers for functional textile applications. <i>International R&#38;D Brokerage Event of “Innovative and Functional Textile Products”, Abstracts</i>, 166–168. Istanbul, Turkey: ITKIB-ITA.</div>
  bof: |2
      <div class="csl-entry">Karakas, H, Karen De Clerck, A Sezai Saraç, F Kalaoglu, and H Baskan. 2013. “Electrospinning of Nanofibers for Functional Textile Applications.” In <i>International R&#38;D Brokerage Event of “Innovative and Functional Textile Products”, Abstracts</i>, 166–168. Istanbul, Turkey: ITKIB-ITA.</div>
  chicago-author-date: |2
      <div class="csl-entry">Karakas, H, Karen De Clerck, A Sezai Saraç, F Kalaoglu, and H Baskan. 2013. “Electrospinning of Nanofibers for Functional Textile Applications.” In <i>International R&#38;D Brokerage Event of “Innovative and Functional Textile Products”, Abstracts</i>, 166–68. Istanbul, Turkey: ITKIB-ITA.</div>
  fwo: |2
      <div class="csl-entry">Karakas, H, Karen De Clerck, A Sezai Saraç, F Kalaoglu, and H Baskan. 2013. “Electrospinning of Nanofibers for Functional Textile Applications.” In <i>International R&#38;D Brokerage Event of “Innovative and Functional Textile Products”, Abstracts</i>, 166–168. Istanbul, Turkey: ITKIB-ITA.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">H. Karakas, K. De Clerck, A. Sezai Saraç, F. Kalaoglu, and H. Baskan, “Electrospinning of nanofibers for functional textile applications,” in <i>International R&#38;D Brokerage Event of “Innovative and Functional Textile Products”, Abstracts</i>, Istanbul, Turkey, 2013, pp. 166–168.</div>
      </div>
  mla: |2
      <div class="csl-entry">Karakas, H., et al. “Electrospinning of Nanofibers for Functional Textile Applications.” <i>International R&#38;D Brokerage Event of “Innovative and Functional Textile Products”, Abstracts</i>, ITKIB-ITA, 2013, pp. 166–68.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Karakas H, De Clerck K, Sezai Saraç A, Kalaoglu F, Baskan H. Electrospinning of nanofibers for functional textile applications. In: International R&#38;D Brokerage Event of “Innovative and Functional Textile Products”, Abstracts. Istanbul, Turkey: ITKIB-ITA; 2013. p. 166–8.</div>
       </div>
classification: C3
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  end_date: 2013-06-01
  location: Istanbul, Turkey
  name: International R&D Brokerage Event of 'Innovative and Functional Textile Products'
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copyright_statement: No license (in copyright)
created_by:
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jcr: {}
keyword:
- functional textile applications
- Nanofibres
- antibacterial
- electromagnetic shielding
- electrospinning
- biomedical
- nanocomposites
language:
- eng
page:
  first: '166'
  last: '168'
parent:
  title: International R&D Brokerage Event of 'Innovative and Functional Textile Products',
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title: Electrospinning of nanofibers for functional textile applications
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...
---
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  first_name: Ives
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  first_name: Bert
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cite:
  apa: |2
      <div class="csl-entry">De Baere, I., De Schoenmaker, B., van der Heijden, S., Van Paepegem, W., &#38; De Clerck, K. (2013). Changes in mechanical behaviour of a glass fibre reinforced epoxy by adding polyamide 6 nanofibres. In O. Thomsen, B. F. Sørensen, &#38; C. Berggreen (Eds.), <i>6th International Conference on Composites Testing and Model Identification, Abstracts</i> (pp. 173–174).</div>
  chicago-author-date: |2
      <div class="csl-entry">De Baere, Ives, Bert De Schoenmaker, Sam van der Heijden, Wim Van Paepegem, and Karen De Clerck. 2013. “Changes in Mechanical Behaviour of a Glass Fibre Reinforced Epoxy by Adding Polyamide 6 Nanofibres.” In <i>6th International Conference on Composites Testing and Model Identification, Abstracts</i>, edited by OT Thomsen, Bent F Sørensen, and Christian Berggreen, 173–74.</div>
  fwo: |2
      <div class="csl-entry">De Baere, Ives, Bert De Schoenmaker, Sam van der Heijden, Wim Van Paepegem, and Karen De Clerck. 2013. “Changes in Mechanical Behaviour of a Glass Fibre Reinforced Epoxy by Adding Polyamide 6 Nanofibres.” In <i>6th International Conference on Composites Testing and Model Identification, Abstracts</i>, ed by. OT Thomsen, Bent F Sørensen, and Christian Berggreen, 173–174.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">I. De Baere, B. De Schoenmaker, S. van der Heijden, W. Van Paepegem, and K. De Clerck, “Changes in mechanical behaviour of a glass fibre reinforced epoxy by adding polyamide 6 nanofibres,” in <i>6th International Conference on Composites Testing and Model Identification, Abstracts</i>, Aalborg, Denmark, 2013, pp. 173–174.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Baere, Ives, et al. “Changes in Mechanical Behaviour of a Glass Fibre Reinforced Epoxy by Adding Polyamide 6 Nanofibres.” <i>6th International Conference on Composites Testing and Model Identification, Abstracts</i>, edited by OT Thomsen et al., 2013, pp. 173–74.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Baere I, De Schoenmaker B, van der Heijden S, Van Paepegem W, De Clerck K. Changes in mechanical behaviour of a glass fibre reinforced epoxy by adding polyamide 6 nanofibres. In: Thomsen O, Sørensen BF, Berggreen C, editors. 6th International Conference on Composites Testing and Model Identification, Abstracts. 2013. p. 173–4.</div>
       </div>
classification: C3
conference:
  end_date: 2013-04-24
  location: Aalborg, Denmark
  name: 6th International Conference on Composites Testing and Model Identification
    (comptest 2013)
  start_date: 2013-04-22
copyright_statement: No license (in copyright)
created_by:
  _id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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  first_name: Ives
  last_name: De Baere
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date_created: 2013-04-29 14:08:13
date_updated: 2026-03-31 13:04:37
editor:
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  last_name: Thomsen
  name: OT Thomsen
  name_last_first: Thomsen, OT
- first_name: Bent F
  last_name: Sørensen
  name: Bent F Sørensen
  name_last_first: Sørensen, Bent F
- first_name: Christian
  last_name: Berggreen
  name: Christian Berggreen
  name_last_first: Berggreen, Christian
external: 0
file:
- _id: '3203950'
  access: open
  content_type: application/pdf
  kind: fullText
  name: comptest2013-IvesDEBAERE-Nano.pdf
  sha256: b471dece8298dda39100e66d9a294e59d1c1af098658cfb88701318d4150c047
  size: '589782'
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  url: https://biblio.ugent.be/publication/3203938/file/3203950.pdf
handle: http://hdl.handle.net/1854/LU-3203938
isbn:
- '8791464498'
language:
- eng
page:
  first: '173'
  last: '174'
parent:
  title: 6th International Conference on Composites Testing and Model Identification,
    Abstracts
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Changes in mechanical behaviour of a glass fibre reinforced epoxy by adding
  polyamide 6 nanofibres
type: conference
year: '2013'
...
---
_id: '3223956'
abstract:
- Silica nanofibres have, due to their excellent properties, promising characteristics
  for multiple applications such as filtration, composites, catalysis, etc. Silica
  nanofibres can be obtained by combining electrospinning and the sol–gel process.
  To produce silica nanofibres most of the time organic solutions are applied containing
  a carrying polymer, which is afterwards removed by a thermal treatment to form pure
  ceramic nanofibres. Although electrospinning of the pure silica precursors without
  carrying polymer is preferred, the parameters influencing the stability of the electrospinning
  process are however largely unknown. In addition, this knowledge is essential for
  potential upscaling of the process. In this study, the optimum viscosity to electrospin
  in a stable manner is determined and the way to obtain this viscosity is evaluated.
  Sols with a viscosity between 120 and 200 mPa.s could be electrospun in a stable
  way, resulting in uniform and beadless nanofibres. Furthermore, this viscosity region
  corresponded with nanofibres having the lowest mean nanofibre diameters. Electrospinning
  with diluted sols was possible as well, but electrospinning of the fresh sols was
  more stable. These results illustrate the importance of the viscosity and degree
  of crosslinking of the sol for the stable electrospinning of silica nanofibres and
  demonstrate that upscaling of the electrospinning process of silica nanofibres is
  feasible
abstract_full:
- lang: eng
  text: Silica nanofibres have, due to their excellent properties, promising characteristics
    for multiple applications such as filtration, composites, catalysis, etc. Silica
    nanofibres can be obtained by combining electrospinning and the sol–gel process.
    To produce silica nanofibres most of the time organic solutions are applied containing
    a carrying polymer, which is afterwards removed by a thermal treatment to form
    pure ceramic nanofibres. Although electrospinning of the pure silica precursors
    without carrying polymer is preferred, the parameters influencing the stability
    of the electrospinning process are however largely unknown. In addition, this
    knowledge is essential for potential upscaling of the process. In this study,
    the optimum viscosity to electrospin in a stable manner is determined and the
    way to obtain this viscosity is evaluated. Sols with a viscosity between 120 and
    200 mPa.s could be electrospun in a stable way, resulting in uniform and beadless
    nanofibres. Furthermore, this viscosity region corresponded with nanofibres having
    the lowest mean nanofibre diameters. Electrospinning with diluted sols was possible
    as well, but electrospinning of the fresh sols was more stable. These results
    illustrate the importance of the viscosity and degree of crosslinking of the sol
    for the stable electrospinning of silica nanofibres and demonstrate that upscaling
    of the electrospinning process of silica nanofibres is feasible
affiliation:
- name: Department of Inorganic and physical chemistry (ceased 1-1-2018)
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE06*
  ugent_id: WE06*
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_type: original
author:
- _id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  biblio_id: 08322EC0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jozefien
  last_name: Geltmeyer
  name: Jozefien Geltmeyer
  name_last_first: Geltmeyer, Jozefien
  orcid_id: 0000-0002-1281-2968
  ugent_id:
  - '000070582957'
  - '975000449525'
- _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
  - '002002166892'
  - '802000424715'
- _id: F8CDA356-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: F8CDA356-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Frederik
  last_name: Goethals
  name: Frederik Goethals
  name_last_first: Goethals, Frederik
  ugent_id:
  - '002002096467'
  - '802000157155'
- _id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: FA099C70-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Klaartje
  last_name: De Buysser
  name: Klaartje De Buysser
  name_last_first: De Buysser, Klaartje
  orcid_id: 0000-0001-7462-2484
  ugent_id:
  - '801001571962'
  - '978828372447'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '3223956'
cite:
  apa: |2
      <div class="csl-entry">Geltmeyer, J., Van der Schueren, L., Goethals, F., De Buysser, K., &#38; De Clerck, K. (2013). Optimum sol viscosity for stable electrospinning of silica nanofibres. <i>JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY</i>, <i>67</i>(1), 188–195. https://doi.org/10.1007/s10971-013-3066-x</div>
  chicago-author-date: |2
      <div class="csl-entry">Geltmeyer, Jozefien, Lien Van der Schueren, Frederik Goethals, Klaartje De Buysser, and Karen De Clerck. 2013. “Optimum Sol Viscosity for Stable Electrospinning of Silica Nanofibres.” <i>JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY</i> 67 (1): 188–95. https://doi.org/10.1007/s10971-013-3066-x.</div>
  fwo: |2
      <div class="csl-entry">Geltmeyer, Jozefien, Lien Van der Schueren, Frederik Goethals, Klaartje De Buysser, and Karen De Clerck. 2013. “Optimum Sol Viscosity for Stable Electrospinning of Silica Nanofibres.” <i>JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY</i> 67 (1): 188–195. doi:10.1007/s10971-013-3066-x.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">J. Geltmeyer, L. Van der Schueren, F. Goethals, K. De Buysser, and K. De Clerck, “Optimum sol viscosity for stable electrospinning of silica nanofibres,” <i>JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY</i>, vol. 67, no. 1, pp. 188–195, 2013.</div>
      </div>
  mla: |2
      <div class="csl-entry">Geltmeyer, Jozefien, et al. “Optimum Sol Viscosity for Stable Electrospinning of Silica Nanofibres.” <i>JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY</i>, vol. 67, no. 1, 2013, pp. 188–95, doi:10.1007/s10971-013-3066-x.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Geltmeyer J, Van der Schueren L, Goethals F, De Buysser K, De Clerck K. Optimum sol viscosity for stable electrospinning of silica nanofibres. JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY. 2013;67(1):188–95.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2013-05-24 13:50:29
date_updated: 2026-03-31 13:05:22
doi:
- 10.1007/s10971-013-3066-x
external: 0
file:
- _id: '3223970'
  access: private
  kind: fullText
  sha256: 33b6f8f45c2d175ed049b4c1b14ab817ae81b284bd3be564569191013f6bf53a
  size: '346503'
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- _id: '8561080'
  access: open
  content_type: application/pdf
  kind: fullText
  name: Revised Stable electrospinning silica nanofibres_1.pdf
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handle: http://hdl.handle.net/1854/LU-3223956
issn:
- 0928-0707
issue: '1'
jcr:
  category: MATERIALS SCIENCE, CERAMICS
  category_decile: 3
  category_quartile: 1
  category_rank: 6/25
  category_vigintile: 5
  eigenfactor: 0.00743
  immediacy_index: 0.209
  impact_factor: 1.547
  impact_factor_5yr: 1.763
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 3
  prev_impact_factor: 1.66
  total_cites: 4765
keyword:
- FIBERS
- COMPOSITE
- GEL PROCESS
- GLASS NANOFIBERS
- Tetraethyl orthosilicate
- Silica
- Stability
- Electrospinning
- Sol-gel
- MORPHOLOGY
- DIAMETER
- RESINS
language:
- eng
page:
  first: '188'
  last: '195'
parent:
  short_title: J. Sol-Gel Sci. Technol.
  title: JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Optimum sol viscosity for stable electrospinning of silica nanofibres
type: journalArticle
volume: '67'
wos_id: '000322137600023'
wos_type: Article
year: '2013'
...
---
_id: '3118695'
abstract:
- Recently, an increasing interest in pH-sensitive textiles is recognized. These chromic
  textiles can be used as flexible sensors for various applications. The aim of the
  current research is to develop textile pH-sensors through the application of pH-sensitive
  dyes on various textile materials using different techniques. The results of our
  study show that halochromic dyes can be incorporated into conventional textiles
  by a conventional dyeing technique. Also coating the fabrics with a sol-gel layer
  layer containing the halochromic dye proved to be successful. The majority of these
  developed materials showed a clearly visible color change with a pH-variation. The
  response of the sensors was dependent on the density of the fabric but was generally
  relatively fast, especially for the sol-gel treated fabrics. The halochromic coloration
  of nanofibres was realized by directly adding the dyes during the fiber formation,
  which was shown to be highly effective. Again, a clear halochromic shift was observed.
  The response of these sensors was fast thanks to the high porosity of nanofibrous
  non-wovens. Yet, it should be kept in mind that the halochromic behavior of the
  dyes in the textile matrix altered compared to their behavior in solution which
  is most likely attributed to dye-fiber interactions. Generally we can conclude that
  various coloration techniques showed to be effective for the development of innovative
  textile pH-sensors.
abstract_full:
- lang: eng
  text: Recently, an increasing interest in pH-sensitive textiles is recognized. These
    chromic textiles can be used as flexible sensors for various applications. The
    aim of the current research is to develop textile pH-sensors through the application
    of pH-sensitive dyes on various textile materials using different techniques.
    The results of our study show that halochromic dyes can be incorporated into conventional
    textiles by a conventional dyeing technique. Also coating the fabrics with a sol-gel
    layer layer containing the halochromic dye proved to be successful. The majority
    of these developed materials showed a clearly visible color change with a pH-variation.
    The response of the sensors was dependent on the density of the fabric but was
    generally relatively fast, especially for the sol-gel treated fabrics. The halochromic
    coloration of nanofibres was realized by directly adding the dyes during the fiber
    formation, which was shown to be highly effective. Again, a clear halochromic
    shift was observed. The response of these sensors was fast thanks to the high
    porosity of nanofibrous non-wovens. Yet, it should be kept in mind that the halochromic
    behavior of the dyes in the textile matrix altered compared to their behavior
    in solution which is most likely attributed to dye-fiber interactions. Generally
    we can conclude that various coloration techniques showed to be effective for
    the development of innovative textile pH-sensors.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
author:
- _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
  - '002002166892'
  - '802000424715'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '3118695'
cite:
  apa: |2
      <div class="csl-entry">Van der Schueren, L., &#38; De Clerck, K. (2013). Halochromic textile materials as innovative pH-sensors. In P. Vincenzini &#38; C. Carfagna (Eds.), <i>Advances in Science and Technology</i> (Vol. 80, pp. 47–52). https://doi.org/10.4028/www.scientific.net/AST.80.47</div>
  chicago-author-date: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2013. “Halochromic Textile Materials as Innovative PH-Sensors.” In <i>Advances in Science and Technology</i>, edited by P Vincenzini and C Carfagna, 80:47–52. Stafa-Zürich, Switzerland: Trans Tech Publications. https://doi.org/10.4028/www.scientific.net/AST.80.47.</div>
  fwo: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2013. “Halochromic Textile Materials as Innovative PH-Sensors.” In <i>Advances in Science and Technology</i>, ed by. P Vincenzini and C Carfagna, 80:47–52. Stafa-Zürich, Switzerland: Trans Tech Publications. doi:10.4028/www.scientific.net/AST.80.47.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Van der Schueren and K. De Clerck, “Halochromic textile materials as innovative pH-sensors,” in <i>Advances in Science and Technology</i>, Montecatini Terme, Italy, 2013, vol. 80, pp. 47–52.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. “Halochromic Textile Materials as Innovative PH-Sensors.” <i>Advances in Science and Technology</i>, edited by P Vincenzini and C Carfagna, vol. 80, Trans Tech Publications, 2013, pp. 47–52, doi:10.4028/www.scientific.net/AST.80.47.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van der Schueren L, De Clerck K. Halochromic textile materials as innovative pH-sensors. In: Vincenzini P, Carfagna C, editors. Advances in Science and Technology. Stafa-Zürich, Switzerland: Trans Tech Publications; 2013. p. 47–52.</div>
       </div>
classification: P1
conference:
  end_date: 2012-06-14
  location: Montecatini Terme, Italy
  name: 4th International conference on SMART Materials, Structures and Systems (CIMTEC
    2012) ; Symposium D on Smart and Interactive Textiles of CIMTEC
  start_date: 2012-06-10
conference_type: proceedingsPaper
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2013-02-01 17:00:33
date_updated: 2026-03-31 13:12:37
doi:
- 10.4028/www.scientific.net/AST.80.47
editor:
- first_name: P
  last_name: Vincenzini
  name: P Vincenzini
  name_last_first: Vincenzini, P
- first_name: C
  last_name: Carfagna
  name: C Carfagna
  name_last_first: Carfagna, C
external: 0
file:
- _id: '3118697'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: AST_80_471.pdf
  sha256: 99d19fb201bae0916e161c3b9e44388818507bdea40a9c050d515993184f2bf7
  size: '351952'
  thumbnail_url: https://biblio.ugent.be/publication/3118695/file/3118697/thumbnail.png
  url: https://biblio.ugent.be/publication/3118695/file/3118697.pdf
handle: http://hdl.handle.net/1854/LU-3118695
isbn:
- '9783908158660'
issn:
- 1662-0356
issue_title: Smart and interactive textiles
keyword:
- dyeing
- chromism
- sol-gel
- electrospinning
- pH sensor
language:
- eng
page:
  first: '47'
  last: '52'
parent:
  title: Advances in Science and Technology
publication_status: published
publication_status_sort: 2
publisher:
  location: Stafa-Zürich, Switzerland
  name: Trans Tech Publications
status: public
subject:
- Technology and Engineering
title: Halochromic textile materials as innovative pH-sensors
type: conference
volume: '80'
wos_id: '000317791300007'
wos_type: Proceedings Paper
year: '2013'
...
---
_id: '4243517'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_type: original
author:
- _id: 0B227202-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0B227202-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Iline
  last_name: Steyaert
  name: Iline Steyaert
  name_last_first: Steyaert, Iline
  ugent_id:
  - '000060129993'
  - '802001072793'
  - '979860756278'
- first_name: Marie-Paule
  last_name: Delplancke
  name: Marie-Paule Delplancke
  name_last_first: Delplancke, Marie-Paule
- first_name: Guy
  last_name: Van Assche
  name: Guy Van Assche
  name_last_first: Van Assche, Guy
- first_name: Hubert
  last_name: Rahier
  name: Hubert Rahier
  name_last_first: Rahier, Hubert
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '4243517'
cite:
  apa: |2
      <div class="csl-entry">Steyaert, I., Delplancke, M.-P., Van Assche, G., Rahier, H., &#38; De Clerck, K. (2013). Fast-scanning calorimetry of electrospun polyamide nanofibres: melting behaviour and crystal structure. <i>POLYMER</i>, <i>54</i>(25), 6809–6817. https://doi.org/10.1016/j.polymer.2013.10.032</div>
  bof: |2-
      <div class="csl-entry">Steyaert, Iline, Marie-Paule Delplancke, Guy Van Assche, Hubert Rahier, and Karen De Clerck. 2013. “Fast-Scanning Calorimetry of Electrospun Polyamide Nanofibres: Melting Behaviour and Crystal Structure.” <i>POLYMER</i> 54 (25): 6809–6817. doi:10.1016/j.polymer.2013.10.032.</div>
    <div><i>Impact factor: 3.766, category: POLYMER SCIENCE, rank: 12/82, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Steyaert, Iline, Marie-Paule Delplancke, Guy Van Assche, Hubert Rahier, and Karen De Clerck. 2013. “Fast-Scanning Calorimetry of Electrospun Polyamide Nanofibres: Melting Behaviour and Crystal Structure.” <i>POLYMER</i> 54 (25): 6809–17. https://doi.org/10.1016/j.polymer.2013.10.032.</div>
  fwo: |2
      <div class="csl-entry">Steyaert, Iline, Marie-Paule Delplancke, Guy Van Assche, Hubert Rahier, and Karen De Clerck. 2013. “Fast-Scanning Calorimetry of Electrospun Polyamide Nanofibres: Melting Behaviour and Crystal Structure.” <i>POLYMER</i> 54 (25): 6809–6817. doi:10.1016/j.polymer.2013.10.032.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">I. Steyaert, M.-P. Delplancke, G. Van Assche, H. Rahier, and K. De Clerck, “Fast-scanning calorimetry of electrospun polyamide nanofibres: melting behaviour and crystal structure,” <i>POLYMER</i>, vol. 54, no. 25, pp. 6809–6817, 2013.</div>
      </div>
  mla: |2
      <div class="csl-entry">Steyaert, Iline, et al. “Fast-Scanning Calorimetry of Electrospun Polyamide Nanofibres: Melting Behaviour and Crystal Structure.” <i>POLYMER</i>, vol. 54, no. 25, 2013, pp. 6809–17, doi:10.1016/j.polymer.2013.10.032.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Steyaert I, Delplancke M-P, Van Assche G, Rahier H, De Clerck K. Fast-scanning calorimetry of electrospun polyamide nanofibres: melting behaviour and crystal structure. POLYMER. 2013;54(25):6809–17.</div>
       </div>
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keyword:
- STATE
- FIBER
- MORPHOLOGY
- NYLON-6 NANOFIBERS
- MOLECULAR-ORIENTATION
- DSC
- NANOCOMPOSITES
- CRYSTALLIZATION
- TEMPERATURE
- PERFORMANCE
- Fast-scanning calorimetry
- Crystal structure
- Polyamide nanofibre
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  short_title: Polymer
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    VR 1.0
    PT J
    AU Steyaert, I
       Delplancke, MP
       Van Assche, G
       Rahier, H
       De Clerck, K
    AF Steyaert, Iline
       Delplancke, Marie-Paule
       Van Assche, Guy
       Rahier, Hubert
       De Clerck, Karen
    TI Fast-scanning calorimetry of electrospun polyamide nanofibres: Melting
       behaviour and crystal structure
    SO POLYMER
    LA English
    DT Article
    DE Fast-scanning calorimetry; Crystal structure; Polyamide nanofibre
    ID MOLECULAR-ORIENTATION; NYLON-6 NANOFIBERS; MORPHOLOGY; STATE; DSC;
       NANOCOMPOSITES; FIBER; CRYSTALLIZATION; TEMPERATURE; PERFORMANCE
    AB This paper discusses the melting behaviour and crystal structure of electrospun (polymorphous) polyamide (PA) fibres and presents the importance of the heating rate used for their study by thermal analysis. A case study of PA6, PA46 and PA69 nanofibres is performed using a Rapid Heat-Cool DSC (RHC), a fast-scanning calorimeter capable of controlled heating rates above 1000 K min(-1). Thermal lag becomes significant at scan rates above 500 K min(-1) and the ideal scan rate for analysis of the crystal structure depends on the PA type. Measurements at the most suitable heating rate indicate that the thermal stability of the crystals is higher for nanofibres compared to bulk material. Additionally, more stable crystals are favoured in finer nanofibres. This is especially the case for PA6 nanofibres, having an increasing fraction of stable cc-crystal phase with decreasing fibre diameter, as shown by both thermal analysis and X-ray diffraction. (C) 2013 Elsevier Ltd. All rights reserved.
    C1 [Steyaert, Iline; De Clerck, Karen] Univ Ghent, Fac Engn & Architecture, Dept Text, Fibre & Colourat Technol Res Grp, B-9052 Ghent, Belgium.
       [Steyaert, Iline; Van Assche, Guy; Rahier, Hubert] Vrije Univ Brussel, Fac Engn, Dept Mat & Chem, Res Unit Phys Chem & Polymer Sci FYSC, B-1050 Brussels, Belgium.
       [Delplancke, Marie-Paule] Univ Libre Brussels, MAT 4, Ecole Polytech Bruxelles, Brussels, Belgium.
    RP Rahier, H (reprint author), Vrije Univ Brussel, Fac Engn, Dept Mat & Chem, Res Unit Phys Chem & Polymer Sci FYSC, Pl Laan 2, B-1050 Brussels, Belgium.
    EM iline.steyaert@ugent.be; hrahier@vub.ac.be; karen.declerck@ugent.be
    FU Agency for Innovation by Science and Technology of Flanders (IWT); IWT
       Strategic Basic Research [111158]
    FX Financial support from The Agency for Innovation by Science and
       Technology of Flanders (IWT) is gratefully acknowledged. Results in this
       paper were obtained within the framework of the IWT Strategic Basic
       Research Grant 111158. TA Instruments is acknowledged for making a Rapid
       Heating Cooling DSC prototype available at the Vrije Universiteit
       Brussel (VUB) in the framework of "Project RHC".
    NR 46
    PU ELSEVIER SCI LTD
    PI OXFORD
    PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
    SN 0032-3861
    J9 POLYMER
    JI Polymer
    PD NOV 27
    PY 2013
    VL 54
    IS 25
    BP 6809
    EP 6817
    DI 10.1016/j.polymer.2013.10.032
    PG 9
    WC Polymer Science
    SC Polymer Science
    GA 257WN
    UT WOS:000327418600018
status: public
subject:
- Technology and Engineering
title: 'Fast-scanning calorimetry of electrospun polyamide nanofibres: melting behaviour
  and crystal structure'
type: journalArticle
volume: '54'
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cite:
  apa: |2
      <div class="csl-entry">De Schoenmaker, B., van der Heijden, S., De Baere, I., Van Paepegem, W., &#38; De Clerck, K. (2013). Effect of electrospun polyamide 6 nanofibres on the mechanical properties of a glass fibre/epoxy composite. <i>POLYMER TESTING</i>, <i>32</i>(8), 1495–1501. https://doi.org/10.1016/j.polymertesting.2013.09.015</div>
  chicago-author-date: |2
      <div class="csl-entry">De Schoenmaker, Bert, Sam van der Heijden, Ives De Baere, Wim Van Paepegem, and Karen De Clerck. 2013. “Effect of Electrospun Polyamide 6 Nanofibres on the Mechanical Properties of a Glass Fibre/Epoxy Composite.” <i>POLYMER TESTING</i> 32 (8): 1495–1501. https://doi.org/10.1016/j.polymertesting.2013.09.015.</div>
  fwo: |2
      <div class="csl-entry">De Schoenmaker, Bert, Sam van der Heijden, Ives De Baere, Wim Van Paepegem, and Karen De Clerck. 2013. “Effect of Electrospun Polyamide 6 Nanofibres on the Mechanical Properties of a Glass Fibre/Epoxy Composite.” <i>POLYMER TESTING</i> 32 (8): 1495–1501. doi:10.1016/j.polymertesting.2013.09.015.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. De Schoenmaker, S. van der Heijden, I. De Baere, W. Van Paepegem, and K. De Clerck, “Effect of electrospun polyamide 6 nanofibres on the mechanical properties of a glass fibre/epoxy composite,” <i>POLYMER TESTING</i>, vol. 32, no. 8, pp. 1495–1501, 2013.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Schoenmaker, Bert, et al. “Effect of Electrospun Polyamide 6 Nanofibres on the Mechanical Properties of a Glass Fibre/Epoxy Composite.” <i>POLYMER TESTING</i>, vol. 32, no. 8, 2013, pp. 1495–501, doi:10.1016/j.polymertesting.2013.09.015.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Schoenmaker B, van der Heijden S, De Baere I, Van Paepegem W, De Clerck K. Effect of electrospun polyamide 6 nanofibres on the mechanical properties of a glass fibre/epoxy composite. POLYMER TESTING. 2013;32(8):1495–501.</div>
       </div>
classification: A1
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date_updated: 2026-03-31 14:08:03
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- 0142-9418
issue: '8'
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  category: MATERIALS SCIENCE, CHARACTERIZATION & TESTING
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keyword:
- Polyamide 6 nanofibres
- Stress-strain curves
- Structural composites
- Optical microscopy
- FRACTURE-TOUGHNESS
- MATS
- CARBON/EPOXY COMPOSITES
- Matrix cracking
language:
- eng
page:
  first: '1495'
  last: '1501'
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  short_title: Polym. Test
  title: POLYMER TESTING
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  record: |
    PT J
    AU De Schoenmaker, B
       Van der Heijden, S
       De Baere, I
       Van Paepegem, W
       De Clerck, K
    AF De Schoenmaker, Bert
       Van der Heijden, Sam
       De Baere, Ives
       Van Paepegem, Wim
       De Clerck, Karen
    TI Effect of electrospun polyamide 6 nanofibres on the mechanical
       properties of a glass fibre/epoxy composite
    SO POLYMER TESTING
    LA English
    DT Article
    DE Structural composites; Polyamide 6 nanofibres; Matrix cracking;
       Stress-strain curves; Optical microscopy
    ID CARBON/EPOXY COMPOSITES; FRACTURE-TOUGHNESS; MATS
    AB Recently, several types of nanoparticles are frequently incorporated in reinforced epoxy resin composites. A homogeneous dispersion of these nanoparticles is still a problem. Thermoplastic nanofibrous structures can tackle this dispersion issue. Therefore, this paper investigated the effect of electrospun polyamide 6 nanofibrous structures on the mechanical properties of a glass fibre/epoxy composite. The nanofibres were incorporated in the glass fibre/epoxy composite as stand-alone interlayered structures and directly spun on the glass fibre reinforcement. Both ways of nanofibre incorporation have no negative effect on the impregnation of the epoxy. Moreover, the nanofibres remain well dispersed within the matrix. Incorporation of nanofibres increases the stress at failure in the 0 degrees-direction, the best results are obtained when the nanofibres are directly electrospun onto the glass fibres. Optical microscopic images also demonstrate that nanofibres prevent delamination when a 90 degrees crack reaches a neighbouring 0 degrees ply. Furthermore, mode I tests showed a small improvement when a thin nanofibrous structure is deposited directly onto the glass fibres. When the composites are loaded under 45 degrees, it is proven that, for an identical stress, the glass fibre composite with deposited nanofibres has less cracks than when interlayered nanofibrous structures are incorporated. Generally, it can be concluded that the addition of polyamide 6 nanofibres improves some mechanical characteristics of a glass fibre/epoxy composite. (C) 2013 Elsevier Ltd. All rights reserved.
    C1 [De Schoenmaker, Bert; Van der Heijden, Sam; De Clerck, Karen] Univ Ghent, Dept Text, B-9052 Zwijnaarde, Belgium.
       [De Baere, Ives; Van Paepegem, Wim] Univ Ghent, B-9052 Zwijnaarde, Belgium.
    RP De Clerck, K (reprint author), Univ Ghent, Dept Text, Technol Pk 907, B-9052 Zwijnaarde, Belgium.
    EM bert.deschoenmaker@ugent.be
    NR 22
    PU ELSEVIER SCI LTD
    PI OXFORD
    PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
    SN 0142-9418
    EI 1873-2348
    J9 POLYM TEST
    JI Polym. Test
    PD DEC
    PY 2013
    VL 32
    IS 8
    BP 1495
    EP 1501
    DI 10.1016/j.polymertesting.2013.09.015
    PG 7
    WC Materials Science, Characterization & Testing; Polymer Science
    SC Materials Science; Polymer Science
    GA 282AY
    UT WOS:000329143700028
status: public
subject:
- Technology and Engineering
title: Effect of electrospun polyamide 6 nanofibres on the mechanical properties of
  a glass fibre/epoxy composite
type: journalArticle
volume: '32'
wos_id: '000329143700028'
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year: '2013'
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      <div class="csl-entry">Van der Schueren, L., De Meyer, T., Steyaert, I., Ceylan, Ö., Hemelsoet, K., Van Speybroeck, V., &#38; De Clerck, K. (2013). Polycaprolactone and polycaprolactone/chitosan nanofibres functionalised with the pH-sensitive dye Nitrazine Yellow. <i>CARBOHYDRATE POLYMERS</i>, <i>91</i>(1), 284–293. https://doi.org/10.1016/j.carbpol.2012.08.003</div>
  bof: |2-
      <div class="csl-entry">Van der Schueren, Lien, Thierry De Meyer, Iline Steyaert, Özgür Ceylan, Karen Hemelsoet, Veronique Van Speybroeck, and Karen De Clerck. 2013. “Polycaprolactone and Polycaprolactone/Chitosan Nanofibres Functionalised with the PH-Sensitive Dye Nitrazine Yellow.” <i>CARBOHYDRATE POLYMERS</i> 91 (1): 284–293. doi:10.1016/j.carbpol.2012.08.003.</div>
    <div><i>Impact factor: 3.916, category: CHEMISTRY, APPLIED, rank: 4/71, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Van der Schueren, Lien, Thierry De Meyer, Iline Steyaert, Özgür Ceylan, Karen Hemelsoet, Veronique Van Speybroeck, and Karen De Clerck. 2013. “Polycaprolactone and Polycaprolactone/Chitosan Nanofibres Functionalised with the PH-Sensitive Dye Nitrazine Yellow.” <i>CARBOHYDRATE POLYMERS</i> 91 (1): 284–93. https://doi.org/10.1016/j.carbpol.2012.08.003.</div>
  fwo: |2
      <div class="csl-entry">Van der Schueren, Lien, Thierry De Meyer, Iline Steyaert, Özgür Ceylan, Karen Hemelsoet, Veronique Van Speybroeck, and Karen De Clerck. 2013. “Polycaprolactone and Polycaprolactone/Chitosan Nanofibres Functionalised with the PH-Sensitive Dye Nitrazine Yellow.” <i>CARBOHYDRATE POLYMERS</i> 91 (1): 284–293. doi:10.1016/j.carbpol.2012.08.003.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Van der Schueren <i>et al.</i>, “Polycaprolactone and polycaprolactone/chitosan nanofibres functionalised with the pH-sensitive dye Nitrazine Yellow,” <i>CARBOHYDRATE POLYMERS</i>, vol. 91, no. 1, pp. 284–293, 2013.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van der Schueren, Lien, et al. “Polycaprolactone and Polycaprolactone/Chitosan Nanofibres Functionalised with the PH-Sensitive Dye Nitrazine Yellow.” <i>CARBOHYDRATE POLYMERS</i>, vol. 91, no. 1, 2013, pp. 284–93, doi:10.1016/j.carbpol.2012.08.003.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van der Schueren L, De Meyer T, Steyaert I, Ceylan Ö, Hemelsoet K, Van Speybroeck V, et al. Polycaprolactone and polycaprolactone/chitosan nanofibres functionalised with the pH-sensitive dye Nitrazine Yellow. CARBOHYDRATE POLYMERS. 2013;91(1):284–93.</div>
       </div>
classification: A1
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  first_name: Wim
  last_name: Dewitte
  name: Wim Dewitte
  name_last_first: Dewitte, Wim
  ugent_id:
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date_created: 2012-11-29 16:08:53
date_updated: 2026-03-31 14:33:43
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keyword:
- BEHAVIOR
- MATRIX
- INDICATOR
- CHITOSAN
- FABRICATION
- Chitosan
- Polycaprolactone
- Nanofiber
- Hydrophilicity
- PH-sensitive
- Sensor
language:
- eng
page:
  first: '284'
  last: '293'
parent:
  short_title: Carbohydr. Polym.
  title: CARBOHYDRATE POLYMERS
publication_status: published
publication_status_sort: 2
source:
  record: |
    VR 1.0
    PT J
    AU Van der Schueren, L
       De Meyer, T
       Steyaert, I
       Ceylan, O
       Hemelsoet, K
       Van Speybroeck, V
       De Clerck, K
    AF Van der Schueren, Lien
       De Meyer, Thierry
       Steyaert, Iline
       Ceylan, Ozgur
       Hemelsoet, Karen
       Van Speybroeck, Veronique
       De Clerck, Karen
    TI Polycaprolactone and polycaprolactone/chitosan nanofibres functionalised
       with the pH-sensitive dye Nitrazine Yellow
    SO CARBOHYDRATE POLYMERS
    LA English
    DT Article
    DE Chitosan; Polycaprolactone; Nanofiber; Hydrophilicity; PH-sensitive;
       Sensor
    ID CHITOSAN; FABRICATION; INDICATOR; BEHAVIOR; MATRIX
    AB Nanofibres functionalised with pH-sensitive dyes could greatly contribute to the development of stimuli-responsive materials. However, the application of biocompatible polymers is vital to allow for their use in (bio)medical applications. Therefore, this paper focuses on the development and characterisation of pH-sensitive polycaprolactone (PCL) nanofibrous structures and PCL/chitosan nanofibrous blends with 20% chitosan. Electrospinning with added Nitrazine Yellow molecules proved to be an excellent method resulting in pH-responsive non-wovens. Unlike the slow and broad response of PCL nanofibres (time lag of more than 3 h), the use of blends with chitosan led to an increased sensitivity and significantly reduced response time (time lag of 5 min). These important effects are attributed to the increased hydrophilic nature of the nanofibres containing chitosan. Computational calculations indicated stronger interactions, mainly based on electrostatic interactions, of the dye with chitosan (Delta G of-132.3 kJ/mol) compared to the long-range interactions with PCL (Delta G of 35.6 kJ/mol), thus underpinning our experimental observations. In conclusion, because of the unique characteristics of chitosan, the use of PCL/chitosan blends in pH-sensitive biocompatible nanofibrous sensors is crucial. (C) 2012 Elsevier Ltd. All rights reserved.
    C1 [Van der Schueren, Lien; De Meyer, Thierry; Steyaert, Iline; Ceylan, Ozgur; De Clerck, Karen] Univ Ghent, Dept Text, B-9052 Ghent, Belgium.
       [De Meyer, Thierry; Hemelsoet, Karen; Van Speybroeck, Veronique] Univ Ghent, Ctr Mol Modeling, B-9052 Ghent, Belgium.
    RP De Clerck, K (reprint author), Univ Ghent, Dept Text, Technol Pk 907, B-9052 Ghent, Belgium.
    EM lien.vanderschueren@ugent.be; thierry.demeyer@ugent.be;
       iline.steyaert@ugent.be; ozgur.ceylan@ugent.be;
       karen.hemelsoet@ugent.be; veronique.vanspeybroeck@ugent.be;
       karen.declerck@ugent.be
    FU Research Board of Ghent University (BOF); Fund for Scientific Research -
       Flanders (FWO)
    FX The Research Board of Ghent University (BOF) and the Fund for Scientific
       Research - Flanders (FWO) are acknowledged for their financial support.
    NR 43
    PU ELSEVIER SCI LTD
    PI OXFORD
    PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
    SN 0144-8617
    J9 CARBOHYD POLYM
    JI Carbohydr. Polym.
    PD JAN 2
    PY 2013
    VL 91
    IS 1
    BP 284
    EP 293
    DI 10.1016/j.carbpol.2012.08.003
    PG 10
    WC Chemistry, Applied; Chemistry, Organic; Polymer Science
    SC Chemistry; Polymer Science
    GA 026DH
    UT WOS:000310253800037
status: public
subject:
- Chemistry
title: Polycaprolactone and polycaprolactone/chitosan nanofibres functionalised with
  the pH-sensitive dye Nitrazine Yellow
type: journalArticle
volume: '91'
wos_id: '000310253800037'
wos_type: Article
year: '2013'
...
---
_id: '3118590'
abstract:
- To obtain uniform and reproducible nanofibres, it is important to understand the
  effect of the different electrospinning parameters on the nanofibre morphology.
  Even though a lot of literature is available on the electrospinning of nanofibres,
  only minor research has been performed on the effect of the relative humidity (RH).
  This paper investigates the influence of this parameter on the electrospinning process
  and fibre morphology of the hydrophilic polyamide 4.6 and the less hydrophilic polyamide
  6.9. First, the electrospinning process and deposition area of the nanofibres is
  examined at 10, 50 and 70 % RH. Subsequently, the effect of the polyamide concentration
  and solvent ratio on the fibre morphology is investigated using scanning electron
  microscopy and differential scanning calorimetry. It was found that the nanofibre
  diameter decreased with increasing RH. This resulted in less stable crystals for
  polyamide 4.6 while electrospinning of polyamide 6.9 at higher RH led to slightly
  more stable crystals. In conclusion, the water affinity of a polymer is an important
  factor in predicting the nanofibre morphology at different humidities.
abstract_full:
- lang: eng
  text: To obtain uniform and reproducible nanofibres, it is important to understand
    the effect of the different electrospinning parameters on the nanofibre morphology.
    Even though a lot of literature is available on the electrospinning of nanofibres,
    only minor research has been performed on the effect of the relative humidity
    (RH). This paper investigates the influence of this parameter on the electrospinning
    process and fibre morphology of the hydrophilic polyamide 4.6 and the less hydrophilic
    polyamide 6.9. First, the electrospinning process and deposition area of the nanofibres
    is examined at 10, 50 and 70 % RH. Subsequently, the effect of the polyamide concentration
    and solvent ratio on the fibre morphology is investigated using scanning electron
    microscopy and differential scanning calorimetry. It was found that the nanofibre
    diameter decreased with increasing RH. This resulted in less stable crystals for
    polyamide 4.6 while electrospinning of polyamide 6.9 at higher RH led to slightly
    more stable crystals. In conclusion, the water affinity of a polymer is an important
    factor in predicting the nanofibre morphology at different humidities.
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  first_name: Philippe
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  name: Philippe Westbroek
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  first_name: Paul
  last_name: Kiekens
  name: Paul Kiekens
  name_last_first: Kiekens, Paul
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- first_name: Tebello
  last_name: Nyokong
  name: Tebello Nyokong
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  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
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biblio_id: '3118590'
cite:
  apa: |2
      <div class="csl-entry">De Schoenmaker, B., Van der Schueren, L., Zugle, R., Goethals, A., Westbroek, P., Kiekens, P., … De Clerck, K. (2013). Effect of the relative humidity on the fibre morphology of polyamide 4.6 and polyamide 6.9 nanofibres. <i>JOURNAL OF MATERIALS SCIENCE</i>, <i>48</i>(4), 1746–1754. https://doi.org/10.1007/s10853-012-6934-9</div>
  bof: |2-
      <div class="csl-entry">De Schoenmaker, Bert, Lien Van der Schueren, Ruphino Zugle, Annelies Goethals, Philippe Westbroek, Paul Kiekens, Tebello Nyokong, and Karen De Clerck. 2013. “Effect of the Relative Humidity on the Fibre Morphology of Polyamide 4.6 and Polyamide 6.9 Nanofibres.” <i>JOURNAL OF MATERIALS SCIENCE</i> 48 (4): 1746–1754. doi:10.1007/s10853-012-6934-9.</div>
    <div><i>Impact factor: 2.305, category: MATERIALS SCIENCE, MULTIDISCIPLINARY, rank: 58/251, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">De Schoenmaker, Bert, Lien Van der Schueren, Ruphino Zugle, Annelies Goethals, Philippe Westbroek, Paul Kiekens, Tebello Nyokong, and Karen De Clerck. 2013. “Effect of the Relative Humidity on the Fibre Morphology of Polyamide 4.6 and Polyamide 6.9 Nanofibres.” <i>JOURNAL OF MATERIALS SCIENCE</i> 48 (4): 1746–54. https://doi.org/10.1007/s10853-012-6934-9.</div>
  fwo: |2
      <div class="csl-entry">De Schoenmaker, Bert, Lien Van der Schueren, Ruphino Zugle, Annelies Goethals, Philippe Westbroek, Paul Kiekens, Tebello Nyokong, and Karen De Clerck. 2013. “Effect of the Relative Humidity on the Fibre Morphology of Polyamide 4.6 and Polyamide 6.9 Nanofibres.” <i>JOURNAL OF MATERIALS SCIENCE</i> 48 (4): 1746–1754. doi:10.1007/s10853-012-6934-9.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. De Schoenmaker <i>et al.</i>, “Effect of the relative humidity on the fibre morphology of polyamide 4.6 and polyamide 6.9 nanofibres,” <i>JOURNAL OF MATERIALS SCIENCE</i>, vol. 48, no. 4, pp. 1746–1754, 2013.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Schoenmaker, Bert, et al. “Effect of the Relative Humidity on the Fibre Morphology of Polyamide 4.6 and Polyamide 6.9 Nanofibres.” <i>JOURNAL OF MATERIALS SCIENCE</i>, vol. 48, no. 4, 2013, pp. 1746–54, doi:10.1007/s10853-012-6934-9.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Schoenmaker B, Van der Schueren L, Zugle R, Goethals A, Westbroek P, Kiekens P, et al. Effect of the relative humidity on the fibre morphology of polyamide 4.6 and polyamide 6.9 nanofibres. JOURNAL OF MATERIALS SCIENCE. 2013;48(4):1746–54.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
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  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2013-02-01 15:26:35
date_updated: 2026-03-31 14:36:05
doi:
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handle: http://hdl.handle.net/1854/LU-3118590
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keyword:
- ELECTROSPINNING PROCESS
- NANOCOMPOSITES
language:
- eng
page:
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parent:
  short_title: J. Mater. Sci.
  title: JOURNAL OF MATERIALS SCIENCE
project:
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  abstract: <p>Within the consortium consisting of 2 European and 1 South-African
    partner, different surface modification technologies as well as expertise in electrospinning
    are available. These technologies are the basis for developing 3 prototype products:a
    textile fibre with transistor properties as on-off switch for textile sensors;
    a sensor for nitric oxide detection and an air filter for dedicated filtration
    of NOx. Knowledge and research skills available within the consortium are complimentary
    and ensure the contribution of each partner to the joint development of the products.
    <br /><br /><br /><br /></p>
  end_date: 2012-07-31
  eu_id: '247265'
  gismo_id: e2b6ffa1-0585-4090-b87b-206153bb0f7c
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  title: PROCOTEX – Products of Coated Textiles
publication_status: published
publication_status_sort: 2
source:
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    VR 1.0
    PT J
    AU De Schoenmaker, B
       Van der Schueren, L
       Zugle, R
       Goethals, A
       Westbroek, P
       Kiekens, P
       Nyokong, T
       De Clerck, K
    AF De Schoenmaker, Bert
       Van der Schueren, Lien
       Zugle, Ruphino
       Goethals, Annelies
       Westbroek, Philippe
       Kiekens, Paul
       Nyokong, Tebello
       De Clerck, Karen
    TI Effect of the relative humidity on the fibre morphology of polyamide 4.6
       and polyamide 6.9 nanofibres
    SO JOURNAL OF MATERIALS SCIENCE
    LA English
    DT Article
    ID ELECTROSPINNING PROCESS; NANOCOMPOSITES
    AB To obtain uniform and reproducible nanofibres, it is important to understand the effect of the different electrospinning parameters on the nanofibre morphology. Even though a lot of literature is available on the electrospinning of nanofibres, only minor research has been performed on the effect of the relative humidity (RH). This paper investigates the influence of this parameter on the electrospinning process and fibre morphology of the hydrophilic polyamide 4.6 and the less hydrophilic polyamide 6.9. First, the electrospinning process and deposition area of the nanofibres is examined at 10, 50 and 70 % RH. Subsequently, the effect of the polyamide concentration and solvent ratio on the fibre morphology is investigated using scanning electron microscopy and differential scanning calorimetry. It was found that the nanofibre diameter decreased with increasing RH. This resulted in less stable crystals for polyamide 4.6 while electrospinning of polyamide 6.9 at higher RH led to slightly more stable crystals. In conclusion, the water affinity of a polymer is an important factor in predicting the nanofibre morphology at different humidities.
    C1 [De Schoenmaker, Bert; Van der Schueren, Lien; Goethals, Annelies; Westbroek, Philippe; Kiekens, Paul; De Clerck, Karen] Univ Ghent, Zwijnaarde, Belgium.
       [Zugle, Ruphino; Nyokong, Tebello] Rhodos Univ, Grahamstown, South Africa.
    RP De Clerck, K (reprint author), Univ Ghent, Technol Pk 907, Zwijnaarde, Belgium.
    EM Karen.DeClerck@ugent.be
    FU European Research Project PROCOTEX as an IRSES project of the PEOPLE
       exchange programme
    FX The results reported in this paper were partly financed by a European
       Research Project PROCOTEX as an IRSES project of the PEOPLE exchange
       programme.
    NR 25
    PU SPRINGER
    PI NEW YORK
    PA 233 SPRING ST, NEW YORK, NY 10013 USA
    SN 0022-2461
    J9 J MATER SCI
    JI J. Mater. Sci.
    PD FEB
    PY 2013
    VL 48
    IS 4
    BP 1746
    EP 1754
    DI 10.1007/s10853-012-6934-9
    PG 9
    WC Materials Science, Multidisciplinary
    SC Materials Science
    GA 062FY
    UT WOS:000312906000038
status: public
subject:
- Technology and Engineering
title: Effect of the relative humidity on the fibre morphology of polyamide 4.6 and
  polyamide 6.9 nanofibres
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      <div class="csl-entry">Ceylan, Ö., Alongi, J., Van Landuyt, L., Frache, A., &#38; De Clerck, K. (2013). Combustion characteristics of cellulosic loose fibres. <i>FIRE AND MATERIALS</i>, <i>37</i>(6), 482–490. https://doi.org/10.1002/fam.2147</div>
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      <div class="csl-entry">Ceylan, Özgür, Jenny Alongi, Lieve Van Landuyt, Alberto Frache, and Karen De Clerck. 2013. “Combustion Characteristics of Cellulosic Loose Fibres.” <i>FIRE AND MATERIALS</i> 37 (6): 482–90. https://doi.org/10.1002/fam.2147.</div>
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      <div class="csl-entry">Ceylan, Özgür, Jenny Alongi, Lieve Van Landuyt, Alberto Frache, and Karen De Clerck. 2013. “Combustion Characteristics of Cellulosic Loose Fibres.” <i>FIRE AND MATERIALS</i> 37 (6): 482–490. doi:10.1002/fam.2147.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Ö. Ceylan, J. Alongi, L. Van Landuyt, A. Frache, and K. De Clerck, “Combustion characteristics of cellulosic loose fibres,” <i>FIRE AND MATERIALS</i>, vol. 37, no. 6, pp. 482–490, 2013.</div>
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      <div class="csl-entry">Ceylan, Özgür, et al. “Combustion Characteristics of Cellulosic Loose Fibres.” <i>FIRE AND MATERIALS</i>, vol. 37, no. 6, 2013, pp. 482–90, doi:10.1002/fam.2147.</div>
  vancouver: |2
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        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Ceylan Ö, Alongi J, Van Landuyt L, Frache A, De Clerck K. Combustion characteristics of cellulosic loose fibres. FIRE AND MATERIALS. 2013;37(6):482–90.</div>
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keyword:
- cone calorimeter
- combustion
- heat release
- cellulosic fibres
- CONE CALORIMETER
- HEAT RELEASE
- OXYGEN-CONSUMPTION
- PERFORMANCE
- COTTON
- APPARATUS
- FABRICS
- cotton
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parent:
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  title: FIRE AND MATERIALS
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title: Combustion characteristics of cellulosic loose fibres
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      <div class="csl-entry">Geltmeyer, J., Van der Schueren, L., De Buysser, K., &#38; De Clerck, K. (2013). Stable electrospinning of silica nanofibres : influence of viscosity. In J. M. Lagarón, L. Cabedo, A. López, &#38; M. J. Fabra (Eds.), <i>Colleció e-Treballs d’Informàtica i Tecnologia</i> (Vol. 17, pp. 172–173). Castelló de la Plana, Spain: Universitat Jaume. Servei de Communicació i Publicacions.</div>
  bof: |2
      <div class="csl-entry">Geltmeyer, Jozefien, Lien Van der Schueren, Klaartje De Buysser, and Karen De Clerck. 2013. “Stable Electrospinning of Silica Nanofibres : Influence of Viscosity.” In <i>Colleció E-Treballs d’Informàtica i Tecnologia</i>, ed by. José M Lagarón, Luis Cabedo, Amparo López, and María J Fabra, 17:172–173. Castelló de la Plana, Spain: Universitat Jaume. Servei de Communicació i Publicacions.</div>
  chicago-author-date: |2
      <div class="csl-entry">Geltmeyer, Jozefien, Lien Van der Schueren, Klaartje De Buysser, and Karen De Clerck. 2013. “Stable Electrospinning of Silica Nanofibres : Influence of Viscosity.” In <i>Colleció E-Treballs d’Informàtica i Tecnologia</i>, edited by José M Lagarón, Luis Cabedo, Amparo López, and María J Fabra, 17:172–73. Castelló de la Plana, Spain: Universitat Jaume. Servei de Communicació i Publicacions.</div>
  fwo: |2
      <div class="csl-entry">Geltmeyer, Jozefien, Lien Van der Schueren, Klaartje De Buysser, and Karen De Clerck. 2013. “Stable Electrospinning of Silica Nanofibres : Influence of Viscosity.” In <i>Colleció E-Treballs d’Informàtica i Tecnologia</i>, ed by. José M Lagarón, Luis Cabedo, Amparo López, and María J Fabra, 17:172–173. Castelló de la Plana, Spain: Universitat Jaume. Servei de Communicació i Publicacions.</div>
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      <div class="csl-entry">
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      <div class="csl-entry">Geltmeyer, Jozefien, et al. “Stable Electrospinning of Silica Nanofibres : Influence of Viscosity.” <i>Colleció E-Treballs d’Informàtica i Tecnologia</i>, edited by José M Lagarón et al., vol. 17, Universitat Jaume. Servei de Communicació i Publicacions, 2013, pp. 172–73.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Geltmeyer J, Van der Schueren L, De Buysser K, De Clerck K. Stable electrospinning of silica nanofibres : influence of viscosity. In: Lagarón JM, Cabedo L, López A, Fabra MJ, editors. Colleció e-Treballs d’Informàtica i Tecnologia. Castelló de la Plana, Spain: Universitat Jaume. Servei de Communicació i Publicacions; 2013. p. 172–3.</div>
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      <div class="csl-entry">Daels, N., Goethals, A., Van Hulle, S., &#38; De Clerck, K. (2013). Functionalisation of electrospun nanofibre membranes with titaniumdioxide nanoparticles. In J. M. Lagarón, L. Cabedo, A. López, &#38; M. J. Fabra (Eds.), <i>Colleció e-Treballs d’Informàtica i Tecnologia</i> (Vol. 17, pp. 180–181). Castelló de la Plana, Spain: Universitat Jaume. Servei de Communicació i Publicacions.</div>
  bof: |2
      <div class="csl-entry">Daels, Nele, Annelies Goethals, Stijn Van Hulle, and Karen De Clerck. 2013. “Functionalisation of Electrospun Nanofibre Membranes with Titaniumdioxide Nanoparticles.” In <i>Colleció E-Treballs d’Informàtica i Tecnologia</i>, ed by. José M Lagarón, Luis Cabedo, Amparo López, and María J Fabra, 17:180–181. Castelló de la Plana, Spain: Universitat Jaume. Servei de Communicació i Publicacions.</div>
  chicago-author-date: |2
      <div class="csl-entry">Daels, Nele, Annelies Goethals, Stijn Van Hulle, and Karen De Clerck. 2013. “Functionalisation of Electrospun Nanofibre Membranes with Titaniumdioxide Nanoparticles.” In <i>Colleció E-Treballs d’Informàtica i Tecnologia</i>, edited by José M Lagarón, Luis Cabedo, Amparo López, and María J Fabra, 17:180–81. Castelló de la Plana, Spain: Universitat Jaume. Servei de Communicació i Publicacions.</div>
  fwo: |2
      <div class="csl-entry">Daels, Nele, Annelies Goethals, Stijn Van Hulle, and Karen De Clerck. 2013. “Functionalisation of Electrospun Nanofibre Membranes with Titaniumdioxide Nanoparticles.” In <i>Colleció E-Treballs d’Informàtica i Tecnologia</i>, ed by. José M Lagarón, Luis Cabedo, Amparo López, and María J Fabra, 17:180–181. Castelló de la Plana, Spain: Universitat Jaume. Servei de Communicació i Publicacions.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">N. Daels, A. Goethals, S. Van Hulle, and K. De Clerck, “Functionalisation of electrospun nanofibre membranes with titaniumdioxide nanoparticles,” in <i>Colleció e-Treballs d’Informàtica i Tecnologia</i>, Barcelona, Spain, 2013, vol. 17, pp. 180–181.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daels, Nele, et al. “Functionalisation of Electrospun Nanofibre Membranes with Titaniumdioxide Nanoparticles.” <i>Colleció E-Treballs d’Informàtica i Tecnologia</i>, edited by José M Lagarón et al., vol. 17, Universitat Jaume. Servei de Communicació i Publicacions, 2013, pp. 180–81.</div>
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        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daels N, Goethals A, Van Hulle S, De Clerck K. Functionalisation of electrospun nanofibre membranes with titaniumdioxide nanoparticles. In: Lagarón JM, Cabedo L, López A, Fabra MJ, editors. Colleció e-Treballs d’Informàtica i Tecnologia. Castelló de la Plana, Spain: Universitat Jaume. Servei de Communicació i Publicacions; 2013. p. 180–1.</div>
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      <div class="csl-entry">De Schoenmaker, B., van der Heijden, S., De Baere, I., Van Paepegem, W., &#38; De Clerck, K. (2013). The effect of electrospun polyamide 6 nanofibres on the mechanical properties of a glass fibre/epoxy composite. In J. M. Lagarón, L. Cabedo, A. López, &#38; M. J. Fabra (Eds.), <i>Colleció e-Treballs d’Informàtica i Tecnologia</i> (Vol. 17, pp. 194–195). Castelló de la Plana, Spain: Universitat Jaume. Servei de Communicació i Publicacions.</div>
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      <div class="csl-entry">De Schoenmaker, Bert, Sam van der Heijden, Ives De Baere, Wim Van Paepegem, and Karen De Clerck. 2013. “The Effect of Electrospun Polyamide 6 Nanofibres on the Mechanical Properties of a Glass Fibre/Epoxy Composite.” In <i>Colleció E-Treballs d’Informàtica i Tecnologia</i>, ed by. José M Lagarón, Luis Cabedo, Amparo López, and María J Fabra, 17:194–195. Castelló de la Plana, Spain: Universitat Jaume. Servei de Communicació i Publicacions.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Schoenmaker, Bert, Sam van der Heijden, Ives De Baere, Wim Van Paepegem, and Karen De Clerck. 2013. “The Effect of Electrospun Polyamide 6 Nanofibres on the Mechanical Properties of a Glass Fibre/Epoxy Composite.” In <i>Colleció E-Treballs d’Informàtica i Tecnologia</i>, edited by José M Lagarón, Luis Cabedo, Amparo López, and María J Fabra, 17:194–95. Castelló de la Plana, Spain: Universitat Jaume. Servei de Communicació i Publicacions.</div>
  fwo: |2
      <div class="csl-entry">De Schoenmaker, Bert, Sam van der Heijden, Ives De Baere, Wim Van Paepegem, and Karen De Clerck. 2013. “The Effect of Electrospun Polyamide 6 Nanofibres on the Mechanical Properties of a Glass Fibre/Epoxy Composite.” In <i>Colleció E-Treballs d’Informàtica i Tecnologia</i>, ed by. José M Lagarón, Luis Cabedo, Amparo López, and María J Fabra, 17:194–195. Castelló de la Plana, Spain: Universitat Jaume. Servei de Communicació i Publicacions.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. De Schoenmaker, S. van der Heijden, I. De Baere, W. Van Paepegem, and K. De Clerck, “The effect of electrospun polyamide 6 nanofibres on the mechanical properties of a glass fibre/epoxy composite,” in <i>Colleció e-Treballs d’Informàtica i Tecnologia</i>, Barcelona, Spain, 2013, vol. 17, pp. 194–195.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Schoenmaker, Bert, et al. “The Effect of Electrospun Polyamide 6 Nanofibres on the Mechanical Properties of a Glass Fibre/Epoxy Composite.” <i>Colleció E-Treballs d’Informàtica i Tecnologia</i>, edited by José M Lagarón et al., vol. 17, Universitat Jaume. Servei de Communicació i Publicacions, 2013, pp. 194–95.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Schoenmaker B, van der Heijden S, De Baere I, Van Paepegem W, De Clerck K. The effect of electrospun polyamide 6 nanofibres on the mechanical properties of a glass fibre/epoxy composite. In: Lagarón JM, Cabedo L, López A, Fabra MJ, editors. Colleció e-Treballs d’Informàtica i Tecnologia. Castelló de la Plana, Spain: Universitat Jaume. Servei de Communicació i Publicacions; 2013. p. 194–5.</div>
       </div>
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      <div class="csl-entry">Steyaert, I., Van Assche, G., Rahier, H., &#38; De Clerck, K. (2013). Crystal morphology of polyamide nanofibres analysed using fast-scanning calorimetry. In J. M. Lagarón, L. Cabedo, A. López, &#38; M. J. Fabra (Eds.), <i>Colleció e-Treballs d’Informàtica i Tecnologia</i> (Vol. 17, pp. 211–212). Castelló de la Plana, Spain: Universitat Jaume. Servei de Communicació i Publicacions.</div>
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      <div class="csl-entry">Steyaert, Iline, Guy Van Assche, Hubert Rahier, and Karen De Clerck. 2013. “Crystal Morphology of Polyamide Nanofibres Analysed Using Fast-Scanning Calorimetry.” In <i>Colleció E-Treballs d’Informàtica i Tecnologia</i>, ed by. José M Lagarón, Luis Cabedo, Amparo López, and María J Fabra, 17:211–212. Castelló de la Plana, Spain: Universitat Jaume. Servei de Communicació i Publicacions.</div>
  chicago-author-date: |2
      <div class="csl-entry">Steyaert, Iline, Guy Van Assche, Hubert Rahier, and Karen De Clerck. 2013. “Crystal Morphology of Polyamide Nanofibres Analysed Using Fast-Scanning Calorimetry.” In <i>Colleció E-Treballs d’Informàtica i Tecnologia</i>, edited by José M Lagarón, Luis Cabedo, Amparo López, and María J Fabra, 17:211–12. Castelló de la Plana, Spain: Universitat Jaume. Servei de Communicació i Publicacions.</div>
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      <div class="csl-entry">Steyaert, Iline, Guy Van Assche, Hubert Rahier, and Karen De Clerck. 2013. “Crystal Morphology of Polyamide Nanofibres Analysed Using Fast-Scanning Calorimetry.” In <i>Colleció E-Treballs d’Informàtica i Tecnologia</i>, ed by. José M Lagarón, Luis Cabedo, Amparo López, and María J Fabra, 17:211–212. Castelló de la Plana, Spain: Universitat Jaume. Servei de Communicació i Publicacions.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">I. Steyaert, G. Van Assche, H. Rahier, and K. De Clerck, “Crystal morphology of polyamide nanofibres analysed using fast-scanning calorimetry,” in <i>Colleció e-Treballs d’Informàtica i Tecnologia</i>, Barcelona, Spain, 2013, vol. 17, pp. 211–212.</div>
      </div>
  mla: |2
      <div class="csl-entry">Steyaert, Iline, et al. “Crystal Morphology of Polyamide Nanofibres Analysed Using Fast-Scanning Calorimetry.” <i>Colleció E-Treballs d’Informàtica i Tecnologia</i>, edited by José M Lagarón et al., vol. 17, Universitat Jaume. Servei de Communicació i Publicacions, 2013, pp. 211–12.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Steyaert I, Van Assche G, Rahier H, De Clerck K. Crystal morphology of polyamide nanofibres analysed using fast-scanning calorimetry. In: Lagarón JM, Cabedo L, López A, Fabra MJ, editors. Colleció e-Treballs d’Informàtica i Tecnologia. Castelló de la Plana, Spain: Universitat Jaume. Servei de Communicació i Publicacions; 2013. p. 211–2.</div>
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      <div class="csl-entry">Van der Schueren, L., &#38; De Clerck, K. (2012). Halochromic textile materials as innovative pH-sensors. <i>4th International Conference “SMART Materials, Structures and Systems”, Abstracts</i>, 90–90. Montecatini Terme, Italy: CIMTEC.</div>
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      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2012. “Halochromic Textile Materials as Innovative PH-Sensors.” In <i>4th International Conference “SMART Materials, Structures and Systems”, Abstracts</i>, 90–90. Montecatini Terme, Italy: CIMTEC.</div>
  fwo: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2012. “Halochromic Textile Materials as Innovative PH-Sensors.” In <i>4th International Conference “SMART Materials, Structures and Systems”, Abstracts</i>, 90–90. Montecatini Terme, Italy: CIMTEC.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Van der Schueren and K. De Clerck, “Halochromic textile materials as innovative pH-sensors,” in <i>4th international conference “SMART materials, structures and systems”, Abstracts</i>, Tuscany, Italy, 2012, pp. 90–90.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. “Halochromic Textile Materials as Innovative PH-Sensors.” <i>4th International Conference “SMART Materials, Structures and Systems”, Abstracts</i>, CIMTEC, 2012, pp. 90–90.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van der Schueren L, De Clerck K. Halochromic textile materials as innovative pH-sensors. In: 4th international conference “SMART materials, structures and systems”, Abstracts. Montecatini Terme, Italy: CIMTEC; 2012. p. 90–90.</div>
       </div>
classification: C3
conference:
  end_date: 2012-06-14
  location: Tuscany, Italy
  name: 4th international conference 'SMART materials, structures and systems' (CIMTEC
    - 2012)
  start_date: 2012-06-10
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
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  - '977385781070'
date_created: 2012-09-10 10:22:21
date_updated: 2026-03-31 13:21:55
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handle: http://hdl.handle.net/1854/LU-2983892
language:
- eng
page:
  first: '90'
  last: '90'
parent:
  title: 4th international conference 'SMART materials, structures and systems', Abstracts
project:
- _id: 01J04009
  abstract: <p>The aim of the project is to obtain a better understanding of the interactions
    between pH-sensitive dyes and textiles. Both a macroscopic spectral analysis and
    a general microscopic evaluation will be performed. The dye-fiber interactions,
    the local distribution, the impulse sensitivity and spectral variations as a function
    of time and place will be looked at.</p>
  end_date: 2013-10-31
  gismo_id: 070a44f0-b14b-48f0-9f2a-a0ec5c90b554
  iweto_id: 01J04009
  publication_count: 3
  start_date: 2009-01-01
  title: 'Research into new ''sensor materials'': pH-sensitive dyes in textiles'
publication_status: published
publication_status_sort: 2
publisher:
  location: Montecatini Terme, Italy
  name: CIMTEC
status: public
subject:
- Technology and Engineering
title: Halochromic textile materials as innovative pH-sensors
type: conference
year: '2012'
...
---
_id: '1917707'
abstract:
- Electrospinning is a process to generate nanofibrous nonwovens. With these nonwovens,
  many applications can be targeted, such as water filtration. In this paper, polyamide
  nanofibrous membranes are evaluated for their pore size, a key parameter in water
  filtration, and for their removal of microorganisms. To increase the removal efficiency
  to values exceeding the state of the art, innovative functionalization of the nanofibres
  is studied. The nanofibrous membranes are functionalized using a one step method.
  Different functionalization chemicals are investigated which are Ag nanoparticles
  and bactericides. Ag functionalized nanofibres are used as a reference medium to
  compare with a novel bactericide based functionalization system. It is seen that
  nanofibrous membranes functionalized with the bactericides exceed the normal removal
  efficiencies obtained by microfiltration membranes. Furthermore, knowledge is built
  up on how these bactericides are inserted in the nanofibres themselves.
abstract_full:
- lang: eng
  text: Electrospinning is a process to generate nanofibrous nonwovens. With these
    nonwovens, many applications can be targeted, such as water filtration. In this
    paper, polyamide nanofibrous membranes are evaluated for their pore size, a key
    parameter in water filtration, and for their removal of microorganisms. To increase
    the removal efficiency to values exceeding the state of the art, innovative functionalization
    of the nanofibres is studied. The nanofibrous membranes are functionalized using
    a one step method. Different functionalization chemicals are investigated which
    are Ag nanoparticles and bactericides. Ag functionalized nanofibres are used as
    a reference medium to compare with a novel bactericide based functionalization
    system. It is seen that nanofibrous membranes functionalized with the bactericides
    exceed the normal removal efficiencies obtained by microfiltration membranes.
    Furthermore, knowledge is built up on how these bactericides are inserted in the
    nanofibres themselves.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: University College West Flanders
  path:
  - ugent_id: UGentAssoc
  - ugent_id: HOWEST
  ugent_id: HOWEST
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
- name: Department of Inorganic and physical chemistry (ceased 1-1-2018)
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE06*
  ugent_id: WE06*
article_type: original
author:
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  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F873DBBE-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Sander
  last_name: De Vrieze
  name: Sander De Vrieze
  name_last_first: De Vrieze, Sander
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  - '002001065843'
- _id: 1C30272E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 1C30272E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Nele
  last_name: Daels
  name: Nele Daels
  name_last_first: Daels, Nele
  ugent_id:
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  - '802000583955'
  - '977784615061'
- _id: F78CC92C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW03
    ugent_id: TW03
  biblio_id: F78CC92C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karel
  last_name: Lambert
  name: Karel Lambert
  name_last_first: Lambert, Karel
  ugent_id:
  - '001999183538'
  - '801001974716'
- _id: 2AB52FF6-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2AB52FF6-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Bjorge
  last_name: Decostere
  name: Bjorge Decostere
  name_last_first: Decostere, Bjorge
  ugent_id:
  - '000101067128'
  - '802000860205'
  - '976566687610'
- _id: F4EE4434-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: WE
    - ugent_id: WE06
    ugent_id: WE06
  biblio_id: F4EE4434-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Zeger
  last_name: Hens
  name: Zeger Hens
  name_last_first: Hens, Zeger
  orcid_id: 0000-0002-7041-3375
  ugent_id:
  - '801001028762'
  - '972250855290'
- _id: FAD54460-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA24
    ugent_id: LA24
  biblio_id: FAD54460-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Stijn
  last_name: Van Hulle
  name: Stijn Van Hulle
  name_last_first: Van Hulle, Stijn
  orcid_id: 0000-0001-5773-7773
  ugent_id:
  - '801001539933'
  - '919019834884'
  - '971483871644'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '1917707'
cite:
  apa: |2
      <div class="csl-entry">De Vrieze, S., Daels, N., Lambert, K., Decostere, B., Hens, Z., Van Hulle, S., &#38; De Clerck, K. (2012). Filtration performance of electrospun polyamide nanofibres loaded with bactericides. <i>TEXTILE RESEARCH JOURNAL</i>, <i>82</i>(1), 37–44. https://doi.org/10.1177/0040517511416273</div>
  bof: |2-
      <div class="csl-entry">De Vrieze, Sander, Nele Daels, Karel Lambert, Bjorge Decostere, Zeger Hens, Stijn Van Hulle, and Karen De Clerck. 2012. “Filtration Performance of Electrospun Polyamide Nanofibres Loaded with Bactericides.” <i>TEXTILE RESEARCH JOURNAL</i> 82 (1): 37–44. doi:10.1177/0040517511416273.</div>
    <div><i>Impact factor: 1.135, category: MATERIALS SCIENCE, TEXTILES, rank: 4/22, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">De Vrieze, Sander, Nele Daels, Karel Lambert, Bjorge Decostere, Zeger Hens, Stijn Van Hulle, and Karen De Clerck. 2012. “Filtration Performance of Electrospun Polyamide Nanofibres Loaded with Bactericides.” <i>TEXTILE RESEARCH JOURNAL</i> 82 (1): 37–44. https://doi.org/10.1177/0040517511416273.</div>
  fwo: |2
      <div class="csl-entry">De Vrieze, Sander, Nele Daels, Karel Lambert, Bjorge Decostere, Zeger Hens, Stijn Van Hulle, and Karen De Clerck. 2012. “Filtration Performance of Electrospun Polyamide Nanofibres Loaded with Bactericides.” <i>TEXTILE RESEARCH JOURNAL</i> 82 (1): 37–44. doi:10.1177/0040517511416273.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. De Vrieze <i>et al.</i>, “Filtration performance of electrospun polyamide nanofibres loaded with bactericides,” <i>TEXTILE RESEARCH JOURNAL</i>, vol. 82, no. 1, pp. 37–44, 2012.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Vrieze, Sander, et al. “Filtration Performance of Electrospun Polyamide Nanofibres Loaded with Bactericides.” <i>TEXTILE RESEARCH JOURNAL</i>, vol. 82, no. 1, 2012, pp. 37–44, doi:10.1177/0040517511416273.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Vrieze S, Daels N, Lambert K, Decostere B, Hens Z, Van Hulle S, et al. Filtration performance of electrospun polyamide nanofibres loaded with bactericides. TEXTILE RESEARCH JOURNAL. 2012;82(1):37–44.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2011-09-29 13:51:53
date_updated: 2026-03-31 07:39:29
doi:
- 10.1177/0040517511416273
external: 0
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handle: http://hdl.handle.net/1854/LU-1917707
issn:
- 0040-5175
issue: '1'
jcr:
  category: MATERIALS SCIENCE, TEXTILES
  category_decile: 2
  category_quartile: 1
  category_rank: 4/22
  category_vigintile: 4
  eigenfactor: 0.00432
  immediacy_index: 0.098
  impact_factor: 1.135
  impact_factor_5yr: 1.458
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 3
  prev_impact_factor: 1.122
  total_cites: 4588
keyword:
- microorganisms
- Electrospinning
- water filtration
- WATER
- MEMBRANES
- FABRICATION
- SOLVENT
language:
- eng
page:
  first: '37'
  last: '44'
parent:
  short_title: Text. Res. J.
  title: TEXTILE RESEARCH JOURNAL
project:
- _id: 01MR0110
  abstract: <p>The Center for Nano- and Biophotonics sets up research lines in the
    area of nanoparticles, microlaser technology and optical switches, biosensors,
    bio-spectroscopy, scanning of biomaterials, electro-optical particle manipulation
    and active nanophotonic implants.</p>
  end_date: 2017-04-30
  gismo_id: e8ded5bb-d2f9-4991-ae4c-e97d04f71cd4
  iweto_id: 01MR0110
  publication_count: 112
  start_date: 2010-05-01
  title: Center for nano- and biophotonics (NB-Photonics)
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Filtration performance of electrospun polyamide nanofibres loaded with bactericides
type: journalArticle
volume: '82'
wos_id: '000298184800005'
wos_type: Article
year: '2012'
...
---
_id: '2022378'
affiliation:
- name: Department of Molecular biotechnology (ceased 1-1-2018)
  path:
  - ugent_id: UGent
  - ugent_id: LA
  - ugent_id: LA14
  ugent_id: LA14
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_type: original
author:
- _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
  - '002002166892'
  - '802000424715'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- first_name: Giovanna
  last_name: Brancatelli
  name: Giovanna Brancatelli
  name_last_first: Brancatelli, Giovanna
- first_name: Giuseppe
  last_name: Rosace
  name: Giuseppe Rosace
  name_last_first: Rosace, Giuseppe
- _id: F67A8F2E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA25
    ugent_id: LA25
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA51
    ugent_id: LA51
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA55
    ugent_id: LA55
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA59
    ugent_id: LA59
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA62
    ugent_id: LA62
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA63
    ugent_id: LA63
  biblio_id: F67A8F2E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Els
  last_name: Van Damme
  name: Els Van Damme
  name_last_first: Van Damme, Els
  orcid_id: 0000-0001-9848-766X
  ugent_id:
  - '801001646431'
  - '976975442778'
- _id: F6CF352E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: F6CF352E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Winnok
  last_name: De Vos
  name: Winnok De Vos
  name_last_first: De Vos, Winnok
  ugent_id:
  - '002000617421'
  - '801001764043'
  - '975654627528'
biblio_id: '2022378'
cite:
  apa: |2
      <div class="csl-entry">Van der Schueren, L., De Clerck, K., Brancatelli, G., Rosace, G., Van Damme, E., &#38; De Vos, W. (2012). Novel cellulose and polyamide halochromic textile sensors based on the encapsulation of Methyl Red into a sol–gel matrix. <i>SENSORS AND ACTUATORS B-CHEMICAL</i>, <i>162</i>(1), 27–34. https://doi.org/10.1016/j.snb.2011.11.077</div>
  bof: |2-
      <div class="csl-entry">Van der Schueren, Lien, Karen De Clerck, Giovanna Brancatelli, Giuseppe Rosace, Els Van Damme, and Winnok De Vos. 2012. “Novel Cellulose and Polyamide Halochromic Textile Sensors Based on the Encapsulation of Methyl Red into a Sol–Gel Matrix.” <i>SENSORS AND ACTUATORS B-CHEMICAL</i> 162 (1): 27–34. doi:10.1016/j.snb.2011.11.077.</div>
    <div><i>Impact factor: 3.535, category: INSTRUMENTS & INSTRUMENTATION, rank: 3/57, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Van der Schueren, Lien, Karen De Clerck, Giovanna Brancatelli, Giuseppe Rosace, Els Van Damme, and Winnok De Vos. 2012. “Novel Cellulose and Polyamide Halochromic Textile Sensors Based on the Encapsulation of Methyl Red into a Sol–Gel Matrix.” <i>SENSORS AND ACTUATORS B-CHEMICAL</i> 162 (1): 27–34. https://doi.org/10.1016/j.snb.2011.11.077.</div>
  fwo: |2
      <div class="csl-entry">Van der Schueren, Lien, Karen De Clerck, Giovanna Brancatelli, Giuseppe Rosace, Els Van Damme, and Winnok De Vos. 2012. “Novel Cellulose and Polyamide Halochromic Textile Sensors Based on the Encapsulation of Methyl Red into a Sol–Gel Matrix.” <i>SENSORS AND ACTUATORS B-CHEMICAL</i> 162 (1): 27–34. doi:10.1016/j.snb.2011.11.077.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Van der Schueren, K. De Clerck, G. Brancatelli, G. Rosace, E. Van Damme, and W. De Vos, “Novel cellulose and polyamide halochromic textile sensors based on the encapsulation of Methyl Red into a sol–gel matrix,” <i>SENSORS AND ACTUATORS B-CHEMICAL</i>, vol. 162, no. 1, pp. 27–34, 2012.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van der Schueren, Lien, et al. “Novel Cellulose and Polyamide Halochromic Textile Sensors Based on the Encapsulation of Methyl Red into a Sol–Gel Matrix.” <i>SENSORS AND ACTUATORS B-CHEMICAL</i>, vol. 162, no. 1, 2012, pp. 27–34, doi:10.1016/j.snb.2011.11.077.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van der Schueren L, De Clerck K, Brancatelli G, Rosace G, Van Damme E, De Vos W. Novel cellulose and polyamide halochromic textile sensors based on the encapsulation of Methyl Red into a sol–gel matrix. SENSORS AND ACTUATORS B-CHEMICAL. 2012;162(1):27–34.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2012-02-07 14:00:21
date_updated: 2026-03-31 09:10:57
doi:
- 10.1016/j.snb.2011.11.077
external: 0
file:
- _id: '2022424'
  access: restricted
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handle: http://hdl.handle.net/1854/LU-2022378
issn:
- 0925-4005
issue: '1'
jcr:
  category: INSTRUMENTS & INSTRUMENTATION
  category_decile: 1
  category_quartile: 1
  category_rank: 3/57
  category_vigintile: 1
  eigenfactor: 0.05429
  immediacy_index: 0.527
  impact_factor: 3.535
  impact_factor_5yr: 3.668
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  prev_category_vigintile: 1
  prev_impact_factor: 3.898
  total_cites: 29909
keyword:
- Methyl Red
- pH-sensor
- Sol–gel
- Wide area textile sensor
- FLUORESCENT PH INDICATOR
- SPECTRAL PROPERTIES
- DYES
- PERFORMANCE
- HUMIDITY
- COATINGS
- FILMS
language:
- eng
page:
  first: '27'
  last: '34'
parent:
  short_title: Sens. Actuator B-Chem.
  title: SENSORS AND ACTUATORS B-CHEMICAL
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Novel cellulose and polyamide halochromic textile sensors based on the encapsulation
  of Methyl Red into a sol–gel matrix
type: journalArticle
volume: '162'
wos_id: '000301214700005'
wos_type: Article
year: '2012'
...
---
_id: '2034716'
abstract:
- Nanofibres can be processed into several high-end applications due to their unique
  characteristics, especially when based on a diversity of polymers with specific
  properties. This, however, requires that the nanofibrous structures are produced
  in a highly reproducible way. The article gives focus to polyamide (PA) 6.9, a less
  exploited PA though with interesting properties such as a very low moisture absorption.
  To trace and understand the dominant parameters that allow for the aimed reproducible
  characteristics, the influence of the solution parameters on the steady state behaviour
  during electrospinning as well as the resultant fibre morphology is followed by
  scanning electron microscopy and differential scanning calorimetry. Results show
  a significant effect of the amount of non-solvent acetic acid, added to the solvent
  formic acid, on the steady state behaviour and the fibre morphology. The non-solvent
  acetic acid broadens the steady state window by making the electrospin solutions
  more suitable to obtain uniform and reproducible nanofibrous structures with a narrow
  nanofibre diameter distribution. The mixture of the solvent formic acid and the
  non-solvent acetic acid strongly contributes to the future potentials of PA 6.9
  nanofibres, with its leading to a smaller fibre distribution and moreover highly
  reproducible in time.
abstract_full:
- lang: eng
  text: Nanofibres can be processed into several high-end applications due to their
    unique characteristics, especially when based on a diversity of polymers with
    specific properties. This, however, requires that the nanofibrous structures are
    produced in a highly reproducible way. The article gives focus to polyamide (PA)
    6.9, a less exploited PA though with interesting properties such as a very low
    moisture absorption. To trace and understand the dominant parameters that allow
    for the aimed reproducible characteristics, the influence of the solution parameters
    on the steady state behaviour during electrospinning as well as the resultant
    fibre morphology is followed by scanning electron microscopy and differential
    scanning calorimetry. Results show a significant effect of the amount of non-solvent
    acetic acid, added to the solvent formic acid, on the steady state behaviour and
    the fibre morphology. The non-solvent acetic acid broadens the steady state window
    by making the electrospin solutions more suitable to obtain uniform and reproducible
    nanofibrous structures with a narrow nanofibre diameter distribution. The mixture
    of the solvent formic acid and the non-solvent acetic acid strongly contributes
    to the future potentials of PA 6.9 nanofibres, with its leading to a smaller fibre
    distribution and moreover highly reproducible in time.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
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  ugent_id: TW11
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article_type: original
author:
- _id: FADF950A-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FADF950A-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Bert
  last_name: De Schoenmaker
  name: Bert De Schoenmaker
  name_last_first: De Schoenmaker, Bert
  ugent_id:
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  - '802000214244'
  - '978815731125'
- _id: 0D9D0B96-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0D9D0B96-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Annelies
  last_name: Goethals
  name: Annelies Goethals
  name_last_first: Goethals, Annelies
  ugent_id:
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  - '802000839185'
  - '971337473685'
- _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
  - '002002166892'
  - '802000424715'
- first_name: Hubert
  last_name: Rahier
  name: Hubert Rahier
  name_last_first: Rahier, Hubert
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '2034716'
cite:
  apa: |2
      <div class="csl-entry">De Schoenmaker, B., Goethals, A., Van der Schueren, L., Rahier, H., &#38; De Clerck, K. (2012). Polyamide 6.9 nanofibres electrospun under steady state conditions from a solvent/non-solvent solution. <i>JOURNAL OF MATERIALS SCIENCE</i>, <i>47</i>(9), 4118–4126. https://doi.org/10.1007/s10853-012-6266-9</div>
  bof: |2-
      <div class="csl-entry">De Schoenmaker, Bert, Annelies Goethals, Lien Van der Schueren, Hubert Rahier, and Karen De Clerck. 2012. “Polyamide 6.9 Nanofibres Electrospun under Steady State Conditions from a Solvent/Non-Solvent Solution.” <i>JOURNAL OF MATERIALS SCIENCE</i> 47 (9): 4118–4126. doi:10.1007/s10853-012-6266-9.</div>
    <div><i>Impact factor: 2.163, category: MATERIALS SCIENCE, MULTIDISCIPLINARY, rank: 57/239, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">De Schoenmaker, Bert, Annelies Goethals, Lien Van der Schueren, Hubert Rahier, and Karen De Clerck. 2012. “Polyamide 6.9 Nanofibres Electrospun under Steady State Conditions from a Solvent/Non-Solvent Solution.” <i>JOURNAL OF MATERIALS SCIENCE</i> 47 (9): 4118–26. https://doi.org/10.1007/s10853-012-6266-9.</div>
  fwo: |2
      <div class="csl-entry">De Schoenmaker, Bert, Annelies Goethals, Lien Van der Schueren, Hubert Rahier, and Karen De Clerck. 2012. “Polyamide 6.9 Nanofibres Electrospun under Steady State Conditions from a Solvent/Non-Solvent Solution.” <i>JOURNAL OF MATERIALS SCIENCE</i> 47 (9): 4118–4126. doi:10.1007/s10853-012-6266-9.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. De Schoenmaker, A. Goethals, L. Van der Schueren, H. Rahier, and K. De Clerck, “Polyamide 6.9 nanofibres electrospun under steady state conditions from a solvent/non-solvent solution,” <i>JOURNAL OF MATERIALS SCIENCE</i>, vol. 47, no. 9, pp. 4118–4126, 2012.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Schoenmaker, Bert, et al. “Polyamide 6.9 Nanofibres Electrospun under Steady State Conditions from a Solvent/Non-Solvent Solution.” <i>JOURNAL OF MATERIALS SCIENCE</i>, vol. 47, no. 9, 2012, pp. 4118–26, doi:10.1007/s10853-012-6266-9.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Schoenmaker B, Goethals A, Van der Schueren L, Rahier H, De Clerck K. Polyamide 6.9 nanofibres electrospun under steady state conditions from a solvent/non-solvent solution. JOURNAL OF MATERIALS SCIENCE. 2012;47(9):4118–26.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2012-02-16 10:23:12
date_updated: 2026-03-31 09:11:49
doi:
- 10.1007/s10853-012-6266-9
external: 0
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handle: http://hdl.handle.net/1854/LU-2034716
issn:
- 0022-2461
issue: '9'
jcr:
  category: MATERIALS SCIENCE, MULTIDISCIPLINARY
  category_decile: 3
  category_quartile: 1
  category_rank: 57/239
  category_vigintile: 5
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  impact_factor: 2.163
  impact_factor_5yr: 2.1
  prev_category_decile: 3
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  prev_category_vigintile: 6
  prev_impact_factor: 2.015
  total_cites: 31538
keyword:
- NANOCOMPOSITES
- FIBERS
- PARAMETER
- STABILITY
- JETS
language:
- eng
page:
  first: '4118'
  last: '4126'
parent:
  short_title: J Mater Sci
  title: JOURNAL OF MATERIALS SCIENCE
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Polyamide 6.9 nanofibres electrospun under steady state conditions from a solvent/non-solvent
  solution
type: journalArticle
volume: '47'
wos_id: '000302241900021'
wos_type: Article
year: '2012'
...
---
_id: '2034810'
abstract:
- The aim of this paper is to establish a test method for the screening of bioengineered
  cotton fibers with an improved reactivity through the incorporation of positively
  charged nitrogen moieties. For this purpose a spectrophotometric method based on
  the absorption of a negatively charged dye (Acid Orange 7) is extensively studied.
  The processing parameters have been optimized for analyzing small amounts of fibers
  and the feasibility of the method is examined by using two other well established
  techniques for nitrogen analysis. Good correlations were obtained between the different
  methods, however, the reproducibility of the Acid Orange 7 was superior to the other
  two methods. Moreover, statistically significant differences were found between
  fibers from cotton lines designed to produce oligochitin and control fibers without
  oligochitin. This shows that the proposed method is capable of accurately detecting
  increased nitrogen levels in bioengineered cotton fibers.
abstract_full:
- lang: eng
  text: The aim of this paper is to establish a test method for the screening of bioengineered
    cotton fibers with an improved reactivity through the incorporation of positively
    charged nitrogen moieties. For this purpose a spectrophotometric method based
    on the absorption of a negatively charged dye (Acid Orange 7) is extensively studied.
    The processing parameters have been optimized for analyzing small amounts of fibers
    and the feasibility of the method is examined by using two other well established
    techniques for nitrogen analysis. Good correlations were obtained between the
    different methods, however, the reproducibility of the Acid Orange 7 was superior
    to the other two methods. Moreover, statistically significant differences were
    found between fibers from cotton lines designed to produce oligochitin and control
    fibers without oligochitin. This shows that the proposed method is capable of
    accurately detecting increased nitrogen levels in bioengineered cotton fibers.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_type: original
author:
- _id: FBC58A9C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FBC58A9C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Özgür
  last_name: Ceylan
  name: Özgür Ceylan
  name_last_first: Ceylan, Özgür
  ugent_id:
  - '002005040722'
  - '802000481295'
  - '972618734561'
- _id: F58CB1E6-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F58CB1E6-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lieve
  last_name: Van Landuyt
  name: Lieve Van Landuyt
  name_last_first: Van Landuyt, Lieve
  ugent_id:
  - '801001285006'
- _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
  - '002002166892'
  - '802000424715'
- first_name: M
  last_name: Hauben
  name: M Hauben
  name_last_first: Hauben, M
- first_name: M
  last_name: De Block
  name: M De Block
  name_last_first: De Block, M
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '2034810'
cite:
  apa: |2
      <div class="csl-entry">Ceylan, Ö., Van Landuyt, L., Van der Schueren, L., Hauben, M., De Block, M., &#38; De Clerck, K. (2012). Innovative screening of novel bioengineered cotton fibers containing oligochitin. <i>TEXTILE RESEARCH JOURNAL</i>, <i>82</i>(8), 801–809. https://doi.org/10.1177/0040517511404595</div>
  bof: |2-
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, Lien Van der Schueren, M Hauben, M De Block, and Karen De Clerck. 2012. “Innovative Screening of Novel Bioengineered Cotton Fibers Containing Oligochitin.” <i>TEXTILE RESEARCH JOURNAL</i> 82 (8): 801–809. doi:10.1177/0040517511404595.</div>
    <div><i>Impact factor: 1.135, category: MATERIALS SCIENCE, TEXTILES, rank: 4/22, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, Lien Van der Schueren, M Hauben, M De Block, and Karen De Clerck. 2012. “Innovative Screening of Novel Bioengineered Cotton Fibers Containing Oligochitin.” <i>TEXTILE RESEARCH JOURNAL</i> 82 (8): 801–9. https://doi.org/10.1177/0040517511404595.</div>
  fwo: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, Lien Van der Schueren, M Hauben, M De Block, and Karen De Clerck. 2012. “Innovative Screening of Novel Bioengineered Cotton Fibers Containing Oligochitin.” <i>TEXTILE RESEARCH JOURNAL</i> 82 (8): 801–809. doi:10.1177/0040517511404595.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Ö. Ceylan, L. Van Landuyt, L. Van der Schueren, M. Hauben, M. De Block, and K. De Clerck, “Innovative screening of novel bioengineered cotton fibers containing oligochitin,” <i>TEXTILE RESEARCH JOURNAL</i>, vol. 82, no. 8, pp. 801–809, 2012.</div>
      </div>
  mla: |2
      <div class="csl-entry">Ceylan, Özgür, et al. “Innovative Screening of Novel Bioengineered Cotton Fibers Containing Oligochitin.” <i>TEXTILE RESEARCH JOURNAL</i>, vol. 82, no. 8, 2012, pp. 801–09, doi:10.1177/0040517511404595.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Ceylan Ö, Van Landuyt L, Van der Schueren L, Hauben M, De Block M, De Clerck K. Innovative screening of novel bioengineered cotton fibers containing oligochitin. TEXTILE RESEARCH JOURNAL. 2012;82(8):801–9.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2012-02-16 10:52:55
date_updated: 2026-03-31 09:11:50
doi:
- 10.1177/0040517511404595
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issn:
- 0040-5175
issue: '8'
jcr:
  category: MATERIALS SCIENCE, TEXTILES
  category_decile: 2
  category_quartile: 1
  category_rank: 4/22
  category_vigintile: 4
  eigenfactor: 0.00432
  immediacy_index: 0.098
  impact_factor: 1.135
  impact_factor_5yr: 1.458
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 3
  prev_impact_factor: 1.122
  total_cites: 4588
keyword:
- bioengineered cotton
- screening
- reactivity
- Acid Orange 7
language:
- eng
page:
  first: '801'
  last: '809'
parent:
  short_title: Text. Res. J.
  title: TEXTILE RESEARCH JOURNAL
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Innovative screening of novel bioengineered cotton fibers containing oligochitin
type: journalArticle
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...
---
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    ugent_id: UGent
  biblio_id: FADF950A-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Bert
  last_name: De Schoenmaker
  name: Bert De Schoenmaker
  name_last_first: De Schoenmaker, Bert
  ugent_id:
  - '002003264107'
  - '802000214244'
  - '978815731125'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '2077968'
cite:
  apa: |2
      <div class="csl-entry">Van der Schueren, L., Steyaert, I., De Schoenmaker, B., &#38; De Clerck, K. (2012). Polycaprolactone/chitosan blend nanofibres electrospun from an acetic acid/formic acid solvent system. <i>CARBOHYDRATE POLYMERS</i>, <i>88</i>(4), 1221–1226. https://doi.org/10.1016/j.carbpol.2012.01.085</div>
  bof: |2-
      <div class="csl-entry">Van der Schueren, Lien, Iline Steyaert, Bert De Schoenmaker, and Karen De Clerck. 2012. “Polycaprolactone/Chitosan Blend Nanofibres Electrospun from an Acetic Acid/Formic Acid Solvent System.” <i>CARBOHYDRATE POLYMERS</i> 88 (4): 1221–1226. doi:10.1016/j.carbpol.2012.01.085.</div>
    <div><i>Impact factor: 3.479, category: CHEMISTRY, APPLIED, rank: 7/71, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Van der Schueren, Lien, Iline Steyaert, Bert De Schoenmaker, and Karen De Clerck. 2012. “Polycaprolactone/Chitosan Blend Nanofibres Electrospun from an Acetic Acid/Formic Acid Solvent System.” <i>CARBOHYDRATE POLYMERS</i> 88 (4): 1221–26. https://doi.org/10.1016/j.carbpol.2012.01.085.</div>
  fwo: |2
      <div class="csl-entry">Van der Schueren, Lien, Iline Steyaert, Bert De Schoenmaker, and Karen De Clerck. 2012. “Polycaprolactone/Chitosan Blend Nanofibres Electrospun from an Acetic Acid/Formic Acid Solvent System.” <i>CARBOHYDRATE POLYMERS</i> 88 (4): 1221–1226. doi:10.1016/j.carbpol.2012.01.085.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Van der Schueren, I. Steyaert, B. De Schoenmaker, and K. De Clerck, “Polycaprolactone/chitosan blend nanofibres electrospun from an acetic acid/formic acid solvent system,” <i>CARBOHYDRATE POLYMERS</i>, vol. 88, no. 4, pp. 1221–1226, 2012.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van der Schueren, Lien, et al. “Polycaprolactone/Chitosan Blend Nanofibres Electrospun from an Acetic Acid/Formic Acid Solvent System.” <i>CARBOHYDRATE POLYMERS</i>, vol. 88, no. 4, 2012, pp. 1221–26, doi:10.1016/j.carbpol.2012.01.085.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van der Schueren L, Steyaert I, De Schoenmaker B, De Clerck K. Polycaprolactone/chitosan blend nanofibres electrospun from an acetic acid/formic acid solvent system. CARBOHYDRATE POLYMERS. 2012;88(4):1221–6.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
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    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2012-03-30 12:35:29
date_updated: 2026-03-31 09:15:08
doi:
- 10.1016/j.carbpol.2012.01.085
external: 0
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  url: https://biblio.ugent.be/publication/2077968/file/2077983.pdf
handle: http://hdl.handle.net/1854/LU-2077968
issn:
- 0144-8617
issue: '4'
jcr:
  category: CHEMISTRY, APPLIED
  category_decile: 1
  category_quartile: 1
  category_rank: 7/71
  category_vigintile: 2
  eigenfactor: 0.03367
  immediacy_index: 0.665
  impact_factor: 3.479
  impact_factor_5yr: 3.942
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 1
  prev_impact_factor: 3.628
  total_cites: 18471
keyword:
- DIAMETER
- FIBERS
- MORPHOLOGY
- FABRICATION
- CHITOSAN
- Chitosan
- Polycaprolactone
- Nanofibre
- Blend
- Fibre morphology
language:
- eng
page:
  first: '1221'
  last: '1226'
parent:
  short_title: Carbohydr. Polym.
  title: CARBOHYDRATE POLYMERS
project:
- _id: 01J04009
  abstract: <p>The aim of the project is to obtain a better understanding of the interactions
    between pH-sensitive dyes and textiles. Both a macroscopic spectral analysis and
    a general microscopic evaluation will be performed. The dye-fiber interactions,
    the local distribution, the impulse sensitivity and spectral variations as a function
    of time and place will be looked at.</p>
  end_date: 2013-10-31
  gismo_id: 070a44f0-b14b-48f0-9f2a-a0ec5c90b554
  iweto_id: 01J04009
  publication_count: 3
  start_date: 2009-01-01
  title: 'Research into new ''sensor materials'': pH-sensitive dyes in textiles'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Polycaprolactone/chitosan blend nanofibres electrospun from an acetic acid/formic
  acid solvent system
type: journalArticle
volume: '88'
wos_id: '000302979700014'
wos_type: Article
year: '2012'
...
---
_id: '2153977'
abstract:
- The aliphatic polyamide 4.6 (PA 4.6) has unique properties compared to the commonly
  used polyamides 6 (PA 6) and 6.6 (PA 6.6). The purpose of this paper is to produce
  uniform and reproducible nanofibrous PA 4.6 structures. Therefore, a mixture of
  the solvent formic acid and the nonsolvent acetic acid is used to dissolve and electrospin
  the PA 4.6. First the steady-state behaviour of the process and the boundary limits
  of the solution parameters needed for steady-state electrospinning are investigated.
  Subsequently, the effect of several solution and process parameters on the fibre
  morphology is examined, using microscopic techniques and thermal analysis. The polyamide
  concentration is found to be the dominant parameter affecting the fibre diameter
  and morphology. Furthermore, tensile tests are performed on upscaled nanofibrous
  structures and electrospun under optimised steady-state conditions. It is shown
  that the PA 4.6 nanofibrous structures, compared to nanofibrous nonwovens of PA
  6 and PA 6.6, have a higher stress and strain at break.
abstract_full:
- lang: eng
  text: The aliphatic polyamide 4.6 (PA 4.6) has unique properties compared to the
    commonly used polyamides 6 (PA 6) and 6.6 (PA 6.6). The purpose of this paper
    is to produce uniform and reproducible nanofibrous PA 4.6 structures. Therefore,
    a mixture of the solvent formic acid and the nonsolvent acetic acid is used to
    dissolve and electrospin the PA 4.6. First the steady-state behaviour of the process
    and the boundary limits of the solution parameters needed for steady-state electrospinning
    are investigated. Subsequently, the effect of several solution and process parameters
    on the fibre morphology is examined, using microscopic techniques and thermal
    analysis. The polyamide concentration is found to be the dominant parameter affecting
    the fibre diameter and morphology. Furthermore, tensile tests are performed on
    upscaled nanofibrous structures and electrospun under optimised steady-state conditions.
    It is shown that the PA 4.6 nanofibrous structures, compared to nanofibrous nonwovens
    of PA 6 and PA 6.6, have a higher stress and strain at break.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_number: '860654'
article_type: original
author:
- _id: FADF950A-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FADF950A-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Bert
  last_name: De Schoenmaker
  name: Bert De Schoenmaker
  name_last_first: De Schoenmaker, Bert
  ugent_id:
  - '002003264107'
  - '802000214244'
  - '978815731125'
- _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
  - '002002166892'
  - '802000424715'
- _id: FBC58A9C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FBC58A9C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Özgür
  last_name: Ceylan
  name: Özgür Ceylan
  name_last_first: Ceylan, Özgür
  ugent_id:
  - '002005040722'
  - '802000481295'
  - '972618734561'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '2153977'
cite:
  apa: |2
      <div class="csl-entry">De Schoenmaker, B., Van der Schueren, L., Ceylan, Ö., &#38; De Clerck, K. (2012). Electrospun Polyamide 4.6 Nanofibrous Nonwovens: parameter study and characterization. <i>JOURNAL OF NANOMATERIALS</i>, <i>2012</i>, 1–9. https://doi.org/10.1155/2012/860654</div>
  bof: |2-
      <div class="csl-entry">De Schoenmaker, Bert, Lien Van der Schueren, Özgür Ceylan, and Karen De Clerck. 2012. “Electrospun Polyamide 4.6 Nanofibrous Nonwovens: Parameter Study and Characterization.” <i>JOURNAL OF NANOMATERIALS</i> 2012: 1–9. doi:10.1155/2012/860654.</div>
    <div><i>Impact factor: 1.547, category: MATERIALS SCIENCE, MULTIDISCIPLINARY, rank: 93/239, quartile: 2.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">De Schoenmaker, Bert, Lien Van der Schueren, Özgür Ceylan, and Karen De Clerck. 2012. “Electrospun Polyamide 4.6 Nanofibrous Nonwovens: Parameter Study and Characterization.” <i>JOURNAL OF NANOMATERIALS</i> 2012: 1–9. https://doi.org/10.1155/2012/860654.</div>
  fwo: |2
      <div class="csl-entry">De Schoenmaker, Bert, Lien Van der Schueren, Özgür Ceylan, and Karen De Clerck. 2012. “Electrospun Polyamide 4.6 Nanofibrous Nonwovens: Parameter Study and Characterization.” <i>JOURNAL OF NANOMATERIALS</i> 2012: 1–9. doi:10.1155/2012/860654.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. De Schoenmaker, L. Van der Schueren, Ö. Ceylan, and K. De Clerck, “Electrospun Polyamide 4.6 Nanofibrous Nonwovens: parameter study and characterization,” <i>JOURNAL OF NANOMATERIALS</i>, vol. 2012, pp. 1–9, 2012.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Schoenmaker, Bert, et al. “Electrospun Polyamide 4.6 Nanofibrous Nonwovens: Parameter Study and Characterization.” <i>JOURNAL OF NANOMATERIALS</i>, vol. 2012, 2012, pp. 1–9, doi:10.1155/2012/860654.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Schoenmaker B, Van der Schueren L, Ceylan Ö, De Clerck K. Electrospun Polyamide 4.6 Nanofibrous Nonwovens: parameter study and characterization. JOURNAL OF NANOMATERIALS. 2012;2012:1–9.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2012-06-14 15:54:52
date_updated: 2026-03-31 09:20:33
doi:
- 10.1155/2012/860654
external: 0
file:
- _id: '2154029'
  access: restricted
  content_type: application/pdf
  kind: fullText
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  url: https://biblio.ugent.be/publication/2153977/file/2154029.pdf
handle: http://hdl.handle.net/1854/LU-2153977
issn:
- 1687-4110
jcr:
  category: MATERIALS SCIENCE, MULTIDISCIPLINARY
  category_decile: 4
  category_quartile: 2
  category_rank: 93/239
  category_vigintile: 8
  eigenfactor: 0.00401
  immediacy_index: 0.193
  impact_factor: 1.547
  impact_factor_5yr: 1.633
  prev_category_decile: 5
  prev_category_quartile: 2
  prev_category_vigintile: 10
  prev_impact_factor: 1.376
  total_cites: 1112
keyword:
- NANOCOMPOSITES
- FIBERS
- FABRICATION
- WATER
language:
- eng
page:
  first: '1'
  last: '9'
parent:
  short_title: J. Nanomater.
  title: JOURNAL OF NANOMATERIALS
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: 'Electrospun Polyamide 4.6 Nanofibrous Nonwovens: parameter study and characterization'
type: journalArticle
volume: '2012'
wos_id: '000305027800001'
wos_type: Article
year: '2012'
...
---
_id: '2154231'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
author:
- _id: 0B227202-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0B227202-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Iline
  last_name: Steyaert
  name: Iline Steyaert
  name_last_first: Steyaert, Iline
  ugent_id:
  - '000060129993'
  - '802001072793'
  - '979860756278'
- _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
  - '002002166892'
  - '802000424715'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '2154231'
cite:
  apa: |2
      <div class="csl-entry">Steyaert, I., Van der Schueren, L., &#38; De Clerck, K. (2012). Blend electrospinning of Polycaprolactone/Chitosan Nanofibres. <i>The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow’s Applications, Abstracts</i>, 55–56. St. Gallen, Switzerland: EMPA.</div>
  bof: |2
      <div class="csl-entry">Steyaert, Iline, Lien Van der Schueren, and Karen De Clerck. 2012. “Blend Electrospinning of Polycaprolactone/Chitosan Nanofibres.” In <i>The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow’s Applications, Abstracts</i>, 55–56. St. Gallen, Switzerland: EMPA.</div>
  chicago-author-date: |2
      <div class="csl-entry">Steyaert, Iline, Lien Van der Schueren, and Karen De Clerck. 2012. “Blend Electrospinning of Polycaprolactone/Chitosan Nanofibres.” In <i>The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow’s Applications, Abstracts</i>, 55–56. St. Gallen, Switzerland: EMPA.</div>
  fwo: |2
      <div class="csl-entry">Steyaert, Iline, Lien Van der Schueren, and Karen De Clerck. 2012. “Blend Electrospinning of Polycaprolactone/Chitosan Nanofibres.” In <i>The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow’s Applications, Abstracts</i>, 55–56. St. Gallen, Switzerland: EMPA.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">I. Steyaert, L. Van der Schueren, and K. De Clerck, “Blend electrospinning of Polycaprolactone/Chitosan Nanofibres,” in <i>The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow’s Applications, Abstracts</i>, St. Gallen, Switzerland, 2012, pp. 55–56.</div>
      </div>
  mla: |2
      <div class="csl-entry">Steyaert, Iline, et al. “Blend Electrospinning of Polycaprolactone/Chitosan Nanofibres.” <i>The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow’s Applications, Abstracts</i>, EMPA, 2012, pp. 55–56.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Steyaert I, Van der Schueren L, De Clerck K. Blend electrospinning of Polycaprolactone/Chitosan Nanofibres. In: The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow’s Applications, Abstracts. St. Gallen, Switzerland: EMPA; 2012. p. 55–6.</div>
       </div>
classification: C3
conference:
  end_date: 2012-05-25
  location: St. Gallen, Switzerland
  name: 'The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow''s
    Applications'
  start_date: 2012-05-23
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2012-06-14 16:58:25
date_updated: 2026-03-31 09:20:35
external: 0
file:
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  content_type: application/pdf
  kind: fullText
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  size: '785603'
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  url: https://biblio.ugent.be/publication/2154231/file/2154238.pdf
handle: http://hdl.handle.net/1854/LU-2154231
jcr: {}
language:
- eng
page:
  first: '55'
  last: '56'
parent:
  title: 'The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow''s
    Applications, Abstracts'
publication_status: published
publication_status_sort: 2
publisher:
  location: St. Gallen, Switzerland
  name: EMPA
status: public
subject:
- Technology and Engineering
title: Blend electrospinning of Polycaprolactone/Chitosan Nanofibres
type: conference
year: '2012'
...
---
_id: '2154239'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Applied physics
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW17
  ugent_id: TW17
- name: Department of Physics and astronomy
  path:
  - ugent_id: UGent
  - ugent_id: WE
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  ugent_id: WE05
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author:
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  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: 018BF682-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Thierry
  last_name: De Meyer
  name: Thierry De Meyer
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  affiliation:
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    ugent_id: UGent
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  last_name: Van der Schueren
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  first_name: Karen
  last_name: Hemelsoet
  name: Karen Hemelsoet
  name_last_first: Hemelsoet, Karen
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  ugent_id:
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  affiliation:
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    ugent_id: WE05
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  first_name: Veronique
  last_name: Van Speybroeck
  name: Veronique Van Speybroeck
  name_last_first: Van Speybroeck, Veronique
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  affiliation:
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  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '2154239'
cite:
  apa: |2
      <div class="csl-entry">De Meyer, T., Van der Schueren, L., Hemelsoet, K., Van Speybroeck, V., &#38; De Clerck, K. (2012). pH sensitivity of Azo Dyes. <i>The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow’s Applications, Abstracts</i>, 103–104. St. Gallen, Switzerland: EMPA.</div>
  bof: |2
      <div class="csl-entry">De Meyer, Thierry, Lien Van der Schueren, Karen Hemelsoet, Veronique Van Speybroeck, and Karen De Clerck. 2012. “PH Sensitivity of Azo Dyes.” In <i>The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow’s Applications, Abstracts</i>, 103–104. St. Gallen, Switzerland: EMPA.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Meyer, Thierry, Lien Van der Schueren, Karen Hemelsoet, Veronique Van Speybroeck, and Karen De Clerck. 2012. “PH Sensitivity of Azo Dyes.” In <i>The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow’s Applications, Abstracts</i>, 103–4. St. Gallen, Switzerland: EMPA.</div>
  fwo: |2
      <div class="csl-entry">De Meyer, Thierry, Lien Van der Schueren, Karen Hemelsoet, Veronique Van Speybroeck, and Karen De Clerck. 2012. “PH Sensitivity of Azo Dyes.” In <i>The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow’s Applications, Abstracts</i>, 103–104. St. Gallen, Switzerland: EMPA.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">T. De Meyer, L. Van der Schueren, K. Hemelsoet, V. Van Speybroeck, and K. De Clerck, “pH sensitivity of Azo Dyes,” in <i>The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow’s Applications, Abstracts</i>, St. Gallen, Switzerland, 2012, pp. 103–104.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Meyer, Thierry, et al. “PH Sensitivity of Azo Dyes.” <i>The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow’s Applications, Abstracts</i>, EMPA, 2012, pp. 103–04.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Meyer T, Van der Schueren L, Hemelsoet K, Van Speybroeck V, De Clerck K. pH sensitivity of Azo Dyes. In: The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow’s Applications, Abstracts. St. Gallen, Switzerland: EMPA; 2012. p. 103–4.</div>
       </div>
classification: C3
conference:
  end_date: 2012-05-25
  location: St. Gallen, Switzerland
  name: 'The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow''s
    Applications'
  start_date: 2012-05-23
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
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  - '977385781070'
date_created: 2012-06-14 17:04:47
date_updated: 2026-03-31 09:20:35
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handle: http://hdl.handle.net/1854/LU-2154239
jcr: {}
language:
- eng
page:
  first: '103'
  last: '104'
parent:
  title: 'The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow''s
    Applications, Abstracts'
publication_status: published
publication_status_sort: 2
publisher:
  location: St. Gallen, Switzerland
  name: EMPA
status: public
subject:
- Technology and Engineering
title: pH sensitivity of Azo Dyes
type: conference
year: '2012'
...
---
_id: '2154242'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
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  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
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  - ugent_id: TW11*
  ugent_id: TW11*
author:
- _id: FBC58A9C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FBC58A9C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Özgür
  last_name: Ceylan
  name: Özgür Ceylan
  name_last_first: Ceylan, Özgür
  ugent_id:
  - '002005040722'
  - '802000481295'
  - '972618734561'
- _id: F58CB1E6-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F58CB1E6-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lieve
  last_name: Van Landuyt
  name: Lieve Van Landuyt
  name_last_first: Van Landuyt, Lieve
  ugent_id:
  - '801001285006'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '2154242'
cite:
  apa: |2
      <div class="csl-entry">Ceylan, Ö., Van Landuyt, L., &#38; De Clerck, K. (2012). A new tool to evaluate reactivity of novel bioengineered cotton fibers. <i>The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow’s Applications, Abstracts</i>, 293–294. St. Gallen, Switzerland: EMPA.</div>
  bof: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, and Karen De Clerck. 2012. “A New Tool to Evaluate Reactivity of Novel Bioengineered Cotton Fibers.” In <i>The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow’s Applications, Abstracts</i>, 293–294. St. Gallen, Switzerland: EMPA.</div>
  chicago-author-date: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, and Karen De Clerck. 2012. “A New Tool to Evaluate Reactivity of Novel Bioengineered Cotton Fibers.” In <i>The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow’s Applications, Abstracts</i>, 293–94. St. Gallen, Switzerland: EMPA.</div>
  fwo: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, and Karen De Clerck. 2012. “A New Tool to Evaluate Reactivity of Novel Bioengineered Cotton Fibers.” In <i>The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow’s Applications, Abstracts</i>, 293–294. St. Gallen, Switzerland: EMPA.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Ö. Ceylan, L. Van Landuyt, and K. De Clerck, “A new tool to evaluate reactivity of novel bioengineered cotton fibers,” in <i>The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow’s Applications, Abstracts</i>, St. Gallen, Switzerland, 2012, pp. 293–294.</div>
      </div>
  mla: |2
      <div class="csl-entry">Ceylan, Özgür, et al. “A New Tool to Evaluate Reactivity of Novel Bioengineered Cotton Fibers.” <i>The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow’s Applications, Abstracts</i>, EMPA, 2012, pp. 293–94.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Ceylan Ö, Van Landuyt L, De Clerck K. A new tool to evaluate reactivity of novel bioengineered cotton fibers. In: The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow’s Applications, Abstracts. St. Gallen, Switzerland: EMPA; 2012. p. 293–4.</div>
       </div>
classification: C3
conference:
  end_date: 2012-05-25
  location: St. Gallen, Switzerland
  name: 'The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow''s
    Applications'
  start_date: 2012-05-23
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
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date_created: 2012-06-14 17:11:32
date_updated: 2026-03-31 09:20:35
external: 0
file:
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  kind: fullText
  name: EMPA_CEYLAN_new_tool_to_evaluate_reactivity.pdf
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handle: http://hdl.handle.net/1854/LU-2154242
jcr: {}
language:
- eng
page:
  first: '293'
  last: '294'
parent:
  title: 'The Fiber Society Spring 2012 Conference : Fiber Research for Tomorrow''s
    Applications, Abstracts'
publication_status: published
publication_status_sort: 2
publisher:
  location: St. Gallen, Switzerland
  name: EMPA
status: public
subject:
- Technology and Engineering
title: A new tool to evaluate reactivity of novel bioengineered cotton fibers
type: conference
year: '2012'
...
---
_id: '2154244'
abstract:
- Many literature is available on the use ofnanofibres for tissue engineering, (bio)mcdicaJ
  applications, filtration and others, Their possibilities for composites have however
  much less been exploited. Owing to the high specific surface and low fibre diameter
  of nanofibres, they are very promising as secondary reinforcement for composites.
  Therefore, this research focuses on the mechanical properties of an epoxy resin
  with unidirectional glass fibres as primary reinforcement and polyamide 6 nanofibres
  as secondary reinforcement. Glass fibre composite plates are compared with composite
  plates with free interlayered nanofibrous nonwovens and with nanofibres directly
  electrospun on the unidirectional glass fibre mats. These interlayer nanofibrous
  structures, approximately 35 )!m thick, were obtained by solvent nozzle electrospinning
  and had an average fibre diameter of 136 ± 18 nm. The [OO,900h composite plates
  were produced through the resin transfer moulding process and mechanically characterized
  by tensile tests. The knee point of the composite plates significantly increased
  when nanofibres were added between the glass fibre layers, which imply that the
  matrix was strongly strengthened by the incorporated nanofibres. Also the shear
  modulus and strength under 45° increased with free interlayered nanofibres. When
  the nanofibres were directly electrospun on the glass fibres, the strength was even
  higher. Furthermore, the ratio of Poisson was considerably better when secondary
  nanofibres were added, especially when they were directly electrospun on the glass
  fibres. In conclusion, the nanofibrous nonwovens improve the mechanical properties
  of the glass fibre/epoxy composite plates, especially when loaded under 45°. This
  research highlights the advantages of adding nanofibres to glass fibre composites,
  and thus creating an innovative application area for nanofibres.
abstract_full:
- lang: eng
  text: Many literature is available on the use ofnanofibres for tissue engineering,
    (bio)mcdicaJ applications, filtration and others, Their possibilities for composites
    have however much less been exploited. Owing to the high specific surface and
    low fibre diameter of nanofibres, they are very promising as secondary reinforcement
    for composites. Therefore, this research focuses on the mechanical properties
    of an epoxy resin with unidirectional glass fibres as primary reinforcement and
    polyamide 6 nanofibres as secondary reinforcement. Glass fibre composite plates
    are compared with composite plates with free interlayered nanofibrous nonwovens
    and with nanofibres directly electrospun on the unidirectional glass fibre mats.
    These interlayer nanofibrous structures, approximately 35 )!m thick, were obtained
    by solvent nozzle electrospinning and had an average fibre diameter of 136 ± 18
    nm. The [OO,900h composite plates were produced through the resin transfer moulding
    process and mechanically characterized by tensile tests. The knee point of the
    composite plates significantly increased when nanofibres were added between the
    glass fibre layers, which imply that the matrix was strongly strengthened by the
    incorporated nanofibres. Also the shear modulus and strength under 45° increased
    with free interlayered nanofibres. When the nanofibres were directly electrospun
    on the glass fibres, the strength was even higher. Furthermore, the ratio of Poisson
    was considerably better when secondary nanofibres were added, especially when
    they were directly electrospun on the glass fibres. In conclusion, the nanofibrous
    nonwovens improve the mechanical properties of the glass fibre/epoxy composite
    plates, especially when loaded under 45°. This research highlights the advantages
    of adding nanofibres to glass fibre composites, and thus creating an innovative
    application area for nanofibres.
affiliation:
- name: Department of Materials Science and Engineering (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW10
  ugent_id: TW10
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
author:
- _id: FADF950A-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FADF950A-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Bert
  last_name: De Schoenmaker
  name: Bert De Schoenmaker
  name_last_first: De Schoenmaker, Bert
  ugent_id:
  - '002003264107'
  - '802000214244'
  - '978815731125'
- _id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F726B6C8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Ives
  last_name: De Baere
  name: Ives De Baere
  name_last_first: De Baere, Ives
  orcid_id: 0000-0002-6846-0981
  ugent_id:
  - '801001866905'
  - '977854465771'
- _id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
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    ugent_id: TW11
  biblio_id: F574E142-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Van Paepegem
  name: Wim Van Paepegem
  name_last_first: Van Paepegem, Wim
  orcid_id: 0000-0003-0672-3675
  ugent_id:
  - '801001240344'
  - '972217192553'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '2154244'
cite:
  apa: |2
      <div class="csl-entry">De Schoenmaker, B., De Baere, I., Van Paepegem, W., &#38; De Clerck, K. (2012). The influence of polyamide 6 nanofibres on the mechanical properties of glass fibre/epoxy composites. <i>2th International Conference on Electrospinning, Abstracts</i>, 6–6. Jeju, Korea: Korea Advanced Institute of Science and Technology, Korea.</div>
  bof: |2
      <div class="csl-entry">De Schoenmaker, Bert, Ives De Baere, Wim Van Paepegem, and Karen De Clerck. 2012. “The Influence of Polyamide 6 Nanofibres on the Mechanical Properties of Glass Fibre/Epoxy Composites.” In <i>2th International Conference on Electrospinning, Abstracts</i>, 6–6. Jeju, Korea: Korea Advanced Institute of Science and Technology, Korea.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Schoenmaker, Bert, Ives De Baere, Wim Van Paepegem, and Karen De Clerck. 2012. “The Influence of Polyamide 6 Nanofibres on the Mechanical Properties of Glass Fibre/Epoxy Composites.” In <i>2th International Conference on Electrospinning, Abstracts</i>, 6–6. Jeju, Korea: Korea Advanced Institute of Science and Technology, Korea.</div>
  fwo: |2
      <div class="csl-entry">De Schoenmaker, Bert, Ives De Baere, Wim Van Paepegem, and Karen De Clerck. 2012. “The Influence of Polyamide 6 Nanofibres on the Mechanical Properties of Glass Fibre/Epoxy Composites.” In <i>2th International Conference on Electrospinning, Abstracts</i>, 6–6. Jeju, Korea: Korea Advanced Institute of Science and Technology, Korea.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. De Schoenmaker, I. De Baere, W. Van Paepegem, and K. De Clerck, “The influence of polyamide 6 nanofibres on the mechanical properties of glass fibre/epoxy composites,” in <i>2th International Conference on Electrospinning, Abstracts</i>, Jeju, Korea, 2012, pp. 6–6.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Schoenmaker, Bert, et al. “The Influence of Polyamide 6 Nanofibres on the Mechanical Properties of Glass Fibre/Epoxy Composites.” <i>2th International Conference on Electrospinning, Abstracts</i>, Korea Advanced Institute of Science and Technology, Korea, 2012, pp. 6–6.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Schoenmaker B, De Baere I, Van Paepegem W, De Clerck K. The influence of polyamide 6 nanofibres on the mechanical properties of glass fibre/epoxy composites. In: 2th International Conference on Electrospinning, Abstracts. Jeju, Korea: Korea Advanced Institute of Science and Technology, Korea; 2012. p. 6–6.</div>
       </div>
classification: C3
conference:
  end_date: 2012-06-01
  location: Jeju, Korea
  name: 2th International Conference on Electrospinning (ELECTROSPIN 2012)
  start_date: 2012-05-29
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2012-06-14 17:16:11
date_updated: 2026-03-31 09:20:36
external: 0
file:
- _id: '2154245'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: Electrospin2012_De_Schoenmaker.pdf
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  size: '935240'
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  url: https://biblio.ugent.be/publication/2154244/file/2154245.pdf
handle: http://hdl.handle.net/1854/LU-2154244
jcr: {}
language:
- eng
page:
  first: '6'
  last: '6'
parent:
  title: 2th International Conference on Electrospinning, Abstracts
publication_status: published
publication_status_sort: 2
publisher:
  location: Jeju, Korea
  name: Korea Advanced Institute of Science and Technology, Korea
status: public
subject:
- Technology and Engineering
title: The influence of polyamide 6 nanofibres on the mechanical properties of glass
  fibre/epoxy composites
type: conference
year: '2012'
...
---
_id: '2154246'
abstract:
- 'Perfonnance Assessment of Functionalized Electrospun Nanofibres for Removal of
  PathogensKeywords: functionalised nanofibre, pathogen removal, membrane filtration.
  The c1ectrospinning technique is a process for making continuous nanofibrcs in a
  nonwoven fonn. This process spins fibres ranging from 80 om diameter to several
  hundred nanometers. The non-woven structure is produced by app lying a high voltage
  to the anode, submerged in a spinn ing solution. This produces a charged jet of
  fluid when the electrical force is highcr than the surface tension of the solution
  and the fibres are collected on a grounded aluminum plate. Nanofibres have a small
  pore size and a large surface area to volume ratio compared to nonwovens (this ratio
  for a nanofibre can be as large as 1000 times of that of a microfibre). This, together
  with their low density and interconnected open pore structure. make the nanofibre
  nonwoven appropriate for a wide variety of filtration applications (Huang et al..
  2003). Due to the large effective surface areas. nanofibres can carry functional
  agents with different properties. such as biocidcs. With microfiltration membranes
  it is possible to retain suspended solids and micro-organisms. The added value of
  the tested nanofibre microfiltration membranes functionalized with silver nanoparticles
  (nAg) or other biocides to pathogen removal was studied. The biocides used in this
  study are commercially available. WSCP for example. is used as a cooling tower biocide
  and is applied directly into the water. Silver nanoparticles are nowadays implemented
  in a wide variety of consumer products for antimicrobial controL The aim of the
  study is to examine the effectiveness of different biocides and the possibility
  to electrospin them in a steady state nanofibre membrane. The results show that
  due to the silver nanoparticles and the funct ionalisation with biocides in the
  functionalized membrane a higher efficiency (3.9 10giO - 5,5 10glO) could be achieved.
  Further, the removal of pathogens is a factor 100 (2 10g10) higher with a WSCP (5%)
  than conventional microfihration. Functionalisation with Ag nanoparticles gave a
  4 10gi0 removal. It is generally known that these particles only have effect on
  gram negative bacteria such as E. coli. WSCP and bronopol are bactericides that
  can be applicd on c1ectrospun nanofibres and it has also effect on gram positive
  bacteria (Chen et aI., 2008). The removal with a non-functionalised membrane is
  not as good as other micro-filtration studies. With other commercial membranes a
  2 log I 0 - 4 logl 0 removal is possible (Zodrow et al.. 2009).'
abstract_full:
- lang: eng
  text: 'Perfonnance Assessment of Functionalized Electrospun Nanofibres for Removal
    of PathogensKeywords: functionalised nanofibre, pathogen removal, membrane filtration.
    The c1ectrospinning technique is a process for making continuous nanofibrcs in
    a nonwoven fonn. This process spins fibres ranging from 80 om diameter to several
    hundred nanometers. The non-woven structure is produced by app lying a high voltage
    to the anode, submerged in a spinn ing solution. This produces a charged jet of
    fluid when the electrical force is highcr than the surface tension of the solution
    and the fibres are collected on a grounded aluminum plate. Nanofibres have a small
    pore size and a large surface area to volume ratio compared to nonwovens (this
    ratio for a nanofibre can be as large as 1000 times of that of a microfibre).
    This, together with their low density and interconnected open pore structure.
    make the nanofibre nonwoven appropriate for a wide variety of filtration applications
    (Huang et al.. 2003). Due to the large effective surface areas. nanofibres can
    carry functional agents with different properties. such as biocidcs. With microfiltration
    membranes it is possible to retain suspended solids and micro-organisms. The added
    value of the tested nanofibre microfiltration membranes functionalized with silver
    nanoparticles (nAg) or other biocides to pathogen removal was studied. The biocides
    used in this study are commercially available. WSCP for example. is used as a
    cooling tower biocide and is applied directly into the water. Silver nanoparticles
    are nowadays implemented in a wide variety of consumer products for antimicrobial
    controL The aim of the study is to examine the effectiveness of different biocides
    and the possibility to electrospin them in a steady state nanofibre membrane.
    The results show that due to the silver nanoparticles and the funct ionalisation
    with biocides in the functionalized membrane a higher efficiency (3.9 10giO -
    5,5 10glO) could be achieved. Further, the removal of pathogens is a factor 100
    (2 10g10) higher with a WSCP (5%) than conventional microfihration. Functionalisation
    with Ag nanoparticles gave a 4 10gi0 removal. It is generally known that these
    particles only have effect on gram negative bacteria such as E. coli. WSCP and
    bronopol are bactericides that can be applicd on c1ectrospun nanofibres and it
    has also effect on gram positive bacteria (Chen et aI., 2008). The removal with
    a non-functionalised membrane is not as good as other micro-filtration studies.
    With other commercial membranes a 2 log I 0 - 4 logl 0 removal is possible (Zodrow
    et al.. 2009).'
affiliation:
- name: Department of Mathematical Modelling, Statistics and Bio-informatics (ceased
    1-1-2018)
  path:
  - ugent_id: UGent
  - ugent_id: LA
  - ugent_id: LA10
  ugent_id: LA10
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: University College West Flanders
  path:
  - ugent_id: UGentAssoc
  - ugent_id: HOWEST
  ugent_id: HOWEST
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
author:
- _id: 1C30272E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 1C30272E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Nele
  last_name: Daels
  name: Nele Daels
  name_last_first: Daels, Nele
  ugent_id:
  - '002003290072'
  - '802000583955'
  - '977784615061'
- _id: 0D9D0B96-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0D9D0B96-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Annelies
  last_name: Goethals
  name: Annelies Goethals
  name_last_first: Goethals, Annelies
  ugent_id:
  - '002004215111'
  - '802000839185'
  - '971337473685'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: FAD54460-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA24
    ugent_id: LA24
  biblio_id: FAD54460-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Stijn
  last_name: Van Hulle
  name: Stijn Van Hulle
  name_last_first: Van Hulle, Stijn
  orcid_id: 0000-0001-5773-7773
  ugent_id:
  - '801001539933'
  - '919019834884'
  - '971483871644'
biblio_id: '2154246'
cite:
  apa: |2
      <div class="csl-entry">Daels, N., Goethals, A., De Clerck, K., &#38; Van Hulle, S. (2012). Performance assessment of functionalized electrospun nanofibres for removal of pathogens. <i>2th International Conference on Electrospinning, Abstracts</i>, 38–38. Jeju, Korea: Korea Advanced Institute of Science and Technology.</div>
  bof: |2
      <div class="csl-entry">Daels, Nele, Annelies Goethals, Karen De Clerck, and Stijn Van Hulle. 2012. “Performance Assessment of Functionalized Electrospun Nanofibres for Removal of Pathogens.” In <i>2th International Conference on Electrospinning, Abstracts</i>, 38–38. Jeju, Korea: Korea Advanced Institute of Science and Technology.</div>
  chicago-author-date: |2
      <div class="csl-entry">Daels, Nele, Annelies Goethals, Karen De Clerck, and Stijn Van Hulle. 2012. “Performance Assessment of Functionalized Electrospun Nanofibres for Removal of Pathogens.” In <i>2th International Conference on Electrospinning, Abstracts</i>, 38–38. Jeju, Korea: Korea Advanced Institute of Science and Technology.</div>
  fwo: |2
      <div class="csl-entry">Daels, Nele, Annelies Goethals, Karen De Clerck, and Stijn Van Hulle. 2012. “Performance Assessment of Functionalized Electrospun Nanofibres for Removal of Pathogens.” In <i>2th International Conference on Electrospinning, Abstracts</i>, 38–38. Jeju, Korea: Korea Advanced Institute of Science and Technology.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">N. Daels, A. Goethals, K. De Clerck, and S. Van Hulle, “Performance assessment of functionalized electrospun nanofibres for removal of pathogens,” in <i>2th International Conference on Electrospinning, Abstracts</i>, Jeju, Korea, 2012, pp. 38–38.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daels, Nele, et al. “Performance Assessment of Functionalized Electrospun Nanofibres for Removal of Pathogens.” <i>2th International Conference on Electrospinning, Abstracts</i>, Korea Advanced Institute of Science and Technology, 2012, pp. 38–38.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daels N, Goethals A, De Clerck K, Van Hulle S. Performance assessment of functionalized electrospun nanofibres for removal of pathogens. In: 2th International Conference on Electrospinning, Abstracts. Jeju, Korea: Korea Advanced Institute of Science and Technology; 2012. p. 38–38.</div>
       </div>
classification: C3
conference:
  end_date: 2012-06-01
  location: Jeju, Korea
  name: 2th International Conference on Electrospinning (ELECTROSPIN 2012)
  start_date: 2012-05-29
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2012-06-14 17:24:12
date_updated: 2026-03-31 07:48:35
external: 0
file:
- _id: '2154304'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: Electrospin2012_Daels.pdf
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  size: '972535'
  thumbnail_url: https://biblio.ugent.be/publication/2154246/file/2154304/thumbnail.png
  url: https://biblio.ugent.be/publication/2154246/file/2154304.pdf
handle: http://hdl.handle.net/1854/LU-2154246
jcr: {}
language:
- eng
page:
  first: '38'
  last: '38'
parent:
  title: 2th International Conference on Electrospinning, Abstracts
publication_status: published
publication_status_sort: 2
publisher:
  location: Jeju, Korea
  name: Korea Advanced Institute of Science and Technology
status: public
subject:
- Technology and Engineering
title: Performance assessment of functionalized electrospun nanofibres for removal
  of pathogens
type: conference
year: '2012'
...
---
_id: '2154306'
abstract:
- Most of the effort in electrospinning has been spent on the spinning of various
  single polymer·solvcnt systems. However, the high demand for materials with specific
  properties indicates the need to eiectrospin polymer blends. Electrospinning of
  blends containing a synthetic and a natural polymer enables us to combine the favourable
  characteristics of both (e.g. biocompatibility and sufficient mechanical strength)
  into one material, which is often necessary in for example medical applications.
  A morphological characterization of these blend nanofibres is however crucial because
  there is a broader range of polymer properties influencing the resulting nanofibres.
  In this work, chitosanlpolycaprolactone (CS/PCL) solutions were electrospun using
  an acetic acid/fonnie acid solvent system to create antibacterial biodegradable
  blend nanofibres. The fibres were characterized and the parameters influencing the
  stability of the production process were analysed. The fibre characterisation includes
  techniques such as SEM, thennal analysis (using differential scanning calorimetry
  and dynamic mechanical analysis) and vibrational spectroscopy (infrared spectroscopy).
  It was found that by adding CS to a PCL electrospinning solution, the fibre diametcrs
  and deviat ions can be lowered because of two possible causes. The first is the
  presence of more charges due to the polycationic nature, possibly reducing thc diameter
  by more extensive jet splaying. The second effect of CS is a significant increase
  in viscosity, enabling the production of electrospinnable solutions with a lower
  total polymer concentration. Also other specific blend fibre properties, identified
  by a variation of techniques, can be linked to the CS addition. Their analysis illustrates
  the influence of polymer blends on {he electrospinning process and the nanofibre
  morphology.
abstract_full:
- lang: eng
  text: Most of the effort in electrospinning has been spent on the spinning of various
    single polymer·solvcnt systems. However, the high demand for materials with specific
    properties indicates the need to eiectrospin polymer blends. Electrospinning of
    blends containing a synthetic and a natural polymer enables us to combine the
    favourable characteristics of both (e.g. biocompatibility and sufficient mechanical
    strength) into one material, which is often necessary in for example medical applications.
    A morphological characterization of these blend nanofibres is however crucial
    because there is a broader range of polymer properties influencing the resulting
    nanofibres. In this work, chitosanlpolycaprolactone (CS/PCL) solutions were electrospun
    using an acetic acid/fonnie acid solvent system to create antibacterial biodegradable
    blend nanofibres. The fibres were characterized and the parameters influencing
    the stability of the production process were analysed. The fibre characterisation
    includes techniques such as SEM, thennal analysis (using differential scanning
    calorimetry and dynamic mechanical analysis) and vibrational spectroscopy (infrared
    spectroscopy). It was found that by adding CS to a PCL electrospinning solution,
    the fibre diametcrs and deviat ions can be lowered because of two possible causes.
    The first is the presence of more charges due to the polycationic nature, possibly
    reducing thc diameter by more extensive jet splaying. The second effect of CS
    is a significant increase in viscosity, enabling the production of electrospinnable
    solutions with a lower total polymer concentration. Also other specific blend
    fibre properties, identified by a variation of techniques, can be linked to the
    CS addition. Their analysis illustrates the influence of polymer blends on {he
    electrospinning process and the nanofibre morphology.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
author:
- _id: 0B227202-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0B227202-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Iline
  last_name: Steyaert
  name: Iline Steyaert
  name_last_first: Steyaert, Iline
  ugent_id:
  - '000060129993'
  - '802001072793'
  - '979860756278'
- _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
  - '002002166892'
  - '802000424715'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- first_name: Hubert
  last_name: Rahier
  name: Hubert Rahier
  name_last_first: Rahier, Hubert
biblio_id: '2154306'
cite:
  apa: |2
      <div class="csl-entry">Steyaert, I., Van der Schueren, L., De Clerck, K., &#38; Rahier, H. (2012). Blend electrospinning of chitosan/polycaprolactone nanofibres. <i>2th International Conference on Electrospinning, Abstracts</i>, 44–44. Jeju, Korea: Korea Advanced Institute of Science and Technology, Korea.</div>
  bof: |2
      <div class="csl-entry">Steyaert, Iline, Lien Van der Schueren, Karen De Clerck, and Hubert Rahier. 2012. “Blend Electrospinning of Chitosan/Polycaprolactone Nanofibres.” In <i>2th International Conference on Electrospinning, Abstracts</i>, 44–44. Jeju, Korea: Korea Advanced Institute of Science and Technology, Korea.</div>
  chicago-author-date: |2
      <div class="csl-entry">Steyaert, Iline, Lien Van der Schueren, Karen De Clerck, and Hubert Rahier. 2012. “Blend Electrospinning of Chitosan/Polycaprolactone Nanofibres.” In <i>2th International Conference on Electrospinning, Abstracts</i>, 44–44. Jeju, Korea: Korea Advanced Institute of Science and Technology, Korea.</div>
  fwo: |2
      <div class="csl-entry">Steyaert, Iline, Lien Van der Schueren, Karen De Clerck, and Hubert Rahier. 2012. “Blend Electrospinning of Chitosan/Polycaprolactone Nanofibres.” In <i>2th International Conference on Electrospinning, Abstracts</i>, 44–44. Jeju, Korea: Korea Advanced Institute of Science and Technology, Korea.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">I. Steyaert, L. Van der Schueren, K. De Clerck, and H. Rahier, “Blend electrospinning of chitosan/polycaprolactone nanofibres,” in <i>2th International Conference on Electrospinning, Abstracts</i>, Jeju, Korea, 2012, pp. 44–44.</div>
      </div>
  mla: |2
      <div class="csl-entry">Steyaert, Iline, et al. “Blend Electrospinning of Chitosan/Polycaprolactone Nanofibres.” <i>2th International Conference on Electrospinning, Abstracts</i>, Korea Advanced Institute of Science and Technology, Korea, 2012, pp. 44–44.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Steyaert I, Van der Schueren L, De Clerck K, Rahier H. Blend electrospinning of chitosan/polycaprolactone nanofibres. In: 2th International Conference on Electrospinning, Abstracts. Jeju, Korea: Korea Advanced Institute of Science and Technology, Korea; 2012. p. 44–44.</div>
       </div>
classification: C3
conference:
  end_date: 2012-06-01
  location: Jeju, Korea
  name: 2th International Conference on Electrospinning (ELECTROSPIN 2012)
  start_date: 2012-05-29
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
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    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2012-06-14 17:30:36
date_updated: 2026-03-31 09:20:36
external: 0
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handle: http://hdl.handle.net/1854/LU-2154306
jcr: {}
language:
- eng
page:
  first: '44'
  last: '44'
parent:
  title: 2th International Conference on Electrospinning, Abstracts
publication_status: published
publication_status_sort: 2
publisher:
  location: Jeju, Korea
  name: Korea Advanced Institute of Science and Technology, Korea
status: public
subject:
- Technology and Engineering
title: Blend electrospinning of chitosan/polycaprolactone nanofibres
type: conference
year: '2012'
...
---
_id: '2068375'
affiliation:
- name: Department of Applied physics
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW17
  ugent_id: TW17
- name: Department of Physics and astronomy
  path:
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  - ugent_id: WE
  - ugent_id: WE05
  ugent_id: WE05
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
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  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
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  ugent_id: TW11*
article_type: original
author:
- _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
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- _id: F698F216-F0ED-11E1-A9DE-61C894A0A6B4
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    ugent_id: TW08
  biblio_id: F698F216-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: Hemelsoet
  name: Karen Hemelsoet
  name_last_first: Hemelsoet, Karen
  orcid_id: 0000-0002-6537-9731
  ugent_id:
  - '801001688867'
  - '919018664016'
  - '971341725622'
- _id: F542886E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: TW17
  - path:
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    - ugent_id: WE05
    ugent_id: WE05
  biblio_id: F542886E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Veronique
  last_name: Van Speybroeck
  name: Veronique Van Speybroeck
  name_last_first: Van Speybroeck, Veronique
  orcid_id: 0000-0003-2206-178X
  ugent_id:
  - '801001153549'
  - '919016668139'
  - '976495757166'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '2068375'
cite:
  apa: |2
      <div class="csl-entry">Van der Schueren, L., Hemelsoet, K., Van Speybroeck, V., &#38; De Clerck, K. (2012). The influence of a polyamide matrix on the halochromic behaviour of the pH-sensitive azo dye Nitrazine Yellow. <i>DYES AND PIGMENTS</i>, <i>94</i>(3), 443–451. https://doi.org/10.1016/j.dyepig.2012.02.013</div>
  bof: |2-
      <div class="csl-entry">Van der Schueren, Lien, Karen Hemelsoet, Veronique Van Speybroeck, and Karen De Clerck. 2012. “The Influence of a Polyamide Matrix on the Halochromic Behaviour of the PH-Sensitive Azo Dye Nitrazine Yellow.” <i>DYES AND PIGMENTS</i> 94 (3): 443–451. doi:10.1016/j.dyepig.2012.02.013.</div>
    <div><i>Impact factor: 3.532, category: MATERIALS SCIENCE, TEXTILES, rank: 1/22, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Van der Schueren, Lien, Karen Hemelsoet, Veronique Van Speybroeck, and Karen De Clerck. 2012. “The Influence of a Polyamide Matrix on the Halochromic Behaviour of the PH-Sensitive Azo Dye Nitrazine Yellow.” <i>DYES AND PIGMENTS</i> 94 (3): 443–51. https://doi.org/10.1016/j.dyepig.2012.02.013.</div>
  fwo: |2
      <div class="csl-entry">Van der Schueren, Lien, Karen Hemelsoet, Veronique Van Speybroeck, and Karen De Clerck. 2012. “The Influence of a Polyamide Matrix on the Halochromic Behaviour of the PH-Sensitive Azo Dye Nitrazine Yellow.” <i>DYES AND PIGMENTS</i> 94 (3): 443–451. doi:10.1016/j.dyepig.2012.02.013.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Van der Schueren, K. Hemelsoet, V. Van Speybroeck, and K. De Clerck, “The influence of a polyamide matrix on the halochromic behaviour of the pH-sensitive azo dye Nitrazine Yellow,” <i>DYES AND PIGMENTS</i>, vol. 94, no. 3, pp. 443–451, 2012.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van der Schueren, Lien, et al. “The Influence of a Polyamide Matrix on the Halochromic Behaviour of the PH-Sensitive Azo Dye Nitrazine Yellow.” <i>DYES AND PIGMENTS</i>, vol. 94, no. 3, 2012, pp. 443–51, doi:10.1016/j.dyepig.2012.02.013.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van der Schueren L, Hemelsoet K, Van Speybroeck V, De Clerck K. The influence of a polyamide matrix on the halochromic behaviour of the pH-sensitive azo dye Nitrazine Yellow. DYES AND PIGMENTS. 2012;94(3):443–51.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2012-03-19 10:02:57
date_updated: 2026-03-31 09:14:28
doi:
- 10.1016/j.dyepig.2012.02.013
external: 0
file:
- _id: '2068396'
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  content_type: application/pdf
  kind: fullText
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  url: https://biblio.ugent.be/publication/2068375/file/2068396.pdf
handle: http://hdl.handle.net/1854/LU-2068375
issn:
- 0143-7208
issue: '3'
jcr:
  category: MATERIALS SCIENCE, TEXTILES
  category_decile: 1
  category_quartile: 1
  category_rank: 1/22
  category_vigintile: 1
  eigenfactor: 0.01353
  immediacy_index: 0.897
  impact_factor: 3.532
  impact_factor_5yr: 3.433
  prev_category_decile: 1
  prev_category_quartile: 1
  prev_category_vigintile: 2
  prev_impact_factor: 3.126
  total_cites: 7664
keyword:
- SPECTRA
- Halochromism
- Azo dye
- Tautomerism
- INDICATOR
- SPECTROSCOPY
- COLOR
- RAMAN
- pH-sensor
- TEXTILE MATERIALS
- VIBRATIONAL FREQUENCIES
- HYDRAZONE TAUTOMERISM
- TD-DFT
- Polyamide
- Fiber
- QUINOXALINE
language:
- eng
page:
  first: '443'
  last: '451'
parent:
  short_title: Dyes Pigment.
  title: DYES AND PIGMENTS
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: The influence of a polyamide matrix on the halochromic behaviour of the pH-sensitive
  azo dye Nitrazine Yellow
type: journalArticle
volume: '94'
wos_id: '000304688900011'
wos_type: Article
year: '2012'
...
---
_id: '2099611'
additional_info: http://www.dftm2012.be/
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  - ugent_id: WE05
  ugent_id: WE05
- name: Department of Materials, Textiles and Chemical Engineering
  path:
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  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
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  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
author:
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  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: 018BF682-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Thierry
  last_name: De Meyer
  name: Thierry De Meyer
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  biblio_id: F698F216-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: Hemelsoet
  name: Karen Hemelsoet
  name_last_first: Hemelsoet, Karen
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  ugent_id:
  - '801001688867'
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  - '971341725622'
- _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
  - '002002166892'
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  affiliation:
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  first_name: Ewald
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  name: Ewald Pauwels
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  ugent_id:
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  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
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- _id: F542886E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: TW17
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  - path:
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    - ugent_id: WE
    - ugent_id: WE05
    ugent_id: WE05
  biblio_id: F542886E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Veronique
  last_name: Van Speybroeck
  name: Veronique Van Speybroeck
  name_last_first: Van Speybroeck, Veronique
  orcid_id: 0000-0003-2206-178X
  ugent_id:
  - '801001153549'
  - '919016668139'
  - '976495757166'
biblio_id: '2099611'
cite:
  apa: |2
      <div class="csl-entry">De Meyer, T., Hemelsoet, K., Van der Schueren, L., Pauwels, E., De Clerck, K., &#38; Van Speybroeck, V. (2012). UV-VIS spectra of azo dyes in aqueous environment: a combined TD-DFT and molecular dynamics study. <i>Challenges in Density Matrix and Density Functional Theory, Abstracts</i>, P8–P8.</div>
  bof: |2
      <div class="csl-entry">De Meyer, Thierry, Karen Hemelsoet, Lien Van der Schueren, Ewald Pauwels, Karen De Clerck, and Veronique Van Speybroeck. 2012. “UV-VIS Spectra of Azo Dyes in Aqueous Environment: A Combined TD-DFT and Molecular Dynamics Study.” In <i>Challenges in Density Matrix and Density Functional Theory, Abstracts</i>, P8–P8.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Meyer, Thierry, Karen Hemelsoet, Lien Van der Schueren, Ewald Pauwels, Karen De Clerck, and Veronique Van Speybroeck. 2012. “UV-VIS Spectra of Azo Dyes in Aqueous Environment: A Combined TD-DFT and Molecular Dynamics Study.” In <i>Challenges in Density Matrix and Density Functional Theory, Abstracts</i>, P8–P8.</div>
  fwo: |2
      <div class="csl-entry">De Meyer, Thierry, Karen Hemelsoet, Lien Van der Schueren, Ewald Pauwels, Karen De Clerck, and Veronique Van Speybroeck. 2012. “UV-VIS Spectra of Azo Dyes in Aqueous Environment: A Combined TD-DFT and Molecular Dynamics Study.” In <i>Challenges in Density Matrix and Density Functional Theory, Abstracts</i>, P8–P8.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">T. De Meyer, K. Hemelsoet, L. Van der Schueren, E. Pauwels, K. De Clerck, and V. Van Speybroeck, “UV-VIS spectra of azo dyes in aqueous environment: a combined TD-DFT and molecular dynamics study,” in <i>Challenges in Density Matrix and Density Functional Theory, Abstracts</i>, Ghent, Belgium, 2012, pp. P8–P8.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Meyer, Thierry, et al. “UV-VIS Spectra of Azo Dyes in Aqueous Environment: A Combined TD-DFT and Molecular Dynamics Study.” <i>Challenges in Density Matrix and Density Functional Theory, Abstracts</i>, 2012, pp. P8–P8.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Meyer T, Hemelsoet K, Van der Schueren L, Pauwels E, De Clerck K, Van Speybroeck V. UV-VIS spectra of azo dyes in aqueous environment: a combined TD-DFT and molecular dynamics study. In: Challenges in Density Matrix and Density Functional Theory, Abstracts. 2012. p. P8–P8.</div>
       </div>
classification: C3
conference:
  end_date: 2012-04-06
  location: Ghent, Belgium
  name: Challenges in Density Matrix and Density Functional Theory (DFTM-2012)
  start_date: 2012-04-01
copyright_statement: No license (in copyright)
created_by:
  _id: F93A4808-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: F93A4808-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Dewitte
  name: Wim Dewitte
  name_last_first: Dewitte, Wim
  ugent_id:
  - '972352832707'
date_created: 2012-05-07 11:24:37
date_updated: 2026-03-31 09:16:36
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-2099611
jcr: {}
language:
- eng
page:
  first: P8
  last: P8
parent:
  title: Challenges in Density Matrix and Density Functional Theory, Abstracts
project:
- _id: HPC-UGent
  abstract: The central High Performance Computing infrastructure of Ghent University
    is part of the Flemish Supercomputer Center and is built and maintained with the
    support of Ghent University, the Hercules Foundation and the department of Economy,
    Science and Innovation of the Flemish Government. Thanks to this support, use
    of the infrastructure is free of charge for researchers of Ghent University.
  iweto_id: HPC-UGent
  publication_count: 144
  start_date: 01-JAN-08
  title: 'HPC-UGent: the central High Performance Computing infrastructure of Ghent
    University'
  ugent_id:
  - '801001384834'
  - '801001682908'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: 'UV-VIS spectra of azo dyes in aqueous environment: a combined TD-DFT and molecular
  dynamics study'
type: conference
year: '2012'
...
---
_id: '2064105'
abstract:
- A large number of studies have been devoted to the development of chromic textile
  materials because of their wide applicability as sensor systems. More recently,
  pH-sensitive chromic textiles have also been investigated to a considerable extent,
  as the pH value is an important parameter in various circumstances. This review
  therefore elaborates on pH-sensitive textile materials. The outcome of this review
  process demonstrates that halochromic dyes can be successfully incorporated into
  textile materials, leading to flexible sensors. Various textile materials and different
  application methods have both been shown to be effective. Yet the textile material
  in which the pH-sensitive agent is present affects its halochromic behaviour and
  this factor should thus always be considered. Finally, this review establishes the
  major potential of pH-sensitive textile materials.
abstract_full:
- lang: eng
  text: A large number of studies have been devoted to the development of chromic
    textile materials because of their wide applicability as sensor systems. More
    recently, pH-sensitive chromic textiles have also been investigated to a considerable
    extent, as the pH value is an important parameter in various circumstances. This
    review therefore elaborates on pH-sensitive textile materials. The outcome of
    this review process demonstrates that halochromic dyes can be successfully incorporated
    into textile materials, leading to flexible sensors. Various textile materials
    and different application methods have both been shown to be effective. Yet the
    textile material in which the pH-sensitive agent is present affects its halochromic
    behaviour and this factor should thus always be considered. Finally, this review
    establishes the major potential of pH-sensitive textile materials.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_type: review
author:
- _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
  - '002002166892'
  - '802000424715'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '2064105'
cite:
  apa: |2
      <div class="csl-entry">Van der Schueren, L., &#38; De Clerck, K. (2012). Coloration and application of pH-sensitive dyes on textile materials. <i>COLORATION TECHNOLOGY</i>, <i>128</i>(2), 82–90. https://doi.org/10.1111/j.1478-4408.2011.00361.x</div>
  bof: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2012. “Coloration and Application of PH-Sensitive Dyes on Textile Materials.” <i>COLORATION TECHNOLOGY</i> 128 (2): 82–90. doi:10.1111/j.1478-4408.2011.00361.x.</div>
  chicago-author-date: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2012. “Coloration and Application of PH-Sensitive Dyes on Textile Materials.” <i>COLORATION TECHNOLOGY</i> 128 (2): 82–90. https://doi.org/10.1111/j.1478-4408.2011.00361.x.</div>
  fwo: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2012. “Coloration and Application of PH-Sensitive Dyes on Textile Materials.” <i>COLORATION TECHNOLOGY</i> 128 (2): 82–90. doi:10.1111/j.1478-4408.2011.00361.x.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Van der Schueren and K. De Clerck, “Coloration and application of pH-sensitive dyes on textile materials,” <i>COLORATION TECHNOLOGY</i>, vol. 128, no. 2, pp. 82–90, 2012.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. “Coloration and Application of PH-Sensitive Dyes on Textile Materials.” <i>COLORATION TECHNOLOGY</i>, vol. 128, no. 2, 2012, pp. 82–90, doi:10.1111/j.1478-4408.2011.00361.x.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van der Schueren L, De Clerck K. Coloration and application of pH-sensitive dyes on textile materials. COLORATION TECHNOLOGY. 2012;128(2):82–90.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2012-03-12 10:02:04
date_updated: 2026-03-31 07:46:05
doi:
- 10.1111/j.1478-4408.2011.00361.x
external: 0
file:
- _id: '2064144'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: Coloration_and_application_of_pHsensitive_dyes.pdf
  sha256: 437191387acdb8c411770181e78d31bffd5a0a89883a21ab3e21b9478fefe255
  size: '472077'
  thumbnail_url: https://biblio.ugent.be/publication/2064105/file/2064144/thumbnail.png
  url: https://biblio.ugent.be/publication/2064105/file/2064144.pdf
handle: http://hdl.handle.net/1854/LU-2064105
issn:
- 1478-4408
issue: '2'
jcr: {}
keyword:
- PHOTOCHROMIC DYES
- SOL-GEL
- DISPERSE DYES
- AZO DYES
- SPECTRAL PROPERTIES
- AQUEOUS-SOLUTION
- OPTICAL SENSOR
- METHYL RED
- CONGO RED
- PART 1
language:
- eng
page:
  first: '82'
  last: '90'
parent:
  short_title: Color. Technol.
  title: COLORATION TECHNOLOGY
project:
- _id: 01J04009
  abstract: <p>The aim of the project is to obtain a better understanding of the interactions
    between pH-sensitive dyes and textiles. Both a macroscopic spectral analysis and
    a general microscopic evaluation will be performed. The dye-fiber interactions,
    the local distribution, the impulse sensitivity and spectral variations as a function
    of time and place will be looked at.</p>
  end_date: 2013-10-31
  gismo_id: 070a44f0-b14b-48f0-9f2a-a0ec5c90b554
  iweto_id: 01J04009
  publication_count: 3
  start_date: 2009-01-01
  title: 'Research into new ''sensor materials'': pH-sensitive dyes in textiles'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Coloration and application of pH-sensitive dyes on textile materials
type: journalArticle
volume: '128'
wos_id: '000301049000002'
wos_type: Review
year: '2012'
...
---
_id: '2974652'
abstract:
- 'Azo dyes consist of a double nitrogen-nitrogen bond connected to two aromatic moieties,
  creating a large conjugated pi-system. A relatively simple synthesis and large variety
  of colours have made azo dyes the most abundant class of colourants. The dye studied
  in this research, ethyl orange (EO), is a prototypical example of a halochromic
  (pH-sensitive) azo dye. Halochromic dyes have already proven useful for application
  in textile sensors since the colour change of such sensors is easy to perceive and
  the advantages of the parent materials (e.g. flexibility) are maintained.[1] The
  key to further development of smart materials is combining multiple responses that
  can be separately addressed by different triggers.[2] To achieve this, we need a
  full knowledge of the colour changing mechanism and the influence of the environment.
  Herein, both theoretical and experimental methods were used to unravel the halochromic
  properties of EO.[3] Experimental UV-VIS and Raman spectra point towards a structural
  change of EO in water between pH 5 and pH 3. This pH-sensitivity is modeled through
  a series of ab initio computations on the neutral, various singly and doubly protonated
  structures. Static calculations (with inclusion of implicit solvation) are successful
  in assigning the most probable protonation site. However, to fully understand the
  origin of the main absorption peaks, a molecular dynamics simulation study in a
  water molecular environment is used in combination with Time Dependent-DFT calculations
  to deduce average UV-VIS spectra which take into account the flexibility of the
  dye and the explicit interactions with the surrounding water molecules. The proposed
  methodology allows to achieve a remarkable agreement between the theoretical and
  experimental UV-VIS spectrum and enables to fully unravel the pH sensitive behaviour
  of EO in aqueous environment. References: [1] L. Van der Schueren and K. De Clerck,
  Textile Research Journal 80(7) 590-603 (2010). [2] M. A. C. Stuart et al., Nature
  Materials, 9(2) 101-113 (2010). [3] T. De Meyer et al., submitted to Chemistry -
  A European Journal'
abstract_full:
- lang: eng
  text: 'Azo dyes consist of a double nitrogen-nitrogen bond connected to two aromatic
    moieties, creating a large conjugated pi-system. A relatively simple synthesis
    and large variety of colours have made azo dyes the most abundant class of colourants.
    The dye studied in this research, ethyl orange (EO), is a prototypical example
    of a halochromic (pH-sensitive) azo dye. Halochromic dyes have already proven
    useful for application in textile sensors since the colour change of such sensors
    is easy to perceive and the advantages of the parent materials (e.g. flexibility)
    are maintained.[1] The key to further development of smart materials is combining
    multiple responses that can be separately addressed by different triggers.[2]
    To achieve this, we need a full knowledge of the colour changing mechanism and
    the influence of the environment. Herein, both theoretical and experimental methods
    were used to unravel the halochromic properties of EO.[3] Experimental UV-VIS
    and Raman spectra point towards a structural change of EO in water between pH
    5 and pH 3. This pH-sensitivity is modeled through a series of ab initio computations
    on the neutral, various singly and doubly protonated structures. Static calculations
    (with inclusion of implicit solvation) are successful in assigning the most probable
    protonation site. However, to fully understand the origin of the main absorption
    peaks, a molecular dynamics simulation study in a water molecular environment
    is used in combination with Time Dependent-DFT calculations to deduce average
    UV-VIS spectra which take into account the flexibility of the dye and the explicit
    interactions with the surrounding water molecules. The proposed methodology allows
    to achieve a remarkable agreement between the theoretical and experimental UV-VIS
    spectrum and enables to fully unravel the pH sensitive behaviour of EO in aqueous
    environment. References: [1] L. Van der Schueren and K. De Clerck, Textile Research
    Journal 80(7) 590-603 (2010). [2] M. A. C. Stuart et al., Nature Materials, 9(2)
    101-113 (2010). [3] T. De Meyer et al., submitted to Chemistry - A European Journal'
affiliation:
- name: Department of Physics and astronomy
  path:
  - ugent_id: UGent
  - ugent_id: WE
  - ugent_id: WE05
  ugent_id: WE05
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Applied physics
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW17
  ugent_id: TW17
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
author:
- _id: 018BF682-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 018BF682-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Thierry
  last_name: De Meyer
  name: Thierry De Meyer
  name_last_first: De Meyer, Thierry
  ugent_id:
  - '000060024711'
  - '802001054912'
  - '976159278112'
- _id: F698F216-F0ED-11E1-A9DE-61C894A0A6B4
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    - ugent_id: TW08
    ugent_id: TW08
  biblio_id: F698F216-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: Hemelsoet
  name: Karen Hemelsoet
  name_last_first: Hemelsoet, Karen
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  ugent_id:
  - '801001688867'
  - '919018664016'
  - '971341725622'
- _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
  - '002002166892'
  - '802000424715'
- _id: F5D7C7D0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: UGent
    - ugent_id: CA
    - ugent_id: CA60
    ugent_id: CA60
  biblio_id: F5D7C7D0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Ewald
  last_name: Pauwels
  name: Ewald Pauwels
  name_last_first: Pauwels, Ewald
  orcid_id: 0000-0001-9699-4094
  ugent_id:
  - '801001384834'
  - '977020316190'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F542886E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW17
    ugent_id: TW17
  - path:
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    - ugent_id: WE
    - ugent_id: WE05
    ugent_id: WE05
  biblio_id: F542886E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Veronique
  last_name: Van Speybroeck
  name: Veronique Van Speybroeck
  name_last_first: Van Speybroeck, Veronique
  orcid_id: 0000-0003-2206-178X
  ugent_id:
  - '801001153549'
  - '919016668139'
  - '976495757166'
biblio_id: '2974652'
cite:
  apa: |2
      <div class="csl-entry">De Meyer, T., Hemelsoet, K., Van der Schueren, L., Pauwels, E., De Clerck, K., &#38; Van Speybroeck, V. (2012). The pH-sensitive properties of azo dyes in aqueous environment. <i>MolSim 2012, Abstracts</i>. Presented at the MolSim 2012, Amsterdam, The Netherlands.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Meyer, Thierry, Karen Hemelsoet, Lien Van der Schueren, Ewald Pauwels, Karen De Clerck, and Veronique Van Speybroeck. 2012. “The PH-Sensitive Properties of Azo Dyes in Aqueous Environment.” In <i>MolSim 2012, Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">De Meyer, Thierry, Karen Hemelsoet, Lien Van der Schueren, Ewald Pauwels, Karen De Clerck, and Veronique Van Speybroeck. 2012. “The PH-Sensitive Properties of Azo Dyes in Aqueous Environment.” In <i>MolSim 2012, Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">T. De Meyer, K. Hemelsoet, L. Van der Schueren, E. Pauwels, K. De Clerck, and V. Van Speybroeck, “The pH-sensitive properties of azo dyes in aqueous environment,” in <i>MolSim 2012, Abstracts</i>, Amsterdam, The Netherlands, 2012.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Meyer, Thierry, et al. “The PH-Sensitive Properties of Azo Dyes in Aqueous Environment.” <i>MolSim 2012, Abstracts</i>, 2012.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Meyer T, Hemelsoet K, Van der Schueren L, Pauwels E, De Clerck K, Van Speybroeck V. The pH-sensitive properties of azo dyes in aqueous environment. In: MolSim 2012, Abstracts. 2012.</div>
       </div>
classification: C3
conference:
  end_date: 2012-01-20
  location: Amsterdam, The Netherlands
  name: MolSim 2012
  start_date: 2012-01-09
copyright_statement: No license (in copyright)
created_by:
  _id: F93A4808-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: F93A4808-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Dewitte
  name: Wim Dewitte
  name_last_first: Dewitte, Wim
  ugent_id:
  - '972352832707'
date_created: 2012-08-24 09:43:18
date_updated: 2026-03-31 14:30:30
external: 0
file:
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  access: open
  content_type: application/pdf
  kind: fullText
  name: 2012_Molsim_TDeMeyer.pdf
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  url: https://biblio.ugent.be/publication/2974652/file/4134115.pdf
handle: http://hdl.handle.net/1854/LU-2974652
language:
- eng
page:
  count: '1'
parent:
  title: MolSim 2012, Abstracts
project:
- _id: HPC-UGent
  abstract: The central High Performance Computing infrastructure of Ghent University
    is part of the Flemish Supercomputer Center and is built and maintained with the
    support of Ghent University, the Hercules Foundation and the department of Economy,
    Science and Innovation of the Flemish Government. Thanks to this support, use
    of the infrastructure is free of charge for researchers of Ghent University.
  iweto_id: HPC-UGent
  publication_count: 144
  start_date: 01-JAN-08
  title: 'HPC-UGent: the central High Performance Computing infrastructure of Ghent
    University'
  ugent_id:
  - '801001384834'
  - '801001682908'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Chemistry
title: The pH-sensitive properties of azo dyes in aqueous environment
type: conference
year: '2012'
...
---
_id: '3099803'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
author:
- _id: 0B227202-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0B227202-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Iline
  last_name: Steyaert
  name: Iline Steyaert
  name_last_first: Steyaert, Iline
  ugent_id:
  - '000060129993'
  - '802001072793'
  - '979860756278'
- _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
  - '002002166892'
  - '802000424715'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- first_name: Hubert
  last_name: Rahier
  name: Hubert Rahier
  name_last_first: Rahier, Hubert
biblio_id: '3099803'
cite:
  apa: |2
      <div class="csl-entry">Steyaert, I., Van der Schueren, L., De Clerck, K., &#38; Rahier, H. (2012). Blend electrospinning of Chitosan / Polycaprolacton nanofibres. <i>11th European Symposium on Polymer Blends, Book of Abstracts</i>, 75–76. San Sebastian, Spain: Universidad des Pais Vasco.</div>
  chicago-author-date: |2
      <div class="csl-entry">Steyaert, Iline, Lien Van der Schueren, Karen De Clerck, and Hubert Rahier. 2012. “Blend Electrospinning of Chitosan / Polycaprolacton Nanofibres.” In <i>11th European Symposium on Polymer Blends, Book of Abstracts</i>, 75–76. San Sebastian, Spain: Universidad des Pais Vasco.</div>
  fwo: |2
      <div class="csl-entry">Steyaert, Iline, Lien Van der Schueren, Karen De Clerck, and Hubert Rahier. 2012. “Blend Electrospinning of Chitosan / Polycaprolacton Nanofibres.” In <i>11th European Symposium on Polymer Blends, Book of Abstracts</i>, 75–76. San Sebastian, Spain: Universidad des Pais Vasco.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">I. Steyaert, L. Van der Schueren, K. De Clerck, and H. Rahier, “Blend electrospinning of Chitosan / Polycaprolacton nanofibres,” in <i>11th European Symposium on Polymer Blends, Book of Abstracts</i>, San Sebastian, Spain, 2012, pp. 75–76.</div>
      </div>
  mla: |2
      <div class="csl-entry">Steyaert, Iline, et al. “Blend Electrospinning of Chitosan / Polycaprolacton Nanofibres.” <i>11th European Symposium on Polymer Blends, Book of Abstracts</i>, Universidad des Pais Vasco, 2012, pp. 75–76.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Steyaert I, Van der Schueren L, De Clerck K, Rahier H. Blend electrospinning of Chitosan / Polycaprolacton nanofibres. In: 11th European Symposium on Polymer Blends, Book of Abstracts. San Sebastian, Spain: Universidad des Pais Vasco; 2012. p. 75–6.</div>
       </div>
classification: C3
conference:
  end_date: 2012-05-28
  location: San Sebastian, Spain
  name: 11th European Symposium on Polymer Blends
  start_date: 2012-03-25
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2013-01-18 13:29:38
date_updated: 2026-03-31 14:35:05
external: 0
file:
- _id: '3099822'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: abstract_polymer_blends.pdf
  sha256: cc7bf336942dfcbf718d6c26f96a0d6e2e1eb11bc06a6db369ed3537525cbf96
  size: '387373'
  thumbnail_url: https://biblio.ugent.be/publication/3099803/file/3099822/thumbnail.png
  url: https://biblio.ugent.be/publication/3099803/file/3099822.pdf
handle: http://hdl.handle.net/1854/LU-3099803
isbn:
- '9788469527627'
language:
- eng
page:
  first: '75'
  last: '76'
parent:
  title: 11th European Symposium on Polymer Blends, Book of Abstracts
publication_status: published
publication_status_sort: 2
publisher:
  location: San Sebastian, Spain
  name: Universidad des Pais Vasco
status: public
subject:
- Technology and Engineering
title: Blend electrospinning of Chitosan / Polycaprolacton nanofibres
type: conference
year: '2012'
...
---
_id: '3118558'
abstract:
- PCL/chitosan blend nanofibres could provide an excellent nanostructured material
  for biomedical use since their beneficial properties are combined into one material.
  This paper focuses on the solvent use in the production of PCL/chitosan nanofibres
  by solution electrospinning, since this is a crucial parameter in the electrospinning
  process. It was established that an acetic acid/formic acid shows great potential
  for the stable electrospinning of the blend. Additionally, the fibre morphology
  using this solvent system was analysed.
abstract_full:
- lang: eng
  text: PCL/chitosan blend nanofibres could provide an excellent nanostructured material
    for biomedical use since their beneficial properties are combined into one material.
    This paper focuses on the solvent use in the production of PCL/chitosan nanofibres
    by solution electrospinning, since this is a crucial parameter in the electrospinning
    process. It was established that an acetic acid/formic acid shows great potential
    for the stable electrospinning of the blend. Additionally, the fibre morphology
    using this solvent system was analysed.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_type: original
author:
- _id: 0B227202-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0B227202-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Iline
  last_name: Steyaert
  name: Iline Steyaert
  name_last_first: Steyaert, Iline
  ugent_id:
  - '000060129993'
  - '802001072793'
  - '979860756278'
- _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
  - '002002166892'
  - '802000424715'
- first_name: Hubert
  last_name: Rahier
  name: Hubert Rahier
  name_last_first: Rahier, Hubert
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '3118558'
cite:
  apa: |2
      <div class="csl-entry">Steyaert, I., Van der Schueren, L., Rahier, H., &#38; De Clerck, K. (2012). An alternative solvent system for blend electrospinning of polycaprolactone/chitosan nanofibres. <i>MACROMOLECULAR SYMPOSIA</i>, <i>321</i>(1), 71–75. https://doi.org/10.1002/masy.201251111</div>
  chicago-author-date: |2
      <div class="csl-entry">Steyaert, Iline, Lien Van der Schueren, Hubert Rahier, and Karen De Clerck. 2012. “An Alternative Solvent System for Blend Electrospinning of Polycaprolactone/Chitosan Nanofibres.” <i>MACROMOLECULAR SYMPOSIA</i> 321 (1): 71–75. https://doi.org/10.1002/masy.201251111.</div>
  fwo: |2
      <div class="csl-entry">Steyaert, Iline, Lien Van der Schueren, Hubert Rahier, and Karen De Clerck. 2012. “An Alternative Solvent System for Blend Electrospinning of Polycaprolactone/Chitosan Nanofibres.” <i>MACROMOLECULAR SYMPOSIA</i> 321 (1): 71–75. doi:10.1002/masy.201251111.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">I. Steyaert, L. Van der Schueren, H. Rahier, and K. De Clerck, “An alternative solvent system for blend electrospinning of polycaprolactone/chitosan nanofibres,” <i>MACROMOLECULAR SYMPOSIA</i>, vol. 321, no. 1, pp. 71–75, 2012.</div>
      </div>
  mla: |2
      <div class="csl-entry">Steyaert, Iline, et al. “An Alternative Solvent System for Blend Electrospinning of Polycaprolactone/Chitosan Nanofibres.” <i>MACROMOLECULAR SYMPOSIA</i>, vol. 321, no. 1, 2012, pp. 71–75, doi:10.1002/masy.201251111.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Steyaert I, Van der Schueren L, Rahier H, De Clerck K. An alternative solvent system for blend electrospinning of polycaprolactone/chitosan nanofibres. MACROMOLECULAR SYMPOSIA. 2012;321(1):71–5.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
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  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
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date_created: 2013-02-01 15:12:48
date_updated: 2026-03-31 14:36:04
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handle: http://hdl.handle.net/1854/LU-3118558
issn:
- 1022-1360
issue: '1'
keyword:
- blends
- chitosan
- polycaprolactone
- electrospinning
language:
- eng
page:
  first: '71'
  last: '75'
parent:
  short_title: Macromol. Symp.
  title: MACROMOLECULAR SYMPOSIA
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: An alternative solvent system for blend electrospinning of polycaprolactone/chitosan
  nanofibres
type: journalArticle
volume: '321'
wos_id: '000210325000012'
wos_type: Article
year: '2012'
...
---
_id: '3001177'
abstract:
- The moisture sorption behavior of developing cotton fibers is studied by dynamic
  vapor sorption. Mature fibers show a typical sigmoidal isotherm, IUPAC type II,
  describing the adsorption on macroporous and non-porous adsorbents with a typical
  hysteresis. This is different from the type III isotherms exhibited by elongating
  fibers explained by the weak adsorbate-adsorbent interactions. The maximum sorption
  capacity clearly decreases throughout the cotton fiber development. This decrease
  is very rapid during the elongation phase of the fibers, but declines beyond 25
  days post anthesis (DPA). This transition corresponds to the time point where the
  secondary cell wall becomes dominant over the primary cell wall, as confirmed with
  FT-IR. Also only little moisture hysteresis appeared during the elongation phase
  whereas from 25 DPA onwards a distinct hysteresis is observed that remains almost
  constant until maturation of the fiber. The study clearly elucidates the sorption
  mechanism during the elongation phase of the fiber to be different from the one
  during the secondary cell wall synthesis. This improved understanding of the cotton
  sorption behavior is important for optimal application of cotton fiber in novel
  materials.
abstract_full:
- lang: eng
  text: The moisture sorption behavior of developing cotton fibers is studied by dynamic
    vapor sorption. Mature fibers show a typical sigmoidal isotherm, IUPAC type II,
    describing the adsorption on macroporous and non-porous adsorbents with a typical
    hysteresis. This is different from the type III isotherms exhibited by elongating
    fibers explained by the weak adsorbate-adsorbent interactions. The maximum sorption
    capacity clearly decreases throughout the cotton fiber development. This decrease
    is very rapid during the elongation phase of the fibers, but declines beyond 25
    days post anthesis (DPA). This transition corresponds to the time point where
    the secondary cell wall becomes dominant over the primary cell wall, as confirmed
    with FT-IR. Also only little moisture hysteresis appeared during the elongation
    phase whereas from 25 DPA onwards a distinct hysteresis is observed that remains
    almost constant until maturation of the fiber. The study clearly elucidates the
    sorption mechanism during the elongation phase of the fiber to be different from
    the one during the secondary cell wall synthesis. This improved understanding
    of the cotton sorption behavior is important for optimal application of cotton
    fiber in novel materials.
affiliation:
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  first_name: Lieve
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  last_name: Meulewaeter
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  first_name: Karen
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biblio_id: '3001177'
cite:
  apa: |2
      <div class="csl-entry">Ceylan, Ö., Van Landuyt, L., Meulewaeter, F., &#38; De Clerck, K. (2012). Moisture sorption in developing cotton fibers. <i>CELLULOSE</i>, <i>19</i>(5), 1517–1526. https://doi.org/10.1007/s10570-012-9737-x</div>
  chicago-author-date: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, Frank Meulewaeter, and Karen De Clerck. 2012. “Moisture Sorption in Developing Cotton Fibers.” <i>CELLULOSE</i> 19 (5): 1517–26. https://doi.org/10.1007/s10570-012-9737-x.</div>
  fwo: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, Frank Meulewaeter, and Karen De Clerck. 2012. “Moisture Sorption in Developing Cotton Fibers.” <i>CELLULOSE</i> 19 (5): 1517–1526. doi:10.1007/s10570-012-9737-x.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Ö. Ceylan, L. Van Landuyt, F. Meulewaeter, and K. De Clerck, “Moisture sorption in developing cotton fibers,” <i>CELLULOSE</i>, vol. 19, no. 5, pp. 1517–1526, 2012.</div>
      </div>
  mla: |2
      <div class="csl-entry">Ceylan, Özgür, et al. “Moisture Sorption in Developing Cotton Fibers.” <i>CELLULOSE</i>, vol. 19, no. 5, 2012, pp. 1517–26, doi:10.1007/s10570-012-9737-x.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Ceylan Ö, Van Landuyt L, Meulewaeter F, De Clerck K. Moisture sorption in developing cotton fibers. CELLULOSE. 2012;19(5):1517–26.</div>
       </div>
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  name_last_first: Van Den Abbeele, Martine
  ugent_id:
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date_created: 2012-09-28 15:32:12
date_updated: 2026-03-31 14:31:29
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issn:
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issue: '5'
jcr:
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keyword:
- CELL-WALL
- CELLULOSE
- ORGANIC-MATTER
- ADSORPTION-ISOTHERMS
- WATER-VAPOR SORPTION
- MODEL
- WOOD
- HYSTERESIS
- DESORPTION
- KINETICS
- Moisture sorption
- Cotton
- Dynamic vapor sorption
- Cotton development
language:
- eng
page:
  first: '1517'
  last: '1526'
parent:
  short_title: Cellulose
  title: CELLULOSE
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  record: |
    VR 1.0
    PT J
    AU Ceylan, O
       Van Landuyt, L
       Meulewaeter, F
       De Clerck, K
    AF Ceylan, Ozgur
       Van Landuyt, Lieve
       Meulewaeter, Frank
       De Clerck, Karen
    TI Moisture sorption in developing cotton fibers
    SO CELLULOSE
    LA English
    DT Article
    DE Moisture sorption; Cotton; Dynamic vapor sorption; Cotton development
    ID WATER-VAPOR SORPTION; ADSORPTION-ISOTHERMS; ORGANIC-MATTER; CELL-WALL;
       CELLULOSE; MODEL; WOOD; HYSTERESIS; DESORPTION; KINETICS
    AB The moisture sorption behavior of developing cotton fibers is studied by dynamic vapor sorption. Mature fibers show a typical sigmoidal isotherm, IUPAC type II, describing the adsorption on macroporous and non-porous adsorbents with a typical hysteresis. This is different from the type III isotherms exhibited by elongating fibers explained by the weak adsorbate-adsorbent interactions. The maximum sorption capacity clearly decreases throughout the cotton fiber development. This decrease is very rapid during the elongation phase of the fibers, but declines beyond 25 days post anthesis (DPA). This transition corresponds to the time point where the secondary cell wall becomes dominant over the primary cell wall, as confirmed with FT-IR. Also only little moisture hysteresis appeared during the elongation phase whereas from 25 DPA onwards a distinct hysteresis is observed that remains almost constant until maturation of the fiber. The study clearly elucidates the sorption mechanism during the elongation phase of the fiber to be different from the one during the secondary cell wall synthesis. This improved understanding of the cotton sorption behavior is important for optimal application of cotton fiber in novel materials.
    C1 [Ceylan, Ozgur; Van Landuyt, Lieve; De Clerck, Karen] Univ Ghent, Dept Text, B-9052 Ghent, Belgium.
       [Ceylan, Ozgur] Anadolu Univ, Dept Fash Design, TR-26470 Eskisehir, Turkey.
       [Meulewaeter, Frank] Bayer CropSci NV, B-9052 Ghent, Belgium.
    RP De Clerck, K (reprint author), Univ Ghent, Dept Text, Technol Pk 907, B-9052 Ghent, Belgium.
    EM karen.declerck@ugent.be
    FU Institute for the Promotion of Innovation by Science and Technology in
       Flanders (IWT)[IWT090505]
    FX This work was supported by the Institute for the Promotion of Innovation
       by Science and Technology in Flanders (IWT) [project number IWT090505].
    NR 48
    PU SPRINGER
    PI DORDRECHT
    PA VAN GODEWIJCKSTRAAT 30, 3311 GZ DORDRECHT, NETHERLANDS
    SN 0969-0239
    J9 CELLULOSE
    JI Cellulose
    PD OCT
    PY 2012
    VL 19
    IS 5
    BP 1517
    EP 1526
    DI 10.1007/s10570-012-9737-x
    PG 10
    WC Materials Science, Paper & Wood; Materials Science, Textiles; Polymer
       Science
    SC Materials Science; Polymer Science
    GA 992IF
    UT WOS:000307768100005
status: public
subject:
- Technology and Engineering
title: Moisture sorption in developing cotton fibers
type: journalArticle
volume: '19'
wos_id: '000307768100005'
wos_type: Article
year: '2012'
...
---
_id: '2963923'
abstract:
- The halochromism in solution of a prototypical example of an azo dye, ethyl orange,
  was investigated by using a combined theoretical and experimental approach. Experimental
  UV/Vis and Raman spectroscopy pointed towards a structural change of the azo dye
  with changing pH value (in the range pH 53). The pH-sensitive behavior was modeled
  through a series of ab initio computations on the neutral and various singly and
  doubly protonated structures. For this purpose, contemporary DFT functionals (B3LYP,
  CAM-B3LYP, and M06) were used in combination with implicit modeling of the water
  solvent environment. Static calculations were successful in assigning the most-probable
  protonation site. However, to fully understand the origin of the main absorption
  peaks, a molecular dynamics simulation study in a water molecular environment was
  used in combination with time-dependent DFT (TD-DFT) calculations to deduce average
  UV/Vis spectra that take into account the flexibility of the dye and the explicit
  interactions with the surrounding water molecules. This procedure allowed us to
  achieve a remarkable agreement between the theoretical and experimental UV/Vis spectrum
  and enabled us to fully unravel the pH-sensitive behavior of ethyl orange in aqueous
  environment.
abstract_full:
- lang: eng
  text: The halochromism in solution of a prototypical example of an azo dye, ethyl
    orange, was investigated by using a combined theoretical and experimental approach.
    Experimental UV/Vis and Raman spectroscopy pointed towards a structural change
    of the azo dye with changing pH value (in the range pH 53). The pH-sensitive behavior
    was modeled through a series of ab initio computations on the neutral and various
    singly and doubly protonated structures. For this purpose, contemporary DFT functionals
    (B3LYP, CAM-B3LYP, and M06) were used in combination with implicit modeling of
    the water solvent environment. Static calculations were successful in assigning
    the most-probable protonation site. However, to fully understand the origin of
    the main absorption peaks, a molecular dynamics simulation study in a water molecular
    environment was used in combination with time-dependent DFT (TD-DFT) calculations
    to deduce average UV/Vis spectra that take into account the flexibility of the
    dye and the explicit interactions with the surrounding water molecules. This procedure
    allowed us to achieve a remarkable agreement between the theoretical and experimental
    UV/Vis spectrum and enabled us to fully unravel the pH-sensitive behavior of ethyl
    orange in aqueous environment.
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- name: Department of Physics and astronomy
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article_type: original
author:
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  affiliation:
  - name: Ghent University
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  biblio_id: 018BF682-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Thierry
  last_name: De Meyer
  name: Thierry De Meyer
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  first_name: Karen
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- _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
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  first_name: Ewald
  last_name: Pauwels
  name: Ewald Pauwels
  name_last_first: Pauwels, Ewald
  orcid_id: 0000-0001-9699-4094
  ugent_id:
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  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F542886E-F0ED-11E1-A9DE-61C894A0A6B4
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    ugent_id: TW17
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    ugent_id: WE05
  biblio_id: F542886E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Veronique
  last_name: Van Speybroeck
  name: Veronique Van Speybroeck
  name_last_first: Van Speybroeck, Veronique
  orcid_id: 0000-0003-2206-178X
  ugent_id:
  - '801001153549'
  - '919016668139'
  - '976495757166'
biblio_id: '2963923'
cite:
  apa: |2
      <div class="csl-entry">De Meyer, T., Hemelsoet, K., Van der Schueren, L., Pauwels, E., De Clerck, K., &#38; Van Speybroeck, V. (2012). Investigating the halochromic properties of azo dyes in an aqueous environment by using a combined experimental and theoretical approach. <i>CHEMISTRY-A EUROPEAN JOURNAL</i>, <i>18</i>(26), 8120–8129. https://doi.org/10.1002/chem.201103633</div>
  chicago-author-date: |2
      <div class="csl-entry">De Meyer, Thierry, Karen Hemelsoet, Lien Van der Schueren, Ewald Pauwels, Karen De Clerck, and Veronique Van Speybroeck. 2012. “Investigating the Halochromic Properties of Azo Dyes in an Aqueous Environment by Using a Combined Experimental and Theoretical Approach.” <i>CHEMISTRY-A EUROPEAN JOURNAL</i> 18 (26): 8120–29. https://doi.org/10.1002/chem.201103633.</div>
  fwo: |2
      <div class="csl-entry">De Meyer, Thierry, Karen Hemelsoet, Lien Van der Schueren, Ewald Pauwels, Karen De Clerck, and Veronique Van Speybroeck. 2012. “Investigating the Halochromic Properties of Azo Dyes in an Aqueous Environment by Using a Combined Experimental and Theoretical Approach.” <i>CHEMISTRY-A EUROPEAN JOURNAL</i> 18 (26): 8120–8129. doi:10.1002/chem.201103633.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">T. De Meyer, K. Hemelsoet, L. Van der Schueren, E. Pauwels, K. De Clerck, and V. Van Speybroeck, “Investigating the halochromic properties of azo dyes in an aqueous environment by using a combined experimental and theoretical approach,” <i>CHEMISTRY-A EUROPEAN JOURNAL</i>, vol. 18, no. 26, pp. 8120–8129, 2012.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Meyer, Thierry, et al. “Investigating the Halochromic Properties of Azo Dyes in an Aqueous Environment by Using a Combined Experimental and Theoretical Approach.” <i>CHEMISTRY-A EUROPEAN JOURNAL</i>, vol. 18, no. 26, 2012, pp. 8120–29, doi:10.1002/chem.201103633.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Meyer T, Hemelsoet K, Van der Schueren L, Pauwels E, De Clerck K, Van Speybroeck V. Investigating the halochromic properties of azo dyes in an aqueous environment by using a combined experimental and theoretical approach. CHEMISTRY-A EUROPEAN JOURNAL. 2012;18(26):8120–9.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F93A4808-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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  biblio_id: F93A4808-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Dewitte
  name: Wim Dewitte
  name_last_first: Dewitte, Wim
  ugent_id:
  - '972352832707'
date_created: 2012-07-24 09:22:05
date_updated: 2026-03-31 14:29:59
doi:
- 10.1002/chem.201103633
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  url: https://biblio.ugent.be/publication/2963923/file/6776416.pdf
handle: http://hdl.handle.net/1854/LU-2963923
issn:
- 0947-6539
issue: '26'
jcr:
  category: CHEMISTRY, MULTIDISCIPLINARY
  category_decile: 2
  category_quartile: 1
  category_rank: 21/150
  category_vigintile: 3
  eigenfactor: 0.1766
  immediacy_index: 1.241
  impact_factor: 5.831
  impact_factor_5yr: 5.623
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 3
  prev_impact_factor: 5.925
  total_cites: 60788
keyword:
- density functional calculations
- pigments
- azo compounds
- dyes
- SOLVATION MODELS
- ELECTRON-DENSITY
- BIOMOLECULAR SYSTEMS
- TD-DFT
- halochromism
- UV
- Vis spectroscopy
- DENSITY-FUNCTIONAL THEORY
- SPACE GAUSSIAN PSEUDOPOTENTIALS
- PH-SENSITIVE FUNCTION
- MOLECULAR-DYNAMICS
- EXCITED-STATES
- TEXTILE MATERIALS
language:
- eng
page:
  first: '8120'
  last: '8129'
parent:
  short_title: Chem.-Eur. J.
  title: CHEMISTRY-A EUROPEAN JOURNAL
project:
- _id: HPC-UGent
  abstract: The central High Performance Computing infrastructure of Ghent University
    is part of the Flemish Supercomputer Center and is built and maintained with the
    support of Ghent University, the Hercules Foundation and the department of Economy,
    Science and Innovation of the Flemish Government. Thanks to this support, use
    of the infrastructure is free of charge for researchers of Ghent University.
  iweto_id: HPC-UGent
  publication_count: 144
  start_date: 01-JAN-08
  title: 'HPC-UGent: the central High Performance Computing infrastructure of Ghent
    University'
  ugent_id:
  - '801001384834'
  - '801001682908'
publication_status: published
publication_status_sort: 2
source:
  record: |
    VR 1.0
    PT J
    AU De Meyer, T
       Hemelsoet, K
       Van der Schueren, L
       Pauwels, E
       De Clerck, K
       Van Speybroeck, V
    AF De Meyer, Thierry
       Hemelsoet, Karen
       Van der Schueren, Lien
       Pauwels, Ewald
       De Clerck, Karen
       Van Speybroeck, Veronique
    TI Investigating the Halochromic Properties of Azo Dyes in an Aqueous
       Environment by Using a Combined Experimental and Theoretical Approach
    SO CHEMISTRY-A EUROPEAN JOURNAL
    LA English
    DT Article
    DE azo compounds; density functional calculations; dyes; pigments;
       halochromism; UV; Vis spectroscopy
    ID DENSITY-FUNCTIONAL THEORY; SPACE GAUSSIAN PSEUDOPOTENTIALS; PH-SENSITIVE
       FUNCTION; MOLECULAR-DYNAMICS; EXCITED-STATES; TD-DFT; BIOMOLECULAR
       SYSTEMS; TEXTILE MATERIALS; ELECTRON-DENSITY; SOLVATION MODELS
    AB The halochromism in solution of a prototypical example of an azo dye, ethyl orange, was investigated by using a combined theoretical and experimental approach. Experimental UV/Vis and Raman spectroscopy pointed towards a structural change of the azo dye with changing pH value (in the range pH 53). The pH-sensitive behavior was modeled through a series of ab initio computations on the neutral and various singly and doubly protonated structures. For this purpose, contemporary DFT functionals (B3LYP, CAM-B3LYP, and M06) were used in combination with implicit modeling of the water solvent environment. Static calculations were successful in assigning the most-probable protonation site. However, to fully understand the origin of the main absorption peaks, a molecular dynamics simulation study in a water molecular environment was used in combination with time-dependent DFT (TD-DFT) calculations to deduce average UV/Vis spectra that take into account the flexibility of the dye and the explicit interactions with the surrounding water molecules. This procedure allowed us to achieve a remarkable agreement between the theoretical and experimental UV/Vis spectrum and enabled us to fully unravel the pH-sensitive behavior of ethyl orange in aqueous environment.
    C1 [De Meyer, Thierry; Hemelsoet, Karen; Pauwels, Ewald; Van Speybroeck, Veronique] Univ Ghent, Ctr Mol Modeling, B-9052 Zwijnaarde, Belgium.
       [De Meyer, Thierry; Van der Schueren, Lien; De Clerck, Karen] Univ Ghent, Dept Text, B-9052 Zwijnaarde, Belgium.
       [De Meyer, Thierry; Hemelsoet, Karen; Pauwels, Ewald; Van Speybroeck, Veronique] QCMM Alliance, Ghent, Belgium.
    RP Van Speybroeck, V (reprint author), Univ Ghent, Ctr Mol Modeling, Technol Pk 903, B-9052 Zwijnaarde, Belgium
    EM Veronique.VanSpeybroeck@ugent.be
    FU Fund for Scientific Research-Flanders (FWO); Research Board of Ghent
       University (BOF)
    FX The Fund for Scientific Research-Flanders (FWO) and the Research Board
       of Ghent University (BOF) are acknowledged for their financial support.
       Computational and experimental resources and services used in this work
       were provided by Ghent University. We wish to thank Dr. Ir. Bart De
       Sterck for fruitful discussions and help with the theoretical
       simulations.
    NR 85
    PU WILEY-V C H VERLAG GMBH
    PI WEINHEIM
    PA BOSCHSTRASSE 12, D-69469 WEINHEIM, GERMANY
    SN 0947-6539
    J9 CHEM-EUR J
    JI Chem.-Eur. J.
    PD JUN
    PY 2012
    VL 18
    IS 26
    BP 8120
    EP 8129
    DI 10.1002/chem.201103633
    PG 10
    WC Chemistry, Multidisciplinary
    SC Chemistry
    GA 960LC
    UT WOS:000305388300021
status: public
subject:
- Chemistry
title: Investigating the halochromic properties of azo dyes in an aqueous environment
  by using a combined experimental and theoretical approach
type: journalArticle
vabb_approved: 0
vabb_id: c:vabb:355768
vabb_type: VABB-1
vabb_year:
- '2014'
volume: '18'
wos_id: '000305388300021'
wos_type: Article
year: '2012'
...
---
_id: '2987299'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_type: original
author:
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- first_name: Stijn
  last_name: Van Hulle
  name: Stijn Van Hulle
  name_last_first: Van Hulle, Stijn
biblio_id: '2987299'
cite:
  apa: |2
      <div class="csl-entry">De Clerck, K., &#38; Van Hulle, S. (2012). Nieuws uit de vakgroep textielkunde: Nanovezels voor waterfiltratie. <i>UNITEX : TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i>, (3), 39–39.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Clerck, Karen, and Stijn Van Hulle. 2012. “Nieuws Uit de Vakgroep Textielkunde: Nanovezels Voor Waterfiltratie.” <i>UNITEX : TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i>, no. 3: 39–39.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, and Stijn Van Hulle. 2012. “Nieuws Uit de Vakgroep Textielkunde: Nanovezels Voor Waterfiltratie.” <i>UNITEX : TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i> (3): 39–39.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck and S. Van Hulle, “Nieuws uit de vakgroep textielkunde: Nanovezels voor waterfiltratie,” <i>UNITEX : TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i>, no. 3, pp. 39–39, 2012.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Clerck, Karen, and Stijn Van Hulle. “Nieuws Uit de Vakgroep Textielkunde: Nanovezels Voor Waterfiltratie.” <i>UNITEX : TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i>, no. 3, 2012, pp. 39–39.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, Van Hulle S. Nieuws uit de vakgroep textielkunde: Nanovezels voor waterfiltratie. UNITEX : TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE. 2012;(3):39–39.</div>
       </div>
classification: A4
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2012-09-14 13:36:51
date_updated: 2026-03-31 14:31:01
external: 0
file:
- _id: '2987313'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: Unitex_2012_-3_nanovezels_voor_waterfiltratie.pdf
  sha256: ab6640d4f720a97f4c57098ac8c6af6dd370b8998d491434721643b383a1728b
  size: '566169'
  thumbnail_url: https://biblio.ugent.be/publication/2987299/file/2987313/thumbnail.png
  url: https://biblio.ugent.be/publication/2987299/file/2987313.pdf
handle: http://hdl.handle.net/1854/LU-2987299
issue: '3'
issue_title: Textiel en Ecologie
language:
- dut
page:
  first: '39'
  last: '39'
parent:
  short_title: UNITEX (Deinze)
  title: 'UNITEX : TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: 'Nieuws uit de vakgroep textielkunde: Nanovezels voor waterfiltratie'
type: journalArticle
year: '2012'
...
---
_id: '3004663'
abstract:
- A spectrophotometric method based on the absorption of Acid Orange 7 dye was studied
  for the detection of differences between fibres from cotton lines designed to produce
  oligochitin in the fibre and their control lines. The Kjeldahl method is used to
  validate the proposed method. A few transgenic lines designed to produce oligochitin
  and their respective controls were screened with the methods to see whether the
  proposed method is capable of accurately detecting the differences in nitrogen levels.
  Also a broad range of dyes from different classes are investigated. Their ability
  to detect differences in reactivity is to be proven using cotton fibres treated
  with different concentrations of a cationic agent. Four dyes of different classes
  and structures which show most promising results are proposed to screen dyeability
  differences between the bioengineered cotton lines.
abstract_full:
- lang: eng
  text: A spectrophotometric method based on the absorption of Acid Orange 7 dye was
    studied for the detection of differences between fibres from cotton lines designed
    to produce oligochitin in the fibre and their control lines. The Kjeldahl method
    is used to validate the proposed method. A few transgenic lines designed to produce
    oligochitin and their respective controls were screened with the methods to see
    whether the proposed method is capable of accurately detecting the differences
    in nitrogen levels. Also a broad range of dyes from different classes are investigated.
    Their ability to detect differences in reactivity is to be proven using cotton
    fibres treated with different concentrations of a cationic agent. Four dyes of
    different classes and structures which show most promising results are proposed
    to screen dyeability differences between the bioengineered cotton lines.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
author:
- _id: FBC58A9C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FBC58A9C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Özgür
  last_name: Ceylan
  name: Özgür Ceylan
  name_last_first: Ceylan, Özgür
  ugent_id:
  - '002005040722'
  - '802000481295'
  - '972618734561'
- _id: F58CB1E6-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F58CB1E6-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lieve
  last_name: Van Landuyt
  name: Lieve Van Landuyt
  name_last_first: Van Landuyt, Lieve
  ugent_id:
  - '801001285006'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '3004663'
cite:
  apa: |2
      <div class="csl-entry">Ceylan, Ö., Van Landuyt, L., &#38; De Clerck, K. (2012). Dye absorption method for the evaluation of novel bioengineered cotton fibres. <i>7th Central European Conference on Fibre-Grade Polymers, Chemical Fibres and Special Textiles, Proceedings</i>, 18–22. Portorož, Slovenia: University of Maribor.</div>
  chicago-author-date: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, and Karen De Clerck. 2012. “Dye Absorption Method for the Evaluation of Novel Bioengineered Cotton Fibres.” In <i>7th Central European Conference on Fibre-Grade Polymers, Chemical Fibres and Special Textiles, Proceedings</i>, 18–22. Portorož, Slovenia: University of Maribor.</div>
  fwo: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, and Karen De Clerck. 2012. “Dye Absorption Method for the Evaluation of Novel Bioengineered Cotton Fibres.” In <i>7th Central European Conference on Fibre-Grade Polymers, Chemical Fibres and Special Textiles, Proceedings</i>, 18–22. Portorož, Slovenia: University of Maribor.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Ö. Ceylan, L. Van Landuyt, and K. De Clerck, “Dye absorption method for the evaluation of novel bioengineered cotton fibres,” in <i>7th Central European Conference on Fibre-Grade Polymers, Chemical Fibres and Special Textiles, Proceedings</i>, Portorož, Slovenia, 2012, pp. 18–22.</div>
      </div>
  mla: |2
      <div class="csl-entry">Ceylan, Özgür, et al. “Dye Absorption Method for the Evaluation of Novel Bioengineered Cotton Fibres.” <i>7th Central European Conference on Fibre-Grade Polymers, Chemical Fibres and Special Textiles, Proceedings</i>, University of Maribor, 2012, pp. 18–22.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Ceylan Ö, Van Landuyt L, De Clerck K. Dye absorption method for the evaluation of novel bioengineered cotton fibres. In: 7th Central European Conference on Fibre-Grade Polymers, Chemical Fibres and Special Textiles, Proceedings. Portorož, Slovenia: University of Maribor; 2012. p. 18–22.</div>
       </div>
classification: C1
conference:
  end_date: 2012-09-17
  location: Portorož, Slovenia
  name: 7th Central European Conference on Fibre-Grade Polymers, Chemical Fibres and
    Special Textiles (CEC - 2012)
  start_date: 2012-09-15
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2012-10-02 16:09:43
date_updated: 2026-03-31 14:31:40
external: 0
file:
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  access: restricted
  content_type: application/pdf
  kind: fullText
  name: CEC_PROCEEDINGS_-_2012_CEYLAN.pdf
  sha256: c63fc9a2deac703145cfae7bb636b3e74c86544c7adc0f1aa4f81e4a518aa4bb
  size: '440589'
  thumbnail_url: https://biblio.ugent.be/publication/3004663/file/3004672/thumbnail.png
  url: https://biblio.ugent.be/publication/3004663/file/3004672.pdf
handle: http://hdl.handle.net/1854/LU-3004663
isbn:
- '9789612483562'
keyword:
- reactivity
- dye absorption
- bioengineered cotton
language:
- eng
page:
  first: '18'
  last: '22'
parent:
  title: 7th Central European Conference on Fibre-Grade Polymers, Chemical Fibres
    and Special Textiles, Proceedings
publication_status: published
publication_status_sort: 2
publisher:
  location: Portorož, Slovenia
  name: University of Maribor
status: public
subject:
- Technology and Engineering
title: Dye absorption method for the evaluation of novel bioengineered cotton fibres
type: conference
year: '2012'
...
---
_id: '3198152'
affiliation:
- name: Department of Applied ecology and environmental biology (ceased 1-1-2018)
  path:
  - ugent_id: UGent
  - ugent_id: LA
  - ugent_id: LA09
  ugent_id: LA09
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_type: original
author:
- _id: F8BCE674-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: CA
    - ugent_id: CA80
    ugent_id: CA80
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA09
    ugent_id: LA09
  biblio_id: F8BCE674-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Michiel
  last_name: Claessens
  name: Michiel Claessens
  name_last_first: Claessens, Michiel
  ugent_id:
  - '002005192080'
  - '802000136745'
- _id: FBC5C354-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA24
    ugent_id: LA24
  biblio_id: FBC5C354-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Steven
  last_name: De Meester
  name: Steven De Meester
  name_last_first: De Meester, Steven
  orcid_id: 0000-0002-5246-3918
  ugent_id:
  - '802000481497'
  - '973680737243'
- _id: F58CB1E6-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F58CB1E6-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lieve
  last_name: Van Landuyt
  name: Lieve Van Landuyt
  name_last_first: Van Landuyt, Lieve
  ugent_id:
  - '801001285006'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F427CAB6-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA22
    ugent_id: LA22
  biblio_id: F427CAB6-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Colin
  last_name: Janssen
  name: Colin Janssen
  name_last_first: Janssen, Colin
  orcid_id: 0000-0002-7781-6679
  ugent_id:
  - '801000577613'
  - '978447509425'
biblio_id: '3198152'
cite:
  apa: |2
      <div class="csl-entry">Claessens, M., De Meester, S., Van Landuyt, L., De Clerck, K., &#38; Janssen, C. (2011). Occurrence and distribution of microplastics in marine sediments along the Belgian coast. <i>MARINE POLLUTION BULLETIN</i>, <i>62</i>(10), 2199–2204. https://doi.org/10.1016/j.marpolbul.2011.06.030</div>
  chicago-author-date: |2
      <div class="csl-entry">Claessens, Michiel, Steven De Meester, Lieve Van Landuyt, Karen De Clerck, and Colin Janssen. 2011. “Occurrence and Distribution of Microplastics in Marine Sediments along the Belgian Coast.” <i>MARINE POLLUTION BULLETIN</i> 62 (10): 2199–2204. https://doi.org/10.1016/j.marpolbul.2011.06.030.</div>
  fwo: |2
      <div class="csl-entry">Claessens, Michiel, Steven De Meester, Lieve Van Landuyt, Karen De Clerck, and Colin Janssen. 2011. “Occurrence and Distribution of Microplastics in Marine Sediments along the Belgian Coast.” <i>MARINE POLLUTION BULLETIN</i> 62 (10): 2199–2204. doi:10.1016/j.marpolbul.2011.06.030.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">M. Claessens, S. De Meester, L. Van Landuyt, K. De Clerck, and C. Janssen, “Occurrence and distribution of microplastics in marine sediments along the Belgian coast,” <i>MARINE POLLUTION BULLETIN</i>, vol. 62, no. 10, pp. 2199–2204, 2011.</div>
      </div>
  mla: |2
      <div class="csl-entry">Claessens, Michiel, et al. “Occurrence and Distribution of Microplastics in Marine Sediments along the Belgian Coast.” <i>MARINE POLLUTION BULLETIN</i>, vol. 62, no. 10, 2011, pp. 2199–204, doi:10.1016/j.marpolbul.2011.06.030.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Claessens M, De Meester S, Van Landuyt L, De Clerck K, Janssen C. Occurrence and distribution of microplastics in marine sediments along the Belgian coast. MARINE POLLUTION BULLETIN. 2011;62(10):2199–204.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F8BCE674-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: CA80
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    - ugent_id: LA09
    ugent_id: LA09
  biblio_id: F8BCE674-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Michiel
  last_name: Claessens
  name: Michiel Claessens
  name_last_first: Claessens, Michiel
  ugent_id:
  - '002005192080'
  - '802000136745'
date_created: 2013-04-22 11:19:12
date_updated: 2026-03-31 13:04:26
doi:
- 10.1016/j.marpolbul.2011.06.030
external: 0
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handle: http://hdl.handle.net/1854/LU-3198152
issn:
- 0025-326X
issue: '10'
jcr:
  category: MARINE & FRESHWATER BIOLOGY
  category_decile: 2
  category_quartile: 1
  category_rank: 14/97
  category_vigintile: 3
  eigenfactor: 0.01934
  immediacy_index: 0.306
  impact_factor: 2.503
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  prev_category_decile: 2
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  prev_category_vigintile: 4
  prev_impact_factor: 2.359
  total_cites: 11511
keyword:
- Belgium
- Microplastics
- Marine debris
- Sediment
- Time trends
- FT-IR spectroscopy
- PLASTIC DEBRIS
- ORGANIC POLLUTANTS
- SEA-TURTLES
- ENVIRONMENT
- POLLUTION
- PARTICLES
- INGESTION
- SCRUBBERS
- BEACHES
language:
- eng
page:
  first: '2199'
  last: '2204'
parent:
  short_title: Mar. Pollut. Bull.
  title: MARINE POLLUTION BULLETIN
publication_status: published
publication_status_sort: 2
status: public
subject:
- Earth and Environmental Sciences
title: Occurrence and distribution of microplastics in marine sediments along the
  Belgian coast
type: journalArticle
volume: '62'
wos_id: '000295954100032'
wos_type: Article
year: '2011'
...
---
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  - ugent_id: TW11
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- name: Department of Textiles (ceased 1-2-2017)
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  - ugent_id: TW
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  ugent_id: TW11*
article_type: original
author:
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  affiliation:
  - name: Ghent University
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    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
  - '002002166892'
  - '802000424715'
- _id: FADF950A-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FADF950A-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Bert
  last_name: De Schoenmaker
  name: Bert De Schoenmaker
  name_last_first: De Schoenmaker, Bert
  ugent_id:
  - '002003264107'
  - '802000214244'
  - '978815731125'
- _id: 23C336CA-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 23C336CA-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Özlem İpek
  last_name: Kalaoglu Altan
  name: Özlem İpek Kalaoglu Altan
  name_last_first: Kalaoglu Altan, Özlem İpek
  ugent_id:
  - '000091814136'
  - '802003037550'
  - '975697430594'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '1228806'
cite:
  apa: |2
      <div class="csl-entry">Van der Schueren, L., De Schoenmaker, B., Kalaoglu Altan, Ö. İ., &#38; De Clerck, K. (2011). An alternative solvent system for the steady state electrospinning of polycaprolactone. <i>EUROPEAN POLYMER JOURNAL</i>, <i>47</i>(6), 1256–1263. https://doi.org/10.1016/j.eurpolymj.2011.02.025</div>
  bof: |2-
      <div class="csl-entry">Van der Schueren, Lien, Bert De Schoenmaker, Özlem İpek Kalaoglu Altan, and Karen De Clerck. 2011. “An Alternative Solvent System for the Steady State Electrospinning of Polycaprolactone.” <i>EUROPEAN POLYMER JOURNAL</i> 47 (6): 1256–1263. doi:10.1016/j.eurpolymj.2011.02.025.</div>
    <div><i>Impact factor: 2.739, category: POLYMER SCIENCE, rank: 17/78, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Van der Schueren, Lien, Bert De Schoenmaker, Özlem İpek Kalaoglu Altan, and Karen De Clerck. 2011. “An Alternative Solvent System for the Steady State Electrospinning of Polycaprolactone.” <i>EUROPEAN POLYMER JOURNAL</i> 47 (6): 1256–63. https://doi.org/10.1016/j.eurpolymj.2011.02.025.</div>
  fwo: |2
      <div class="csl-entry">Van der Schueren, Lien, Bert De Schoenmaker, Özlem İpek Kalaoglu Altan, and Karen De Clerck. 2011. “An Alternative Solvent System for the Steady State Electrospinning of Polycaprolactone.” <i>EUROPEAN POLYMER JOURNAL</i> 47 (6): 1256–1263. doi:10.1016/j.eurpolymj.2011.02.025.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Van der Schueren, B. De Schoenmaker, Ö. İ. Kalaoglu Altan, and K. De Clerck, “An alternative solvent system for the steady state electrospinning of polycaprolactone,” <i>EUROPEAN POLYMER JOURNAL</i>, vol. 47, no. 6, pp. 1256–1263, 2011.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van der Schueren, Lien, et al. “An Alternative Solvent System for the Steady State Electrospinning of Polycaprolactone.” <i>EUROPEAN POLYMER JOURNAL</i>, vol. 47, no. 6, 2011, pp. 1256–63, doi:10.1016/j.eurpolymj.2011.02.025.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van der Schueren L, De Schoenmaker B, Kalaoglu Altan Öİ, De Clerck K. An alternative solvent system for the steady state electrospinning of polycaprolactone. EUROPEAN POLYMER JOURNAL. 2011;47(6):1256–63.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
  - '002002166892'
  - '802000424715'
date_created: 2011-05-20 15:32:45
date_updated: 2026-03-31 07:17:24
doi:
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handle: http://hdl.handle.net/1854/LU-1228806
issn:
- 0014-3057
issue: '6'
jcr:
  category: POLYMER SCIENCE
  category_decile: 3
  category_quartile: 1
  category_rank: 17/78
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  eigenfactor: 0.02698
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  impact_factor: 2.739
  impact_factor_5yr: 3.058
  prev_category_decile: 3
  prev_category_quartile: 1
  prev_category_vigintile: 5
  prev_impact_factor: 2.517
  total_cites: 12391
keyword:
- Steady state
- Polycaprolactone
- Electrospinning
- Nanofibres
- POLYAMIDE-6
- FABRICATION
- FIBERS
- POLY(EPSILON-CAPROLACTONE)
- MORPHOLOGY
- NANOFIBERS
- NONWOVEN MATS
- SCAFFOLDS
- DIAMETER
- N_N-DIMETHYLFORMAMIDE
language:
- eng
page:
  first: '1256'
  last: '1263'
parent:
  short_title: Eur. Polym. J.
  title: EUROPEAN POLYMER JOURNAL
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: An alternative solvent system for the steady state electrospinning of polycaprolactone
type: journalArticle
volume: '47'
wos_id: '000291523600005'
wos_type: Article
year: '2011'
...
---
_id: '1186180'
abstract:
- 'Introduction: Much research has been carried out in the field of chemical modification
  of cotton to improve dyeing properties [1]. Recent advances in biotechnology, especially
  in genetic engineering, offer an alternative route to alter reactivity of cotton
  fibres and thus to reduce the environmental impact and energy consumption of conventional
  cotton processing. However the success of this breakthrough approach is dependent
  on the early selection of new fibre types with the best performance. This requires
  novel tests that use only small amounts of fibre sample due to the very limited
  availability of bioengineered lines. For this purpose, a semi industrial dyeing
  method is extensively studied. The method is validated by a well established technique
  for nitrogen analysis, the Kjehdahl method, using cotton fibres treated with a commercially
  available cationic agent at various concentrations.'
abstract_full:
- lang: eng
  text: 'Introduction: Much research has been carried out in the field of chemical
    modification of cotton to improve dyeing properties [1]. Recent advances in biotechnology,
    especially in genetic engineering, offer an alternative route to alter reactivity
    of cotton fibres and thus to reduce the environmental impact and energy consumption
    of conventional cotton processing. However the success of this breakthrough approach
    is dependent on the early selection of new fibre types with the best performance.
    This requires novel tests that use only small amounts of fibre sample due to the
    very limited availability of bioengineered lines. For this purpose, a semi industrial
    dyeing method is extensively studied. The method is validated by a well established
    technique for nitrogen analysis, the Kjehdahl method, using cotton fibres treated
    with a commercially available cationic agent at various concentrations.'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_number: abstract F.105
author:
- _id: FBC58A9C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FBC58A9C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Özgür
  last_name: Ceylan
  name: Özgür Ceylan
  name_last_first: Ceylan, Özgür
  ugent_id:
  - '002005040722'
  - '802000481295'
  - '972618734561'
- _id: F58CB1E6-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F58CB1E6-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lieve
  last_name: Van Landuyt
  name: Lieve Van Landuyt
  name_last_first: Van Landuyt, Lieve
  ugent_id:
  - '801001285006'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '1186180'
cite:
  apa: |2
      <div class="csl-entry">Ceylan, Ö., Van Landuyt, L., &#38; De Clerck, K. (2011). Small scale dyeing method to evaluate novel bioengineered cotton fibres : a feasibility study. In G. Freddi (Ed.), <i>Polymer and Textile Biotechnology, 7th International conference, Abstracts</i>. Milan, Italy: Stazione Sperimentale per la Seta.</div>
  bof: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, and Karen De Clerck. 2011. “Small Scale Dyeing Method to Evaluate Novel Bioengineered Cotton Fibres : A Feasibility Study.” In <i>Polymer and Textile Biotechnology, 7th International Conference, Abstracts</i>, ed by. Giuliano Freddi. Milan, Italy: Stazione Sperimentale per la Seta.</div>
  chicago-author-date: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, and Karen De Clerck. 2011. “Small Scale Dyeing Method to Evaluate Novel Bioengineered Cotton Fibres : A Feasibility Study.” In <i>Polymer and Textile Biotechnology, 7th International Conference, Abstracts</i>, edited by Giuliano Freddi. Milan, Italy: Stazione Sperimentale per la Seta.</div>
  fwo: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, and Karen De Clerck. 2011. “Small Scale Dyeing Method to Evaluate Novel Bioengineered Cotton Fibres : A Feasibility Study.” In <i>Polymer and Textile Biotechnology, 7th International Conference, Abstracts</i>, ed by. Giuliano Freddi. Milan, Italy: Stazione Sperimentale per la Seta.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Ö. Ceylan, L. Van Landuyt, and K. De Clerck, “Small scale dyeing method to evaluate novel bioengineered cotton fibres : a feasibility study,” in <i>Polymer and Textile Biotechnology, 7th International conference, Abstracts</i>, Milan, Italy, 2011.</div>
      </div>
  mla: |2
      <div class="csl-entry">Ceylan, Özgür, et al. “Small Scale Dyeing Method to Evaluate Novel Bioengineered Cotton Fibres : A Feasibility Study.” <i>Polymer and Textile Biotechnology, 7th International Conference, Abstracts</i>, edited by Giuliano Freddi, Stazione Sperimentale per la Seta, 2011.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Ceylan Ö, Van Landuyt L, De Clerck K. Small scale dyeing method to evaluate novel bioengineered cotton fibres : a feasibility study. In: Freddi G, editor. Polymer and Textile Biotechnology, 7th International conference, Abstracts. Milan, Italy: Stazione Sperimentale per la Seta; 2011.</div>
       </div>
classification: C3
conference:
  end_date: 2011-03-04
  location: Milan, Italy
  name: '7th International conference on Polymer and Textile Biotechnology (IPTB 2011)
    : Gear for the future'
  start_date: 2011-03-02
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2011-03-11 10:59:17
date_updated: 2026-03-31 07:12:59
editor:
- first_name: Giuliano
  last_name: Freddi
  name: Giuliano Freddi
  name_last_first: Freddi, Giuliano
external: 0
file:
- _id: '1186190'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: Small_Scale_Dyeing_Method_to_Evaluate_Novel_Bioengineered_Cotton_Fibres_a_Feasibility_Study.pdf
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handle: http://hdl.handle.net/1854/LU-1186180
jcr: {}
keyword:
- bioengineering
- cotton fibres
- reactivity
language:
- eng
page:
  count: '1'
parent:
  title: Polymer and Textile Biotechnology, 7th International conference, Abstracts
publication_status: published
publication_status_sort: 2
publisher:
  location: Milan, Italy
  name: Stazione Sperimentale per la Seta
status: public
subject:
- Technology and Engineering
title: 'Small scale dyeing method to evaluate novel bioengineered cotton fibres :
  a feasibility study'
type: conference
year: '2011'
...
---
_id: '1186198'
abstract:
- 'Introduction: Protective textiles against insects are an important market, not
  only for applications in tropical areas where vector borne diseases are a major
  threat to public health but also in European countries where the presence of mosquitoes
  can be a nuisance. It is a well known fact that malaria and dengue fever are amongst
  the most killing diseases in the world: 500 million people a year are infected with
  malaria and more than a million people die of the disease, i.e. one person every
  30 seconds, of which 90% are children, and an estimated 100 million cases of dengue
  fever and 250000 cases of dengue hemorrhagic fever occur annually. As a result of
  global warming of the earth, the problem is expanding and is even becoming a threat
  for Europe.'
abstract_full:
- lang: eng
  text: 'Introduction: Protective textiles against insects are an important market,
    not only for applications in tropical areas where vector borne diseases are a
    major threat to public health but also in European countries where the presence
    of mosquitoes can be a nuisance. It is a well known fact that malaria and dengue
    fever are amongst the most killing diseases in the world: 500 million people a
    year are infected with malaria and more than a million people die of the disease,
    i.e. one person every 30 seconds, of which 90% are children, and an estimated
    100 million cases of dengue fever and 250000 cases of dengue hemorrhagic fever
    occur annually. As a result of global warming of the earth, the problem is expanding
    and is even becoming a threat for Europe.'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_number: abstract A.111
author:
- _id: F95E2958-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F95E2958-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Vincent
  last_name: Nierstrasz
  name: Vincent Nierstrasz
  name_last_first: Nierstrasz, Vincent
  ugent_id:
  - '802000230513'
- _id: 15183A6C-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 15183A6C-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lucy Wanjiru
  last_name: Ciera
  name: Lucy Wanjiru Ciera
  name_last_first: Ciera, Lucy Wanjiru
  ugent_id:
  - '000081414120'
  - '802000854848'
  - '975665422618'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
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  biblio_id: F4469E14-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lieva
  last_name: Van Langenhove
  name: Lieva Van Langenhove
  name_last_first: Van Langenhove, Lieva
  orcid_id: 0000-0001-9802-7399
  ugent_id:
  - '801000648543'
  - '972198930382'
biblio_id: '1186198'
cite:
  apa: |2
      <div class="csl-entry">Nierstrasz, V., Ciera, L. W., De Clerck, K., &#38; Van Langenhove, L. (2011). NO BUG : novel release systems and biobased utilities for insect repellent textiles. In G. Freddi (Ed.), <i>Polymer and Textile Biotechnology, 7th International conference, Abstracts</i>. Milan, Italy: Stazione Sperimentale de la Seta.</div>
  bof: |2
      <div class="csl-entry">Nierstrasz, Vincent, Lucy Wanjiru Ciera, Karen De Clerck, and Lieva Van Langenhove. 2011. “NO BUG : Novel Release Systems and Biobased Utilities for Insect Repellent Textiles.” In <i>Polymer and Textile Biotechnology, 7th International Conference, Abstracts</i>, ed by. Giuliano Freddi. Milan, Italy: Stazione Sperimentale de la Seta.</div>
  chicago-author-date: |2
      <div class="csl-entry">Nierstrasz, Vincent, Lucy Wanjiru Ciera, Karen De Clerck, and Lieva Van Langenhove. 2011. “NO BUG : Novel Release Systems and Biobased Utilities for Insect Repellent Textiles.” In <i>Polymer and Textile Biotechnology, 7th International Conference, Abstracts</i>, edited by Giuliano Freddi. Milan, Italy: Stazione Sperimentale de la Seta.</div>
  fwo: |2
      <div class="csl-entry">Nierstrasz, Vincent, Lucy Wanjiru Ciera, Karen De Clerck, and Lieva Van Langenhove. 2011. “NO BUG : Novel Release Systems and Biobased Utilities for Insect Repellent Textiles.” In <i>Polymer and Textile Biotechnology, 7th International Conference, Abstracts</i>, ed by. Giuliano Freddi. Milan, Italy: Stazione Sperimentale de la Seta.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">V. Nierstrasz, L. W. Ciera, K. De Clerck, and L. Van Langenhove, “NO BUG : novel release systems and biobased utilities for insect repellent textiles,” in <i>Polymer and Textile Biotechnology, 7th International conference, Abstracts</i>, Milan, Italy, 2011.</div>
      </div>
  mla: |2
      <div class="csl-entry">Nierstrasz, Vincent, et al. “NO BUG : Novel Release Systems and Biobased Utilities for Insect Repellent Textiles.” <i>Polymer and Textile Biotechnology, 7th International Conference, Abstracts</i>, edited by Giuliano Freddi, Stazione Sperimentale de la Seta, 2011.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Nierstrasz V, Ciera LW, De Clerck K, Van Langenhove L. NO BUG : novel release systems and biobased utilities for insect repellent textiles. In: Freddi G, editor. Polymer and Textile Biotechnology, 7th International conference, Abstracts. Milan, Italy: Stazione Sperimentale de la Seta; 2011.</div>
       </div>
classification: C3
conference:
  end_date: 2011-03-04
  location: Milan, Italy
  name: '7th International conference on Polymer and Textile Biotechnology (IPTB 2011)
    : Gear for the future'
  start_date: 2011-03-02
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
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    ugent_id: EB21
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  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2011-03-11 11:07:08
date_updated: 2026-03-31 07:12:59
editor:
- first_name: Giuliano
  last_name: Freddi
  name: Giuliano Freddi
  name_last_first: Freddi, Giuliano
external: 0
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handle: http://hdl.handle.net/1854/LU-1186198
jcr: {}
keyword:
- textile bio-aggregates
- malaria
- mosquito repellent textiles
- biomimetics
- protective textile
- dengue
language:
- eng
parent:
  title: Polymer and Textile Biotechnology, 7th International conference, Abstracts
project:
- _id: 41U00109
  abstract: '<p>In several applications of professional textiles and clothes mosquito
    repellency is an important issue. Two major problems arise: repellents currently
    in use are harmful, resistance to concentional repellents increases, and the lifetime
    of release systems is too short. <br /><br />Solving these two problems are the
    maing goals of the NO BUG project. Novel biorepellents will be considered and
    evaluated as well as two release systems (multilayer coating and textile bioaggregates)
    in order to repel mosquitoes causing malaria or dengue. Novel release concepts
    are multilayercoatings and in situ release of the active compounds. Targeted prototypes
    are tectilles for health workers and bed nets (mosquitoes). The project will study
    what are the best doncitions of use of the biorepellents and how to integrate
    them in the textile products. Testing, exploitation and dissemination will be
    an active part of the work.</p>'
  end_date: 2013-10-14
  eu_acronym: NO BUG
  eu_call_id: FP7-NMP-2008-SME-2
  eu_framework_programme: FP7
  eu_id: '228639'
  gismo_id: e4dcf902-3697-4547-b327-0a25ca337730
  iweto_id: 41U00109
  publication_count: 4
  start_date: 2009-10-15
  title: NO BUG - Novel Release System and Bio-Based Utilities for Insect Repellent
    Textiles and Garments
publication_status: published
publication_status_sort: 2
publisher:
  location: Milan, Italy
  name: Stazione Sperimentale de la Seta
status: public
subject:
- Technology and Engineering
title: 'NO BUG : novel release systems and biobased utilities for insect repellent
  textiles'
type: conference
year: '2011'
...
---
_id: '1196807'
abstract:
- "This research work is part of the FP7 No-Bug project (Novel release system and
  biobased utilities for insect repellent textiles). The main interest of the project
  is personal protective textiles against insects (mosquitoes) for application not
  only in tropical areas where vector borne diseases are a major threat to the public
  health but also in European countries where the presence of mosquitoes can be nuisance.
  Malaria and dengue fever are well known diseases that cause a lot of deaths in the\r\nworld
  today."
abstract_full:
- lang: eng
  text: "This research work is part of the FP7 No-Bug project (Novel release system
    and biobased utilities for insect repellent textiles). The main interest of the
    project is personal protective textiles against insects (mosquitoes) for application
    not only in tropical areas where vector borne diseases are a major threat to the
    public health but also in European countries where the presence of mosquitoes
    can be nuisance. Malaria and dengue fever are well known diseases that cause a
    lot of deaths in the\r\nworld today."
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    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 15183A6C-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lucy Wanjiru
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  name: Lucy Wanjiru Ciera
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    ugent_id: TW11
  biblio_id: F95E2958-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Vincent
  last_name: Nierstrasz
  name: Vincent Nierstrasz
  name_last_first: Nierstrasz, Vincent
  ugent_id:
  - '802000230513'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
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  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
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    - ugent_id: TW18
    ugent_id: TW18
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  first_name: Lieva
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  orcid_id: 0000-0001-9802-7399
  ugent_id:
  - '801000648543'
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biblio_id: '1196807'
cite:
  apa: |2
      <div class="csl-entry">Ciera, L. W., Nierstrasz, V., De Clerck, K., &#38; Van Langenhove, L. (2011). NO BUG: biobased mosquitoes repellent textiles. In F. Branda (Ed.), <i>Training school “Synthesis of hybrid organic-inorganic nanoparticles for innovative nanostructural composites”, Abstracts</i>.</div>
  bof: |2
      <div class="csl-entry">Ciera, Lucy Wanjiru, Vincent Nierstrasz, Karen De Clerck, and Lieva Van Langenhove. 2011. “NO BUG: Biobased Mosquitoes Repellent Textiles.” In <i>Training School “Synthesis of Hybrid Organic-Inorganic Nanoparticles for Innovative Nanostructural Composites”, Abstracts</i>, ed by. Francesco Branda.</div>
  chicago-author-date: |2
      <div class="csl-entry">Ciera, Lucy Wanjiru, Vincent Nierstrasz, Karen De Clerck, and Lieva Van Langenhove. 2011. “NO BUG: Biobased Mosquitoes Repellent Textiles.” In <i>Training School “Synthesis of Hybrid Organic-Inorganic Nanoparticles for Innovative Nanostructural Composites”, Abstracts</i>, edited by Francesco Branda.</div>
  fwo: |2
      <div class="csl-entry">Ciera, Lucy Wanjiru, Vincent Nierstrasz, Karen De Clerck, and Lieva Van Langenhove. 2011. “NO BUG: Biobased Mosquitoes Repellent Textiles.” In <i>Training School “Synthesis of Hybrid Organic-Inorganic Nanoparticles for Innovative Nanostructural Composites”, Abstracts</i>, ed by. Francesco Branda.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. W. Ciera, V. Nierstrasz, K. De Clerck, and L. Van Langenhove, “NO BUG: biobased mosquitoes repellent textiles,” in <i>Training school “Synthesis of hybrid organic-inorganic nanoparticles for innovative nanostructural composites”, Abstracts</i>, Naples, Italy, 2011.</div>
      </div>
  mla: |2
      <div class="csl-entry">Ciera, Lucy Wanjiru, et al. “NO BUG: Biobased Mosquitoes Repellent Textiles.” <i>Training School “Synthesis of Hybrid Organic-Inorganic Nanoparticles for Innovative Nanostructural Composites”, Abstracts</i>, edited by Francesco Branda, 2011.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Ciera LW, Nierstrasz V, De Clerck K, Van Langenhove L. NO BUG: biobased mosquitoes repellent textiles. In: Branda F, editor. Training school “Synthesis of hybrid organic-inorganic nanoparticles for innovative nanostructural composites”, Abstracts. 2011.</div>
       </div>
classification: C3
conference:
  end_date: 2011-03-02
  location: Naples, Italy
  name: Training school 'Synthesis of hybrid organic-inorganic nanoparticles for innovative
    nanostructural composites'
  start_date: 2011-02-28
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
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  first_name: Martine
  last_name: Van Den Abbeele
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  name_last_first: Van Den Abbeele, Martine
  ugent_id:
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date_created: 2011-03-25 10:50:23
date_updated: 2026-03-31 07:14:08
editor:
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  last_name: Branda
  name: Francesco Branda
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handle: http://hdl.handle.net/1854/LU-1196807
jcr: {}
language:
- eng
parent:
  title: Training school 'Synthesis of hybrid organic-inorganic nanoparticles for
    innovative nanostructural composites', Abstracts
project:
- _id: 41U00109
  abstract: '<p>In several applications of professional textiles and clothes mosquito
    repellency is an important issue. Two major problems arise: repellents currently
    in use are harmful, resistance to concentional repellents increases, and the lifetime
    of release systems is too short. <br /><br />Solving these two problems are the
    maing goals of the NO BUG project. Novel biorepellents will be considered and
    evaluated as well as two release systems (multilayer coating and textile bioaggregates)
    in order to repel mosquitoes causing malaria or dengue. Novel release concepts
    are multilayercoatings and in situ release of the active compounds. Targeted prototypes
    are tectilles for health workers and bed nets (mosquitoes). The project will study
    what are the best doncitions of use of the biorepellents and how to integrate
    them in the textile products. Testing, exploitation and dissemination will be
    an active part of the work.</p>'
  end_date: 2013-10-14
  eu_acronym: NO BUG
  eu_call_id: FP7-NMP-2008-SME-2
  eu_framework_programme: FP7
  eu_id: '228639'
  gismo_id: e4dcf902-3697-4547-b327-0a25ca337730
  iweto_id: 41U00109
  publication_count: 4
  start_date: 2009-10-15
  title: NO BUG - Novel Release System and Bio-Based Utilities for Insect Repellent
    Textiles and Garments
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: 'NO BUG: biobased mosquitoes repellent textiles'
type: conference
year: '2011'
...
---
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  last_name: Westbroek
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  ugent_id:
  - '801000947425'
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biblio_id: '1196829'
cite:
  apa: |2
      <div class="csl-entry">De Schoenmaker, B., Van der Schueren, L., De Vrieze, S., Westbroek, P., &#38; De Clerck, K. (2011). Wicking properties of various polyamide nanofibrous structures with an optimized method. <i>JOURNAL OF APPLIED POLYMER SCIENCE</i>, <i>120</i>(1), 305–310. https://doi.org/10.1002/app.33117</div>
  bof: |2-
      <div class="csl-entry">De Schoenmaker, Bert, Lien Van der Schueren, Sander De Vrieze, Philippe Westbroek, and Karen De Clerck. 2011. “Wicking Properties of Various Polyamide Nanofibrous Structures with an Optimized Method.” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i> 120 (1): 305–310. doi:10.1002/app.33117.</div>
    <div><i>Impact factor: 1.289, category: POLYMER SCIENCE, rank: 40/78, quartile: 3.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">De Schoenmaker, Bert, Lien Van der Schueren, Sander De Vrieze, Philippe Westbroek, and Karen De Clerck. 2011. “Wicking Properties of Various Polyamide Nanofibrous Structures with an Optimized Method.” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i> 120 (1): 305–10. https://doi.org/10.1002/app.33117.</div>
  fwo: |2
      <div class="csl-entry">De Schoenmaker, Bert, Lien Van der Schueren, Sander De Vrieze, Philippe Westbroek, and Karen De Clerck. 2011. “Wicking Properties of Various Polyamide Nanofibrous Structures with an Optimized Method.” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i> 120 (1): 305–310. doi:10.1002/app.33117.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. De Schoenmaker, L. Van der Schueren, S. De Vrieze, P. Westbroek, and K. De Clerck, “Wicking properties of various polyamide nanofibrous structures with an optimized method,” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i>, vol. 120, no. 1, pp. 305–310, 2011.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Schoenmaker, Bert, et al. “Wicking Properties of Various Polyamide Nanofibrous Structures with an Optimized Method.” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i>, vol. 120, no. 1, 2011, pp. 305–10, doi:10.1002/app.33117.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Schoenmaker B, Van der Schueren L, De Vrieze S, Westbroek P, De Clerck K. Wicking properties of various polyamide nanofibrous structures with an optimized method. JOURNAL OF APPLIED POLYMER SCIENCE. 2011;120(1):305–10.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
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  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2011-03-25 11:03:18
date_updated: 2026-03-31 07:14:08
doi:
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handle: http://hdl.handle.net/1854/LU-1196829
issn:
- 0021-8995
issue: '1'
jcr:
  category: POLYMER SCIENCE
  category_decile: 6
  category_quartile: 3
  category_rank: 40/78
  category_vigintile: 11
  eigenfactor: 0.05717
  immediacy_index: 0.218
  impact_factor: 1.289
  impact_factor_5yr: 1.413
  prev_category_decile: 5
  prev_category_quartile: 2
  prev_category_vigintile: 10
  prev_impact_factor: 1.24
  total_cites: 38490
keyword:
- polyamides
- wicking behavior
- nanofiber
- membranes
- BIOMEDICAL APPLICATIONS
- ELECTROSPUN
language:
- eng
page:
  first: '305'
  last: '310'
parent:
  short_title: J. Appl. Polym. Sci.
  title: JOURNAL OF APPLIED POLYMER SCIENCE
publication_status: published
publication_status_sort: 2
source:
  record: |
    FN ISI Export Format
    VR 1.0
    PT J
    AU De Schoenmaker, B
       Van der Schueren, L
       De Vrieze, S
       Westbroek, P
       De Clerck, K
    AF De Schoenmaker, Bert
       Van der Schueren, Lien
       De Vrieze, Sander
       Westbroek, Philippe
       De Clerck, Karen
    TI Wicking Properties of Various Polyamide Nanofibrous Structures with an
       Optimized Method
    SO JOURNAL OF APPLIED POLYMER SCIENCE
    LA English
    DT Article
    DE membranes; nanofiber; polyamides; wicking behavior
    ID BIOMEDICAL APPLICATIONS; ELECTROSPUN
    AB In comparison with conventional structures, nanofibrous structures have
       unique characteristics, such as higher surface-to-volume ratios,
       smaller pores, and higher porosity. Their hydrophilic nature is a key
       characteristic for many applications. However, because of their high
       porosity, it is difficult to measure the hydrophilicity of nanofibrous
       structures with contact-angle measurements. Therefore, characterization
       through wicking behavior is more appropriate. The International
       Organization for Standardization norm on wicking needs some refining to
       account for the specific nature of highly porous nanofibrous
       structures. A refined method was used on several structures that
       differed in the fiber diameter and the polyamide type. The structures
       with the thickest nanofibers had the highest wicking rates. At
       equilibrium, the wicking heights of structures of different polyamide
       types with the same average fiber diameter followed the trend expected
       from their intrinsic hydrophilicity. In the initial phase, the
       capillary forces established the wicking behavior. Later in the
       process, the wicking behavior was determined by the capillary forces
       and the hydrophilicity. In conclusion, the hydrophilicity of
       nanofibrous structures can be successfully determined by an optimized
       wicking procedure, and the fiber diameter is the dominant parameter for
       the resulting wicking height at equilibrium. (C) 2010 Wiley
       Periodicals, Inc. J Appl Polym Sci 120: 305-310, 2011
    C1 [De Schoenmaker, Bert; Van der Schueren, Lien; De Vrieze, Sander; Westbroek, Philippe; De Clerck, Karen] Univ Ghent, Dept Text, B-9052 Ghent, Belgium.
    RP De Clerck, K, Univ Ghent, Dept Text, Technol Pk 907, B-9052 Ghent,
       Belgium.
    EM karen.declerck@ugent.be
    NR 18
    PU JOHN WILEY & SONS INC
    PI HOBOKEN
    PA 111 RIVER ST, HOBOKEN, NJ 07030 USA
    SN 0021-8995
    J9 J APPL POLYM SCI
    JI J. Appl. Polym. Sci.
    PD APR 5
    PY 2011
    VL 120
    IS 1
    BP 305
    EP 310
    DI 10.1002/app.33117
    PG 6
    SC Polymer Science
    GA 719OV
    UT ISI:000287215200035
status: public
subject:
- Technology and Engineering
title: Wicking properties of various polyamide nanofibrous structures with an optimized
  method
type: journalArticle
volume: '120'
wos_id: '000287215200035'
wos_type: Article
year: '2011'
...
---
_id: '1196836'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_type: original
author:
- _id: F873DBBE-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F873DBBE-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Sander
  last_name: De Vrieze
  name: Sander De Vrieze
  name_last_first: De Vrieze, Sander
  ugent_id:
  - '802000062074'
  - '002001065843'
- _id: FADF950A-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FADF950A-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Bert
  last_name: De Schoenmaker
  name: Bert De Schoenmaker
  name_last_first: De Schoenmaker, Bert
  ugent_id:
  - '002003264107'
  - '802000214244'
  - '978815731125'
- _id: FBC58A9C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FBC58A9C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Özgür
  last_name: Ceylan
  name: Özgür Ceylan
  name_last_first: Ceylan, Özgür
  ugent_id:
  - '002005040722'
  - '802000481295'
  - '972618734561'
- _id: 09B408E0-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 09B408E0-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Jara
  last_name: Depuydt
  name: Jara Depuydt
  name_last_first: Depuydt, Jara
  ugent_id:
  - '002004078196'
- _id: F58CB1E6-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F58CB1E6-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lieve
  last_name: Van Landuyt
  name: Lieve Van Landuyt
  name_last_first: Van Landuyt, Lieve
  ugent_id:
  - '801001285006'
- first_name: Hubert
  last_name: Rahier
  name: Hubert Rahier
  name_last_first: Rahier, Hubert
- first_name: Guy
  last_name: Van Assche
  name: Guy Van Assche
  name_last_first: Van Assche, Guy
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '1196836'
cite:
  apa: |2
      <div class="csl-entry">De Vrieze, S., De Schoenmaker, B., Ceylan, Ö., Depuydt, J., Van Landuyt, L., Rahier, H., … De Clerck, K. (2011). Morphologic study of steady state electrospun polyamide 6 nanofibres. <i>JOURNAL OF APPLIED POLYMER SCIENCE</i>, <i>119</i>(5), 2984–2990. https://doi.org/10.1002/app.33036</div>
  bof: |2-
      <div class="csl-entry">De Vrieze, Sander, Bert De Schoenmaker, Özgür Ceylan, Jara Depuydt, Lieve Van Landuyt, Hubert Rahier, Guy Van Assche, and Karen De Clerck. 2011. “Morphologic Study of Steady State Electrospun Polyamide 6 Nanofibres.” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i> 119 (5): 2984–2990. doi:10.1002/app.33036.</div>
    <div><i>Impact factor: 1.289, category: POLYMER SCIENCE, rank: 40/78, quartile: 3.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">De Vrieze, Sander, Bert De Schoenmaker, Özgür Ceylan, Jara Depuydt, Lieve Van Landuyt, Hubert Rahier, Guy Van Assche, and Karen De Clerck. 2011. “Morphologic Study of Steady State Electrospun Polyamide 6 Nanofibres.” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i> 119 (5): 2984–90. https://doi.org/10.1002/app.33036.</div>
  fwo: |2
      <div class="csl-entry">De Vrieze, Sander, Bert De Schoenmaker, Özgür Ceylan, Jara Depuydt, Lieve Van Landuyt, Hubert Rahier, Guy Van Assche, and Karen De Clerck. 2011. “Morphologic Study of Steady State Electrospun Polyamide 6 Nanofibres.” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i> 119 (5): 2984–2990. doi:10.1002/app.33036.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. De Vrieze <i>et al.</i>, “Morphologic study of steady state electrospun polyamide 6 nanofibres,” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i>, vol. 119, no. 5, pp. 2984–2990, 2011.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Vrieze, Sander, et al. “Morphologic Study of Steady State Electrospun Polyamide 6 Nanofibres.” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i>, vol. 119, no. 5, 2011, pp. 2984–90, doi:10.1002/app.33036.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Vrieze S, De Schoenmaker B, Ceylan Ö, Depuydt J, Van Landuyt L, Rahier H, et al. Morphologic study of steady state electrospun polyamide 6 nanofibres. JOURNAL OF APPLIED POLYMER SCIENCE. 2011;119(5):2984–90.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2011-03-25 11:03:18
date_updated: 2026-03-31 07:14:08
doi:
- 10.1002/app.33036
external: 0
file:
- _id: '1196846'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: WoS_PA6.pdf
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  size: '252126'
  thumbnail_url: https://biblio.ugent.be/publication/1196836/file/1196846/thumbnail.png
  url: https://biblio.ugent.be/publication/1196836/file/1196846.pdf
handle: http://hdl.handle.net/1854/LU-1196836
issn:
- 0021-8995
issue: '5'
jcr:
  category: POLYMER SCIENCE
  category_decile: 6
  category_quartile: 3
  category_rank: 40/78
  category_vigintile: 11
  eigenfactor: 0.05717
  immediacy_index: 0.218
  impact_factor: 1.289
  impact_factor_5yr: 1.413
  prev_category_decile: 5
  prev_category_quartile: 2
  prev_category_vigintile: 10
  prev_impact_factor: 1.24
  total_cites: 38490
keyword:
- ACETIC-ACID
- SOLVENT
- MOISTURE
- PARAMETERS
- WATER
- electrospinning
- polyamide
- steady state
language:
- eng
page:
  first: '2984'
  last: '2990'
parent:
  short_title: J. Appl. Polym. Sci.
  title: JOURNAL OF APPLIED POLYMER SCIENCE
publication_status: published
publication_status_sort: 2
source:
  record: |
    PT J
    AU De Vrieze, S
       De Schoenmaker, B
       Ceylan, O
       Depuydt, J
       Van Landuyt, L
       Rahier, H
       Van Assche, G
       De Clerck, K
    AF De Vrieze, Sander
       De Schoenmaker, Bert
       Ceylan, Oezguer
       Depuydt, Jara
       Van Landuyt, Lieve
       Rahier, Hubert
       Van Assche, Guy
       De Clerck, Karen
    TI Morphologic Study of Steady State Electrospun Polyamide 6 Nanofibres
    SO JOURNAL OF APPLIED POLYMER SCIENCE
    LA English
    DT Article
    DE electrospinning; steady state; polyamide
    ID ACETIC-ACID; PARAMETERS; MOISTURE; SOLVENT; WATER
    AB Electrospinning is a process to generate a nanofibrous material.
       Although the working principle of electrospinning is rather straight
       forward, it is influenced by many parameters. There is still a serious
       lack of knowledge concerning the influence of the ambient parameters,
       for which preliminary knowledge reveals that the relative humidity is
       of primary importance. This article reports the influence of the
       relative humidity on electrospun polyamide 6 nanofibres. Mixtures of
       formic acid and acetic acid are used for steady state electrospinning
       of polyamide 6 nanofibres, for which a steady state table is
       determined. When the relative humidity increases, the average fiber
       diameter decreases and the fraction of the less stable c-phase crystals
       in the polyamide diminishes. This effect is explained by absorbed water
       acting as a plasticizer, reducing the Tg of the polyamide. This article
       shows the importance of working in climatized conditions during
       electrospinning to obtain reproducible nanofibres. (C) 2010 Wiley
       Periodicals, Inc. J Appl Polym Sci 119: 2984-2990, 2011
    C1 [De Vrieze, Sander; De Schoenmaker, Bert; Ceylan, Oezguer; Depuydt, Jara; Van Landuyt, Lieve; De Clerck, Karen] Univ Ghent, Dept Text, B-9052 Ghent, Belgium.
       [Rahier, Hubert; Van Assche, Guy] Vrije Univ Brussel, Dept Phys Chem & Polymer Sci, B-1050 Brussels, Belgium.
    RP De Vrieze, S, Univ Ghent, Dept Text, Technol Pk 907, B-9052 Ghent,
       Belgium.
    EM sander.devrieze@UGent.be
    NR 25
    PU JOHN WILEY & SONS INC
    PI HOBOKEN
    PA 111 RIVER ST, HOBOKEN, NJ 07030 USA
    SN 0021-8995
    J9 J APPL POLYM SCI
    JI J. Appl. Polym. Sci.
    PD MAR 5
    PY 2011
    VL 119
    IS 5
    BP 2984
    EP 2990
    DI 10.1002/app.33036
    PG 7
    SC Polymer Science
    GA 694PP
    UT ISI:000285310400059
status: public
subject:
- Science General
title: Morphologic study of steady state electrospun polyamide 6 nanofibres
type: journalArticle
volume: '119'
wos_id: '000285310400059'
wos_type: Article
year: '2011'
...
---
_id: '1897078'
abstract:
- Halochromic (or pH-sensitive) textile materials can give an indication of the pH
  of the surrounding environment by a visible colour change and can therefore act
  as first signal systems. A possible application of this textile pH-sensor can be
  found in wound dressings. In addition to the use of traditional textile materials
  such as cotton gauze, nanofibrous nonwovens may provide benefits in medical applications.
  This paper discusses the development of pH-sensitive cotton fabrics by the combination
  of standard pH-indicator dyes with standard dyeing processes. Also halochromic polyamide
  nanofibres were produced by adding the pH-indicator dyes to the polymer solution.
  Both approaches were found to be promising. After the immobilization of the dye
  on a textile structure, still a clearly visible colour change was present for most
  of the dye-textile systems. It should however be noted that the behaviour of the
  pH-indicator dye was dependent on the medium in which it is incorporated.
abstract_full:
- lang: eng
  text: Halochromic (or pH-sensitive) textile materials can give an indication of
    the pH of the surrounding environment by a visible colour change and can therefore
    act as first signal systems. A possible application of this textile pH-sensor
    can be found in wound dressings. In addition to the use of traditional textile
    materials such as cotton gauze, nanofibrous nonwovens may provide benefits in
    medical applications. This paper discusses the development of pH-sensitive cotton
    fabrics by the combination of standard pH-indicator dyes with standard dyeing
    processes. Also halochromic polyamide nanofibres were produced by adding the pH-indicator
    dyes to the polymer solution. Both approaches were found to be promising. After
    the immobilization of the dye on a textile structure, still a clearly visible
    colour change was present for most of the dye-textile systems. It should however
    be noted that the behaviour of the pH-indicator dye was dependent on the medium
    in which it is incorporated.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
author:
- _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
  - '002002166892'
  - '802000424715'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '1897078'
cite:
  apa: |2
      <div class="csl-entry">Van der Schueren, L., &#38; De Clerck, K. (2011). pH-sensitive textile materials as innovative wound dressings. <i>International Conference on Fibrous Products in Medical and Health Care, Proceedings</i>, 1–5. Tampere, Finland: Tampere University of Technology.</div>
  bof: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2011. “PH-Sensitive Textile Materials as Innovative Wound Dressings.” In <i>International Conference on Fibrous Products in Medical and Health Care, Proceedings</i>, 1–5. Tampere, Finland: Tampere University of Technology.</div>
  chicago-author-date: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2011. “PH-Sensitive Textile Materials as Innovative Wound Dressings.” In <i>International Conference on Fibrous Products in Medical and Health Care, Proceedings</i>, 1–5. Tampere, Finland: Tampere University of Technology.</div>
  fwo: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2011. “PH-Sensitive Textile Materials as Innovative Wound Dressings.” In <i>International Conference on Fibrous Products in Medical and Health Care, Proceedings</i>, 1–5. Tampere, Finland: Tampere University of Technology.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Van der Schueren and K. De Clerck, “pH-sensitive textile materials as innovative wound dressings,” in <i>International conference on fibrous products in medical and health care, Proceedings</i>, Tampere, Finland, 2011, pp. 1–5.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. “PH-Sensitive Textile Materials as Innovative Wound Dressings.” <i>International Conference on Fibrous Products in Medical and Health Care, Proceedings</i>, Tampere University of Technology, 2011, pp. 1–5.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van der Schueren L, De Clerck K. pH-sensitive textile materials as innovative wound dressings. In: International conference on fibrous products in medical and health care, Proceedings. Tampere, Finland: Tampere University of Technology; 2011. p. 1–5.</div>
       </div>
classification: C1
conference:
  end_date: 2011-06-30
  location: Tampere, Finland
  name: International Conference on Fibrous Products in Medical and Health Care (FiberMed11)
  start_date: 2011-06-28
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2011-09-02 15:11:11
date_updated: 2026-03-31 07:38:25
external: 0
file:
- _id: '1897081'
  access: open
  content_type: application/pdf
  kind: fullText
  name: Fibermed11_voorblad_proceedings.pdf
  sha256: 316905c2f8ac6b0cad3692eba12dd6d9ae0fb92a29fc28bfb342c3f91c8ab7c1
  size: '49479'
  thumbnail_url: https://biblio.ugent.be/publication/1897078/file/1897081/thumbnail.png
  url: https://biblio.ugent.be/publication/1897078/file/1897081.pdf
- _id: '1897082'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: VanderSchueren_paper.pdf
  sha256: b57d0f2f078dcd9c9f748f78e0e5ba68d8e7f3f33488decc6746edbce71da1a0
  size: '384450'
  thumbnail_url: https://biblio.ugent.be/publication/1897078/file/1897082/thumbnail.png
  url: https://biblio.ugent.be/publication/1897078/file/1897082.pdf
handle: http://hdl.handle.net/1854/LU-1897078
jcr: {}
language:
- eng
page:
  first: '1'
  last: '5'
parent:
  title: International conference on fibrous products in medical and health care,
    Proceedings
publication_status: published
publication_status_sort: 2
publisher:
  location: Tampere, Finland
  name: Tampere University of Technology
status: public
subject:
- Technology and Engineering
title: pH-sensitive textile materials as innovative wound dressings
type: conference
year: '2011'
...
---
_id: '1897083'
abstract:
- Nowadays, water is often disinfected with biocides which can result in the formation
  of harmful by-products. Therefore new developments in water treatment are needed.
  One of such new developments is presented in this study. Nanofiber membranes produced
  by the electrospinning technique offer great potential in water filtration. Nanofiber
  structures have a small pore size, a large specific surface area and interconnected
  open pore structure which makes them appropriate for water filtration. However,
  the pathogen removal efficiency is not yet satisfactory. To improve this, disinfectants
  as a functional agent on nanofiber membranes were used in this study. The pathogen
  removal of the functionalized membranes was evaluated with wastewater from a general
  hospital with ca. 107 culturable organisms per 100 ml before filtration. Pathogen
  removal of about 4 to 5,5 log10 is possible with selected biocides. This is higher
  than a nanofibers membrane without disinfectant, which gives a removal of 2 log10
  and commercial membranes with a removal of 3 to 4 log10. In addition to this, the
  biocides stay immobilized inside the membrane and only a limited fraction (10%)
  leaches into the water.
abstract_full:
- lang: eng
  text: Nowadays, water is often disinfected with biocides which can result in the
    formation of harmful by-products. Therefore new developments in water treatment
    are needed. One of such new developments is presented in this study. Nanofiber
    membranes produced by the electrospinning technique offer great potential in water
    filtration. Nanofiber structures have a small pore size, a large specific surface
    area and interconnected open pore structure which makes them appropriate for water
    filtration. However, the pathogen removal efficiency is not yet satisfactory.
    To improve this, disinfectants as a functional agent on nanofiber membranes were
    used in this study. The pathogen removal of the functionalized membranes was evaluated
    with wastewater from a general hospital with ca. 107 culturable organisms per
    100 ml before filtration. Pathogen removal of about 4 to 5,5 log10 is possible
    with selected biocides. This is higher than a nanofibers membrane without disinfectant,
    which gives a removal of 2 log10 and commercial membranes with a removal of 3
    to 4 log10. In addition to this, the biocides stay immobilized inside the membrane
    and only a limited fraction (10%) leaches into the water.
affiliation:
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  first_name: Annelies
  last_name: Goethals
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  first_name: Karen
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  orcid_id: 0000-0002-5650-3075
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  - '801000947425'
  - '976215851340'
- first_name: N
  last_name: Daels
  name: N Daels
  name_last_first: Daels, N
- first_name: I
  last_name: Scampers
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  first_name: Stijn
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  - '801001539933'
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biblio_id: '1897083'
cite:
  apa: |2
      <div class="csl-entry">Goethals, A., De Clerck, K., Daels, N., Scampers, I., &#38; Van Hulle, S. (2011). Functionalized nanofiber membranes for disinfection of water. <i>FiberMed11 : International Conference on Fibrous Products in Medical and Health Care</i>. Presented at the International conference on Fibrous Products in Medical and Health Care (FiberMed-11), Tampere, Finland.</div>
  bof: |2
      <div class="csl-entry">Goethals, Annelies, Karen De Clerck, N Daels, I Scampers, and Stijn Van Hulle. 2011. “Functionalized Nanofiber Membranes for Disinfection of Water.” In <i>FiberMed11 : International Conference on Fibrous Products in Medical and Health Care</i>. Tampere, Finland: Tampere University of Technology.</div>
  chicago-author-date: |2
      <div class="csl-entry">Goethals, Annelies, Karen De Clerck, N Daels, I Scampers, and Stijn Van Hulle. 2011. “Functionalized Nanofiber Membranes for Disinfection of Water.” In <i>FiberMed11 : International Conference on Fibrous Products in Medical and Health Care</i>. Tampere, Finland: Tampere University of Technology.</div>
  fwo: |2
      <div class="csl-entry">Goethals, Annelies, Karen De Clerck, N Daels, I Scampers, and Stijn Van Hulle. 2011. “Functionalized Nanofiber Membranes for Disinfection of Water.” In <i>FiberMed11 : International Conference on Fibrous Products in Medical and Health Care</i>. Tampere, Finland: Tampere University of Technology.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">A. Goethals, K. De Clerck, N. Daels, I. Scampers, and S. Van Hulle, “Functionalized nanofiber membranes for disinfection of water,” in <i>FiberMed11 : international conference on fibrous products in medical and health care</i>, Tampere, Finland, 2011.</div>
      </div>
  mla: |2
      <div class="csl-entry">Goethals, Annelies, et al. “Functionalized Nanofiber Membranes for Disinfection of Water.” <i>FiberMed11 : International Conference on Fibrous Products in Medical and Health Care</i>, Tampere University of Technology, 2011.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Goethals A, De Clerck K, Daels N, Scampers I, Van Hulle S. Functionalized nanofiber membranes for disinfection of water. In: FiberMed11 : international conference on fibrous products in medical and health care. Tampere, Finland: Tampere University of Technology; 2011.</div>
       </div>
classification: C1
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  end_date: 2011-06-30
  location: Tampere, Finland
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date_created: 2011-09-02 15:15:48
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language:
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page:
  count: '7'
parent:
  title: 'FiberMed11 : international conference on fibrous products in medical and
    health care'
publication_status: published
publication_status_sort: 2
publisher:
  location: Tampere, Finland
  name: Tampere University of Technology
status: public
subject:
- Technology and Engineering
title: Functionalized nanofiber membranes for disinfection of water
type: conference
year: '2011'
...
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cite:
  apa: |2
      <div class="csl-entry">Daels, N., De Vrieze, S., Sampers, I., Decostere, B., Westbroek, P., Dumoulin, A., … Van Hulle, S. (2011). Potential of a functionalised nanofibre microfiltration membrane as an antibacterial water filter. <i>DESALINATION</i>, <i>275</i>(1–3), 285–290. https://doi.org/10.1016/j.desal.2011.03.012</div>
  bof: |2-
      <div class="csl-entry">Daels, Nele, Sander De Vrieze, Imca Sampers, Bjorge Decostere, Philippe Westbroek, Ann Dumoulin, Pascal Dejans, Karen De Clerck, and Stijn Van Hulle. 2011. “Potential of a Functionalised Nanofibre Microfiltration Membrane as an Antibacterial Water Filter.” <i>DESALINATION</i> 275 (1–3): 285–290. doi:10.1016/j.desal.2011.03.012.</div>
    <div><i>Impact factor: 2.59, category: WATER RESOURCES, rank: 5/78, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Daels, Nele, Sander De Vrieze, Imca Sampers, Bjorge Decostere, Philippe Westbroek, Ann Dumoulin, Pascal Dejans, Karen De Clerck, and Stijn Van Hulle. 2011. “Potential of a Functionalised Nanofibre Microfiltration Membrane as an Antibacterial Water Filter.” <i>DESALINATION</i> 275 (1–3): 285–90. https://doi.org/10.1016/j.desal.2011.03.012.</div>
  fwo: |2
      <div class="csl-entry">Daels, Nele, Sander De Vrieze, Imca Sampers, Bjorge Decostere, Philippe Westbroek, Ann Dumoulin, Pascal Dejans, Karen De Clerck, and Stijn Van Hulle. 2011. “Potential of a Functionalised Nanofibre Microfiltration Membrane as an Antibacterial Water Filter.” <i>DESALINATION</i> 275 (1–3): 285–290. doi:10.1016/j.desal.2011.03.012.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">N. Daels <i>et al.</i>, “Potential of a functionalised nanofibre microfiltration membrane as an antibacterial water filter,” <i>DESALINATION</i>, vol. 275, no. 1–3, pp. 285–290, 2011.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daels, Nele, et al. “Potential of a Functionalised Nanofibre Microfiltration Membrane as an Antibacterial Water Filter.” <i>DESALINATION</i>, vol. 275, no. 1–3, 2011, pp. 285–90, doi:10.1016/j.desal.2011.03.012.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daels N, De Vrieze S, Sampers I, Decostere B, Westbroek P, Dumoulin A, et al. Potential of a functionalised nanofibre microfiltration membrane as an antibacterial water filter. DESALINATION. 2011;275(1–3):285–90.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: 1C30272E-F0EE-11E1-A9DE-61C894A0A6B4
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  - name: Ghent University
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date_created: 2011-08-01 13:21:41
date_updated: 2026-03-31 07:37:23
doi:
- 10.1016/j.desal.2011.03.012
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handle: http://hdl.handle.net/1854/LU-1864130
issn:
- 0011-9164
issue: 1-3
jcr:
  category: WATER RESOURCES
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  category_quartile: 1
  category_rank: 5/78
  category_vigintile: 2
  eigenfactor: 0.03618
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keyword:
- BIOMEDICAL APPLICATIONS
- SILVER NANOPARTICLES
- BACTERIA
- Pathogen removal
- Electrospinning
- Water filtration
- WSCP
- ESCHERICHIA-COLI
- Nanosilver
language:
- eng
page:
  first: '285'
  last: '290'
parent:
  short_title: Desalination
  title: DESALINATION
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Potential of a functionalised nanofibre microfiltration membrane as an antibacterial
  water filter
type: journalArticle
volume: '275'
wos_id: '000292584900038'
wos_type: Article
year: '2011'
...
---
_id: '1903380'
abstract:
- Electrospinning is the most efficient method for the production of nanofibrous structures,
  which have unique characteristics such as high porosity, high absorption capacity,
  small pore size and high specific surface area. Thanks to this, they can be used
  as filtration membranes. Nanofiber membranes have high clean water permeability
  values, however the pathogen removal efficiency is currently not satisfactory. For
  this reason, we functionalized the membranes with antibacterial particles, such
  as silver nanoparticles and commercial biocides, by adding them into the spinning
  solution. Afterwards, the membranes were characterized to study the effect of the
  functionalization on the fiber diameter and pathogen removal efficiency. The distribution
  of the silver nanoparticles was studied with SEM and TEM images. TEM-images showed
  that the silver nanoparticles are trapped inside the nanofibers. SEM-images confirmed
  that the average fiber diameter is not affected by the functionalization. To evaluate
  the removal of pathogens, water samples were taken from waste water from a general
  hospital (107 – 108 colony forming units per 100 ml) and were filtered with different
  membranes. A non functionalized nanofiber membrane could not achieve the same reduction
  in culturable organisms as commercial membranes (2 log10 – 4 log10 removal). Higher
  reduction was reached when silver nanoparticles were added to the membrane. A 3
  log10 – 4 log10 removal was reached by adding silver nanoparticles to the spinning
  solution. Nanofiber membranes with biocides as functionalization agents achieved
  even a much higher reduction, up to 5,5 log10, which is competitive with commercial
  membranes currently on the market. In conclusion, the electrospinning process allows
  the functionalization of nanofiber membranes with antibacterial particles. This
  highly improves the pathogen removal efficiency of the membranes.
abstract_full:
- lang: eng
  text: Electrospinning is the most efficient method for the production of nanofibrous
    structures, which have unique characteristics such as high porosity, high absorption
    capacity, small pore size and high specific surface area. Thanks to this, they
    can be used as filtration membranes. Nanofiber membranes have high clean water
    permeability values, however the pathogen removal efficiency is currently not
    satisfactory. For this reason, we functionalized the membranes with antibacterial
    particles, such as silver nanoparticles and commercial biocides, by adding them
    into the spinning solution. Afterwards, the membranes were characterized to study
    the effect of the functionalization on the fiber diameter and pathogen removal
    efficiency. The distribution of the silver nanoparticles was studied with SEM
    and TEM images. TEM-images showed that the silver nanoparticles are trapped inside
    the nanofibers. SEM-images confirmed that the average fiber diameter is not affected
    by the functionalization. To evaluate the removal of pathogens, water samples
    were taken from waste water from a general hospital (107 – 108 colony forming
    units per 100 ml) and were filtered with different membranes. A non functionalized
    nanofiber membrane could not achieve the same reduction in culturable organisms
    as commercial membranes (2 log10 – 4 log10 removal). Higher reduction was reached
    when silver nanoparticles were added to the membrane. A 3 log10 – 4 log10 removal
    was reached by adding silver nanoparticles to the spinning solution. Nanofiber
    membranes with biocides as functionalization agents achieved even a much higher
    reduction, up to 5,5 log10, which is competitive with commercial membranes currently
    on the market. In conclusion, the electrospinning process allows the functionalization
    of nanofiber membranes with antibacterial particles. This highly improves the
    pathogen removal efficiency of the membranes.
affiliation:
- name: Department of Mathematical Modelling, Statistics and Bio-informatics (ceased
    1-1-2018)
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article_number: abstract A42-O-5-4
author:
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  biblio_id: 0D9D0B96-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Annelies
  last_name: Goethals
  name: Annelies Goethals
  name_last_first: Goethals, Annelies
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  - '971337473685'
- _id: 1C30272E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 1C30272E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Nele
  last_name: Daels
  name: Nele Daels
  name_last_first: Daels, Nele
  ugent_id:
  - '002003290072'
  - '802000583955'
  - '977784615061'
- _id: F8F52412-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA23
    ugent_id: LA23
  biblio_id: F8F52412-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Imca
  last_name: Sampers
  name: Imca Sampers
  name_last_first: Sampers, Imca
  orcid_id: 0000-0001-5536-7852
  ugent_id:
  - '802000197874'
  - '978769808190'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: FAD54460-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA24
    ugent_id: LA24
  biblio_id: FAD54460-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Stijn
  last_name: Van Hulle
  name: Stijn Van Hulle
  name_last_first: Van Hulle, Stijn
  orcid_id: 0000-0001-5773-7773
  ugent_id:
  - '801001539933'
  - '919019834884'
  - '971483871644'
biblio_id: '1903380'
cite:
  apa: |2
      <div class="csl-entry">Goethals, A., Daels, N., Sampers, I., De Clerck, K., &#38; Van Hulle, S. (2011). Electrospun nanofiber membranes functionalized with antibacterial particles. <i>EUROMAT 2011, Abstracts</i>. Presented at the EUROMAT 2011, Montpellier, France.</div>
  bof: |2
      <div class="csl-entry">Goethals, Annelies, Nele Daels, Imca Sampers, Karen De Clerck, and Stijn Van Hulle. 2011. “Electrospun Nanofiber Membranes Functionalized with Antibacterial Particles.” In <i>EUROMAT 2011, Abstracts</i>. Société Française de Métallurgie et de Matériaux ; Associazione Italiana di Metallurgia.</div>
  chicago-author-date: |2
      <div class="csl-entry">Goethals, Annelies, Nele Daels, Imca Sampers, Karen De Clerck, and Stijn Van Hulle. 2011. “Electrospun Nanofiber Membranes Functionalized with Antibacterial Particles.” In <i>EUROMAT 2011, Abstracts</i>. Société Française de Métallurgie et de Matériaux ; Associazione Italiana di Metallurgia.</div>
  fwo: |2
      <div class="csl-entry">Goethals, Annelies, Nele Daels, Imca Sampers, Karen De Clerck, and Stijn Van Hulle. 2011. “Electrospun Nanofiber Membranes Functionalized with Antibacterial Particles.” In <i>EUROMAT 2011, Abstracts</i>. Société Française de Métallurgie et de Matériaux ; Associazione Italiana di Metallurgia.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">A. Goethals, N. Daels, I. Sampers, K. De Clerck, and S. Van Hulle, “Electrospun nanofiber membranes functionalized with antibacterial particles,” in <i>EUROMAT 2011, Abstracts</i>, Montpellier, France, 2011.</div>
      </div>
  mla: |2
      <div class="csl-entry">Goethals, Annelies, et al. “Electrospun Nanofiber Membranes Functionalized with Antibacterial Particles.” <i>EUROMAT 2011, Abstracts</i>, Société Française de Métallurgie et de Matériaux ; Associazione Italiana di Metallurgia, 2011.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Goethals A, Daels N, Sampers I, De Clerck K, Van Hulle S. Electrospun nanofiber membranes functionalized with antibacterial particles. In: EUROMAT 2011, Abstracts. Société Française de Métallurgie et de Matériaux ; Associazione Italiana di Metallurgia; 2011.</div>
       </div>
classification: C3
conference:
  end_date: 2011-09-15
  location: Montpellier, France
  name: EUROMAT 2011
  start_date: 2011-09-12
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2011-09-19 11:18:50
date_updated: 2026-03-31 07:37:58
external: 0
file:
- _id: '1903388'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: Euromat_2011_-_Goethals.pdf
  sha256: 830cedaee74c0337deb091761a42da2bcb6f1304f475de5c1303b4d2dc332a56
  size: '70449'
  thumbnail_url: https://biblio.ugent.be/publication/1903380/file/1903388/thumbnail.png
  url: https://biblio.ugent.be/publication/1903380/file/1903388.pdf
handle: http://hdl.handle.net/1854/LU-1903380
jcr: {}
language:
- eng
parent:
  title: EUROMAT 2011, Abstracts
publication_status: published
publication_status_sort: 2
publisher:
  name: Société Française de Métallurgie et de Matériaux ; Associazione Italiana di
    Metallurgia
status: public
subject:
- Technology and Engineering
title: Electrospun nanofiber membranes functionalized with antibacterial particles
type: conference
year: '2011'
...
---
_id: '1903396'
abstract:
- Colour changing textiles have recently gained much interest in literature. These
  chameleon textiles can be seen as the artificial equivalent of the colour changing
  species found in nature. A colour change of a textile material may provide information
  concerning the surrounding medium and a chameleon textile has thus possible uses
  as warning sensor. Within the group of colour changing textiles, halochromic textiles,
  which vary in colour depending on the pH, offer major potentials since a whole range
  of processes in nature are affected by this parameter. For example, during the healing
  process of a wound, the pH-value of the skin varies. The progress of the healing
  process could thus be indicated by a pH-sensitive wound dressing which may avoid
  unnecessary removal of the dressing. The aim of the current research is to develop
  pH-sensitive textile sensors through the application of pH-sensitive dyes on various
  textile materials. pH-indicators, normally used to indicate the pH of aqueous solutions,
  will be used as pH-sensitive dyes since they are easy available and possibly show
  high affinity for textiles as their molecular structures are similar to the one
  of standard dyes. Conventional textile fabrics such as cotton and polyamide will
  be investigated as substrate material for the pH-indicator dyes. Besides these traditional
  textile materials, also nanofibrous nonwovens will be incorporated with the dyes
  as the typical characteristics of nanofibres (such as high surface area, small pore
  size) may provide benefits in various medical applications. The results of our study
  showed that conventional textile materials can be dyed with pH-indicator dyes using
  standard dyeing processes. Nanofibrous nonwovens could, as expected, not be dyed
  with these standard processes but can be coloured by a direct incorporation of the
  dyes in the polymer solution before the electrospinning process. The halochromic
  study after the application of the dyes showed that a clearly visible colour change
  with pH was still present on the textile materials for most of the dye-textile systems.
  With this it should be noted that the halochromic behaviour of the dyes on the different
  textile materials was dependent on the surrounding medium due to the different dye-fibre
  interactions.
abstract_full:
- lang: eng
  text: Colour changing textiles have recently gained much interest in literature.
    These chameleon textiles can be seen as the artificial equivalent of the colour
    changing species found in nature. A colour change of a textile material may provide
    information concerning the surrounding medium and a chameleon textile has thus
    possible uses as warning sensor. Within the group of colour changing textiles,
    halochromic textiles, which vary in colour depending on the pH, offer major potentials
    since a whole range of processes in nature are affected by this parameter. For
    example, during the healing process of a wound, the pH-value of the skin varies.
    The progress of the healing process could thus be indicated by a pH-sensitive
    wound dressing which may avoid unnecessary removal of the dressing. The aim of
    the current research is to develop pH-sensitive textile sensors through the application
    of pH-sensitive dyes on various textile materials. pH-indicators, normally used
    to indicate the pH of aqueous solutions, will be used as pH-sensitive dyes since
    they are easy available and possibly show high affinity for textiles as their
    molecular structures are similar to the one of standard dyes. Conventional textile
    fabrics such as cotton and polyamide will be investigated as substrate material
    for the pH-indicator dyes. Besides these traditional textile materials, also nanofibrous
    nonwovens will be incorporated with the dyes as the typical characteristics of
    nanofibres (such as high surface area, small pore size) may provide benefits in
    various medical applications. The results of our study showed that conventional
    textile materials can be dyed with pH-indicator dyes using standard dyeing processes.
    Nanofibrous nonwovens could, as expected, not be dyed with these standard processes
    but can be coloured by a direct incorporation of the dyes in the polymer solution
    before the electrospinning process. The halochromic study after the application
    of the dyes showed that a clearly visible colour change with pH was still present
    on the textile materials for most of the dye-textile systems. With this it should
    be noted that the halochromic behaviour of the dyes on the different textile materials
    was dependent on the surrounding medium due to the different dye-fibre interactions.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_number: abstract F12-O-2-6
author:
- _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
  - '002002166892'
  - '802000424715'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '1903396'
cite:
  apa: |2
      <div class="csl-entry">Van der Schueren, L., &#38; De Clerck, K. (2011). pH-sensitive textile sensors with possible use as wound dressings. <i>EUROMAT 2011, Abstracts</i>. Presented at the EUROMAT 2011, Montpellier, France.</div>
  bof: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2011. “PH-Sensitive Textile Sensors with Possible Use as Wound Dressings.” In <i>EUROMAT 2011, Abstracts</i>. Société Française de Métallurgie et de Matériaux ; Associazione Italiana di Metallurgia.</div>
  chicago-author-date: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2011. “PH-Sensitive Textile Sensors with Possible Use as Wound Dressings.” In <i>EUROMAT 2011, Abstracts</i>. Société Française de Métallurgie et de Matériaux ; Associazione Italiana di Metallurgia.</div>
  fwo: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2011. “PH-Sensitive Textile Sensors with Possible Use as Wound Dressings.” In <i>EUROMAT 2011, Abstracts</i>. Société Française de Métallurgie et de Matériaux ; Associazione Italiana di Metallurgia.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Van der Schueren and K. De Clerck, “pH-sensitive textile sensors with possible use as wound dressings,” in <i>EUROMAT 2011, Abstracts</i>, Montpellier, France, 2011.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. “PH-Sensitive Textile Sensors with Possible Use as Wound Dressings.” <i>EUROMAT 2011, Abstracts</i>, Société Française de Métallurgie et de Matériaux ; Associazione Italiana di Metallurgia, 2011.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van der Schueren L, De Clerck K. pH-sensitive textile sensors with possible use as wound dressings. In: EUROMAT 2011, Abstracts. Société Française de Métallurgie et de Matériaux ; Associazione Italiana di Metallurgia; 2011.</div>
       </div>
classification: C3
conference:
  end_date: 2011-09-15
  location: Montpellier, France
  name: EUROMAT 2011
  start_date: 2011-09-12
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2011-09-19 11:25:35
date_updated: 2026-03-31 07:38:00
external: 0
file:
- _id: '1903431'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: Euromat_2011_-_Van_der_Schueren.pdf
  sha256: 3457691abe418e91d023b73db4f0f988e646f460f91a5229ab4385845839e028
  size: '102967'
  thumbnail_url: https://biblio.ugent.be/publication/1903396/file/1903431/thumbnail.png
  url: https://biblio.ugent.be/publication/1903396/file/1903431.pdf
handle: http://hdl.handle.net/1854/LU-1903396
jcr: {}
language:
- eng
parent:
  title: EUROMAT 2011, Abstracts
project:
- _id: 01J04009
  abstract: <p>The aim of the project is to obtain a better understanding of the interactions
    between pH-sensitive dyes and textiles. Both a macroscopic spectral analysis and
    a general microscopic evaluation will be performed. The dye-fiber interactions,
    the local distribution, the impulse sensitivity and spectral variations as a function
    of time and place will be looked at.</p>
  end_date: 2013-10-31
  gismo_id: 070a44f0-b14b-48f0-9f2a-a0ec5c90b554
  iweto_id: 01J04009
  publication_count: 3
  start_date: 2009-01-01
  title: 'Research into new ''sensor materials'': pH-sensitive dyes in textiles'
publication_status: published
publication_status_sort: 2
publisher:
  name: Société Française de Métallurgie et de Matériaux ; Associazione Italiana di
    Metallurgia
status: public
subject:
- Technology and Engineering
title: pH-sensitive textile sensors with possible use as wound dressings
type: conference
year: '2011'
...
---
_id: '1937478'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
author:
- _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
  - '002002166892'
  - '802000424715'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '1937478'
cite:
  apa: |2
      <div class="csl-entry">Van der Schueren, L., &#38; De Clerck, K. (2011). Nanofibrous textiles in medical applications. In V. Bartels (Ed.), <i>Handbook of medical textiles</i> (Vol. 100, pp. 547–566). Oxford, UK: Woodhead.</div>
  bof: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2011. “Nanofibrous Textiles in Medical Applications.” In <i>Handbook of Medical Textiles</i>, ed by. V Bartels, 100:547–566. Oxford, UK: Woodhead.</div>
  chicago-author-date: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2011. “Nanofibrous Textiles in Medical Applications.” In <i>Handbook of Medical Textiles</i>, edited by V Bartels, 100:547–66. Oxford, UK: Woodhead.</div>
  fwo: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2011. “Nanofibrous Textiles in Medical Applications.” In <i>Handbook of Medical Textiles</i>, ed by. V Bartels, 100:547–566. Oxford, UK: Woodhead.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Van der Schueren and K. De Clerck, “Nanofibrous textiles in medical applications,” in <i>Handbook of medical textiles</i>, vol. 100, V. Bartels, Ed. Oxford, UK: Woodhead, 2011, pp. 547–566.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. “Nanofibrous Textiles in Medical Applications.” <i>Handbook of Medical Textiles</i>, edited by V Bartels, vol. 100, Woodhead, 2011, pp. 547–66.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van der Schueren L, De Clerck K. Nanofibrous textiles in medical applications. In: Bartels V, editor. Handbook of medical textiles. Oxford, UK: Woodhead; 2011. p. 547–66.</div>
       </div>
classification: B2
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2011-10-27 16:33:02
date_updated: 2026-03-31 07:40:55
editor:
- first_name: V
  last_name: Bartels
  name: V Bartels
  name_last_first: Bartels, V
external: 0
file:
- _id: '1937479'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: nanofibrous_textiles_in_medical_applicationsKDC-LVDS.pdf
  sha256: 86a112e6aadd4f9bf5c2847090c3589e077796185c8d47fefe259b6c3283cec9
  size: '6781036'
  thumbnail_url: https://biblio.ugent.be/publication/1937478/file/1937479/thumbnail.png
  url: https://biblio.ugent.be/publication/1937478/file/1937479.pdf
handle: http://hdl.handle.net/1854/LU-1937478
isbn:
- '9781845696917'
jcr: {}
language:
- eng
page:
  first: '547'
  last: '566'
parent:
  title: Handbook of medical textiles
project:
- _id: 01J04009
  abstract: <p>The aim of the project is to obtain a better understanding of the interactions
    between pH-sensitive dyes and textiles. Both a macroscopic spectral analysis and
    a general microscopic evaluation will be performed. The dye-fiber interactions,
    the local distribution, the impulse sensitivity and spectral variations as a function
    of time and place will be looked at.</p>
  end_date: 2013-10-31
  gismo_id: 070a44f0-b14b-48f0-9f2a-a0ec5c90b554
  iweto_id: 01J04009
  publication_count: 3
  start_date: 2009-01-01
  title: 'Research into new ''sensor materials'': pH-sensitive dyes in textiles'
publication_status: published
publication_status_sort: 2
publisher:
  location: Oxford, UK
  name: Woodhead
series_title: Woodhead Publishing Series in Textiles
status: public
subject:
- Technology and Engineering
title: Nanofibrous textiles in medical applications
type: bookChapter
volume: '100'
year: '2011'
...
---
_id: '1903434'
abstract:
- Nanofibres have by definition a diameter less than 500 nm, which is several times
  smaller than the conventional fibres. Because of their very small fibre diameter
  these fibrous materials have specific and unique characteristics such as a high
  surface-to-volume ratio and high porosity. Thanks to this these nanofibres can be
  used in a broad spectrum of applications such as liquid and air filtration, wound
  bandages and composites. Although the literature on nanofibre composites is restricted,
  nanofibres can have advantages for advanced composites. Composites reinforced with
  conventional glass or carbon fibres may have very high tensile strengths, but the
  impact resistance is sometimes limited. A second problem of these actual composites
  is the delamination of the several textile layers. Both problems can be reduced
  by using nanofibrous webs between the glass or carbon layers. In our research large
  polyamide nanofibrous structures (PA 6, PA6.6, PA 4.6 and PA 6.9) were produced
  on a multi-nozzle setup. Starting from these structures the effect of the nanofibres
  on the curing of a epoxy matrix was investigated by thermo analytical measurements
  using a differential scanning calorimeter. Changing the nanofibres characteristics,
  especially the polyamide type and fibre diameter, will affect the curing behaviour
  of the resin. Furthermore the influence of the amount of water absorbed through
  the nanofibrous webs is inquired, by making identical composite samples at different
  relative humidity’s. In the second part of the research glass fibre/polyamide nanofibre
  composites were produced on large scale by infusion. The polyamide nanofibres were
  brought into the composites as stand-alone structures as well as coatings on the
  glass fabrics. The tenacity of these composites is compared to glass fibre composites
  without nanofibres. This research gives a good overview of the curing behaviour
  of the resin affected by the nanofibrous webs on the one side and the advantages
  of nanofibres for high performance composites on the other side.
abstract_full:
- lang: eng
  text: Nanofibres have by definition a diameter less than 500 nm, which is several
    times smaller than the conventional fibres. Because of their very small fibre
    diameter these fibrous materials have specific and unique characteristics such
    as a high surface-to-volume ratio and high porosity. Thanks to this these nanofibres
    can be used in a broad spectrum of applications such as liquid and air filtration,
    wound bandages and composites. Although the literature on nanofibre composites
    is restricted, nanofibres can have advantages for advanced composites. Composites
    reinforced with conventional glass or carbon fibres may have very high tensile
    strengths, but the impact resistance is sometimes limited. A second problem of
    these actual composites is the delamination of the several textile layers. Both
    problems can be reduced by using nanofibrous webs between the glass or carbon
    layers. In our research large polyamide nanofibrous structures (PA 6, PA6.6, PA
    4.6 and PA 6.9) were produced on a multi-nozzle setup. Starting from these structures
    the effect of the nanofibres on the curing of a epoxy matrix was investigated
    by thermo analytical measurements using a differential scanning calorimeter. Changing
    the nanofibres characteristics, especially the polyamide type and fibre diameter,
    will affect the curing behaviour of the resin. Furthermore the influence of the
    amount of water absorbed through the nanofibrous webs is inquired, by making identical
    composite samples at different relative humidity’s. In the second part of the
    research glass fibre/polyamide nanofibre composites were produced on large scale
    by infusion. The polyamide nanofibres were brought into the composites as stand-alone
    structures as well as coatings on the glass fabrics. The tenacity of these composites
    is compared to glass fibre composites without nanofibres. This research gives
    a good overview of the curing behaviour of the resin affected by the nanofibrous
    webs on the one side and the advantages of nanofibres for high performance composites
    on the other side.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_number: abstract B31-P-1-44
author:
- _id: FADF950A-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FADF950A-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Bert
  last_name: De Schoenmaker
  name: Bert De Schoenmaker
  name_last_first: De Schoenmaker, Bert
  ugent_id:
  - '002003264107'
  - '802000214244'
  - '978815731125'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '1903434'
cite:
  apa: |2
      <div class="csl-entry">De Schoenmaker, B., &#38; De Clerck, K. (2011). The influence of nanofibres in composite materials. <i>EUROMAT 2011, Abstracts</i>. Presented at the EUROMAT 2011, Montpellier, France.</div>
  bof: |2
      <div class="csl-entry">De Schoenmaker, Bert, and Karen De Clerck. 2011. “The Influence of Nanofibres in Composite Materials.” In <i>EUROMAT 2011, Abstracts</i>. Société Française de Métallurgie et de Matériaux ; Associazione Italiana di Metallurgia.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Schoenmaker, Bert, and Karen De Clerck. 2011. “The Influence of Nanofibres in Composite Materials.” In <i>EUROMAT 2011, Abstracts</i>. Société Française de Métallurgie et de Matériaux ; Associazione Italiana di Metallurgia.</div>
  fwo: |2
      <div class="csl-entry">De Schoenmaker, Bert, and Karen De Clerck. 2011. “The Influence of Nanofibres in Composite Materials.” In <i>EUROMAT 2011, Abstracts</i>. Société Française de Métallurgie et de Matériaux ; Associazione Italiana di Metallurgia.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. De Schoenmaker and K. De Clerck, “The influence of nanofibres in composite materials,” in <i>EUROMAT 2011, Abstracts</i>, Montpellier, France, 2011.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Schoenmaker, Bert, and Karen De Clerck. “The Influence of Nanofibres in Composite Materials.” <i>EUROMAT 2011, Abstracts</i>, Société Française de Métallurgie et de Matériaux ; Associazione Italiana di Metallurgia, 2011.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Schoenmaker B, De Clerck K. The influence of nanofibres in composite materials. In: EUROMAT 2011, Abstracts. Société Française de Métallurgie et de Matériaux ; Associazione Italiana di Metallurgia; 2011.</div>
       </div>
classification: C3
conference:
  end_date: 2011-09-15
  location: Montpellier, France
  name: EUROMAT 2011
  start_date: 2011-09-12
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2011-09-19 11:34:20
date_updated: 2026-03-31 07:38:53
external: 0
file:
- _id: '1903453'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: Euromat_2011_-_De_Schoenmaker.pdf
  sha256: 857d0e671a221a5d4d8af459f054cc22e5a7017cc7080304ec6bf1c900005244
  size: '247246'
  thumbnail_url: https://biblio.ugent.be/publication/1903434/file/1903453/thumbnail.png
  url: https://biblio.ugent.be/publication/1903434/file/1903453.pdf
handle: http://hdl.handle.net/1854/LU-1903434
jcr: {}
language:
- eng
parent:
  title: EUROMAT 2011, Abstracts
project:
- _id: IOF10STEP001W
  end_date: 2012-02-28
  gismo_id: 19791cfe-91df-4bbd-b61d-914dd90e6ccb
  iweto_id: IOF10STEP001W
  publication_count: 1
  start_date: 2010-02-01
  title: ENANICS2 (a FIBRONIQ nanofiber technology and product development platform
    as the basis for creation
publication_status: published
publication_status_sort: 2
publisher:
  name: Société Française de Métallurgie et de Matériaux ; Associazione Italiana di
    Metallurgia
status: public
subject:
- Technology and Engineering
title: The influence of nanofibres in composite materials
type: conference
year: '2011'
...
---
_id: '1903484'
abstract:
- Polycaprolactone (PCL) is a biocompatible aliphatic polyester with many possible
  applications in the medical field. PCL nanofibres, produced by electrospinning,
  could provide new characteristics that are of interest for these applications. Nanofibrous
  structures indeed show unique properties such as higher specific surface area, higher
  porosity and smaller pore size compared to microfibres. At present the most commonly
  used solvent for electrospinning PCL is chloroform, but this only leads to fibres
  in the microscale range. A key issue in electrospinning PCL is thus the ability
  to obtain bead-free fibres with diameters in the nanoscale range. To obtain these
  small diameter nanofibres of PCL various solvent systems were examined. The innovative
  solvent mixture formic acid/acetic acid was found to allow for nanofibres with a
  diameter ten times smaller than the one obtained by chloroform. Steady state conditions
  could be obtained which thus allow electrospinning in a stable and reproducible
  way. Moreover, GPC measurements on the PCL pellet and the produced nanofibrous structures
  showed that there was no degradation of PCL during the electrospinning process from
  the acid solution. Further it was noticed that the average fibre diameter decreased
  with decreasing polymer concentration. The solvent ratio was found to have a minor
  influence on the fibre diameter but showed a significant effect on the fibre diameter
  distribution with a decreasing standard deviation with increasing amount of formic
  acid. Also the humidity, an often overlooked yet important parameter, was noted
  to affect both diameter characteristics. Generally it can be concluded that the
  solvent system formic acid/acetic acid could fill the gap in electrospinning PCL
  since it is readily able to produce uniform fibres in the nanoscale range.
abstract_full:
- lang: eng
  text: Polycaprolactone (PCL) is a biocompatible aliphatic polyester with many possible
    applications in the medical field. PCL nanofibres, produced by electrospinning,
    could provide new characteristics that are of interest for these applications.
    Nanofibrous structures indeed show unique properties such as higher specific surface
    area, higher porosity and smaller pore size compared to microfibres. At present
    the most commonly used solvent for electrospinning PCL is chloroform, but this
    only leads to fibres in the microscale range. A key issue in electrospinning PCL
    is thus the ability to obtain bead-free fibres with diameters in the nanoscale
    range. To obtain these small diameter nanofibres of PCL various solvent systems
    were examined. The innovative solvent mixture formic acid/acetic acid was found
    to allow for nanofibres with a diameter ten times smaller than the one obtained
    by chloroform. Steady state conditions could be obtained which thus allow electrospinning
    in a stable and reproducible way. Moreover, GPC measurements on the PCL pellet
    and the produced nanofibrous structures showed that there was no degradation of
    PCL during the electrospinning process from the acid solution. Further it was
    noticed that the average fibre diameter decreased with decreasing polymer concentration.
    The solvent ratio was found to have a minor influence on the fibre diameter but
    showed a significant effect on the fibre diameter distribution with a decreasing
    standard deviation with increasing amount of formic acid. Also the humidity, an
    often overlooked yet important parameter, was noted to affect both diameter characteristics.
    Generally it can be concluded that the solvent system formic acid/acetic acid
    could fill the gap in electrospinning PCL since it is readily able to produce
    uniform fibres in the nanoscale range.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_number: abstract P.3.161
author:
- _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
  - '002002166892'
  - '802000424715'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '1903484'
cite:
  apa: |2
      <div class="csl-entry">Van der Schueren, L., &#38; De Clerck, K. (2011). An alternative solvent system for the steady state electrospinning of polycaprolactone. <i>Frontiers in Polymer Science, 2nd International Symposium, Programme Book and CD of Abstracts</i>. Presented at the 2nd International symposium on Frontiers in Polymer Science, Lyon, France.</div>
  bof: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2011. “An Alternative Solvent System for the Steady State Electrospinning of Polycaprolactone.” In <i>Frontiers in Polymer Science, 2nd International Symposium, Programme Book and CD of Abstracts</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2011. “An Alternative Solvent System for the Steady State Electrospinning of Polycaprolactone.” In <i>Frontiers in Polymer Science, 2nd International Symposium, Programme Book and CD of Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2011. “An Alternative Solvent System for the Steady State Electrospinning of Polycaprolactone.” In <i>Frontiers in Polymer Science, 2nd International Symposium, Programme Book and CD of Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Van der Schueren and K. De Clerck, “An alternative solvent system for the steady state electrospinning of polycaprolactone,” in <i>Frontiers in Polymer Science, 2nd International symposium, Programme book and CD of abstracts</i>, Lyon, France, 2011.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. “An Alternative Solvent System for the Steady State Electrospinning of Polycaprolactone.” <i>Frontiers in Polymer Science, 2nd International Symposium, Programme Book and CD of Abstracts</i>, 2011.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van der Schueren L, De Clerck K. An alternative solvent system for the steady state electrospinning of polycaprolactone. In: Frontiers in Polymer Science, 2nd International symposium, Programme book and CD of abstracts. 2011.</div>
       </div>
classification: C3
conference:
  end_date: 2011-05-31
  location: Lyon, France
  name: 2nd International symposium on Frontiers in Polymer Science
  start_date: 2011-05-29
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2011-09-19 11:49:48
date_updated: 2026-03-31 07:38:54
external: 0
file:
- _id: '1903493'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: POLY2011_0169.pdf
  sha256: 17cbc098e5cc6505718c4fffb2256cca6c8db4d99262b78549bf4d24de4fad04
  size: '664650'
  thumbnail_url: https://biblio.ugent.be/publication/1903484/file/1903493/thumbnail.png
  url: https://biblio.ugent.be/publication/1903484/file/1903493.pdf
handle: http://hdl.handle.net/1854/LU-1903484
jcr: {}
keyword:
- polycaprolactone
- electrospinning
- steady state
- nanofibres
language:
- eng
parent:
  title: Frontiers in Polymer Science, 2nd International symposium, Programme book
    and CD of abstracts
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: An alternative solvent system for the steady state electrospinning of polycaprolactone
type: conference
year: '2011'
...
---
_id: '1903494'
abstract:
- 'This research investigates the electrospinning prerequisites for polyamide 6.9
  and the influence of different electrospin parameters on the fibre morphology. Polyamide
  6.9 is a seldom used polyamide though with specific properties such as the lowest
  water absorption of all polyamides. This can, for example, be advantageous for nanofibres
  in composite applications. Acetic acid/formic acid solvent mixtures prove to be
  very suitable for the steady state electrospinning of PA 6.9, with the formic acid
  serving the solubility of the PA 6.9 and the acetic acid serving the appropriate
  solution characteristics for obtaining steady state. Steady state behaviour means
  no irregularities in the nanofibrous structures and a high reproducibility A limited
  range of polymer concentrations, solvent ratios and process parameters results in
  steady state electrospinning. The combination of those parameters is determined
  by the viscosity, surface tension and electric properties of the electrospinning
  solutions. Different steady state tables showing the limits within a varying polymer
  concentration and solvent ratio that allow for the production of nanofibres are
  composed. Sequentially the influence of the main solution and process parameters
  on the fibre diameter (using SEM) and thermal behaviour (using DSC and XRD) is investigated.
  The polymer concentration has a significant effect on the morphology of the nanofibres:
  the average PA 6.9 diameter and the fraction less stable crystal phase increase
  with increasing polymer concentration. The effect of the solvent ratio is less obvious.
  The process parameters only have a minor effect on the nanofibres. The applied voltage
  and TCD show no influence on the nanofibre morphology. The flow rate has a small
  influence on the fibres, but the difference in diameters is small compared to the
  differences found with varying polymer concentration. It can be concluded that the
  polymer concentration is the key parameter to alter the fibre morphology of PA 6.9
  nanofibres.'
abstract_full:
- lang: eng
  text: 'This research investigates the electrospinning prerequisites for polyamide
    6.9 and the influence of different electrospin parameters on the fibre morphology.
    Polyamide 6.9 is a seldom used polyamide though with specific properties such
    as the lowest water absorption of all polyamides. This can, for example, be advantageous
    for nanofibres in composite applications. Acetic acid/formic acid solvent mixtures
    prove to be very suitable for the steady state electrospinning of PA 6.9, with
    the formic acid serving the solubility of the PA 6.9 and the acetic acid serving
    the appropriate solution characteristics for obtaining steady state. Steady state
    behaviour means no irregularities in the nanofibrous structures and a high reproducibility
    A limited range of polymer concentrations, solvent ratios and process parameters
    results in steady state electrospinning. The combination of those parameters is
    determined by the viscosity, surface tension and electric properties of the electrospinning
    solutions. Different steady state tables showing the limits within a varying polymer
    concentration and solvent ratio that allow for the production of nanofibres are
    composed. Sequentially the influence of the main solution and process parameters
    on the fibre diameter (using SEM) and thermal behaviour (using DSC and XRD) is
    investigated. The polymer concentration has a significant effect on the morphology
    of the nanofibres: the average PA 6.9 diameter and the fraction less stable crystal
    phase increase with increasing polymer concentration. The effect of the solvent
    ratio is less obvious. The process parameters only have a minor effect on the
    nanofibres. The applied voltage and TCD show no influence on the nanofibre morphology.
    The flow rate has a small influence on the fibres, but the difference in diameters
    is small compared to the differences found with varying polymer concentration.
    It can be concluded that the polymer concentration is the key parameter to alter
    the fibre morphology of PA 6.9 nanofibres.'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_number: abstract P.3.162
author:
- _id: FADF950A-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FADF950A-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Bert
  last_name: De Schoenmaker
  name: Bert De Schoenmaker
  name_last_first: De Schoenmaker, Bert
  ugent_id:
  - '002003264107'
  - '802000214244'
  - '978815731125'
- _id: 0D9D0B96-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 0D9D0B96-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Annelies
  last_name: Goethals
  name: Annelies Goethals
  name_last_first: Goethals, Annelies
  ugent_id:
  - '002004215111'
  - '802000839185'
  - '971337473685'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '1903494'
cite:
  apa: |2
      <div class="csl-entry">De Schoenmaker, B., Goethals, A., &#38; De Clerck, K. (2011). Morphology study of polyamide 6.9 nanofibres electrospun under steady state conditions. <i>Frontiers in Polymer Science, 2nd International Symposium, Programme Book and CD of Abstracts</i>. Presented at the 2nd International symposium on Frontiers in Polymer Science, Lyon, France.</div>
  bof: |2
      <div class="csl-entry">De Schoenmaker, Bert, Annelies Goethals, and Karen De Clerck. 2011. “Morphology Study of Polyamide 6.9 Nanofibres Electrospun under Steady State Conditions.” In <i>Frontiers in Polymer Science, 2nd International Symposium, Programme Book and CD of Abstracts</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Schoenmaker, Bert, Annelies Goethals, and Karen De Clerck. 2011. “Morphology Study of Polyamide 6.9 Nanofibres Electrospun under Steady State Conditions.” In <i>Frontiers in Polymer Science, 2nd International Symposium, Programme Book and CD of Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">De Schoenmaker, Bert, Annelies Goethals, and Karen De Clerck. 2011. “Morphology Study of Polyamide 6.9 Nanofibres Electrospun under Steady State Conditions.” In <i>Frontiers in Polymer Science, 2nd International Symposium, Programme Book and CD of Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. De Schoenmaker, A. Goethals, and K. De Clerck, “Morphology study of polyamide 6.9 nanofibres electrospun under steady state conditions,” in <i>Frontiers in Polymer Science, 2nd International symposium, Programme book and CD of abstracts</i>, Lyon, France, 2011.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Schoenmaker, Bert, et al. “Morphology Study of Polyamide 6.9 Nanofibres Electrospun under Steady State Conditions.” <i>Frontiers in Polymer Science, 2nd International Symposium, Programme Book and CD of Abstracts</i>, 2011.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Schoenmaker B, Goethals A, De Clerck K. Morphology study of polyamide 6.9 nanofibres electrospun under steady state conditions. In: Frontiers in Polymer Science, 2nd International symposium, Programme book and CD of abstracts. 2011.</div>
       </div>
classification: C3
conference:
  end_date: 2011-05-31
  location: Lyon, France
  name: 2nd International symposium on Frontiers in Polymer Science
  start_date: 2011-05-29
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
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keyword:
- Nanofibres
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- Polyamide 6.9
language:
- eng
parent:
  title: Frontiers in Polymer Science, 2nd International symposium, Programme book
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publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Morphology study of polyamide 6.9 nanofibres electrospun under steady state
  conditions
type: conference
year: '2011'
...
---
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    ugent_id: UGent
  biblio_id: 0D9D0B96-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Annelies
  last_name: Goethals
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  first_name: Nele
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    ugent_id: LA23
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  first_name: Imca
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  first_name: Karen
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  first_name: Stijn
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  name: Stijn Van Hulle
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biblio_id: '1937489'
cite:
  apa: |2
      <div class="csl-entry">Goethals, A., Daels, N., Sampers, I., De Clerck, K., &#38; Van Hulle, S. (2011). Functionalised nanofibre membranes for water filtration. <i>Conference Book : 6th IWA Specialist Conference on Membrane Technology for Water &#38; Wastewater Treatment</i>, 173–174. International Water Association (IWA).</div>
  bof: |2
      <div class="csl-entry">Goethals, Annelies, Nele Daels, Imca Sampers, Karen De Clerck, and Stijn Van Hulle. 2011. “Functionalised Nanofibre Membranes for Water Filtration.” In <i>Conference Book : 6th IWA Specialist Conference on Membrane Technology for Water &#38; Wastewater Treatment</i>, 173–174. International Water Association (IWA).</div>
  chicago-author-date: |2
      <div class="csl-entry">Goethals, Annelies, Nele Daels, Imca Sampers, Karen De Clerck, and Stijn Van Hulle. 2011. “Functionalised Nanofibre Membranes for Water Filtration.” In <i>Conference Book : 6th IWA Specialist Conference on Membrane Technology for Water &#38; Wastewater Treatment</i>, 173–74. International Water Association (IWA).</div>
  fwo: |2
      <div class="csl-entry">Goethals, Annelies, Nele Daels, Imca Sampers, Karen De Clerck, and Stijn Van Hulle. 2011. “Functionalised Nanofibre Membranes for Water Filtration.” In <i>Conference Book : 6th IWA Specialist Conference on Membrane Technology for Water &#38; Wastewater Treatment</i>, 173–174. International Water Association (IWA).</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">A. Goethals, N. Daels, I. Sampers, K. De Clerck, and S. Van Hulle, “Functionalised nanofibre membranes for water filtration,” in <i>Conference book : 6th IWA specialist conference on membrane technology for water &#38; wastewater treatment</i>, Aachen, Germany, 2011, pp. 173–174.</div>
      </div>
  mla: |2
      <div class="csl-entry">Goethals, Annelies, et al. “Functionalised Nanofibre Membranes for Water Filtration.” <i>Conference Book : 6th IWA Specialist Conference on Membrane Technology for Water &#38; Wastewater Treatment</i>, International Water Association (IWA), 2011, pp. 173–74.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Goethals A, Daels N, Sampers I, De Clerck K, Van Hulle S. Functionalised nanofibre membranes for water filtration. In: Conference book : 6th IWA specialist conference on membrane technology for water &#38; wastewater treatment. International Water Association (IWA); 2011. p. 173–4.</div>
       </div>
classification: C3
conference:
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  location: Aachen, Germany
  name: 6th IWA Specialist conference on Membrane Technology for Water and Wastewater
    Treatment
  start_date: 2011-10-04
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
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  name: Martine Van Den Abbeele
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jcr: {}
language:
- eng
page:
  first: '173'
  last: '174'
parent:
  title: 'Conference book : 6th IWA specialist conference on membrane technology for
    water & wastewater treatment'
publication_status: published
publication_status_sort: 2
publisher:
  name: International Water Association (IWA)
status: public
subject:
- Technology and Engineering
title: Functionalised nanofibre membranes for water filtration
type: conference
year: '2011'
...
---
_id: '1920674'
abstract:
- "Purpose - The purpose of this paper is to develop textile materials with a pH-sensitive
  function. \r\nDesign/methodology/approach - As a start point, the feasibility of
  incorporating pH-indicators in conventional textiles using standard dyeing processes
  was investigated. Next, a pH-indicator was incorporated into a nylon nanofibrous
  structure by adding the dye to the polymer solution before the start of the electro-spinning
  process. \r\nFindings - The authors' results proved that it is possible to develop
  a pH-sensor using conventional textiles dyed by a standard dyeing process. Also,
  the incorporation of a pH-indicator dye into a nanofibrous structure was possible.
  Moreover, reproducible samples could be obtained. Furthermore, the majority of the
  obtained textile structures showed a clear colour change with a change in acidity.
  This halochromic behaviour was, however, different from the behaviour of the dyes
  in solution due to dye-fibre interactions. \r\nOriginality/value - The knowledge
  obtained in this study can lead to the development of a textile pH-sensor. This
  sensor can be used in a broad field of applications since a colour change is a non-disturbing
  but clear signal which can perform a first warning function."
abstract_full:
- lang: eng
  text: "Purpose - The purpose of this paper is to develop textile materials with
    a pH-sensitive function. \r\nDesign/methodology/approach - As a start point, the
    feasibility of incorporating pH-indicators in conventional textiles using standard
    dyeing processes was investigated. Next, a pH-indicator was incorporated into
    a nylon nanofibrous structure by adding the dye to the polymer solution before
    the start of the electro-spinning process. \r\nFindings - The authors' results
    proved that it is possible to develop a pH-sensor using conventional textiles
    dyed by a standard dyeing process. Also, the incorporation of a pH-indicator dye
    into a nanofibrous structure was possible. Moreover, reproducible samples could
    be obtained. Furthermore, the majority of the obtained textile structures showed
    a clear colour change with a change in acidity. This halochromic behaviour was,
    however, different from the behaviour of the dyes in solution due to dye-fibre
    interactions. \r\nOriginality/value - The knowledge obtained in this study can
    lead to the development of a textile pH-sensor. This sensor can be used in a broad
    field of applications since a colour change is a non-disturbing but clear signal
    which can perform a first warning function."
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
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  path:
  - ugent_id: UGent
  - ugent_id: TW
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  ugent_id: TW11*
article_type: proceedingsPaper
author:
- _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
  - '002002166892'
  - '802000424715'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '1920674'
cite:
  apa: |2
      <div class="csl-entry">Van der Schueren, L., &#38; De Clerck, K. (2011). Textile materials with a pH-sensitive function. <i>INTERNATIONAL JOURNAL OF CLOTHING SCIENCE AND TECHNOLOGY</i>, <i>23</i>(4), 269–274. https://doi.org/10.1108/09556221111136539</div>
  bof: |2-
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2011. “Textile Materials with a PH-Sensitive Function.” <i>INTERNATIONAL JOURNAL OF CLOTHING SCIENCE AND TECHNOLOGY</i> 23 (4): 269–274. doi:10.1108/09556221111136539.</div>
    <div><i>Impact factor: 0.519, category: MATERIALS SCIENCE, TEXTILES, rank: 12/21, quartile: 3.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2011. “Textile Materials with a PH-Sensitive Function.” <i>INTERNATIONAL JOURNAL OF CLOTHING SCIENCE AND TECHNOLOGY</i> 23 (4): 269–74. https://doi.org/10.1108/09556221111136539.</div>
  fwo: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2011. “Textile Materials with a PH-Sensitive Function.” <i>INTERNATIONAL JOURNAL OF CLOTHING SCIENCE AND TECHNOLOGY</i> 23 (4): 269–274. doi:10.1108/09556221111136539.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Van der Schueren and K. De Clerck, “Textile materials with a pH-sensitive function,” <i>INTERNATIONAL JOURNAL OF CLOTHING SCIENCE AND TECHNOLOGY</i>, vol. 23, no. 4, pp. 269–274, 2011.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. “Textile Materials with a PH-Sensitive Function.” <i>INTERNATIONAL JOURNAL OF CLOTHING SCIENCE AND TECHNOLOGY</i>, vol. 23, no. 4, 2011, pp. 269–74, doi:10.1108/09556221111136539.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van der Schueren L, De Clerck K. Textile materials with a pH-sensitive function. INTERNATIONAL JOURNAL OF CLOTHING SCIENCE AND TECHNOLOGY. 2011;23(4):269–74.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    ugent_id: EB21
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  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2011-10-05 09:50:14
date_updated: 2026-03-31 07:39:41
doi:
- 10.1108/09556221111136539
external: 0
file:
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  size: '74159'
handle: http://hdl.handle.net/1854/LU-1920674
issn:
- 0955-6222
issue: '4'
jcr:
  category: MATERIALS SCIENCE, TEXTILES
  category_decile: 6
  category_quartile: 3
  category_rank: 12/21
  category_vigintile: 11
  eigenfactor: 0.00049
  immediacy_index: 0.031
  impact_factor: 0.519
  impact_factor_5yr: 0.806
  prev_category_decile: 7
  prev_category_quartile: 3
  prev_category_vigintile: 13
  prev_impact_factor: 0.529
  total_cites: 278
keyword:
- Textiles
- DYES
- Acidity
- Colours technology
- Alkalinity
language:
- eng
page:
  first: '269'
  last: '274'
parent:
  short_title: Int. J. Cloth. Sci. Technol.
  title: INTERNATIONAL JOURNAL OF CLOTHING SCIENCE AND TECHNOLOGY
project:
- _id: 01J04009
  abstract: <p>The aim of the project is to obtain a better understanding of the interactions
    between pH-sensitive dyes and textiles. Both a macroscopic spectral analysis and
    a general microscopic evaluation will be performed. The dye-fiber interactions,
    the local distribution, the impulse sensitivity and spectral variations as a function
    of time and place will be looked at.</p>
  end_date: 2013-10-31
  gismo_id: 070a44f0-b14b-48f0-9f2a-a0ec5c90b554
  iweto_id: 01J04009
  publication_count: 3
  start_date: 2009-01-01
  title: 'Research into new ''sensor materials'': pH-sensitive dyes in textiles'
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Textile materials with a pH-sensitive function
type: journalArticle
volume: '23'
wos_id: '000295021600008'
wos_type: Article; Proceedings Paper
year: '2011'
...
---
_id: '1318767'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
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  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
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  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
author:
- _id: F95E2958-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F95E2958-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Vincent
  last_name: Nierstrasz
  name: Vincent Nierstrasz
  name_last_first: Nierstrasz, Vincent
  ugent_id:
  - '802000230513'
- _id: 15183A6C-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
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    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 15183A6C-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Lucy Wanjiru
  last_name: Ciera
  name: Lucy Wanjiru Ciera
  name_last_first: Ciera, Lucy Wanjiru
  ugent_id:
  - '000081414120'
  - '802000854848'
  - '975665422618'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
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  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
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    ugent_id: TW18
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  first_name: Lieva
  last_name: Van Langenhove
  name: Lieva Van Langenhove
  name_last_first: Van Langenhove, Lieva
  orcid_id: 0000-0001-9802-7399
  ugent_id:
  - '801000648543'
  - '972198930382'
biblio_id: '1318767'
cite:
  apa: |2
      <div class="csl-entry">Nierstrasz, V., Ciera, L. W., De Clerck, K., &#38; Van Langenhove, L. (2011). Novel release system and biobased utilities for insect repellent textiles. <i>150 Years of Innovation and Research in Textile Science</i>, 846–847. Mulhouse, France: Ecole Nationale Supérieure d’Ingénieurs Sud-Alsace (ENSISA).</div>
  bof: |2
      <div class="csl-entry">Nierstrasz, Vincent, Lucy Wanjiru Ciera, Karen De Clerck, and Lieva Van Langenhove. 2011. “Novel Release System and Biobased Utilities for Insect Repellent Textiles.” In <i>150 Years of Innovation and Research in Textile Science</i>, 846–847. Mulhouse, France: Ecole Nationale Supérieure d’Ingénieurs Sud-Alsace (ENSISA).</div>
  chicago-author-date: |2
      <div class="csl-entry">Nierstrasz, Vincent, Lucy Wanjiru Ciera, Karen De Clerck, and Lieva Van Langenhove. 2011. “Novel Release System and Biobased Utilities for Insect Repellent Textiles.” In <i>150 Years of Innovation and Research in Textile Science</i>, 846–47. Mulhouse, France: Ecole Nationale Supérieure d’Ingénieurs Sud-Alsace (ENSISA).</div>
  fwo: |2
      <div class="csl-entry">Nierstrasz, Vincent, Lucy Wanjiru Ciera, Karen De Clerck, and Lieva Van Langenhove. 2011. “Novel Release System and Biobased Utilities for Insect Repellent Textiles.” In <i>150 Years of Innovation and Research in Textile Science</i>, 846–847. Mulhouse, France: Ecole Nationale Supérieure d’Ingénieurs Sud-Alsace (ENSISA).</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">V. Nierstrasz, L. W. Ciera, K. De Clerck, and L. Van Langenhove, “Novel release system and biobased utilities for insect repellent textiles,” in <i>150 Years of innovation and research in textile science</i>, Mulhouse, France, 2011, pp. 846–847.</div>
      </div>
  mla: |2
      <div class="csl-entry">Nierstrasz, Vincent, et al. “Novel Release System and Biobased Utilities for Insect Repellent Textiles.” <i>150 Years of Innovation and Research in Textile Science</i>, Ecole Nationale Supérieure d’Ingénieurs Sud-Alsace (ENSISA), 2011, pp. 846–47.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Nierstrasz V, Ciera LW, De Clerck K, Van Langenhove L. Novel release system and biobased utilities for insect repellent textiles. In: 150 Years of innovation and research in textile science. Mulhouse, France: Ecole Nationale Supérieure d’Ingénieurs Sud-Alsace (ENSISA); 2011. p. 846–7.</div>
       </div>
classification: C3
conference:
  end_date: 2011-06-10
  location: Mulhouse, France
  name: 11th World Textile Conference (Autex 2011)
  start_date: 2011-06-08
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2011-06-22 15:22:22
date_updated: 2026-03-31 07:22:39
external: 0
file:
- _id: '1318978'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: AUTEX2011_NIERSTRASZ.pdf
  sha256: ef41bc3e9af2fe749e3949837f9d373a2c2eacc3d6210f78d47b88fa4b9768d8
  size: '317277'
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  url: https://biblio.ugent.be/publication/1318767/file/1318978.pdf
handle: http://hdl.handle.net/1854/LU-1318767
isbn:
- '9782746628588'
jcr: {}
language:
- eng
page:
  first: '846'
  last: '847'
parent:
  title: 150 Years of innovation and research in textile science
project:
- _id: 41U00109
  abstract: '<p>In several applications of professional textiles and clothes mosquito
    repellency is an important issue. Two major problems arise: repellents currently
    in use are harmful, resistance to concentional repellents increases, and the lifetime
    of release systems is too short. <br /><br />Solving these two problems are the
    maing goals of the NO BUG project. Novel biorepellents will be considered and
    evaluated as well as two release systems (multilayer coating and textile bioaggregates)
    in order to repel mosquitoes causing malaria or dengue. Novel release concepts
    are multilayercoatings and in situ release of the active compounds. Targeted prototypes
    are tectilles for health workers and bed nets (mosquitoes). The project will study
    what are the best doncitions of use of the biorepellents and how to integrate
    them in the textile products. Testing, exploitation and dissemination will be
    an active part of the work.</p>'
  end_date: 2013-10-14
  eu_acronym: NO BUG
  eu_call_id: FP7-NMP-2008-SME-2
  eu_framework_programme: FP7
  eu_id: '228639'
  gismo_id: e4dcf902-3697-4547-b327-0a25ca337730
  iweto_id: 41U00109
  publication_count: 4
  start_date: 2009-10-15
  title: NO BUG - Novel Release System and Bio-Based Utilities for Insect Repellent
    Textiles and Garments
publication_status: published
publication_status_sort: 2
publisher:
  location: Mulhouse, France
  name: Ecole Nationale Supérieure d'Ingénieurs Sud-Alsace (ENSISA)
status: public
subject:
- Technology and Engineering
title: Novel release system and biobased utilities for insect repellent textiles
type: conference
year: '2011'
...
---
_id: '2085018'
abstract:
- Cotton biotechnology offers the potential for breakthrough developments in fiber
  characteristics.  In this process, the early selection of fibers with the best performance
  is of utmost importance.  However, due to the limited availability of these specialty
  fibers, the use of available test methods is limited and thus new test methodologies
  are needed.  The aim of this paper is to study Cone calorimetry for the characterization
  of cotton fibers.  One of the main aspects of the procedure, namely sample weight,
  is optimized to improve the reproducibility.
abstract_full:
- lang: eng
  text: Cotton biotechnology offers the potential for breakthrough developments in
    fiber characteristics.  In this process, the early selection of fibers with the
    best performance is of utmost importance.  However, due to the limited availability
    of these specialty fibers, the use of available test methods is limited and thus
    new test methodologies are needed.  The aim of this paper is to study Cone calorimetry
    for the characterization of cotton fibers.  One of the main aspects of the procedure,
    namely sample weight, is optimized to improve the reproducibility.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
author:
- _id: FBC58A9C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FBC58A9C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Özgür
  last_name: Ceylan
  name: Özgür Ceylan
  name_last_first: Ceylan, Özgür
  ugent_id:
  - '002005040722'
  - '802000481295'
  - '972618734561'
- _id: F58CB1E6-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F58CB1E6-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lieve
  last_name: Van Landuyt
  name: Lieve Van Landuyt
  name_last_first: Van Landuyt, Lieve
  ugent_id:
  - '801001285006'
- first_name: J
  last_name: Alongi
  name: J Alongi
  name_last_first: Alongi, J
- first_name: A
  last_name: Frache
  name: A Frache
  name_last_first: Frache, A
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '2085018'
cite:
  apa: |2
      <div class="csl-entry">Ceylan, Ö., Van Landuyt, L., Alongi, J., Frache, A., &#38; De Clerck, K. (2011). Cone calorimetry as a useful technique for the screening of cotton fibers. <i>13th European Meeting on Fire Retardant Polymers, Abstracts</i>, 1–2. Alessandria, Italy: Politecnico di Torino.</div>
  bof: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, J Alongi, A Frache, and Karen De Clerck. 2011. “Cone Calorimetry as a Useful Technique for the Screening of Cotton Fibers.” In <i>13th European Meeting on Fire Retardant Polymers, Abstracts</i>, 1–2. Alessandria, Italy: Politecnico di Torino.</div>
  chicago-author-date: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, J Alongi, A Frache, and Karen De Clerck. 2011. “Cone Calorimetry as a Useful Technique for the Screening of Cotton Fibers.” In <i>13th European Meeting on Fire Retardant Polymers, Abstracts</i>, 1–2. Alessandria, Italy: Politecnico di Torino.</div>
  fwo: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, J Alongi, A Frache, and Karen De Clerck. 2011. “Cone Calorimetry as a Useful Technique for the Screening of Cotton Fibers.” In <i>13th European Meeting on Fire Retardant Polymers, Abstracts</i>, 1–2. Alessandria, Italy: Politecnico di Torino.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Ö. Ceylan, L. Van Landuyt, J. Alongi, A. Frache, and K. De Clerck, “Cone calorimetry as a useful technique for the screening of cotton fibers,” in <i>13th European meeting on fire retardant polymers, Abstracts</i>, Alessandria, Italy, 2011, pp. 1–2.</div>
      </div>
  mla: |2
      <div class="csl-entry">Ceylan, Özgür, et al. “Cone Calorimetry as a Useful Technique for the Screening of Cotton Fibers.” <i>13th European Meeting on Fire Retardant Polymers, Abstracts</i>, Politecnico di Torino, 2011, pp. 1–2.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Ceylan Ö, Van Landuyt L, Alongi J, Frache A, De Clerck K. Cone calorimetry as a useful technique for the screening of cotton fibers. In: 13th European meeting on fire retardant polymers, Abstracts. Alessandria, Italy: Politecnico di Torino; 2011. p. 1–2.</div>
       </div>
classification: C3
conference:
  end_date: 2011-06-30
  location: Alessandria, Italy
  name: 13th European Meeting on Fire Retardant Polymers
  start_date: 2011-06-26
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2012-04-12 13:51:44
date_updated: 2026-03-31 09:15:45
external: 0
file:
- _id: '2085027'
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  kind: fullText
  name: Cone_calorimetry.pdf
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  size: '721715'
  thumbnail_url: https://biblio.ugent.be/publication/2085018/file/2085027/thumbnail.png
  url: https://biblio.ugent.be/publication/2085018/file/2085027.pdf
handle: http://hdl.handle.net/1854/LU-2085018
jcr: {}
language:
- eng
page:
  first: '1'
  last: '2'
parent:
  title: 13th European meeting on fire retardant polymers, Abstracts
publication_status: published
publication_status_sort: 2
publisher:
  location: Alessandria, Italy
  name: Politecnico di Torino
status: public
subject:
- Technology and Engineering
title: Cone calorimetry as a useful technique for the screening of cotton fibers
type: conference
year: '2011'
...
---
_id: '856407'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
author:
- _id: F873DBBE-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F873DBBE-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Sander
  last_name: De Vrieze
  name: Sander De Vrieze
  name_last_first: De Vrieze, Sander
  ugent_id:
  - '802000062074'
  - '002001065843'
- _id: FADF950A-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FADF950A-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Bert
  last_name: De Schoenmaker
  name: Bert De Schoenmaker
  name_last_first: De Schoenmaker, Bert
  ugent_id:
  - '002003264107'
  - '802000214244'
  - '978815731125'
- _id: F4ABDEE6-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4ABDEE6-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Philippe
  last_name: Westbroek
  name: Philippe Westbroek
  name_last_first: Westbroek, Philippe
  ugent_id:
  - '801000885888'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '856407'
cite:
  apa: |2
      <div class="csl-entry">De Vrieze, S., De Schoenmaker, B., Westbroek, P., &#38; De Clerck, K. (2010). Reproducible polyamide nanofibers for water filtration. <i>ElectroSpin 2010 : Program and Abstracts</i>, 25–25. Melbourne, Australia: CSIRO Materials Science and Engineering.</div>
  bof: |2
      <div class="csl-entry">De Vrieze, Sander, Bert De Schoenmaker, Philippe Westbroek, and Karen De Clerck. 2010. “Reproducible Polyamide Nanofibers for Water Filtration.” In <i>ElectroSpin 2010 : Program and Abstracts</i>, 25–25. Melbourne, Australia: CSIRO Materials Science and Engineering.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Vrieze, Sander, Bert De Schoenmaker, Philippe Westbroek, and Karen De Clerck. 2010. “Reproducible Polyamide Nanofibers for Water Filtration.” In <i>ElectroSpin 2010 : Program and Abstracts</i>, 25–25. Melbourne, Australia: CSIRO Materials Science and Engineering.</div>
  fwo: |2
      <div class="csl-entry">De Vrieze, Sander, Bert De Schoenmaker, Philippe Westbroek, and Karen De Clerck. 2010. “Reproducible Polyamide Nanofibers for Water Filtration.” In <i>ElectroSpin 2010 : Program and Abstracts</i>, 25–25. Melbourne, Australia: CSIRO Materials Science and Engineering.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. De Vrieze, B. De Schoenmaker, P. Westbroek, and K. De Clerck, “Reproducible polyamide nanofibers for water filtration,” in <i>ElectroSpin 2010 : program and abstracts</i>, Melbourne, Australia, 2010, pp. 25–25.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Vrieze, Sander, et al. “Reproducible Polyamide Nanofibers for Water Filtration.” <i>ElectroSpin 2010 : Program and Abstracts</i>, CSIRO Materials Science and Engineering, 2010, pp. 25–25.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Vrieze S, De Schoenmaker B, Westbroek P, De Clerck K. Reproducible polyamide nanofibers for water filtration. In: ElectroSpin 2010 : program and abstracts. Melbourne, Australia: CSIRO Materials Science and Engineering; 2010. p. 25–25.</div>
       </div>
classification: C3
conference:
  end_date: 2010-01-29
  location: Melbourne, Australia
  name: '1st International conference on Electrospinning (ElectroSpin 2010) : Latest
    development in electrospinning for materials and life sciences'
  start_date: 2010-01-26
conference_type: meetingAbstract
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2010-02-09 09:37:04
date_updated: 2023-05-08 11:47:19
external: 0
file:
- _id: '1939196'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: Reproducible_polyamide_nanofibers_for_water_filtration.pdf
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  size: '631302'
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handle: http://hdl.handle.net/1854/LU-856407
jcr: {}
language:
- eng
page:
  first: '25'
  last: '25'
parent:
  title: 'ElectroSpin 2010 : program and abstracts'
publication_status: published
publication_status_sort: 2
publisher:
  location: Melbourne, Australia
  name: CSIRO Materials Science and Engineering
status: public
subject:
- Technology and Engineering
title: Reproducible polyamide nanofibers for water filtration
type: conference
year: '2010'
...
---
_id: '1140092'
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
alternative_title:
- 'Nieuws uit de vakgroep textielkunde : Kleurvariërende materialen als nieuwe textielsensoren'
article_type: letterNote
author:
- _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
  - '002002166892'
  - '802000424715'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '1140092'
cite:
  apa: |2
      <div class="csl-entry">Van der Schueren, L., &#38; De Clerck, K. (2010). Kleurvariërende materialen als nieuwe textielsensoren. <i>UNITEX. TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i>, (2010 / 5), 40–40.</div>
  bof: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2010. “Kleurvariërende Materialen Als Nieuwe Textielsensoren.” <i>UNITEX. TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i> (2010 / 5): 40–40.</div>
  chicago-author-date: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2010. “Kleurvariërende Materialen Als Nieuwe Textielsensoren.” <i>UNITEX. TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i>, no. 2010 / 5: 40–40.</div>
  fwo: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2010. “Kleurvariërende Materialen Als Nieuwe Textielsensoren.” <i>UNITEX. TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i> (2010 / 5): 40–40.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Van der Schueren and K. De Clerck, “Kleurvariërende materialen als nieuwe textielsensoren,” <i>UNITEX. TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i>, no. 2010 / 5, pp. 40–40, 2010.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. “Kleurvariërende Materialen Als Nieuwe Textielsensoren.” <i>UNITEX. TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i>, no. 2010 / 5, Unitex vzw, 2010, pp. 40–40.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van der Schueren L, De Clerck K. Kleurvariërende materialen als nieuwe textielsensoren. UNITEX TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE. 2010;(2010 / 5):40–40.</div>
       </div>
classification: A4
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2011-02-04 16:42:55
date_updated: 2026-03-31 07:07:07
external: 0
file:
- _id: '1140095'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: kleurvarierende_materialen_als_nieuwe_textielsensoren.pdf
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handle: http://hdl.handle.net/1854/LU-1140092
issue: 2010 / 5
jcr: {}
language:
- eng
page:
  first: '40'
  last: '40'
parent:
  short_title: UNITEX (Deinze)
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- Technology and Engineering
title: Kleurvariërende materialen als nieuwe textielsensoren
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year: '2010'
...
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  apa: |2
      <div class="csl-entry">De Schoenmaker, B., De Vrieze, S., Van der Schueren, L., &#38; De Clerck, K. (2010). Towards steady state electrospinning. In Z. Dragčević (Ed.), <i>Book of proceedings : magic world of textiles : 5th International Textile, Clothing &#38; Design Conference</i> (pp. 71–76). Zagreb, Croatia: University of Zagreb. Faculty of Textile Technology.</div>
  bof: |2
      <div class="csl-entry">De Schoenmaker, Bert, Sander De Vrieze, Lien Van der Schueren, and Karen De Clerck. 2010. “Towards Steady State Electrospinning.” In <i>Book of Proceedings : Magic World of Textiles : 5th International Textile, Clothing &#38; Design Conference</i>, ed by. Zvonko Dragčević, 71–76. Zagreb, Croatia: University of Zagreb. Faculty of Textile Technology.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Schoenmaker, Bert, Sander De Vrieze, Lien Van der Schueren, and Karen De Clerck. 2010. “Towards Steady State Electrospinning.” In <i>Book of Proceedings : Magic World of Textiles : 5th International Textile, Clothing &#38; Design Conference</i>, edited by Zvonko Dragčević, 71–76. Zagreb, Croatia: University of Zagreb. Faculty of Textile Technology.</div>
  fwo: |2
      <div class="csl-entry">De Schoenmaker, Bert, Sander De Vrieze, Lien Van der Schueren, and Karen De Clerck. 2010. “Towards Steady State Electrospinning.” In <i>Book of Proceedings : Magic World of Textiles : 5th International Textile, Clothing &#38; Design Conference</i>, ed by. Zvonko Dragčević, 71–76. Zagreb, Croatia: University of Zagreb. Faculty of Textile Technology.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. De Schoenmaker, S. De Vrieze, L. Van der Schueren, and K. De Clerck, “Towards steady state electrospinning,” in <i>Book of proceedings : magic world of textiles : 5th International Textile, Clothing &#38; Design Conference</i>, Dubrovnik, Croatia, 2010, pp. 71–76.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Schoenmaker, Bert, et al. “Towards Steady State Electrospinning.” <i>Book of Proceedings : Magic World of Textiles : 5th International Textile, Clothing &#38; Design Conference</i>, edited by Zvonko Dragčević, University of Zagreb. Faculty of Textile Technology, 2010, pp. 71–76.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Schoenmaker B, De Vrieze S, Van der Schueren L, De Clerck K. Towards steady state electrospinning. In: Dragčević Z, editor. Book of proceedings : magic world of textiles : 5th International Textile, Clothing &#38; Design Conference. Zagreb, Croatia: University of Zagreb. Faculty of Textile Technology; 2010. p. 71–6.</div>
       </div>
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title: Towards steady state electrospinning
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      <div class="csl-entry">Ceylan, Ö., Van Landuyt, L., &#38; De Clerck, K. (2010). Small scale tests to evaluate cotton fibres. In Z. Dragčević (Ed.), <i>Book of proceedings : magic world of textiles : 5th International Textile, Clothing &#38; Design Conference</i> (pp. 566–569). Zagreb, Croatia: University of Zagreb. Faculty of Textile Technology.</div>
  bof: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, and Karen De Clerck. 2010. “Small Scale Tests to Evaluate Cotton Fibres.” In <i>Book of Proceedings : Magic World of Textiles : 5th International Textile, Clothing &#38; Design Conference</i>, ed by. Zvonko Dragčević, 566–569. Zagreb, Croatia: University of Zagreb. Faculty of Textile Technology.</div>
  chicago-author-date: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, and Karen De Clerck. 2010. “Small Scale Tests to Evaluate Cotton Fibres.” In <i>Book of Proceedings : Magic World of Textiles : 5th International Textile, Clothing &#38; Design Conference</i>, edited by Zvonko Dragčević, 566–69. Zagreb, Croatia: University of Zagreb. Faculty of Textile Technology.</div>
  fwo: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, and Karen De Clerck. 2010. “Small Scale Tests to Evaluate Cotton Fibres.” In <i>Book of Proceedings : Magic World of Textiles : 5th International Textile, Clothing &#38; Design Conference</i>, ed by. Zvonko Dragčević, 566–569. Zagreb, Croatia: University of Zagreb. Faculty of Textile Technology.</div>
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      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Ö. Ceylan, L. Van Landuyt, and K. De Clerck, “Small scale tests to evaluate cotton fibres,” in <i>Book of proceedings : magic world of textiles : 5th International Textile, Clothing &#38; Design Conference</i>, Dubrovnik, Croatia, 2010, pp. 566–569.</div>
      </div>
  mla: |2
      <div class="csl-entry">Ceylan, Özgür, et al. “Small Scale Tests to Evaluate Cotton Fibres.” <i>Book of Proceedings : Magic World of Textiles : 5th International Textile, Clothing &#38; Design Conference</i>, edited by Zvonko Dragčević, University of Zagreb. Faculty of Textile Technology, 2010, pp. 566–69.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Ceylan Ö, Van Landuyt L, De Clerck K. Small scale tests to evaluate cotton fibres. In: Dragčević Z, editor. Book of proceedings : magic world of textiles : 5th International Textile, Clothing &#38; Design Conference. Zagreb, Croatia: University of Zagreb. Faculty of Textile Technology; 2010. p. 566–9.</div>
       </div>
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cite:
  apa: |2
      <div class="csl-entry">Daels, N., De Vrieze, S., Sampers, I., Decostere, B., Westbroek, P., Dumoulin, A., … Van Hulle, S. (2010). Performance assessment of functionalized electrospun nanofibres for removal of pathogens. In R. Dewil, L. Appels, &#38; A. Hulsmans (Eds.), <i>European Meeting on Chemical Industry and Environment, 6th, Proceedings</i>. Mechelen, Belgium: University College Lessius Mechelen.</div>
  bof: |2
      <div class="csl-entry">Daels, Nele, Sander De Vrieze, Imca Sampers, Bjorge Decostere, Philippe Westbroek, Ann Dumoulin, Pascal Dejans, Karen De Clerck, and Stijn Van Hulle. 2010. “Performance Assessment of Functionalized Electrospun Nanofibres for Removal of Pathogens.” In <i>European Meeting on Chemical Industry and Environment, 6th, Proceedings</i>, ed by. Raf Dewil, Lise Appels, and Ann Hulsmans. Mechelen, Belgium: University College Lessius Mechelen.</div>
  chicago-author-date: |2
      <div class="csl-entry">Daels, Nele, Sander De Vrieze, Imca Sampers, Bjorge Decostere, Philippe Westbroek, Ann Dumoulin, Pascal Dejans, Karen De Clerck, and Stijn Van Hulle. 2010. “Performance Assessment of Functionalized Electrospun Nanofibres for Removal of Pathogens.” In <i>European Meeting on Chemical Industry and Environment, 6th, Proceedings</i>, edited by Raf Dewil, Lise Appels, and Ann Hulsmans. Mechelen, Belgium: University College Lessius Mechelen.</div>
  fwo: |2
      <div class="csl-entry">Daels, Nele, Sander De Vrieze, Imca Sampers, Bjorge Decostere, Philippe Westbroek, Ann Dumoulin, Pascal Dejans, Karen De Clerck, and Stijn Van Hulle. 2010. “Performance Assessment of Functionalized Electrospun Nanofibres for Removal of Pathogens.” In <i>European Meeting on Chemical Industry and Environment, 6th, Proceedings</i>, ed by. Raf Dewil, Lise Appels, and Ann Hulsmans. Mechelen, Belgium: University College Lessius Mechelen.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">N. Daels <i>et al.</i>, “Performance assessment of functionalized electrospun nanofibres for removal of pathogens,” in <i>European Meeting on Chemical Industry and Environment, 6th, Proceedings</i>, Mechelen, Belgium, 2010.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daels, Nele, et al. “Performance Assessment of Functionalized Electrospun Nanofibres for Removal of Pathogens.” <i>European Meeting on Chemical Industry and Environment, 6th, Proceedings</i>, edited by Raf Dewil et al., University College Lessius Mechelen, 2010.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daels N, De Vrieze S, Sampers I, Decostere B, Westbroek P, Dumoulin A, et al. Performance assessment of functionalized electrospun nanofibres for removal of pathogens. In: Dewil R, Appels L, Hulsmans A, editors. European Meeting on Chemical Industry and Environment, 6th, Proceedings. Mechelen, Belgium: University College Lessius Mechelen; 2010.</div>
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classification: C1
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  apa: |2
      <div class="csl-entry">Daels, N., De Vrieze, S., Sampers, I., Decostere, B., Westbroek, P., Dumoulin, A., … Van Hulle, S. (2010). Performance assessment of functionalized electrospun nanofibres for removal of pathogens. <i>Membranes in Drinking and Industrial Water Treatment, Proceedings</i>. Presented at the Membranes in drinking and industrial water treatment (MIDW 2010), Trondheim, Norway.</div>
  bof: |2
      <div class="csl-entry">Daels, Nele, Sander De Vrieze, Imca Sampers, Bjorge Decostere, Philippe Westbroek, Ann Dumoulin, Pascal Dejans, Karen De Clerck, and Stijn Van Hulle. 2010. “Performance Assessment of Functionalized Electrospun Nanofibres for Removal of Pathogens.” In <i>Membranes in Drinking and Industrial Water Treatment, Proceedings</i>. International Water Association (IWA).</div>
  chicago-author-date: |2
      <div class="csl-entry">Daels, Nele, Sander De Vrieze, Imca Sampers, Bjorge Decostere, Philippe Westbroek, Ann Dumoulin, Pascal Dejans, Karen De Clerck, and Stijn Van Hulle. 2010. “Performance Assessment of Functionalized Electrospun Nanofibres for Removal of Pathogens.” In <i>Membranes in Drinking and Industrial Water Treatment, Proceedings</i>. International Water Association (IWA).</div>
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  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">N. Daels <i>et al.</i>, “Performance assessment of functionalized electrospun nanofibres for removal of pathogens,” in <i>Membranes in drinking and industrial water treatment, Proceedings</i>, Trondheim, Norway, 2010.</div>
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  mla: |2
      <div class="csl-entry">Daels, Nele, et al. “Performance Assessment of Functionalized Electrospun Nanofibres for Removal of Pathogens.” <i>Membranes in Drinking and Industrial Water Treatment, Proceedings</i>, International Water Association (IWA), 2010.</div>
  vancouver: |2
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        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daels N, De Vrieze S, Sampers I, Decostere B, Westbroek P, Dumoulin A, et al. Performance assessment of functionalized electrospun nanofibres for removal of pathogens. In: Membranes in drinking and industrial water treatment, Proceedings. International Water Association (IWA); 2010.</div>
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  apa: |2
      <div class="csl-entry">Daels, N., De Vrieze, S., Sampers, I., Decostere, B., Westbroek, P., Dumoulin, A., … Van Hulle, S. (2010). Performance assessment of functionalized electrospun nanofibres for removal of pathogens. <i>IWA World Water Congress, 7th, Proceedings</i>. Presented at the 7th IWA World Water Congress and Exhibition, Montréal, QU, Canada.</div>
  bof: |2
      <div class="csl-entry">Daels, Nele, Sander De Vrieze, Imca Sampers, Bjorge Decostere, Philippe Westbroek, Ann Dumoulin, Pascal Dejans, Karen De Clerck, and Stijn Van Hulle. 2010. “Performance Assessment of Functionalized Electrospun Nanofibres for Removal of Pathogens.” In <i>IWA World Water Congress, 7th, Proceedings</i>. International Water Association (IWA).</div>
  chicago-author-date: |2
      <div class="csl-entry">Daels, Nele, Sander De Vrieze, Imca Sampers, Bjorge Decostere, Philippe Westbroek, Ann Dumoulin, Pascal Dejans, Karen De Clerck, and Stijn Van Hulle. 2010. “Performance Assessment of Functionalized Electrospun Nanofibres for Removal of Pathogens.” In <i>IWA World Water Congress, 7th, Proceedings</i>. International Water Association (IWA).</div>
  fwo: |2
      <div class="csl-entry">Daels, Nele, Sander De Vrieze, Imca Sampers, Bjorge Decostere, Philippe Westbroek, Ann Dumoulin, Pascal Dejans, Karen De Clerck, and Stijn Van Hulle. 2010. “Performance Assessment of Functionalized Electrospun Nanofibres for Removal of Pathogens.” In <i>IWA World Water Congress, 7th, Proceedings</i>. International Water Association (IWA).</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">N. Daels <i>et al.</i>, “Performance assessment of functionalized electrospun nanofibres for removal of pathogens,” in <i>IWA World Water Congress, 7th, Proceedings</i>, Montréal, QU, Canada, 2010.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daels, Nele, et al. “Performance Assessment of Functionalized Electrospun Nanofibres for Removal of Pathogens.” <i>IWA World Water Congress, 7th, Proceedings</i>, International Water Association (IWA), 2010.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daels N, De Vrieze S, Sampers I, Decostere B, Westbroek P, Dumoulin A, et al. Performance assessment of functionalized electrospun nanofibres for removal of pathogens. In: IWA World Water Congress, 7th, Proceedings. International Water Association (IWA); 2010.</div>
       </div>
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  apa: |2
      <div class="csl-entry">Van der Schueren, L., Mollet, T., Ceylan, Ö., &#38; De Clerck, K. (2010). The development of polyamide 6.6 nanofibres with a pH-sensitive function by electrospinning. <i>EUROPEAN POLYMER JOURNAL</i>, <i>46</i>(12), 2229–2239. https://doi.org/10.1016/j.eurpolymj.2010.09.016</div>
  bof: |2-
      <div class="csl-entry">Van der Schueren, Lien, Tybo Mollet, Özgür Ceylan, and Karen De Clerck. 2010. “The Development of Polyamide 6.6 Nanofibres with a PH-Sensitive Function by Electrospinning.” <i>EUROPEAN POLYMER JOURNAL</i> 46 (12): 2229–2239. doi:10.1016/j.eurpolymj.2010.09.016.</div>
    <div><i>Impact factor: 2.517, category: POLYMER SCIENCE, rank: 17/78, quartile: 1.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Van der Schueren, Lien, Tybo Mollet, Özgür Ceylan, and Karen De Clerck. 2010. “The Development of Polyamide 6.6 Nanofibres with a PH-Sensitive Function by Electrospinning.” <i>EUROPEAN POLYMER JOURNAL</i> 46 (12): 2229–39. https://doi.org/10.1016/j.eurpolymj.2010.09.016.</div>
  fwo: |2
      <div class="csl-entry">Van der Schueren, Lien, Tybo Mollet, Özgür Ceylan, and Karen De Clerck. 2010. “The Development of Polyamide 6.6 Nanofibres with a PH-Sensitive Function by Electrospinning.” <i>EUROPEAN POLYMER JOURNAL</i> 46 (12): 2229–2239. doi:10.1016/j.eurpolymj.2010.09.016.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Van der Schueren, T. Mollet, Ö. Ceylan, and K. De Clerck, “The development of polyamide 6.6 nanofibres with a pH-sensitive function by electrospinning,” <i>EUROPEAN POLYMER JOURNAL</i>, vol. 46, no. 12, pp. 2229–2239, 2010.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van der Schueren, Lien, et al. “The Development of Polyamide 6.6 Nanofibres with a PH-Sensitive Function by Electrospinning.” <i>EUROPEAN POLYMER JOURNAL</i>, vol. 46, no. 12, 2010, pp. 2229–39, doi:10.1016/j.eurpolymj.2010.09.016.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van der Schueren L, Mollet T, Ceylan Ö, De Clerck K. The development of polyamide 6.6 nanofibres with a pH-sensitive function by electrospinning. EUROPEAN POLYMER JOURNAL. 2010;46(12):2229–39.</div>
       </div>
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keyword:
- pH-indicators
- Halochromism
- Polyamide 6.6
- Electrospinning
- TEMPERATURE
- TEXTILES
- DYES
language:
- eng
page:
  first: '2229'
  last: '2239'
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    FN ISI Export Format
    VR 1.0
    PT J
    AU Van der Schueren, L
       Mollet, T
       Ceylan, O
       De Clerck, K
    AF Van der Schueren, Lien
       Mollet, Tybo
       Ceylan, Ozgur
       De Clerck, Karen
    TI The development of polyamide 6.6 nanofibres with a pH-sensitive
       function by electrospinning
    SO EUROPEAN POLYMER JOURNAL
    LA English
    DT Article
    DE Electrospinning; Polyamide 6.6; pH-indicators; Halochromism
    ID TEMPERATURE; TEXTILES; DYES
    AB The development of a pH-sensitive nanofibrous sensor could contribute
       to interesting applications thanks to the combination of the
       pH-sensitive functionality and the unique characteristics of
       nanofibres. The effect of the addition of pH-sensitive dyes to the
       polymer solution is however unknown. Moreover also the halochromic
       behaviour of the resulting nonwovens can be influenced by this
       incorporation. Therefore, we studied the production of halochromic nano
       nonwovens by adding various pH-indicator dyes to a polyamide 6.6
       polymer solution prior to electrospinning. Next, the halochromism of
       two selected dyes (Bromocresol Purple and Brilliant Yellow) was
       investigated as case studies. Our results show that the pH-indicator
       addition has no influence on the average fibre diameter. Poorly
       dissolved dyes cause however instabilities in the process as seen by
       the droplet formation. The investigated nanofibrous structures showed a
       clear colour change with a change in pH. This halochromic behaviour was
       however different from the behaviour of the dye in solution due to
       dye-fibre interactions. Generally it can be concluded that a
       nanofibrous pH-sensor can be developed by electrospinning with
       incorporated pH-indicator dyes. (C) 2010 Elsevier Ltd. All rights
       reserved.
    C1 [Van der Schueren, Lien; Mollet, Tybo; Ceylan, Ozgur; De Clerck, Karen] Univ Ghent, Dept Text, B-9052 Ghent, Belgium.
    RP De Clerck, K, Univ Ghent, Dept Text, Technol Pk 907, B-9052 Ghent,
       Belgium.
    EM lien.vanderschueren@ugent.be
       ozgur.ceylan@ugent.be
       karen.declerck@ugent.be
    NR 20
    PU PERGAMON-ELSEVIER SCIENCE LTD
    PI OXFORD
    PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND
    SN 0014-3057
    J9 EUR POLYM J
    JI Eur. Polym. J.
    PD DEC
    PY 2010
    VL 46
    IS 12
    BP 2229
    EP 2239
    DI 10.1016/j.eurpolymj.2010.09.016
    PG 11
    SC Polymer Science
    GA 692CI
    UT ISI:000285128700002
status: public
subject:
- Technology and Engineering
title: The development of polyamide 6.6 nanofibres with a pH-sensitive function by
  electrospinning
type: journalArticle
volume: '46'
wos_id: '000285128700002'
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  apa: |2
      <div class="csl-entry">Nierstrasz, V., Ciera, L. W., De Clerck, K., &#38; Van Langenhove, L. (2010). Novel insect repellent textiles. <i>Chemistry and Application Fields : Book Summaries</i>, 5–5. Arad, Romania: University of Arad.</div>
  bof: |2
      <div class="csl-entry">Nierstrasz, Vincent, Lucy Wanjiru Ciera, Karen De Clerck, and Lieva Van Langenhove. 2010. “Novel Insect Repellent Textiles.” In <i>Chemistry and Application Fields : Book Summaries</i>, 5–5. Arad, Romania: University of Arad.</div>
  chicago-author-date: |2
      <div class="csl-entry">Nierstrasz, Vincent, Lucy Wanjiru Ciera, Karen De Clerck, and Lieva Van Langenhove. 2010. “Novel Insect Repellent Textiles.” In <i>Chemistry and Application Fields : Book Summaries</i>, 5–5. Arad, Romania: University of Arad.</div>
  fwo: |2
      <div class="csl-entry">Nierstrasz, Vincent, Lucy Wanjiru Ciera, Karen De Clerck, and Lieva Van Langenhove. 2010. “Novel Insect Repellent Textiles.” In <i>Chemistry and Application Fields : Book Summaries</i>, 5–5. Arad, Romania: University of Arad.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">V. Nierstrasz, L. W. Ciera, K. De Clerck, and L. Van Langenhove, “Novel insect repellent textiles,” in <i>Chemistry and application fields : book summaries</i>, Arad, Romania, 2010, pp. 5–5.</div>
      </div>
  mla: |2
      <div class="csl-entry">Nierstrasz, Vincent, et al. “Novel Insect Repellent Textiles.” <i>Chemistry and Application Fields : Book Summaries</i>, University of Arad, 2010, pp. 5–5.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Nierstrasz V, Ciera LW, De Clerck K, Van Langenhove L. Novel insect repellent textiles. In: Chemistry and application fields : book summaries. Arad, Romania: University of Arad; 2010. p. 5–5.</div>
       </div>
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  apa: |2
      <div class="csl-entry">De Vrieze, S., Westbroek, P., Van Camp, T., &#38; De Clerck, K. (2010). Solvent system for steady state electrospinning of polyamide 6.6. <i>JOURNAL OF APPLIED POLYMER SCIENCE</i>, <i>115</i>(2), 837–842. https://doi.org/10.1002/app.30331</div>
  chicago-author-date: |2
      <div class="csl-entry">De Vrieze, Sander, Philippe Westbroek, Tamara Van Camp, and Karen De Clerck. 2010. “Solvent System for Steady State Electrospinning of Polyamide 6.6.” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i> 115 (2): 837–42. https://doi.org/10.1002/app.30331.</div>
  fwo: |2
      <div class="csl-entry">De Vrieze, Sander, Philippe Westbroek, Tamara Van Camp, and Karen De Clerck. 2010. “Solvent System for Steady State Electrospinning of Polyamide 6.6.” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i> 115 (2): 837–842. doi:10.1002/app.30331.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. De Vrieze, P. Westbroek, T. Van Camp, and K. De Clerck, “Solvent system for steady state electrospinning of polyamide 6.6,” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i>, vol. 115, no. 2, pp. 837–842, 2010.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Vrieze, Sander, et al. “Solvent System for Steady State Electrospinning of Polyamide 6.6.” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i>, vol. 115, no. 2, 2010, pp. 837–42, doi:10.1002/app.30331.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Vrieze S, Westbroek P, Van Camp T, De Clerck K. Solvent system for steady state electrospinning of polyamide 6.6. JOURNAL OF APPLIED POLYMER SCIENCE. 2010;115(2):837–42.</div>
       </div>
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  impact_factor_5yr: 1.398
  prev_category_decile: 5
  prev_category_quartile: 3
  prev_category_vigintile: 10
  prev_impact_factor: 1.203
  total_cites: 37386
keyword:
- JETS
- NANOFIBERS
- NYLON-6
- steady state
- electrospinning
- nanofibres
- FABRICATION
- FIBERS
- DIAMETER
language:
- eng
page:
  count: '6'
  first: '837'
  last: '842'
parent:
  short_title: J. Appl. Polym. Sci.
  title: JOURNAL OF APPLIED POLYMER SCIENCE
publication_status: published
publication_status_sort: 2
source:
  record: |
    FN ISI Export Format
    VR 1.0
    PT J
    AU De Vrieze, S
       Westbroek, P
       Van Camp, T
       De Clerck, K
    AF De Vrieze, Sander
       Westbroek, Philippe
       Van Camp, Tamara
       De Clerck, Karen
    TI Solvent System for Steady State Electrospinning of Polyamide 6.6
    SO JOURNAL OF APPLIED POLYMER SCIENCE
    LA English
    DT Article
    DE nanofibres; electrospinning; steady state
    ID NANOFIBERS; NYLON-6; FABRICATION; DIAMETER; FIBERS; JETS
    AB A mixture of formic acid/acetic acid makes it possible to electrospin
       polyamide 6.6 in steady state conditions. Steady state conditions are
       essential in nozzle electrospinning to generate a stable process which
       fabricates reproducible material, permitting industrial upscaling. This
       study shows that only a limited mixture range of formic acid/acetic
       acid allows electrospinning of polyamide 6.6 in steady state.
       Furthermore, the weight concentration in solution; the tip to collector
       distance and the flow rate have been changed to control the average
       diameter of the nanofibres. The average diameter increases by
       increasing weight concentration in solution, increasing volume fraction
       of acetic acid in the mixture, increasing tip to collector distance and
       increasing flow rate. (C) 2009 Wiley Periodicals, Inc. J Appl Polym Sci
       115: 837-842, 2010
    C1 [De Vrieze, Sander; Westbroek, Philippe; Van Camp, Tamara; De Clerck, Karen] Univ Ghent, Dept Text, B-9052 Ghent, Belgium.
    RP De Vrieze, S, Univ Ghent, Dept Text, Technol Pk 907, B-9052 Ghent,
       Belgium.
    EM sander.devrieze@Ugent.be
    CR CARRIZALES C, 2008, POLYM ADVAN TECHNOL, V19, P124, DOI 10.1002/pat.981
       DERSCH R, 2003, J POLYM SCI POL CHEM, V41, P545, DOI 10.1002/pola.10609
       FANG ZX, 2004, ACTA POLYM SIN, V8, P500
       FORMHALS A, 1934, 1975504, US
       HAN XJ, 2007, HIGH PERFORM POLYM, V19, P147, DOI
       10.1177/0954008306072499
       HELGESON ME, 2008, POLYMER, V49, P2924, DOI
       10.1016/j.polymer.2008.04.025
       JEONG JS, 2006, DIAM RELAT MATER, V15, P1839, DOI
       10.1016/j.diamond.2006.08.026
       JOHN D, 1998, LANGES HDB CHEM PHYS
       KIM KW, 2004, FIBER POLYM, V5, P122
       LEE S, 2007, TEXT RES J, V77, P696, DOI 10.1177/0040517507080284
       LI L, 2006, J ENG FIBER FABR, V1, P1
       LIDE D, 2003, CRC HDB CHEM PHYS
       PEDICINI A, 2003, POLYMER, V44, P6857, DOI 10.1016/j.polymer.2003.08.040
       RENEKER DH, 2000, J APPL PHYS 1, V87, P4531
       SELL SA, 2008, J MATER CHEM, V18, P260, DOI 10.1039/b711848a
       SON WK, 2004, POLYMER, V45, P2959, DOI 10.1016/j.polymer.2004.03.006
       SPIVAK AF, 1999, ELECTROSTATICS, V163, P175
       SPIVAK AF, 2000, MECH RES COMMUN, V27, P37
       SUPAPHOL P, 2005, MACROMOL MATER ENG, V290, P933, DOI
       10.1002/mame.200500024
       TAN K, 2007, J MEMBRANE SCI, V305, P287, DOI
       10.1016/j.memsci.2007.08.015
    NR 20
    PU JOHN WILEY & SONS INC
    PI HOBOKEN
    PA 111 RIVER ST, HOBOKEN, NJ 07030 USA
    SN 0021-8995
    J9 J APPL POLYM SCI
    JI J. Appl. Polym. Sci.
    PD JAN 15
    PY 2010
    VL 115
    IS 2
    BP 837
    EP 842
    DI 10.1002/app.30331
    PG 6
    SC Polymer Science
    GA 518HE
    UT ISI:000271680700024
status: public
subject:
- Technology and Engineering
title: Solvent system for steady state electrospinning of polyamide 6.6
type: journalArticle
volume: '115'
wos_id: '000271680700024'
wos_type: Article
year: '2010'
...
---
_id: '988965'
abstract:
- The hydrophilicity of nanofibrous structures is a key characteristic for many applications.
  However due to the high porosity of the structures, it is difficult to measure this
  property with contact angle measurements. Therefore a characterisation through wicking
  behaviour is more appropriate. The ISO-norm on wicking behaviour needs some refining
  to account for the specific nature of the highly porous nanofibrous structures.
  This refined method is used on polyamide 6 nanofibrous structures with different
  diameters and on polyamide 6 nanofibres with an incorporated hydrophilic compound.
  It was found that the fibre diameter is the major characteristic which influences
  the wicking behaviour.
abstract_full:
- lang: eng
  text: The hydrophilicity of nanofibrous structures is a key characteristic for many
    applications. However due to the high porosity of the structures, it is difficult
    to measure this property with contact angle measurements. Therefore a characterisation
    through wicking behaviour is more appropriate. The ISO-norm on wicking behaviour
    needs some refining to account for the specific nature of the highly porous nanofibrous
    structures. This refined method is used on polyamide 6 nanofibrous structures
    with different diameters and on polyamide 6 nanofibres with an incorporated hydrophilic
    compound. It was found that the fibre diameter is the major characteristic which
    influences the wicking behaviour.
additional_info: publication on CD-Rom
affiliation:
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    path:
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  last_name: De Schoenmaker
  name: Bert De Schoenmaker
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  first_name: Philippe
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  name_last_first: Westbroek, Philippe
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  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '988965'
cite:
  apa: |2
      <div class="csl-entry">De Schoenmaker, B., De Vrieze, S., Westbroek, P., &#38; De Clerck, K. (2010). Wicking properties of polyamide nanofibrous structures. <i>World Textile Conference, 10th, Proceedings</i>. Presented at the 10th World Textile Conference (AUTEX 2010), Vilnius, Lithuania.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Schoenmaker, Bert, Sander De Vrieze, Philippe Westbroek, and Karen De Clerck. 2010. “Wicking Properties of Polyamide Nanofibrous Structures.” In <i>World Textile Conference, 10th, Proceedings</i>. AUTEX.</div>
  fwo: |2
      <div class="csl-entry">De Schoenmaker, Bert, Sander De Vrieze, Philippe Westbroek, and Karen De Clerck. 2010. “Wicking Properties of Polyamide Nanofibrous Structures.” In <i>World Textile Conference, 10th, Proceedings</i>. AUTEX.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. De Schoenmaker, S. De Vrieze, P. Westbroek, and K. De Clerck, “Wicking properties of polyamide nanofibrous structures,” in <i>World Textile Conference, 10th, Proceedings</i>, Vilnius, Lithuania, 2010.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Schoenmaker, Bert, et al. “Wicking Properties of Polyamide Nanofibrous Structures.” <i>World Textile Conference, 10th, Proceedings</i>, AUTEX, 2010.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Schoenmaker B, De Vrieze S, Westbroek P, De Clerck K. Wicking properties of polyamide nanofibrous structures. In: World Textile Conference, 10th, Proceedings. AUTEX; 2010.</div>
       </div>
classification: C1
conference:
  end_date: 2010-06-23
  location: Vilnius, Lithuania
  name: 10th World Textile Conference (AUTEX 2010)
  start_date: 2010-06-21
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2010-06-28 10:03:52
date_updated: 2026-03-31 14:53:34
external: 0
file:
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handle: http://hdl.handle.net/1854/LU-988965
isbn:
- '9789955258292'
keyword:
- hydrophilicity
- Electrospinning
- wicking behaviour
- nanofibrous structures
language:
- eng
page:
  count: '4'
parent:
  title: World Textile Conference, 10th, Proceedings
publication_status: published
publication_status_sort: 2
publisher:
  name: AUTEX
status: public
subject:
- Technology and Engineering
title: Wicking properties of polyamide nanofibrous structures
type: conference
year: '2010'
...
---
_id: '949458'
abstract:
- Due to the high porosity of nanofibrous structures, it is difficult to measure the
  hydrofilicity of the material with contact angle measurements. Therefore, a new
  method to examine the wicking behaviour of the structures is developed. This method
  is used on several structures, which differ in fibre diameter and polyamide type.
  The structures with the thickest nanofibres have the highest wicking rates. For
  different polyamide types, the capillary forces establish the wicking behaviour
  in the initial phase. Further in the process, it is determined by the capillary
  forces and the water absorption capacity of the bulk phase.
abstract_full:
- lang: eng
  text: Due to the high porosity of nanofibrous structures, it is difficult to measure
    the hydrofilicity of the material with contact angle measurements. Therefore,
    a new method to examine the wicking behaviour of the structures is developed.
    This method is used on several structures, which differ in fibre diameter and
    polyamide type. The structures with the thickest nanofibres have the highest wicking
    rates. For different polyamide types, the capillary forces establish the wicking
    behaviour in the initial phase. Further in the process, it is determined by the
    capillary forces and the water absorption capacity of the bulk phase.
additional_info: publication on CD-Rom
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
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  - ugent_id: TW11*
  ugent_id: TW11*
author:
- _id: FADF950A-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FADF950A-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Bert
  last_name: De Schoenmaker
  name: Bert De Schoenmaker
  name_last_first: De Schoenmaker, Bert
  ugent_id:
  - '002003264107'
  - '802000214244'
  - '978815731125'
- _id: F873DBBE-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    ugent_id: TW11
  biblio_id: F873DBBE-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Sander
  last_name: De Vrieze
  name: Sander De Vrieze
  name_last_first: De Vrieze, Sander
  ugent_id:
  - '802000062074'
  - '002001065843'
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  affiliation:
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    ugent_id: TW11
  biblio_id: F4ABDEE6-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Philippe
  last_name: Westbroek
  name: Philippe Westbroek
  name_last_first: Westbroek, Philippe
  ugent_id:
  - '801000885888'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '949458'
cite:
  apa: |2
      <div class="csl-entry">De Schoenmaker, B., De Vrieze, S., Westbroek, P., &#38; De Clerck, K. (2010). Influence of the polyamide type and fibre diameter on the wicking height in nanofibrous structures. In M. Sariisik &#38; G. Karabay (Eds.), <i>International Technical Textiles Congress, 4th, Proceedings</i>. Istanbul, Turkey: Dokuz Eylül University. Department of Textile Engineering.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Schoenmaker, Bert, Sander De Vrieze, Philippe Westbroek, and Karen De Clerck. 2010. “Influence of the Polyamide Type and Fibre Diameter on the Wicking Height in Nanofibrous Structures.” In <i>International Technical Textiles Congress, 4th, Proceedings</i>, edited by Merih Sariisik and Gülseren Karabay. Istanbul, Turkey: Dokuz Eylül University. Department of Textile Engineering.</div>
  fwo: |2
      <div class="csl-entry">De Schoenmaker, Bert, Sander De Vrieze, Philippe Westbroek, and Karen De Clerck. 2010. “Influence of the Polyamide Type and Fibre Diameter on the Wicking Height in Nanofibrous Structures.” In <i>International Technical Textiles Congress, 4th, Proceedings</i>, ed by. Merih Sariisik and Gülseren Karabay. Istanbul, Turkey: Dokuz Eylül University. Department of Textile Engineering.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. De Schoenmaker, S. De Vrieze, P. Westbroek, and K. De Clerck, “Influence of the polyamide type and fibre diameter on the wicking height in nanofibrous structures,” in <i>International Technical Textiles Congress, 4th, Proceedings</i>, Istanbul, Turkey, 2010.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Schoenmaker, Bert, et al. “Influence of the Polyamide Type and Fibre Diameter on the Wicking Height in Nanofibrous Structures.” <i>International Technical Textiles Congress, 4th, Proceedings</i>, edited by Merih Sariisik and Gülseren Karabay, Dokuz Eylül University. Department of Textile Engineering, 2010.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Schoenmaker B, De Vrieze S, Westbroek P, De Clerck K. Influence of the polyamide type and fibre diameter on the wicking height in nanofibrous structures. In: Sariisik M, Karabay G, editors. International Technical Textiles Congress, 4th, Proceedings. Istanbul, Turkey: Dokuz Eylül University. Department of Textile Engineering; 2010.</div>
       </div>
classification: C1
conference:
  end_date: 2010-05-18
  location: Istanbul, Turkey
  name: 4th International Technical Textiles Congress
  start_date: 2010-05-16
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2010-05-20 10:24:15
date_updated: 2026-03-31 14:53:04
editor:
- first_name: Merih
  last_name: Sariisik
  name: Merih Sariisik
  name_last_first: Sariisik, Merih
- first_name: Gülseren
  last_name: Karabay
  name: Gülseren Karabay
  name_last_first: Karabay, Gülseren
external: 0
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handle: http://hdl.handle.net/1854/LU-949458
isbn:
- '9789754412857'
keyword:
- wicking behaviour
- nanofibrous structures
- polyamides
language:
- eng
page:
  count: '7'
parent:
  title: International Technical Textiles Congress, 4th, Proceedings
publication_status: published
publication_status_sort: 2
publisher:
  location: Istanbul, Turkey
  name: Dokuz Eylül University. Department of Textile Engineering
status: public
subject:
- Technology and Engineering
title: Influence of the polyamide type and fibre diameter on the wicking height in
  nanofibrous structures
type: conference
year: '2010'
...
---
_id: '949484'
abstract:
- "Colour changing textiles have recently gained much interest from the academic world.
  Although previously categorized as unwanted, colour changing textiles can be used
  in a broad field of applications since a colour change is a non-disturbing but clear
  signal which can perform a first warning function. This research focuses on halochromism
  or pH-sensitivity due to the importance of pH. These kind of materials can be applied
  in wound dressings, geotextiles, protective clothing etc. A halochromic wound dressing
  would for example be able to indicate the healing process of a wound since the pH-value
  varies during healing.\r\nThanks to their extremely fine fibres, nanofibrous structures
  show interesting characteristics such as small pore size, high porosity and high
  specific surface area, which turn them suitable for a whole range of applications.
  Incorporating pH-sensitive dyes into nanofibrous structures would lead to unique
  materials that combine the intrinsic properties of nanofibres with an extra sensor
  functionality.\r\nAs a start point, the feasibility of incorporating pH-indicator
  dyes in conventional textiles using standard dyeing processes was investigated.
  Next, the dyes were incorporated into a polyamide 6.6 nanofibrous structure by adding
  the dyes to the polymer solution before the start of the electrospinning process.
  The influence of this incorporation on the electrospinning process and the halochromic
  properties of the obtained structures were investigated.\r\nOur results proved that
  it is possible to develop a pH-sensor using conventional textiles dyed by a standard
  dyeing process. Also the incorporation of the pH-indicator dyes into a nanofibrous
  structure was possible. Moreover, the process parameters and fibre diameters were
  not influenced by this addition and reproducibility could be obtained. Furthermore,
  the majority of the obtained textile structures showed a clear colour change with
  a change in acidity. This halochromic behaviour was however different from the behaviour
  of the dyes in solution due to dye-fibre interactions."
abstract_full:
- lang: eng
  text: "Colour changing textiles have recently gained much interest from the academic
    world. Although previously categorized as unwanted, colour changing textiles can
    be used in a broad field of applications since a colour change is a non-disturbing
    but clear signal which can perform a first warning function. This research focuses
    on halochromism or pH-sensitivity due to the importance of pH. These kind of materials
    can be applied in wound dressings, geotextiles, protective clothing etc. A halochromic
    wound dressing would for example be able to indicate the healing process of a
    wound since the pH-value varies during healing.\r\nThanks to their extremely fine
    fibres, nanofibrous structures show interesting characteristics such as small
    pore size, high porosity and high specific surface area, which turn them suitable
    for a whole range of applications. Incorporating pH-sensitive dyes into nanofibrous
    structures would lead to unique materials that combine the intrinsic properties
    of nanofibres with an extra sensor functionality.\r\nAs a start point, the feasibility
    of incorporating pH-indicator dyes in conventional textiles using standard dyeing
    processes was investigated. Next, the dyes were incorporated into a polyamide
    6.6 nanofibrous structure by adding the dyes to the polymer solution before the
    start of the electrospinning process. The influence of this incorporation on the
    electrospinning process and the halochromic properties of the obtained structures
    were investigated.\r\nOur results proved that it is possible to develop a pH-sensor
    using conventional textiles dyed by a standard dyeing process. Also the incorporation
    of the pH-indicator dyes into a nanofibrous structure was possible. Moreover,
    the process parameters and fibre diameters were not influenced by this addition
    and reproducibility could be obtained. Furthermore, the majority of the obtained
    textile structures showed a clear colour change with a change in acidity. This
    halochromic behaviour was however different from the behaviour of the dyes in
    solution due to dye-fibre interactions."
additional_info: publication on CD-Rom
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
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  path:
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  first_name: Lien
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  first_name: Karen
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biblio_id: '949484'
cite:
  apa: |2
      <div class="csl-entry">Van der Schueren, L., &#38; De Clerck, K. (2010). The road to a unique textile material: nanofibres with a pH-sensitive function. In M. Sariisik &#38; G. Karabay (Eds.), <i>International Technical Textiles Congress, 4th, Proceedings</i>. Istanbul, Turkey: Dokuz Eylül University. Department of Textile Engineering.</div>
  chicago-author-date: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2010. “The Road to a Unique Textile Material: Nanofibres with a PH-Sensitive Function.” In <i>International Technical Textiles Congress, 4th, Proceedings</i>, edited by Merih Sariisik and Gülseren Karabay. Istanbul, Turkey: Dokuz Eylül University. Department of Textile Engineering.</div>
  fwo: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2010. “The Road to a Unique Textile Material: Nanofibres with a PH-Sensitive Function.” In <i>International Technical Textiles Congress, 4th, Proceedings</i>, ed by. Merih Sariisik and Gülseren Karabay. Istanbul, Turkey: Dokuz Eylül University. Department of Textile Engineering.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Van der Schueren and K. De Clerck, “The road to a unique textile material: nanofibres with a pH-sensitive function,” in <i>International Technical Textiles Congress, 4th, Proceedings</i>, Istanbul, Turkey, 2010.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. “The Road to a Unique Textile Material: Nanofibres with a PH-Sensitive Function.” <i>International Technical Textiles Congress, 4th, Proceedings</i>, edited by Merih Sariisik and Gülseren Karabay, Dokuz Eylül University. Department of Textile Engineering, 2010.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van der Schueren L, De Clerck K. The road to a unique textile material: nanofibres with a pH-sensitive function. In: Sariisik M, Karabay G, editors. International Technical Textiles Congress, 4th, Proceedings. Istanbul, Turkey: Dokuz Eylül University. Department of Textile Engineering; 2010.</div>
       </div>
classification: C1
conference:
  end_date: 2010-05-18
  location: Istanbul, Turkey
  name: 4th International Technical Textiles Congress
  start_date: 2010-05-16
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
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  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
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  ugent_id:
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date_created: 2010-05-20 10:32:55
date_updated: 2026-03-31 14:53:04
editor:
- first_name: Merih
  last_name: Sariisik
  name: Merih Sariisik
  name_last_first: Sariisik, Merih
- first_name: Gülseren
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handle: http://hdl.handle.net/1854/LU-949484
isbn:
- '9789754412857'
keyword:
- electrospinning
- nanofibrous structures
- conventional textiles
- halochromism
language:
- eng
page:
  count: '6'
parent:
  title: International Technical Textiles Congress, 4th, Proceedings
publication_status: published
publication_status_sort: 2
publisher:
  location: Istanbul, Turkey
  name: Dokuz Eylül University. Department of Textile Engineering
status: public
subject:
- Technology and Engineering
title: 'The road to a unique textile material: nanofibres with a pH-sensitive function'
type: conference
year: '2010'
...
---
_id: '949507'
abstract:
- "Electrospinning is the process to generate nanofibers. Some very specific application
  fields are targeted in the literature about electrospinning. One of these research
  fields is filtration. In this field, mainly air filtration is targeted. Recent studies
  showed the strong performance of nanofibrous material in liquid filtration.\r\nFor
  liquid (such as water) filtration the material needs to be flawless and pressure
  resistant. To cope with the first problem, we have developed a specific technology
  based on nozzle electrospinning. The key feature in our technology is the possibility
  to electrospin under steady state conditions. In each time period, the amount of
  polymer that is pumped out of the needle as a solution is the same as the amount
  of polymer that is deposited in the form of nanofibers. In the case of water filtration,
  a polyamide 6 nanofibrous nonwoven is created. The polyamide is chosen because of
  its high inherent strength. This high mechanical strength makes it possible for
  the material to withstand the pressure applied on the material during filtration.\r\nAt
  this moment, projects are running to investigate if the polyamide 6 nanofibrous
  structures give an added value in the field of water filtration. The first results
  show that nanofibres enhance the water flux values at the same pressure. Next to
  flux investigations, experiments concerning the use of the membranes in a membrane
  bioreactor (MBR) are performed. These experiments show that the nanofibrous material
  has the same filtration efficiency as commercial MBR membranes. It even surpasses
  that efficiency with an extra functionalisation."
abstract_full:
- lang: eng
  text: "Electrospinning is the process to generate nanofibers. Some very specific
    application fields are targeted in the literature about electrospinning. One of
    these research fields is filtration. In this field, mainly air filtration is targeted.
    Recent studies showed the strong performance of nanofibrous material in liquid
    filtration.\r\nFor liquid (such as water) filtration the material needs to be
    flawless and pressure resistant. To cope with the first problem, we have developed
    a specific technology based on nozzle electrospinning. The key feature in our
    technology is the possibility to electrospin under steady state conditions. In
    each time period, the amount of polymer that is pumped out of the needle as a
    solution is the same as the amount of polymer that is deposited in the form of
    nanofibers. In the case of water filtration, a polyamide 6 nanofibrous nonwoven
    is created. The polyamide is chosen because of its high inherent strength. This
    high mechanical strength makes it possible for the material to withstand the pressure
    applied on the material during filtration.\r\nAt this moment, projects are running
    to investigate if the polyamide 6 nanofibrous structures give an added value in
    the field of water filtration. The first results show that nanofibres enhance
    the water flux values at the same pressure. Next to flux investigations, experiments
    concerning the use of the membranes in a membrane bioreactor (MBR) are performed.
    These experiments show that the nanofibrous material has the same filtration efficiency
    as commercial MBR membranes. It even surpasses that efficiency with an extra functionalisation."
additional_info: publication on CD-Rom
affiliation:
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  first_name: Karen
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  - '801000947425'
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biblio_id: '949507'
cite:
  apa: |2
      <div class="csl-entry">De Vrieze, S., Daels, N., Westbroek, P., Van Hulle, S., &#38; De Clerck, K. (2010). Steady state electrospun polyamide nanofibres for the use in MBR. In M. Sariisik &#38; G. Karabay (Eds.), <i>International Technical Textiles Congress, 4th, Proceedings</i>. Istanbul, Turkey: Dokuz Eylül University. Department of Textile Engineering.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Vrieze, Sander, N Daels, Philippe Westbroek, Stijn Van Hulle, and Karen De Clerck. 2010. “Steady State Electrospun Polyamide Nanofibres for the Use in MBR.” In <i>International Technical Textiles Congress, 4th, Proceedings</i>, edited by Merih Sariisik and Gülseren Karabay. Istanbul, Turkey: Dokuz Eylül University. Department of Textile Engineering.</div>
  fwo: |2
      <div class="csl-entry">De Vrieze, Sander, N Daels, Philippe Westbroek, Stijn Van Hulle, and Karen De Clerck. 2010. “Steady State Electrospun Polyamide Nanofibres for the Use in MBR.” In <i>International Technical Textiles Congress, 4th, Proceedings</i>, ed by. Merih Sariisik and Gülseren Karabay. Istanbul, Turkey: Dokuz Eylül University. Department of Textile Engineering.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. De Vrieze, N. Daels, P. Westbroek, S. Van Hulle, and K. De Clerck, “Steady state electrospun polyamide nanofibres for the use in MBR,” in <i>International Technical Textiles Congress, 4th, Proceedings</i>, Istanbul, Turkey, 2010.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Vrieze, Sander, et al. “Steady State Electrospun Polyamide Nanofibres for the Use in MBR.” <i>International Technical Textiles Congress, 4th, Proceedings</i>, edited by Merih Sariisik and Gülseren Karabay, Dokuz Eylül University. Department of Textile Engineering, 2010.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Vrieze S, Daels N, Westbroek P, Van Hulle S, De Clerck K. Steady state electrospun polyamide nanofibres for the use in MBR. In: Sariisik M, Karabay G, editors. International Technical Textiles Congress, 4th, Proceedings. Istanbul, Turkey: Dokuz Eylül University. Department of Textile Engineering; 2010.</div>
       </div>
classification: C1
conference:
  end_date: 2010-05-18
  location: Istanbul, Turkey
  name: 4th International Technical Textiles Congress
  start_date: 2010-05-16
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
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  name_last_first: Van Den Abbeele, Martine
  ugent_id:
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date_created: 2010-05-20 10:41:07
date_updated: 2026-03-31 14:53:04
editor:
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  last_name: Sariisik
  name: Merih Sariisik
  name_last_first: Sariisik, Merih
- first_name: Gülseren
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  name: Gülseren Karabay
  name_last_first: Karabay, Gülseren
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handle: http://hdl.handle.net/1854/LU-949507
isbn:
- '9789754412857'
keyword:
- Electrospinning
- membrane bioreactor
- steady state
- nanofibres
language:
- eng
page:
  count: '7'
parent:
  title: International Technical Textiles Congress, 4th, Proceedings
publication_status: published
publication_status_sort: 2
publisher:
  location: Istanbul, Turkey
  name: Dokuz Eylül University. Department of Textile Engineering
status: public
subject:
- Technology and Engineering
title: Steady state electrospun polyamide nanofibres for the use in MBR
type: conference
year: '2010'
...
---
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cite:
  apa: |2
      <div class="csl-entry">Ceylan, Ö., Van Landuyt, L., &#38; De Clerck, K. (2010). Small-scale tests for characterisation of bioengineered cotton fibres. In Y. Ulcay (Ed.), <i>Fiber Society 2010 spring conference proceedings</i> (pp. 101–102). Raleigh, NC, USA: The Fiber Society.</div>
  chicago-author-date: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, and Karen De Clerck. 2010. “Small-Scale Tests for Characterisation of Bioengineered Cotton Fibres.” In <i>Fiber Society 2010 Spring Conference Proceedings</i>, edited by Yusuf Ulcay, 101–2. Raleigh, NC, USA: The Fiber Society.</div>
  fwo: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, and Karen De Clerck. 2010. “Small-Scale Tests for Characterisation of Bioengineered Cotton Fibres.” In <i>Fiber Society 2010 Spring Conference Proceedings</i>, ed by. Yusuf Ulcay, 101–102. Raleigh, NC, USA: The Fiber Society.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Ö. Ceylan, L. Van Landuyt, and K. De Clerck, “Small-scale tests for characterisation of bioengineered cotton fibres,” in <i>Fiber Society 2010 spring conference proceedings</i>, Bursa, Turkey, 2010, pp. 101–102.</div>
      </div>
  mla: |2
      <div class="csl-entry">Ceylan, Özgür, et al. “Small-Scale Tests for Characterisation of Bioengineered Cotton Fibres.” <i>Fiber Society 2010 Spring Conference Proceedings</i>, edited by Yusuf Ulcay, The Fiber Society, 2010, pp. 101–02.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Ceylan Ö, Van Landuyt L, De Clerck K. Small-scale tests for characterisation of bioengineered cotton fibres. In: Ulcay Y, editor. Fiber Society 2010 spring conference proceedings. Raleigh, NC, USA: The Fiber Society; 2010. p. 101–2.</div>
       </div>
classification: C1
conference:
  end_date: 2010-05-14
  location: Bursa, Turkey
  name: Spring 2010 International conference on Fibrous Materials
  start_date: 2010-05-12
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
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date_created: 2010-05-20 11:17:50
date_updated: 2026-03-31 14:53:04
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language:
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subject:
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title: Small-scale tests for characterisation of bioengineered cotton fibres
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  apa: |2
      <div class="csl-entry">De Vrieze, S., De Schoenmaker, B., Van der Schueren, L., &#38; De Clerck, K. (2010). A new look on nanofibrous nonwovens. In Y. Ulcay (Ed.), <i>Fiber Society 2010 spring conference proceedings</i> (pp. 47–48). Raleigh, NC, USA: The Fiber Society.</div>
  bof: |2
      <div class="csl-entry">De Vrieze, Sander, Bert De Schoenmaker, Lien Van der Schueren, and Karen De Clerck. 2010. “A New Look on Nanofibrous Nonwovens.” In <i>Fiber Society 2010 Spring Conference Proceedings</i>, ed by. Yusuf Ulcay, 47–48. Raleigh, NC, USA: The Fiber Society.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Vrieze, Sander, Bert De Schoenmaker, Lien Van der Schueren, and Karen De Clerck. 2010. “A New Look on Nanofibrous Nonwovens.” In <i>Fiber Society 2010 Spring Conference Proceedings</i>, edited by Yusuf Ulcay, 47–48. Raleigh, NC, USA: The Fiber Society.</div>
  fwo: |2
      <div class="csl-entry">De Vrieze, Sander, Bert De Schoenmaker, Lien Van der Schueren, and Karen De Clerck. 2010. “A New Look on Nanofibrous Nonwovens.” In <i>Fiber Society 2010 Spring Conference Proceedings</i>, ed by. Yusuf Ulcay, 47–48. Raleigh, NC, USA: The Fiber Society.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. De Vrieze, B. De Schoenmaker, L. Van der Schueren, and K. De Clerck, “A new look on nanofibrous nonwovens,” in <i>Fiber Society 2010 spring conference proceedings</i>, Bursa, Turkey, 2010, pp. 47–48.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Vrieze, Sander, et al. “A New Look on Nanofibrous Nonwovens.” <i>Fiber Society 2010 Spring Conference Proceedings</i>, edited by Yusuf Ulcay, The Fiber Society, 2010, pp. 47–48.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Vrieze S, De Schoenmaker B, Van der Schueren L, De Clerck K. A new look on nanofibrous nonwovens. In: Ulcay Y, editor. Fiber Society 2010 spring conference proceedings. Raleigh, NC, USA: The Fiber Society; 2010. p. 47–8.</div>
       </div>
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cite:
  apa: |2
      <div class="csl-entry">Daels, N., De Vrieze, S., Decostere, B., Dejans, P., Dumoulin, A., De Clerck, K., … Van Hulle, S. (2010). The use of electrospun flat sheet nanofibre membranes in MBR applications. <i>DESALINATION</i>, <i>257</i>(1–3), 170–176. https://doi.org/10.1016/j.desal.2010.02.027</div>
  chicago-author-date: |2
      <div class="csl-entry">Daels, Nele, Sander De Vrieze, Bjorge Decostere, Pascal Dejans, Ann Dumoulin, Karen De Clerck, Philippe Westbroek, and Stijn Van Hulle. 2010. “The Use of Electrospun Flat Sheet Nanofibre Membranes in MBR Applications.” <i>DESALINATION</i> 257 (1–3): 170–76. https://doi.org/10.1016/j.desal.2010.02.027.</div>
  fwo: |2
      <div class="csl-entry">Daels, Nele, Sander De Vrieze, Bjorge Decostere, Pascal Dejans, Ann Dumoulin, Karen De Clerck, Philippe Westbroek, and Stijn Van Hulle. 2010. “The Use of Electrospun Flat Sheet Nanofibre Membranes in MBR Applications.” <i>DESALINATION</i> 257 (1–3): 170–176. doi:10.1016/j.desal.2010.02.027.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">N. Daels <i>et al.</i>, “The use of electrospun flat sheet nanofibre membranes in MBR applications,” <i>DESALINATION</i>, vol. 257, no. 1–3, pp. 170–176, 2010.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daels, Nele, et al. “The Use of Electrospun Flat Sheet Nanofibre Membranes in MBR Applications.” <i>DESALINATION</i>, vol. 257, no. 1–3, 2010, pp. 170–76, doi:10.1016/j.desal.2010.02.027.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daels N, De Vrieze S, Decostere B, Dejans P, Dumoulin A, De Clerck K, et al. The use of electrospun flat sheet nanofibre membranes in MBR applications. DESALINATION. 2010;257(1–3):170–6.</div>
       </div>
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issue: 1-3
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keyword:
- Nanofibre
- Biofilm
- Activated sludge
- MBR
- Microfiltration
- MPE50
- FLUX ENHANCING CHEMICALS
- Trickling filter
- POLYMER
- WASTE-WATER TREATMENT
- BIOREACTORS
- SLUDGE
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  record: |
    FN ISI Export Format
    VR 1.0
    PT J
    AU Daels, N
       De Vrieze, S
       Decostere, B
       Dejans, P
       Dumoulin, A
       De Clerck, K
       Westbroek, P
       Van Hulle, SWH
    AF Daels, Nele
       De Vrieze, Sander
       Decostere, Bjorge
       Dejans, Pascal
       Dumoulin, Ann
       De Clerck, Karen
       Westbroek, Philippe
       Van Hulle, Stijn W. H.
    TI The use of electrospun flat sheet nanofibre membranes in MBR
       applications
    SO DESALINATION
    LA English
    DT Article
    DE Activated sludge; MBR; Microfiltration; MPE50; Nanofibre; Biofilm;
       Trickling filter
    ID FLUX ENHANCING CHEMICALS; WASTE-WATER TREATMENT; BIOREACTORS; POLYMER;
       SLUDGE
    AB The nonwoven nanofibre membranes in this study are made by the
       electrospinning technique. With a diameter ranging from 80 nm to
       several hundred nanometers, the nanofibres have a large surface area to
       volume ratio and a very high porosity. The aim of the study was to
       evaluate the use of nanofibre microfiltration membranes in three
       different membrane bioreactor (MBR) set-ups. More specific, in an
       active sludge MBR (AS-MBR), an AS-MBR with flux performing enhancer
       MPE50 and in a trickling filter MBR (TF-MBR). The results showed that
       the nanofibre membrane performed best with the TF-MBR. This was due to
       the removal of turbidity by the trickling filter, and also because of a
       new membrane module configuration. The flux was higher than the other
       configurations, and more important, the flux was stable for 85 days
       after which the experiment was stopped. Also different cleaning
       techniques with 0.5% NaOCl and 0.2% HCl were tested and compared in
       this study. The nanofibre membrane structure and strengths were not
       affected after the procedures for cleaning. Scanning electron
       micrograph (SEM) pictures show the nanofibre membrane being clean after
       12 h of the alkali and acid treatment. (C) 2010 Elsevier B.V. All
       rights reserved.
    C1 [Daels, Nele; Decostere, Bjorge; Dejans, Pascal; Dumoulin, Ann] Univ Coll W Flanders, Res Grp EnBichem, Dept Ind Engn & Technol, B-8500 Kortrijk, Belgium.
       [De Vrieze, Sander; De Clerck, Karen; Westbroek, Philippe; Van Hulle, Stijn W. H.] Univ Ghent, Dept Text, B-9052 Ghent, Belgium.
    RP Van Hulle, SWH, Univ Ghent, BIOMATH, Dept Appl Math Biometr & Proc
       Control, Coupure Links 653, B-9000 Ghent, Belgium.
    EM Philippe.Westbroek@ugent.be
       Stijn.Van.Hulle@Howest.be
    FU Institute for the Promotion of Innovation by Science and Technology in
       Flanders [060113, 080148]
    FX This study was supported by the Institute for the Promotion of
       Innovation by Science and Technology in Flanders (IWT-Tetra project
       contract numbers 060113 and 080148). The authors would like to thank
       Wim Audenaert and Tamara Van Camp for their technical support.
    NR 25
    PU ELSEVIER SCIENCE BV
    PI AMSTERDAM
    PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
    SN 0011-9164
    J9 DESALINATION
    JI Desalination
    PD JUL
    PY 2010
    VL 257
    IS 1-3
    BP 170
    EP 176
    DI 10.1016/j.desal.2010.02.027
    PG 7
    SC Engineering, Chemical; Water Resources
    GA 603FW
    UT ISI:000278195100024
status: public
subject:
- Technology and Engineering
title: The use of electrospun flat sheet nanofibre membranes in MBR applications
type: journalArticle
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cite:
  apa: |2
      <div class="csl-entry">Nierstrasz, V., De Clerck, K., &#38; Van Langenhove, L. (2010). Novel release system and biobased utilities for insect repellent textiles. <i>Book of Abstracts : AUTEX 2010, 10th World Textile Conference</i>, 173–173. AUTEX.</div>
  chicago-author-date: |2
      <div class="csl-entry">Nierstrasz, Vincent, Karen De Clerck, and Lieva Van Langenhove. 2010. “Novel Release System and Biobased Utilities for Insect Repellent Textiles.” In <i>Book of Abstracts : AUTEX 2010, 10th World Textile Conference</i>, 173–173. AUTEX.</div>
  fwo: |2
      <div class="csl-entry">Nierstrasz, Vincent, Karen De Clerck, and Lieva Van Langenhove. 2010. “Novel Release System and Biobased Utilities for Insect Repellent Textiles.” In <i>Book of Abstracts : AUTEX 2010, 10th World Textile Conference</i>, 173–173. AUTEX.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">V. Nierstrasz, K. De Clerck, and L. Van Langenhove, “Novel release system and biobased utilities for insect repellent textiles,” in <i>Book of abstracts : AUTEX 2010, 10th World Textile Conference</i>, Vilnius, Lithuania, 2010, pp. 173–173.</div>
      </div>
  mla: |2
      <div class="csl-entry">Nierstrasz, Vincent, et al. “Novel Release System and Biobased Utilities for Insect Repellent Textiles.” <i>Book of Abstracts : AUTEX 2010, 10th World Textile Conference</i>, AUTEX, 2010, pp. 173–173.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Nierstrasz V, De Clerck K, Van Langenhove L. Novel release system and biobased utilities for insect repellent textiles. In: Book of abstracts : AUTEX 2010, 10th World Textile Conference. AUTEX; 2010. p. 173–173.</div>
       </div>
classification: C3
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  url: https://biblio.ugent.be/publication/989091/file/989094.pdf
handle: http://hdl.handle.net/1854/LU-989091
keyword:
- insect repellency
- dengue
- malaria
- protective textile
language:
- eng
page:
  first: '173'
  last: '173'
parent:
  title: 'Book of abstracts : AUTEX 2010, 10th World Textile Conference'
publication_status: published
publication_status_sort: 2
publisher:
  name: AUTEX
status: public
subject:
- Technology and Engineering
title: Novel release system and biobased utilities for insect repellent textiles
type: conference
year: '2010'
...
---
_id: '881386'
abstract:
- The aim of this study was to evaluate the use of nanofibre microfiltration membranes,
  spun by an innovative electrospinning technique, in water filtration applications.
  As such, this study bridges the gap between developments in electrospinning techniques
  for the production of flat-sheet membranes and the application of these membranes
  in water filtration. Three different applications were examined. Firstly, the use
  of the membrane (functionalised or non-functionalised) for the removal of pathogens
  was investigated. Secondly, the electrospun flat-sheet membranes were applied for
  wastewater treatment in a laboratory-scale submerged membrane bioreactor (MBR).
  In addition to these applications, physical properties such as clean water permeability
  (CWP) and strength were also examined. The tests showed that the electrospun membranes
  can be used for water filtration applications, but that further improvements are
  necessary before these membranes can be practically employed. In particular, the
  level of functionality and the properties of irreversible fouling require further
  research.
abstract_full:
- lang: eng
  text: The aim of this study was to evaluate the use of nanofibre microfiltration
    membranes, spun by an innovative electrospinning technique, in water filtration
    applications. As such, this study bridges the gap between developments in electrospinning
    techniques for the production of flat-sheet membranes and the application of these
    membranes in water filtration. Three different applications were examined. Firstly,
    the use of the membrane (functionalised or non-functionalised) for the removal
    of pathogens was investigated. Secondly, the electrospun flat-sheet membranes
    were applied for wastewater treatment in a laboratory-scale submerged membrane
    bioreactor (MBR). In addition to these applications, physical properties such
    as clean water permeability (CWP) and strength were also examined. The tests showed
    that the electrospun membranes can be used for water filtration applications,
    but that further improvements are necessary before these membranes can be practically
    employed. In particular, the level of functionality and the properties of irreversible
    fouling require further research.
additional_info: manuscript reference no. 2425
affiliation:
- name: University College West Flanders
  path:
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  ugent_id: HOWEST
- name: Department of Materials, Textiles and Chemical Engineering
  path:
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article_type: original
author:
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    path:
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    ugent_id: UGent
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  first_name: Bjorge
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  name: Bjorge Decostere
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    ugent_id: UGent
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  last_name: Daels
  name: Nele Daels
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    ugent_id: TW11
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  first_name: Sander
  last_name: De Vrieze
  name: Sander De Vrieze
  name_last_first: De Vrieze, Sander
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  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: FBF3FB20-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Pascal
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  name: Pascal Dejans
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  biblio_id: F76F6D32-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Tamara
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  name: Tamara Van Camp
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  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: FBFFDF8A-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
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  affiliation:
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    ugent_id: TW11
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  first_name: Philippe
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  name: Philippe Westbroek
  name_last_first: Westbroek, Philippe
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  first_name: Karen
  last_name: De Clerck
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  name_last_first: De Clerck, Karen
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  ugent_id:
  - '801000947425'
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- _id: F6EC7292-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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  biblio_id: F6EC7292-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Charlotte
  last_name: Boeckaert
  name: Charlotte Boeckaert
  name_last_first: Boeckaert, Charlotte
  ugent_id:
  - '801001798597'
  - '001998202828'
- _id: FAD54460-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: LA24
    ugent_id: LA24
  biblio_id: FAD54460-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Stijn
  last_name: Van Hulle
  name: Stijn Van Hulle
  name_last_first: Van Hulle, Stijn
  orcid_id: 0000-0001-5773-7773
  ugent_id:
  - '801001539933'
  - '919019834884'
  - '971483871644'
biblio_id: '881386'
cite:
  apa: |2
      <div class="csl-entry">Decostere, B., Daels, N., De Vrieze, S., Dejans, P., Van Camp, T., Audenaert, W., … Van Hulle, S. (2010). Initial testing of electrospun nanofibre filters in water filtration applications. <i>WATER SA</i>, <i>36</i>(1), 151–155.</div>
  chicago-author-date: |2
      <div class="csl-entry">Decostere, Bjorge, Nele Daels, Sander De Vrieze, Pascal Dejans, Tamara Van Camp, Wim Audenaert, Philippe Westbroek, Karen De Clerck, Charlotte Boeckaert, and Stijn Van Hulle. 2010. “Initial Testing of Electrospun Nanofibre Filters in Water Filtration Applications.” <i>WATER SA</i> 36 (1): 151–55.</div>
  fwo: |2
      <div class="csl-entry">Decostere, Bjorge, Nele Daels, Sander De Vrieze, Pascal Dejans, Tamara Van Camp, Wim Audenaert, Philippe Westbroek, Karen De Clerck, Charlotte Boeckaert, and Stijn Van Hulle. 2010. “Initial Testing of Electrospun Nanofibre Filters in Water Filtration Applications.” <i>WATER SA</i> 36 (1): 151–155.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. Decostere <i>et al.</i>, “Initial testing of electrospun nanofibre filters in water filtration applications,” <i>WATER SA</i>, vol. 36, no. 1, pp. 151–155, 2010.</div>
      </div>
  mla: |2
      <div class="csl-entry">Decostere, Bjorge, et al. “Initial Testing of Electrospun Nanofibre Filters in Water Filtration Applications.” <i>WATER SA</i>, vol. 36, no. 1, 2010, pp. 151–55.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Decostere B, Daels N, De Vrieze S, Dejans P, Van Camp T, Audenaert W, et al. Initial testing of electrospun nanofibre filters in water filtration applications. WATER SA. 2010;36(1):151–5.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2010-02-25 11:58:48
date_updated: 2026-03-31 14:52:08
external: 0
file:
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  kind: fullText
  name: Decostere_2010_WaterSA_36_1_151.pdf
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  url: https://biblio.ugent.be/publication/881386/file/887660.pdf
handle: http://hdl.handle.net/1854/LU-881386
issn:
- 0378-4738
issue: '1'
jcr:
  category: WATER RESOURCES
  category_decile: 8
  category_quartile: 4
  category_rank: 57/75
  category_vigintile: 16
  eigenfactor: 0.00194
  immediacy_index: 0.303
  impact_factor: 0.663
  impact_factor_5yr: 0.923
  prev_category_decile: 8
  prev_category_quartile: 3
  prev_category_vigintile: 15
  prev_impact_factor: 0.911
  total_cites: 1203
keyword:
- WASTE-WATER
- MICROFILTRATION
- MEMBRANES
- MBR
- pathogen removal
- microfiltration
- electrospinning
- nanofibre
language:
- eng
page:
  count: '5'
  first: '151'
  last: '155'
parent:
  short_title: Water SA
  title: WATER SA
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Initial testing of electrospun nanofibre filters in water filtration applications
type: journalArticle
volume: '36'
wos_id: '000274194000020'
wos_type: Article
year: '2010'
...
---
_id: '947706'
abstract:
- The development of halochromic textile materials could lead to interesting end-use
  applications as it offers the potential for flexible pH-sensors with a first warning
  signal. Research on halochromic textiles, especially on the development of these
  materials using a simple and economic beneficial dyeing process, is however very
  limited. Therefore, we studied color-changing textile materials with a pH-sensitivity
  based on the dyeing of conventional textiles with standard watersoluble pH-indicator
  dyes. In a first broad screening, a set of pH-indicators is evaluated on their dyeing
  performance and their color change with a change in pH. After this, some promising
  indicators (Brilliant Yellow and Alizarin) are selected and studied in more detail.
  It was found that the indicators show different characteristics on the textile materials
  compared with the solution due to dye-fiber interactions. The properties of the
  pHindicator dyes are also dependant on the fiber type. Moreover, in case of Brilliant
  Yellow this thesis was confirmed by Raman spectroscopy. Generally, it can be concluded
  that it is feasible to develop a pH-sensor with pH-indicator dyes and conventional
  textile materials using a standard dyeing process.
abstract_full:
- lang: eng
  text: The development of halochromic textile materials could lead to interesting
    end-use applications as it offers the potential for flexible pH-sensors with a
    first warning signal. Research on halochromic textiles, especially on the development
    of these materials using a simple and economic beneficial dyeing process, is however
    very limited. Therefore, we studied color-changing textile materials with a pH-sensitivity
    based on the dyeing of conventional textiles with standard watersoluble pH-indicator
    dyes. In a first broad screening, a set of pH-indicators is evaluated on their
    dyeing performance and their color change with a change in pH. After this, some
    promising indicators (Brilliant Yellow and Alizarin) are selected and studied
    in more detail. It was found that the indicators show different characteristics
    on the textile materials compared with the solution due to dye-fiber interactions.
    The properties of the pHindicator dyes are also dependant on the fiber type. Moreover,
    in case of Brilliant Yellow this thesis was confirmed by Raman spectroscopy. Generally,
    it can be concluded that it is feasible to develop a pH-sensor with pH-indicator
    dyes and conventional textile materials using a standard dyeing process.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_type: original
author:
- _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
  - '002002166892'
  - '802000424715'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '947706'
cite:
  apa: |2
      <div class="csl-entry">Van der Schueren, L., &#38; De Clerck, K. (2010). The use of pH-indicator dyes for pH-sensitive textile materials. <i>TEXTILE RESEARCH JOURNAL</i>, <i>80</i>(7), 590–603. https://doi.org/10.1177/0040517509346443</div>
  chicago-author-date: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2010. “The Use of PH-Indicator Dyes for PH-Sensitive Textile Materials.” <i>TEXTILE RESEARCH JOURNAL</i> 80 (7): 590–603. https://doi.org/10.1177/0040517509346443.</div>
  fwo: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2010. “The Use of PH-Indicator Dyes for PH-Sensitive Textile Materials.” <i>TEXTILE RESEARCH JOURNAL</i> 80 (7): 590–603. doi:10.1177/0040517509346443.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Van der Schueren and K. De Clerck, “The use of pH-indicator dyes for pH-sensitive textile materials,” <i>TEXTILE RESEARCH JOURNAL</i>, vol. 80, no. 7, pp. 590–603, 2010.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. “The Use of PH-Indicator Dyes for PH-Sensitive Textile Materials.” <i>TEXTILE RESEARCH JOURNAL</i>, vol. 80, no. 7, 2010, pp. 590–603, doi:10.1177/0040517509346443.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van der Schueren L, De Clerck K. The use of pH-indicator dyes for pH-sensitive textile materials. TEXTILE RESEARCH JOURNAL. 2010;80(7):590–603.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2010-05-18 10:35:42
date_updated: 2026-03-31 14:53:01
doi:
- 10.1177/0040517509346443
external: 0
file:
- _id: '947719'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: The_Use_of_pH-indicator_Dyes_for_pH-sensitive_Textile_Materials.pdf
  sha256: 79fd550bd9ca143bf06be3ae147e4967d61fce071a0fef9b3a0bb4236c491a97
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handle: http://hdl.handle.net/1854/LU-947706
issn:
- 0040-5175
issue: '7'
jcr:
  category: MATERIALS SCIENCE, TEXTILES
  category_decile: 2
  category_quartile: 1
  category_rank: 3/21
  category_vigintile: 3
  eigenfactor: 0.00354
  immediacy_index: 0.18
  impact_factor: 1.102
  impact_factor_5yr: 1.419
  prev_category_decile: 2
  prev_category_quartile: 1
  prev_category_vigintile: 4
  prev_impact_factor: 1.096
  total_cites: 4105
keyword:
- dyeing
- color changing textiles
- halochromism
- Brilliant Yellow
- Alizarin
- SENSOR
- DISPERSE DYES
language:
- eng
page:
  count: '14'
  first: '590'
  last: '603'
parent:
  short_title: Text. Res. J.
  title: TEXTILE RESEARCH JOURNAL
publication_status: published
publication_status_sort: 2
source:
  record: |
    FN ISI Export Format
    VR 1.0
    PT J
    AU Van der Schueren, L
       De Clerck, K
    AF Van der Schueren, L.
       De Clerck, K.
    TI The Use of pH-indicator Dyes for pH-sensitive Textile Materials
    SO TEXTILE RESEARCH JOURNAL
    LA English
    DT Article
    DE dyeing; color changing textiles; halochromism; Brilliant Yellow;
       Alizarin
    ID DISPERSE DYES; SENSOR
    AB The development of halochromic textile materials could lead to
       interesting end-use applications as it offers the potential for
       flexible pH-sensors with a first warning signal. Research on
       halochromic textiles, especially on the development of these materials
       using a simple and economic beneficial dyeing process, is however very
       limited. Therefore, we studied color-changing textile materials with a
       pH-sensitivity based on the dyeing of conventional textiles with
       standard watersoluble pH-indicator dyes. In a first broad screening, a
       set of pH-indicators is evaluated on their dyeing performance and their
       color change with a change in pH. After this, some promising indicators
       (Brilliant Yellow and Alizarin) are selected and studied in more
       detail. It was found that the indicators show different characteristics
       on the textile materials compared with the solution due to dye-fiber
       interactions. The properties of the pHindicator dyes are also dependant
       on the fiber type. Moreover, in case of Brilliant Yellow this thesis
       was confirmed by Raman spectroscopy. Generally, it can be concluded
       that it is feasible to develop a pH-sensor with pH-indicator dyes and
       conventional textile materials using a standard dyeing process.
    C1 [Van der Schueren, L.; De Clerck, K.] Univ Ghent, Dept Text, B-9052 Ghent, Belgium.
    RP Van der Schueren, L, Univ Ghent, Dept Text, Technol Pk 907, B-9052
       Ghent, Belgium.
    EM lien.vanderschueren@ugent.be
    NR 14
    PU SAGE PUBLICATIONS LTD
    PI LONDON
    PA 1 OLIVERS YARD, 55 CITY ROAD, LONDON EC1Y 1SP, ENGLAND
    SN 0040-5175
    J9 TEXT RES J
    JI Text. Res. J.
    PD MAY
    PY 2010
    VL 80
    IS 7
    BP 590
    EP 603
    DI 10.1177/0040517509346443
    PG 14
    SC Materials Science, Textiles
    GA 584SD
    UT ISI:000276772000002
status: public
subject:
- Technology and Engineering
title: The use of pH-indicator dyes for pH-sensitive textile materials
type: journalArticle
volume: '80'
wos_id: '000276772000002'
wos_type: Article
year: '2010'
...
---
_id: '947800'
abstract:
- Cotton is one of the most widely used natural fibres with very good overall properties.
  However, sustained, profitable cotton production suffers increasing pressure from
  the competition of synthetic fibres. To remain competitive on the market, it is
  necessary to direct the research towards the breakthrough technologies that are
  propelling this ancient crop into the high-tech world of tomorrow. The selection
  of the novel fibre types with the best performance in an early stage of this development
  process is very crucial and requires new test methods that can score new traits
  on a large number of small volume fibre samples. Therefore, it is essential to develop
  new methods or adapt existing ones and optimise them to be applicable on a few grams
  of fibre material. In the scope of this research 2 main fibre properties were chosen
  as focus aspects namely reactivity/dye ability and flame retardancy.
abstract_full:
- lang: eng
  text: Cotton is one of the most widely used natural fibres with very good overall
    properties. However, sustained, profitable cotton production suffers increasing
    pressure from the competition of synthetic fibres. To remain competitive on the
    market, it is necessary to direct the research towards the breakthrough technologies
    that are propelling this ancient crop into the high-tech world of tomorrow. The
    selection of the novel fibre types with the best performance in an early stage
    of this development process is very crucial and requires new test methods that
    can score new traits on a large number of small volume fibre samples. Therefore,
    it is essential to develop new methods or adapt existing ones and optimise them
    to be applicable on a few grams of fibre material. In the scope of this research
    2 main fibre properties were chosen as focus aspects namely reactivity/dye ability
    and flame retardancy.
additional_info: publication on CD-Rom
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
author:
- _id: FBC58A9C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FBC58A9C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Özgür
  last_name: Ceylan
  name: Özgür Ceylan
  name_last_first: Ceylan, Özgür
  ugent_id:
  - '002005040722'
  - '802000481295'
  - '972618734561'
- _id: F58CB1E6-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F58CB1E6-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lieve
  last_name: Van Landuyt
  name: Lieve Van Landuyt
  name_last_first: Van Landuyt, Lieve
  ugent_id:
  - '801001285006'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- first_name: Jennifer
  last_name: Tata
  name: Jennifer Tata
  name_last_first: Tata, Jennifer
- first_name: Jenny
  last_name: Alongi
  name: Jenny Alongi
  name_last_first: Alongi, Jenny
- first_name: Alberto
  last_name: Frache
  name: Alberto Frache
  name_last_first: Frache, Alberto
biblio_id: '947800'
cite:
  apa: |2
      <div class="csl-entry">Ceylan, Ö., Van Landuyt, L., De Clerck, K., Tata, J., Alongi, J., &#38; Frache, A. (2010). The search for superior cotton fibres of the future: novel small scale tests needed today. In A. Gigli (Ed.), <i>IFATCC International Congress, 22nd, Proceedings</i>. Stresa, Italy: Associazione Italiana di Chimica Tessile e Coloristica (AICTC).</div>
  chicago-author-date: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, Karen De Clerck, Jennifer Tata, Jenny Alongi, and Alberto Frache. 2010. “The Search for Superior Cotton Fibres of the Future: Novel Small Scale Tests Needed Today.” In <i>IFATCC International Congress, 22nd, Proceedings</i>, edited by Alessandro Gigli. Stresa, Italy: Associazione Italiana di Chimica Tessile e Coloristica (AICTC).</div>
  fwo: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, Karen De Clerck, Jennifer Tata, Jenny Alongi, and Alberto Frache. 2010. “The Search for Superior Cotton Fibres of the Future: Novel Small Scale Tests Needed Today.” In <i>IFATCC International Congress, 22nd, Proceedings</i>, ed by. Alessandro Gigli. Stresa, Italy: Associazione Italiana di Chimica Tessile e Coloristica (AICTC).</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Ö. Ceylan, L. Van Landuyt, K. De Clerck, J. Tata, J. Alongi, and A. Frache, “The search for superior cotton fibres of the future: novel small scale tests needed today,” in <i>IFATCC International Congress, 22nd, Proceedings</i>, Stresa, Italy, 2010.</div>
      </div>
  mla: |2
      <div class="csl-entry">Ceylan, Özgür, et al. “The Search for Superior Cotton Fibres of the Future: Novel Small Scale Tests Needed Today.” <i>IFATCC International Congress, 22nd, Proceedings</i>, edited by Alessandro Gigli, Associazione Italiana di Chimica Tessile e Coloristica (AICTC), 2010.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Ceylan Ö, Van Landuyt L, De Clerck K, Tata J, Alongi J, Frache A. The search for superior cotton fibres of the future: novel small scale tests needed today. In: Gigli A, editor. IFATCC International Congress, 22nd, Proceedings. Stresa, Italy: Associazione Italiana di Chimica Tessile e Coloristica (AICTC); 2010.</div>
       </div>
classification: C1
conference:
  end_date: 2010-05-07
  location: Stresa, Italy
  name: 22nd IFATCC International Congress (Stresa 2010)
  start_date: 2010-05-05
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2010-05-18 11:29:17
date_updated: 2026-03-31 14:53:01
editor:
- first_name: Alessandro
  last_name: Gigli
  name: Alessandro Gigli
  name_last_first: Gigli, Alessandro
external: 0
file:
- _id: '947801'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: C05_Ceylan_IFATCC_congress.pdf
  sha256: 32a2286ee784d1bcf09989f2bb34edc956945df01149fca36a5b59088b9ec1e4
  size: '290607'
  thumbnail_url: https://biblio.ugent.be/publication/947800/file/947801/thumbnail.png
  url: https://biblio.ugent.be/publication/947800/file/947801.pdf
handle: http://hdl.handle.net/1854/LU-947800
isbn:
- '9788896679005'
keyword:
- CHARACTERISATION TECHNIQUES
- COTTON
language:
- eng
page:
  count: '6'
parent:
  title: IFATCC International Congress, 22nd, Proceedings
publication_status: published
publication_status_sort: 2
publisher:
  location: Stresa, Italy
  name: Associazione Italiana di Chimica Tessile e Coloristica (AICTC)
status: public
subject:
- Technology and Engineering
title: 'The search for superior cotton fibres of the future: novel small scale tests
  needed today'
type: conference
year: '2010'
...
---
_id: '947819'
abstract:
- Colour changing textiles or so called chameleon textiles can be used in a whole
  range of applications since a colour change is an easy, non-disturbing signal which
  can act as a first signal or warning sign. This paper focuses on pH-sensitive or
  halochromic textile materials. Standard pH-indicator dyes were incorporated into
  different textile materials. Firstly, conventional textiles such as cotton and nylon
  were studied. Secondly, electrospun nano-nonwovens were investigated in which the
  dyes were added at the start of the production process. The results of the broad
  screening process showed the feasibility of dyeing cotton and nylon with pH-indicator
  dyes. In addition to this, electrospinning of polymer solutions with pH-indicator
  dyes was also achievable. The results prove the possibility of incorporating pH-indicator
  dyes into textiles. Moreover, the halochromic properties were retained in most of
  the studied textile systems. It was however noticed that the chromism of the dyes
  depended on the medium due to the dyefibre interactions.
abstract_full:
- lang: eng
  text: Colour changing textiles or so called chameleon textiles can be used in a
    whole range of applications since a colour change is an easy, non-disturbing signal
    which can act as a first signal or warning sign. This paper focuses on pH-sensitive
    or halochromic textile materials. Standard pH-indicator dyes were incorporated
    into different textile materials. Firstly, conventional textiles such as cotton
    and nylon were studied. Secondly, electrospun nano-nonwovens were investigated
    in which the dyes were added at the start of the production process. The results
    of the broad screening process showed the feasibility of dyeing cotton and nylon
    with pH-indicator dyes. In addition to this, electrospinning of polymer solutions
    with pH-indicator dyes was also achievable. The results prove the possibility
    of incorporating pH-indicator dyes into textiles. Moreover, the halochromic properties
    were retained in most of the studied textile systems. It was however noticed that
    the chromism of the dyes depended on the medium due to the dyefibre interactions.
additional_info: publication on CD-Rom
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
author:
- _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
  - '002002166892'
  - '802000424715'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '947819'
cite:
  apa: |2
      <div class="csl-entry">Van der Schueren, L., &#38; De Clerck, K. (2010). The development of an innovative pH-sensor based on colour changing textiles. In A. Gigli (Ed.), <i>IFATCC International Congress, 22nd, Proceedings</i>. Stresa, Italy: Associazione Italiana di Chimica Tessile e Coloristica (AICTC).</div>
  chicago-author-date: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2010. “The Development of an Innovative PH-Sensor Based on Colour Changing Textiles.” In <i>IFATCC International Congress, 22nd, Proceedings</i>, edited by Alessandro Gigli. Stresa, Italy: Associazione Italiana di Chimica Tessile e Coloristica (AICTC).</div>
  fwo: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2010. “The Development of an Innovative PH-Sensor Based on Colour Changing Textiles.” In <i>IFATCC International Congress, 22nd, Proceedings</i>, ed by. Alessandro Gigli. Stresa, Italy: Associazione Italiana di Chimica Tessile e Coloristica (AICTC).</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Van der Schueren and K. De Clerck, “The development of an innovative pH-sensor based on colour changing textiles,” in <i>IFATCC International Congress, 22nd, Proceedings</i>, Stresa, Italy, 2010.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. “The Development of an Innovative PH-Sensor Based on Colour Changing Textiles.” <i>IFATCC International Congress, 22nd, Proceedings</i>, edited by Alessandro Gigli, Associazione Italiana di Chimica Tessile e Coloristica (AICTC), 2010.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van der Schueren L, De Clerck K. The development of an innovative pH-sensor based on colour changing textiles. In: Gigli A, editor. IFATCC International Congress, 22nd, Proceedings. Stresa, Italy: Associazione Italiana di Chimica Tessile e Coloristica (AICTC); 2010.</div>
       </div>
classification: C1
conference:
  end_date: 2010-05-07
  location: Stresa, Italy
  name: 22nd IFATCC International Congress (Stresa 2010)
  start_date: 2010-05-05
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2010-05-18 11:36:52
date_updated: 2026-03-31 14:53:01
editor:
- first_name: Alessandro
  last_name: Gigli
  name: Alessandro Gigli
  name_last_first: Gigli, Alessandro
external: 0
file:
- _id: '947820'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: C06_VanderSchueren_IFATCC_congress.pdf
  sha256: 11ceac70d8f1062d78c15be1b1fc59795cb6566000620ebe7a9ec5b94bd9b710
  size: '740672'
  thumbnail_url: https://biblio.ugent.be/publication/947819/file/947820/thumbnail.png
  url: https://biblio.ugent.be/publication/947819/file/947820.pdf
handle: http://hdl.handle.net/1854/LU-947819
isbn:
- '9788896679005'
keyword:
- NYLON
- PH-INDICATOR DYES
- COTTON
- HALOCHROMISM
- SENSOR
language:
- eng
page:
  count: '6'
parent:
  title: IFATCC International Congress, 22nd, Proceedings
publication_status: published
publication_status_sort: 2
publisher:
  location: Stresa, Italy
  name: Associazione Italiana di Chimica Tessile e Coloristica (AICTC)
status: public
subject:
- Technology and Engineering
title: The development of an innovative pH-sensor based on colour changing textiles
type: conference
year: '2010'
...
---
_id: '945341'
affiliation:
- name: University College West Flanders
  path:
  - ugent_id: UGentAssoc
  - ugent_id: HOWEST
  ugent_id: HOWEST
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
author:
- _id: 1C30272E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 1C30272E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Nele
  last_name: Daels
  name: Nele Daels
  name_last_first: Daels, Nele
  ugent_id:
  - '002003290072'
  - '802000583955'
  - '977784615061'
- first_name: Bjorge
  last_name: Decosteren
  name: Bjorge Decosteren
  name_last_first: Decosteren, Bjorge
- _id: F873DBBE-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F873DBBE-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Sander
  last_name: De Vrieze
  name: Sander De Vrieze
  name_last_first: De Vrieze, Sander
  ugent_id:
  - '802000062074'
  - '002001065843'
- _id: F76F6D32-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: F76F6D32-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Tamara
  last_name: Van Camp
  name: Tamara Van Camp
  name_last_first: Van Camp, Tamara
  ugent_id:
  - '801001940663'
  - '001998321046'
- _id: FBFFDF8A-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FBFFDF8A-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Wim
  last_name: Audenaert
  name: Wim Audenaert
  name_last_first: Audenaert, Wim
  ugent_id:
  - '000080787357'
  - '802000510395'
  - '976625357856'
- _id: F4ABDEE6-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4ABDEE6-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Philippe
  last_name: Westbroek
  name: Philippe Westbroek
  name_last_first: Westbroek, Philippe
  ugent_id:
  - '801000885888'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: FAD54460-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA24
    ugent_id: LA24
  biblio_id: FAD54460-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Stijn
  last_name: Van Hulle
  name: Stijn Van Hulle
  name_last_first: Van Hulle, Stijn
  orcid_id: 0000-0001-5773-7773
  ugent_id:
  - '801001539933'
  - '919019834884'
  - '971483871644'
biblio_id: '945341'
cite:
  apa: |2
      <div class="csl-entry">Daels, N., Decosteren, B., De Vrieze, S., Van Camp, T., Audenaert, W., Westbroek, P., … Van Hulle, S. (2010). Functionalised electrospun nanofibres for removal of pathogens. <i>Flemish Youth Conference of Chemistry, 10th, Abstracts</i>. Presented at the 10th Flemish Youth Conference of Chemistry (VJC 10), Blankenberge, Belgium.</div>
  chicago-author-date: |2
      <div class="csl-entry">Daels, Nele, Bjorge Decosteren, Sander De Vrieze, Tamara Van Camp, Wim Audenaert, Philippe Westbroek, Karen De Clerck, and Stijn Van Hulle. 2010. “Functionalised Electrospun Nanofibres for Removal of Pathogens.” In <i>Flemish Youth Conference of Chemistry, 10th, Abstracts</i>. Koninklijke Vlaamse Chemische Vereniging. Jongerensectie.</div>
  fwo: |2
      <div class="csl-entry">Daels, Nele, Bjorge Decosteren, Sander De Vrieze, Tamara Van Camp, Wim Audenaert, Philippe Westbroek, Karen De Clerck, and Stijn Van Hulle. 2010. “Functionalised Electrospun Nanofibres for Removal of Pathogens.” In <i>Flemish Youth Conference of Chemistry, 10th, Abstracts</i>. Koninklijke Vlaamse Chemische Vereniging. Jongerensectie.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">N. Daels <i>et al.</i>, “Functionalised electrospun nanofibres for removal of pathogens,” in <i>Flemish Youth Conference of Chemistry, 10th, Abstracts</i>, Blankenberge, Belgium, 2010.</div>
      </div>
  mla: |2
      <div class="csl-entry">Daels, Nele, et al. “Functionalised Electrospun Nanofibres for Removal of Pathogens.” <i>Flemish Youth Conference of Chemistry, 10th, Abstracts</i>, Koninklijke Vlaamse Chemische Vereniging. Jongerensectie, 2010.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Daels N, Decosteren B, De Vrieze S, Van Camp T, Audenaert W, Westbroek P, et al. Functionalised electrospun nanofibres for removal of pathogens. In: Flemish Youth Conference of Chemistry, 10th, Abstracts. Koninklijke Vlaamse Chemische Vereniging. Jongerensectie; 2010.</div>
       </div>
classification: C3
conference:
  end_date: 2010-03-02
  location: Blankenberge, Belgium
  name: 10th Flemish Youth Conference of Chemistry (VJC 10)
  start_date: 2010-03-01
copyright_statement: No license (in copyright)
created_by:
  _id: FAD54460-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: LA
    - ugent_id: LA24
    ugent_id: LA24
  biblio_id: FAD54460-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Stijn
  last_name: Van Hulle
  name: Stijn Van Hulle
  name_last_first: Van Hulle, Stijn
  orcid_id: 0000-0001-5773-7773
  ugent_id:
  - '801001539933'
  - '919019834884'
  - '971483871644'
date_created: 2010-05-11 11:20:38
date_updated: 2026-03-31 14:52:58
external: 0
file:
- _id: '1938814'
  access: open
  content_type: application/pdf
  kind: fullText
  name: abstract_2010_Daels_Nele.pdf
  sha256: 984a6a1eb3ea0380f053717501adc2fb37ac6e5fbf593ac97b8428bea05571dc
  size: '222504'
  thumbnail_url: https://biblio.ugent.be/publication/945341/file/1938814/thumbnail.png
  url: https://biblio.ugent.be/publication/945341/file/1938814.pdf
handle: http://hdl.handle.net/1854/LU-945341
language:
- eng
parent:
  title: Flemish Youth Conference of Chemistry, 10th, Abstracts
publication_status: published
publication_status_sort: 2
publisher:
  name: Koninklijke Vlaamse Chemische Vereniging. Jongerensectie
status: public
subject:
- Chemistry
title: Functionalised electrospun nanofibres for removal of pathogens
type: conference
year: '2010'
...
---
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  first_name: Sander
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  - name: Ghent University
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    ugent_id: UGent
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  first_name: Wim
  last_name: Audenaert
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  - '802000510395'
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  first_name: Philippe
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  first_name: Stijn
  last_name: Van Hulle
  name: Stijn Van Hulle
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  - '801001539933'
  - '919019834884'
  - '971483871644'
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  affiliation:
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    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
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  - '801000947425'
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    ugent_id: UGent
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  first_name: Paul
  last_name: Kiekens
  name: Paul Kiekens
  name_last_first: Kiekens, Paul
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  - '973210305734'
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cite:
  apa: |2
      <div class="csl-entry">De Vrieze, S., Van Camp, T., Decostere, B., Audenaert, W., Westbroek, P., Van Hulle, S., … Kiekens, P. (2009). Nanofibrous structures for use in water filtration. <i>UNITEX. TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i>, (2009 / 2), 7–10.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Vrieze, Sander, Tamara Van Camp, Bjorge Decostere, Wim Audenaert, Philippe Westbroek, Stijn Van Hulle, Karen De Clerck, and Paul Kiekens. 2009. “Nanofibrous Structures for Use in Water Filtration.” <i>UNITEX. TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i>, no. 2009 / 2: 7–10.</div>
  fwo: |2
      <div class="csl-entry">De Vrieze, Sander, Tamara Van Camp, Bjorge Decostere, Wim Audenaert, Philippe Westbroek, Stijn Van Hulle, Karen De Clerck, and Paul Kiekens. 2009. “Nanofibrous Structures for Use in Water Filtration.” <i>UNITEX. TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i> (2009 / 2): 7–10.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. De Vrieze <i>et al.</i>, “Nanofibrous structures for use in water filtration,” <i>UNITEX. TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i>, no. 2009 / 2, pp. 7–10, 2009.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Vrieze, Sander, et al. “Nanofibrous Structures for Use in Water Filtration.” <i>UNITEX. TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i>, no. 2009 / 2, Unitex vzw, 2009, pp. 7–10.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Vrieze S, Van Camp T, Decostere B, Audenaert W, Westbroek P, Van Hulle S, et al. Nanofibrous structures for use in water filtration. UNITEX TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE. 2009;(2009 / 2):7–10.</div>
       </div>
classification: A4
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  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
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    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2009-09-11 11:53:25
date_updated: 2026-03-31 14:26:14
external: 0
handle: http://hdl.handle.net/1854/LU-748561
issue: 2009 / 2
issue_title: Nanotechnologie
language:
- eng
page:
  first: '7'
  last: '10'
parent:
  short_title: UNITEX (Deinze)
  title: UNITEX. TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE
publication_status: published
publication_status_sort: 2
publisher:
  location: Deinze
  name: Unitex vzw
status: public
subject:
- Technology and Engineering
title: Nanofibrous structures for use in water filtration
type: journalArticle
year: '2009'
...
---
_id: '594902'
additional_info: Presentation in project session
affiliation:
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    ugent_id: TW18
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  first_name: Lieva
  last_name: Van Langenhove
  name: Lieva Van Langenhove
  name_last_first: Van Langenhove, Lieva
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  - '801000648543'
  - '972198930382'
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  affiliation:
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    ugent_id: TW11
  biblio_id: F95E2958-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Vincent
  last_name: Nierstrasz
  name: Vincent Nierstrasz
  name_last_first: Nierstrasz, Vincent
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  - '802000230513'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
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  name_last_first: De Clerck, Karen
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  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '594902'
cite:
  apa: |2
      <div class="csl-entry">Van Langenhove, L., Nierstrasz, V., &#38; De Clerck, K. (2009). No Bug: novel release system and bio-based utilities for mosquito repellent textiles and garments. <i>From EU Research to Industrial Innovation, Presentations</i>, 1–8. Brussels: EURATEX ; European Technology Platform for the Future of Textiles and Clothing.</div>
  chicago-author-date: |2
      <div class="csl-entry">Van Langenhove, Lieva, Vincent Nierstrasz, and Karen De Clerck. 2009. “No Bug: Novel Release System and Bio-Based Utilities for Mosquito Repellent Textiles and Garments.” In <i>From EU Research to Industrial Innovation, Presentations</i>, 1–8. Brussels: EURATEX ; European Technology Platform for the Future of Textiles and Clothing.</div>
  fwo: |2
      <div class="csl-entry">Van Langenhove, Lieva, Vincent Nierstrasz, and Karen De Clerck. 2009. “No Bug: Novel Release System and Bio-Based Utilities for Mosquito Repellent Textiles and Garments.” In <i>From EU Research to Industrial Innovation, Presentations</i>, 1–8. Brussels: EURATEX ; European Technology Platform for the Future of Textiles and Clothing.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Van Langenhove, V. Nierstrasz, and K. De Clerck, “No Bug: novel release system and bio-based utilities for mosquito repellent textiles and garments,” in <i>From EU research to industrial innovation, Presentations</i>, Brussels, Belgium, 2009, pp. 1–8.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van Langenhove, Lieva, et al. “No Bug: Novel Release System and Bio-Based Utilities for Mosquito Repellent Textiles and Garments.” <i>From EU Research to Industrial Innovation, Presentations</i>, EURATEX ; European Technology Platform for the Future of Textiles and Clothing, 2009, pp. 1–8.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van Langenhove L, Nierstrasz V, De Clerck K. No Bug: novel release system and bio-based utilities for mosquito repellent textiles and garments. In: From EU research to industrial innovation, Presentations. Brussels: EURATEX ; European Technology Platform for the Future of Textiles and Clothing; 2009. p. 1–8.</div>
       </div>
classification: C3
conference:
  end_date: 2009-04-02
  location: Brussels, Belgium
  name: '4th Annual Public Conference : From EU research to industrial innovation'
  start_date: 2009-04-01
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
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    ugent_id: EB21
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  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2009-04-17 09:41:25
date_updated: 2026-03-31 14:18:13
external: 0
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handle: http://hdl.handle.net/1854/LU-594902
language:
- eng
page:
  count: 8 slides
  first: '1'
  last: '8'
parent:
  title: From EU research to industrial innovation, Presentations
publication_status: published
publication_status_sort: 2
publisher:
  location: Brussels
  name: EURATEX ; European Technology Platform for the Future of Textiles and Clothing
status: public
subject:
- Technology and Engineering
title: 'No Bug: novel release system and bio-based utilities for mosquito repellent
  textiles and garments'
type: conference
year: '2009'
...
---
_id: '602509'
additional_info: presentation
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
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  ugent_id: TW11*
author:
- _id: F4469E14-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    ugent_id: TW11
  - path:
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    - ugent_id: TW
    - ugent_id: TW18
    ugent_id: TW18
  biblio_id: F4469E14-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lieva
  last_name: Van Langenhove
  name: Lieva Van Langenhove
  name_last_first: Van Langenhove, Lieva
  orcid_id: 0000-0001-9802-7399
  ugent_id:
  - '801000648543'
  - '972198930382'
- _id: F873DBBE-F0ED-11E1-A9DE-61C894A0A6B4
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  - path:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F873DBBE-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Sander
  last_name: De Vrieze
  name: Sander De Vrieze
  name_last_first: De Vrieze, Sander
  ugent_id:
  - '802000062074'
  - '002001065843'
- _id: F4ABDEE6-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    ugent_id: TW11
  biblio_id: F4ABDEE6-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Philippe
  last_name: Westbroek
  name: Philippe Westbroek
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  - '801000885888'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: TW11
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  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
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  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '602509'
cite:
  apa: |2
      <div class="csl-entry">Van Langenhove, L., De Vrieze, S., Westbroek, P., &#38; De Clerck, K. (2009). Electrospinning at UGent. <i>AITEX Info Day, Presentations</i>, 1–13.</div>
  chicago-author-date: |2
      <div class="csl-entry">Van Langenhove, Lieva, Sander De Vrieze, Philippe Westbroek, and Karen De Clerck. 2009. “Electrospinning at UGent.” In <i>AITEX Info Day, Presentations</i>, 1–13.</div>
  fwo: |2
      <div class="csl-entry">Van Langenhove, Lieva, Sander De Vrieze, Philippe Westbroek, and Karen De Clerck. 2009. “Electrospinning at UGent.” In <i>AITEX Info Day, Presentations</i>, 1–13.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Van Langenhove, S. De Vrieze, P. Westbroek, and K. De Clerck, “Electrospinning at UGent,” in <i>AITEX Info Day, Presentations</i>, Brussels, Belgium, 2009, pp. 1–13.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van Langenhove, Lieva, et al. “Electrospinning at UGent.” <i>AITEX Info Day, Presentations</i>, 2009, pp. 1–13.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van Langenhove L, De Vrieze S, Westbroek P, De Clerck K. Electrospinning at UGent. In: AITEX Info Day, Presentations. 2009. p. 1–13.</div>
       </div>
classification: C3
conference:
  end_date: 2009-03-31
  location: Brussels, Belgium
  name: AITEX Info Day
  start_date: 2009-03-31
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2009-04-28 12:35:06
date_updated: 2026-03-31 14:19:32
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handle: http://hdl.handle.net/1854/LU-602509
language:
- eng
page:
  count: 13 slides
  first: '1'
  last: '13'
parent:
  title: AITEX Info Day, Presentations
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Electrospinning at UGent
type: conference
year: '2009'
...
---
_id: '516287'
abstract:
- Electrospinning is a process that generates nanofibres. Temperature and humidity
  affect this process. In this article the influence of humidity and temperature on
  the formation and the properties of nanofibres are studied using cellulose acetate
  (CA) and poly(vinylpyrrolidone) (PVP) as target materials. The experiments indicate
  that two major parameters are dependent of temperature and have their influence
  on the average fibre diameter. A first parameter is the solvent evaporation rate
  that increases with increasing temperature. The second parameter is the viscosity
  of the polymer solution that decreases with increasing  temperature. The trend in
  variation of the average nanofibre diameter as a function of humidity is different
  for CA and PVP, which can be explained by variations in chemical and molecular interaction
  and its influence on the solvent evaporation rate. As the humidity increases, the
  average fibre diameter of the CA nanofibres increases, whilst for  PVP the average
  diameter decreases. The average diameter of nanofibres made by electrospinning change
  significantly through variation of temperature and humidity.
abstract_full:
- lang: eng
  text: Electrospinning is a process that generates nanofibres. Temperature and humidity
    affect this process. In this article the influence of humidity and temperature
    on the formation and the properties of nanofibres are studied using cellulose
    acetate (CA) and poly(vinylpyrrolidone) (PVP) as target materials. The experiments
    indicate that two major parameters are dependent of temperature and have their
    influence on the average fibre diameter. A first parameter is the solvent evaporation
    rate that increases with increasing temperature. The second parameter is the viscosity
    of the polymer solution that decreases with increasing  temperature. The trend
    in variation of the average nanofibre diameter as a function of humidity is different
    for CA and PVP, which can be explained by variations in chemical and molecular
    interaction and its influence on the solvent evaporation rate. As the humidity
    increases, the average fibre diameter of the CA nanofibres increases, whilst for  PVP
    the average diameter decreases. The average diameter of nanofibres made by electrospinning
    change significantly through variation of temperature and humidity.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
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  first_name: Sander
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  name: Sander De Vrieze
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  first_name: Tamara
  last_name: Van Camp
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  ugent_id:
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  - '001998321046'
- first_name: A.
  last_name: Nelvig
  name: A. Nelvig
  name_last_first: Nelvig, A.
- first_name: B.
  last_name: Hagstrom
  name: B. Hagstrom
  name_last_first: Hagstrom, B.
- _id: F4ABDEE6-F0ED-11E1-A9DE-61C894A0A6B4
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    ugent_id: TW11
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  first_name: Philippe
  last_name: Westbroek
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  - '801000885888'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
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  first_name: Karen
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  name: Karen De Clerck
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  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '516287'
cite:
  apa: |2
      <div class="csl-entry">De Vrieze, S., Van Camp, T., Nelvig, A., Hagstrom, B., Westbroek, P., &#38; De Clerck, K. (2009). The effect of temperature and humidity on electrospinning. <i>JOURNAL OF MATERIALS SCIENCE</i>, <i>44</i>(5), 1357–1362. https://doi.org/10.1007/s10853-008-3010-6</div>
  chicago-author-date: |2
      <div class="csl-entry">De Vrieze, Sander, Tamara Van Camp, A. Nelvig, B. Hagstrom, Philippe Westbroek, and Karen De Clerck. 2009. “The Effect of Temperature and Humidity on Electrospinning.” <i>JOURNAL OF MATERIALS SCIENCE</i> 44 (5): 1357–62. https://doi.org/10.1007/s10853-008-3010-6.</div>
  fwo: |2
      <div class="csl-entry">De Vrieze, Sander, Tamara Van Camp, A. Nelvig, B. Hagstrom, Philippe Westbroek, and Karen De Clerck. 2009. “The Effect of Temperature and Humidity on Electrospinning.” <i>JOURNAL OF MATERIALS SCIENCE</i> 44 (5): 1357–1362. doi:10.1007/s10853-008-3010-6.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. De Vrieze, T. Van Camp, A. Nelvig, B. Hagstrom, P. Westbroek, and K. De Clerck, “The effect of temperature and humidity on electrospinning,” <i>JOURNAL OF MATERIALS SCIENCE</i>, vol. 44, no. 5, pp. 1357–1362, 2009.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Vrieze, Sander, et al. “The Effect of Temperature and Humidity on Electrospinning.” <i>JOURNAL OF MATERIALS SCIENCE</i>, vol. 44, no. 5, Springer, 2009, pp. 1357–62, doi:10.1007/s10853-008-3010-6.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Vrieze S, Van Camp T, Nelvig A, Hagstrom B, Westbroek P, De Clerck K. The effect of temperature and humidity on electrospinning. JOURNAL OF MATERIALS SCIENCE. 2009;44(5):1357–62.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
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    ugent_id: EB21
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  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2009-03-10 10:40:24
date_updated: 2026-03-31 14:08:56
doi:
- 10.1007/s10853-008-3010-6
external: 0
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handle: http://hdl.handle.net/1854/LU-516287
issn:
- 0022-2461
issue: '5'
jcr:
  category: MATERIALS SCIENCE, MULTIDISCIPLINARY
  category_decile: 4
  category_quartile: 2
  category_rank: 83/210
  category_vigintile: 8
  eigenfactor: 0.05241
  immediacy_index: 0.283
  impact_factor: 1.471
  impact_factor_5yr: 1.536
  prev_category_decile: 5
  prev_category_quartile: 2
  prev_category_vigintile: 10
  prev_impact_factor: 1.181
  total_cites: 23610
keyword:
- NANOFIBER DIAMETER
- PARAMETERS
language:
- eng
page:
  first: '1357'
  last: '1362'
parent:
  short_title: J. Mater. Sci.
  title: JOURNAL OF MATERIALS SCIENCE
publication_status: published
publication_status_sort: 2
publisher:
  location: 233 SPRING ST, NEW YORK, NY 10013 USA
  name: Springer
status: public
subject:
- Technology and Engineering
title: The effect of temperature and humidity on electrospinning
type: journalArticle
volume: '44'
wos_id: '000263379500028'
wos_type: Article
year: '2009'
...
---
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  first_name: Joël
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  first_name: Philippe
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  first_name: Karen
  last_name: De Clerck
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biblio_id: '813794'
cite:
  apa: |2
      <div class="csl-entry">Decostere, B., Daels, N., De Vrieze, S., Dejans, P., Van Camp, T., Audenaert, W., … Van Hulle, S. (2009). Performance assessment of electrospun nanofibres for filter applications. <i>DESALINATION</i>, <i>249</i>(3), 942–948. https://doi.org/10.1016/j.desal.2009.06.064</div>
  chicago-author-date: |2
      <div class="csl-entry">Decostere, Bjorge, Nele Daels, Sander De Vrieze, Pascal Dejans, Tamara Van Camp, Wim Audenaert, Joël Hogie, Philippe Westbroek, Karen De Clerck, and Stijn Van Hulle. 2009. “Performance Assessment of Electrospun Nanofibres for Filter Applications.” <i>DESALINATION</i> 249 (3): 942–48. https://doi.org/10.1016/j.desal.2009.06.064.</div>
  fwo: |2
      <div class="csl-entry">Decostere, Bjorge, Nele Daels, Sander De Vrieze, Pascal Dejans, Tamara Van Camp, Wim Audenaert, Joël Hogie, Philippe Westbroek, Karen De Clerck, and Stijn Van Hulle. 2009. “Performance Assessment of Electrospun Nanofibres for Filter Applications.” <i>DESALINATION</i> 249 (3): 942–948. doi:10.1016/j.desal.2009.06.064.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. Decostere <i>et al.</i>, “Performance assessment of electrospun nanofibres for filter applications,” <i>DESALINATION</i>, vol. 249, no. 3, pp. 942–948, 2009.</div>
      </div>
  mla: |2
      <div class="csl-entry">Decostere, Bjorge, et al. “Performance Assessment of Electrospun Nanofibres for Filter Applications.” <i>DESALINATION</i>, vol. 249, no. 3, 2009, pp. 942–48, doi:10.1016/j.desal.2009.06.064.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Decostere B, Daels N, De Vrieze S, Dejans P, Van Camp T, Audenaert W, et al. Performance assessment of electrospun nanofibres for filter applications. DESALINATION. 2009;249(3):942–8.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: FAD44D4E-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: FAD44D4E-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Han
  last_name: Vervaeren
  name: Han Vervaeren
  name_last_first: Vervaeren, Han
  orcid_id: 0000-0001-6893-1088
  ugent_id:
  - '001998793518'
  - '801001628849'
  - '974538758928'
date_created: 2009-12-17 15:46:03
date_updated: 2026-03-31 14:28:05
doi:
- 10.1016/j.desal.2009.06.064
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handle: http://hdl.handle.net/1854/LU-813794
issn:
- 0011-9164
issue: '3'
jcr:
  category: WATER RESOURCES
  category_decile: 1
  category_quartile: 1
  category_rank: 6/64
  category_vigintile: 2
  eigenfactor: 0.02618
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  prev_category_decile: 4
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  prev_impact_factor: 1.155
  total_cites: 11695
keyword:
- WASTE-WATER
- SILVER NANOPARTICLES
- MBR
- Pathogen removal
- Microfiltration
- Electrospinning
- Nanofiber
- MICROFILTRATION
- MEMBRANE
- POLYMER
- FIBERS
language:
- eng
page:
  first: '942'
  last: '948'
parent:
  short_title: Desalination
  title: DESALINATION
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Performance assessment of electrospun nanofibres for filter applications
type: journalArticle
volume: '249'
wos_id: '000272438500008'
wos_type: Article
year: '2009'
...
---
_id: '767505'
abstract:
- The aim of this research is to develop a method to dye extremely small amounts of
  grey cotton and to adapt existing characterisation methods to these small amounts
  of fibres, so that the reactivity of the cotton fibres could be studied. A small
  scale laboratory method is developed to dye cotton with commercial dyes in vials.
  For the quantification of the dyeing levels of these small fibre samples, different
  techniques were adapted, such as UVVIS and Raman spectroscopy. The preferred method
  is dependent on the colour and the type of dye.
abstract_full:
- lang: eng
  text: The aim of this research is to develop a method to dye extremely small amounts
    of grey cotton and to adapt existing characterisation methods to these small amounts
    of fibres, so that the reactivity of the cotton fibres could be studied. A small
    scale laboratory method is developed to dye cotton with commercial dyes in vials.
    For the quantification of the dyeing levels of these small fibre samples, different
    techniques were adapted, such as UVVIS and Raman spectroscopy. The preferred method
    is dependent on the colour and the type of dye.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
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  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
author:
- _id: FBC58A9C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FBC58A9C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Özgür
  last_name: Ceylan
  name: Özgür Ceylan
  name_last_first: Ceylan, Özgür
  ugent_id:
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  - '802000481295'
  - '972618734561'
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  affiliation:
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    ugent_id: TW11
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  first_name: Lieve
  last_name: Van Landuyt
  name: Lieve Van Landuyt
  name_last_first: Van Landuyt, Lieve
  ugent_id:
  - '801001285006'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '767505'
cite:
  apa: |2
      <div class="csl-entry">Ceylan, Ö., Van Landuyt, L., &#38; De Clerck, K. (2009). Novel tests for dyeing and characterisation of small amounts of cotton fibre. <i>Autex 2009 : Book of Abstracts</i>, 1033–1035. Izmir, Turkey: Ege University. Department of Textiel engineering.</div>
  chicago-author-date: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, and Karen De Clerck. 2009. “Novel Tests for Dyeing and Characterisation of Small Amounts of Cotton Fibre.” In <i>Autex 2009 : Book of Abstracts</i>, 1033–35. Izmir, Turkey: Ege University. Department of Textiel engineering.</div>
  fwo: |2
      <div class="csl-entry">Ceylan, Özgür, Lieve Van Landuyt, and Karen De Clerck. 2009. “Novel Tests for Dyeing and Characterisation of Small Amounts of Cotton Fibre.” In <i>Autex 2009 : Book of Abstracts</i>, 1033–1035. Izmir, Turkey: Ege University. Department of Textiel engineering.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">Ö. Ceylan, L. Van Landuyt, and K. De Clerck, “Novel tests for dyeing and characterisation of small amounts of cotton fibre,” in <i>Autex 2009 : book of abstracts</i>, Izmir, Turkey, 2009, pp. 1033–1035.</div>
      </div>
  mla: |2
      <div class="csl-entry">Ceylan, Özgür, et al. “Novel Tests for Dyeing and Characterisation of Small Amounts of Cotton Fibre.” <i>Autex 2009 : Book of Abstracts</i>, Ege University. Department of Textiel engineering, 2009, pp. 1033–35.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Ceylan Ö, Van Landuyt L, De Clerck K. Novel tests for dyeing and characterisation of small amounts of cotton fibre. In: Autex 2009 : book of abstracts. Izmir, Turkey: Ege University. Department of Textiel engineering; 2009. p. 1033–5.</div>
       </div>
classification: C1
conference:
  end_date: 2009-05-28
  location: Izmir, Turkey
  name: 9th World Textile Conference
  start_date: 2009-05-26
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2009-10-23 10:41:29
date_updated: 2026-03-31 14:26:22
external: 0
file:
- _id: '767519'
  access: restricted
  content_type: application/pdf
  kind: fullText
  name: Novel_Tests_for_Dyeing_and_Characterisation_of_Small_Amounts_of_Cotton_Fibre.pdf
  sha256: e4cf6fb026a819f0c56246b88b2c81803d58ab145b60ac2e2899c9ddcc8947e8
  size: '168418'
  thumbnail_url: https://biblio.ugent.be/publication/767505/file/767519/thumbnail.png
  url: https://biblio.ugent.be/publication/767505/file/767519.pdf
handle: http://hdl.handle.net/1854/LU-767505
isbn:
- '9754837872'
keyword:
- UV-VIS Spectroscopy
- Characterisation Techniques
- Raman Spectroscopy
- Cotton
language:
- eng
page:
  first: '1033'
  last: '1035'
parent:
  title: 'Autex 2009 : book of abstracts'
publication_status: published
publication_status_sort: 2
publisher:
  location: Izmir, Turkey
  name: Ege University. Department of Textiel engineering
status: public
subject:
- Technology and Engineering
title: Novel tests for dyeing and characterisation of small amounts of cotton fibre
type: conference
year: '2009'
...
---
_id: '767586'
abstract:
- This paper verifies the possibility of using standard water-soluble pH-indicator
  dyes in color change textile materials made out of conventional textiles and produced
  by a dyeing process. After a screening process in which the color depth, levelness
  and the color change properties of the dyed samples were examined, some dyes were
  selected to study in more detail. It was found that the behavior of the indicator
  dyes is different when the dyes are incorporated in textile materials instead of
  being dissolved in an aqueous solution. Our results show that it is possible to
  develop a textile pH-sensor using pH-indicators and conventional textiles.
abstract_full:
- lang: eng
  text: This paper verifies the possibility of using standard water-soluble pH-indicator
    dyes in color change textile materials made out of conventional textiles and produced
    by a dyeing process. After a screening process in which the color depth, levelness
    and the color change properties of the dyed samples were examined, some dyes were
    selected to study in more detail. It was found that the behavior of the indicator
    dyes is different when the dyes are incorporated in textile materials instead
    of being dissolved in an aqueous solution. Our results show that it is possible
    to develop a textile pH-sensor using pH-indicators and conventional textiles.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
author:
- _id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: FAEC6B7C-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lien
  last_name: Van der Schueren
  name: Lien Van der Schueren
  name_last_first: Van der Schueren, Lien
  ugent_id:
  - '002002166892'
  - '802000424715'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '767586'
cite:
  apa: |2
      <div class="csl-entry">Van der Schueren, L., &#38; De Clerck, K. (2009). Color change textile materials: a feasibility study on the use of pH-indicator dyes in textile pH-sensors. In P. Kiekens (Ed.), <i>International conference on Latest Advances in High-Tech Textiles and Textile-Based Materials, Proceedings</i> (pp. 38–40). Ghent, Belgium: Ghent University. Department of Textiles.</div>
  chicago-author-date: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2009. “Color Change Textile Materials: A Feasibility Study on the Use of PH-Indicator Dyes in Textile PH-Sensors.” In <i>International Conference on Latest Advances in High-Tech Textiles and Textile-Based Materials, Proceedings</i>, edited by Paul Kiekens, 38–40. Ghent, Belgium: Ghent University. Department of Textiles.</div>
  fwo: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. 2009. “Color Change Textile Materials: A Feasibility Study on the Use of PH-Indicator Dyes in Textile PH-Sensors.” In <i>International Conference on Latest Advances in High-Tech Textiles and Textile-Based Materials, Proceedings</i>, ed by. Paul Kiekens, 38–40. Ghent, Belgium: Ghent University. Department of Textiles.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">L. Van der Schueren and K. De Clerck, “Color change textile materials: a feasibility study on the use of pH-indicator dyes in textile pH-sensors,” in <i>International conference on Latest Advances in High-Tech Textiles and Textile-Based Materials, Proceedings</i>, Ghent, Belgium, 2009, pp. 38–40.</div>
      </div>
  mla: |2
      <div class="csl-entry">Van der Schueren, Lien, and Karen De Clerck. “Color Change Textile Materials: A Feasibility Study on the Use of PH-Indicator Dyes in Textile PH-Sensors.” <i>International Conference on Latest Advances in High-Tech Textiles and Textile-Based Materials, Proceedings</i>, edited by Paul Kiekens, Ghent University. Department of Textiles, 2009, pp. 38–40.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van der Schueren L, De Clerck K. Color change textile materials: a feasibility study on the use of pH-indicator dyes in textile pH-sensors. In: Kiekens P, editor. International conference on Latest Advances in High-Tech Textiles and Textile-Based Materials, Proceedings. Ghent, Belgium: Ghent University. Department of Textiles; 2009. p. 38–40.</div>
       </div>
classification: C1
conference:
  end_date: 2009-09-25
  location: Ghent, Belgium
  name: International conference on Latest Advances in High-Tech Textiles and Textile-Based
    Materials
  start_date: 2009-09-23
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2009-10-23 11:24:44
date_updated: 2026-03-31 14:26:22
editor:
- _id: F41CA7A8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: F41CA7A8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Paul
  last_name: Kiekens
  name: Paul Kiekens
  name_last_first: Kiekens, Paul
  orcid_id: 0000-0002-8280-2108
  ugent_id:
  - '973210305734'
external: 0
file:
- _id: '767592'
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  kind: fullText
  name: SMART3_80854_Van_der_Schueren.pdf
  sha256: 398bceac5cb35d3c08d9f0ea657b85a342de1955c9c1e3992a734c3ac97afef1
  size: '45996'
  thumbnail_url: https://biblio.ugent.be/publication/767586/file/767592/thumbnail.png
  url: https://biblio.ugent.be/publication/767586/file/767592.pdf
handle: http://hdl.handle.net/1854/LU-767586
isbn:
- '9789081392426'
keyword:
- nylon
- pH-indicators
- cotton
- halochromism
- sensor
language:
- eng
page:
  count: '3'
  first: '38'
  last: '40'
parent:
  title: International conference on Latest Advances in High-Tech Textiles and Textile-Based
    Materials, Proceedings
publication_status: published
publication_status_sort: 2
publisher:
  location: Ghent, Belgium
  name: Ghent University. Department of Textiles
status: public
subject:
- Technology and Engineering
title: 'Color change textile materials: a feasibility study on the use of pH-indicator
  dyes in textile pH-sensors'
type: conference
year: '2009'
...
---
_id: '767594'
abstract:
- Electrospinning is a relatively simple fibre-forming process and offers a unique
  method to produce nanofibers. The process exists at this moment 80 years and has
  seen a very turbulent history. There is a need to see what actually happened in
  this history. We have taken a brief look in the history of electrospinning. This
  paper is reporting on some of the aspects that electrospinning encountered. It is
  crucial to see that electrospinning has been used in different countries in different
  time periods. The history of electrospinning is mainly characterised by bad timing.
  The future of electrospinning looks however quit bright.
abstract_full:
- lang: eng
  text: Electrospinning is a relatively simple fibre-forming process and offers a
    unique method to produce nanofibers. The process exists at this moment 80 years
    and has seen a very turbulent history. There is a need to see what actually happened
    in this history. We have taken a brief look in the history of electrospinning.
    This paper is reporting on some of the aspects that electrospinning encountered.
    It is crucial to see that electrospinning has been used in different countries
    in different time periods. The history of electrospinning is mainly characterised
    by bad timing. The future of electrospinning looks however quit bright.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
author:
- _id: F873DBBE-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F873DBBE-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Sander
  last_name: De Vrieze
  name: Sander De Vrieze
  name_last_first: De Vrieze, Sander
  ugent_id:
  - '802000062074'
  - '002001065843'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
biblio_id: '767594'
cite:
  apa: |2
      <div class="csl-entry">De Vrieze, S., &#38; De Clerck, K. (2009). 80 years of electrospinning. In P. Kiekens (Ed.), <i>International conference on Latest Advances in High-Tech Textiles and Textile-Based Materials, Proceedings</i> (pp. 60–63). Ghent, Belgium: Ghent University. Department of Textiles.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Vrieze, Sander, and Karen De Clerck. 2009. “80 Years of Electrospinning.” In <i>International Conference on Latest Advances in High-Tech Textiles and Textile-Based Materials, Proceedings</i>, edited by Paul Kiekens, 60–63. Ghent, Belgium: Ghent University. Department of Textiles.</div>
  fwo: |2
      <div class="csl-entry">De Vrieze, Sander, and Karen De Clerck. 2009. “80 Years of Electrospinning.” In <i>International Conference on Latest Advances in High-Tech Textiles and Textile-Based Materials, Proceedings</i>, ed by. Paul Kiekens, 60–63. Ghent, Belgium: Ghent University. Department of Textiles.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. De Vrieze and K. De Clerck, “80 years of electrospinning,” in <i>International conference on Latest Advances in High-Tech Textiles and Textile-Based Materials, Proceedings</i>, Ghent, Belgium, 2009, pp. 60–63.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Vrieze, Sander, and Karen De Clerck. “80 Years of Electrospinning.” <i>International Conference on Latest Advances in High-Tech Textiles and Textile-Based Materials, Proceedings</i>, edited by Paul Kiekens, Ghent University. Department of Textiles, 2009, pp. 60–63.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Vrieze S, De Clerck K. 80 years of electrospinning. In: Kiekens P, editor. International conference on Latest Advances in High-Tech Textiles and Textile-Based Materials, Proceedings. Ghent, Belgium: Ghent University. Department of Textiles; 2009. p. 60–3.</div>
       </div>
classification: C1
conference:
  end_date: 2009-09-25
  location: Ghent, Belgium
  name: International conference on Latest Advances in High-Tech Textiles and Textile-Based
    Materials
  start_date: 2009-09-23
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2009-10-23 11:31:05
date_updated: 2026-03-31 14:26:22
editor:
- _id: F41CA7A8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: F41CA7A8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Paul
  last_name: Kiekens
  name: Paul Kiekens
  name_last_first: Kiekens, Paul
  orcid_id: 0000-0002-8280-2108
  ugent_id:
  - '973210305734'
external: 0
file:
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  access: open
  content_type: application/pdf
  kind: fullText
  name: NANO1_470633_De_Vrieze.pdf
  sha256: 90ed7af1bf650dafbe2433ff413026cd4e0f15381ef67f4154415c2c5a3e454f
  size: '117226'
  thumbnail_url: https://biblio.ugent.be/publication/767594/file/767596/thumbnail.png
  url: https://biblio.ugent.be/publication/767594/file/767596.pdf
handle: http://hdl.handle.net/1854/LU-767594
isbn:
- '9789081392426'
keyword:
- History
- Electrospinning
language:
- eng
page:
  first: '60'
  last: '63'
parent:
  title: International conference on Latest Advances in High-Tech Textiles and Textile-Based
    Materials, Proceedings
publication_status: published
publication_status_sort: 2
publisher:
  location: Ghent, Belgium
  name: Ghent University. Department of Textiles
status: public
subject:
- Technology and Engineering
title: 80 years of electrospinning
type: conference
year: '2009'
...
---
_id: '901723'
affiliation:
- name: University College West Flanders
  path:
  - ugent_id: UGentAssoc
  - ugent_id: HOWEST
  ugent_id: HOWEST
author:
- _id: 1C30272E-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: 1C30272E-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Nele
  last_name: Daels
  name: Nele Daels
  name_last_first: Daels, Nele
  ugent_id:
  - '002003290072'
  - '802000583955'
  - '977784615061'
- _id: 2AB52FF6-F0EE-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: 2AB52FF6-F0EE-11E1-A9DE-61C894A0A6B4
  first_name: Bjorge
  last_name: Decostere
  name: Bjorge Decostere
  name_last_first: Decostere, Bjorge
  ugent_id:
  - '000101067128'
  - '802000860205'
  - '976566687610'
- _id: F873DBBE-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F873DBBE-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Sander
  last_name: De Vrieze
  name: Sander De Vrieze
  name_last_first: De Vrieze, Sander
  ugent_id:
  - '802000062074'
  - '002001065843'
- _id: FBF3FB20-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
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    ugent_id: UGent
  biblio_id: FBF3FB20-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Pascal
  last_name: Dejans
  name: Pascal Dejans
  name_last_first: Dejans, Pascal
  ugent_id:
  - '972309636987'
- first_name: T
  last_name: Van Camp
  name: T Van Camp
  name_last_first: Van Camp, T
- _id: FBFFDF8A-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
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    ugent_id: UGent
  biblio_id: FBFFDF8A-F0ED-11E1-A9DE-61C894A0A6B4
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  last_name: Audenaert
  name: Wim Audenaert
  name_last_first: Audenaert, Wim
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    ugent_id: LA24
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  first_name: Joël
  last_name: Hogie
  name: Joël Hogie
  name_last_first: Hogie, Joël
  orcid_id: 0009-0000-1184-9032
  ugent_id:
  - '802000512419'
  - '978644085480'
- _id: F4ABDEE6-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4ABDEE6-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Philippe
  last_name: Westbroek
  name: Philippe Westbroek
  name_last_first: Westbroek, Philippe
  ugent_id:
  - '801000885888'
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: FAD54460-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: LA
    - ugent_id: LA24
    ugent_id: LA24
  biblio_id: FAD54460-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Stijn
  last_name: Van Hulle
  name: Stijn Van Hulle
  name_last_first: Van Hulle, Stijn
  orcid_id: 0000-0001-5773-7773
  ugent_id:
  - '801001539933'
  - '919019834884'
  - '971483871644'
biblio_id: '901723'
cite:
  apa: |2
      <div class="csl-entry">Daels, N., Decostere, B., De Vrieze, S., Dejans, P., Van Camp, T., Audenaert, W., … Van Hulle, S. (2009). Performance assessment of functionalized electrospun nanofibres for removal of pathogens. <i>IWA BeNeLux Regional Young Water Professionals Conference, 1st, Abstracts</i>. Presented at the 1st IWA BeNeLux Regional Young Water Professionals Conference, Eindhoven, The Netherlands.</div>
  chicago-author-date: |2
      <div class="csl-entry">Daels, Nele, Bjorge Decostere, Sander De Vrieze, Pascal Dejans, T Van Camp, Wim Audenaert, Joël Hogie, Philippe Westbroek, Karen De Clerck, and Stijn Van Hulle. 2009. “Performance Assessment of Functionalized Electrospun Nanofibres for Removal of Pathogens.” In <i>IWA BeNeLux Regional Young Water Professionals Conference, 1st, Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">Daels, Nele, Bjorge Decostere, Sander De Vrieze, Pascal Dejans, T Van Camp, Wim Audenaert, Joël Hogie, Philippe Westbroek, Karen De Clerck, and Stijn Van Hulle. 2009. “Performance Assessment of Functionalized Electrospun Nanofibres for Removal of Pathogens.” In <i>IWA BeNeLux Regional Young Water Professionals Conference, 1st, Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
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      <div class="csl-entry">Van Nimmen, E., De Clerck, K., Verschuren, J., Gellynck, K., Gheysens, T., Mertens, J., &#38; Van Langenhove, L. (2008). FT-IR spectroscopy of spider and silkworm silks, part I : different sampling techniques. <i>VIBRATIONAL SPECTROSCOPY</i>, <i>46</i>(1), 63–68.</div>
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      <div class="csl-entry">Van Nimmen, Els, Karen De Clerck, Johan Verschuren, Kris Gellynck, Tom Gheysens, Johan Mertens, and Lieva Van Langenhove. 2008. “FT-IR Spectroscopy of Spider and Silkworm Silks, Part I : Different Sampling Techniques.” <i>VIBRATIONAL SPECTROSCOPY</i> 46 (1): 63–68.</div>
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      <div class="csl-entry">Van Nimmen, Els, Karen De Clerck, Johan Verschuren, Kris Gellynck, Tom Gheysens, Johan Mertens, and Lieva Van Langenhove. 2008. “FT-IR Spectroscopy of Spider and Silkworm Silks, Part I : Different Sampling Techniques.” <i>VIBRATIONAL SPECTROSCOPY</i> 46 (1): 63–68.</div>
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        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Van Nimmen <i>et al.</i>, “FT-IR spectroscopy of spider and silkworm silks, part I : different sampling techniques,” <i>VIBRATIONAL SPECTROSCOPY</i>, vol. 46, no. 1, pp. 63–68, 2008.</div>
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      <div class="csl-entry">Van Nimmen, Els, et al. “FT-IR Spectroscopy of Spider and Silkworm Silks, Part I : Different Sampling Techniques.” <i>VIBRATIONAL SPECTROSCOPY</i>, vol. 46, no. 1, 2008, pp. 63–68.</div>
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      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Van Nimmen E, De Clerck K, Verschuren J, Gellynck K, Gheysens T, Mertens J, et al. FT-IR spectroscopy of spider and silkworm silks, part I : different sampling techniques. VIBRATIONAL SPECTROSCOPY. 2008;46(1):63–8.</div>
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keyword:
- spider silk
- FT-IR spectroscopy
- diffuse reflection
- attenuated total reflection
- transmission
- fibre
- TRANSFORM INFRARED-SPECTROSCOPY
- DIFFUSE-REFLECTANCE
- DRIFT SPECTROSCOPY
- COTTON-CELLULOSE
- OXIDATION
- CHEMISTRY
- PROTEINS
- FIBERS
- ACIDS
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      <div class="csl-entry">Morent, R., De Geyter, N., Verschuren, J., De Clerck, K., Kiekens, P., &#38; Leys, C. (2008). Non-thermal plasma treatment of textiles. <i>SURFACE &#38; COATINGS TECHNOLOGY</i>, <i>202</i>(14), 3427–3449. https://doi.org/10.1016/j.surfcoat.2007.12.027</div>
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  vancouver: |2
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        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Morent R, De Geyter N, Verschuren J, De Clerck K, Kiekens P, Leys C. Non-thermal plasma treatment of textiles. SURFACE &#38; COATINGS TECHNOLOGY. 2008;202(14):3427–49.</div>
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cite:
  apa: |2
      <div class="csl-entry">De Vrieze, S., Van Camp, T., Westbroek, P., &#38; De Clerck, K. (2008). Electrospinning: the road to a new class of materials? <i>Textiles of the Future</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Vrieze, Sander, Tamara Van Camp, Philippe Westbroek, and Karen De Clerck. 2008. “Electrospinning: The Road to a New Class of Materials?” In <i>Textiles of the Future</i>.</div>
  fwo: |2
      <div class="csl-entry">De Vrieze, Sander, Tamara Van Camp, Philippe Westbroek, and Karen De Clerck. 2008. “Electrospinning: The Road to a New Class of Materials?” In <i>Textiles of the Future</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. De Vrieze, T. Van Camp, P. Westbroek, and K. De Clerck, “Electrospinning: the road to a new class of materials?,” in <i>Textiles of the Future</i>, 2008.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Vrieze, Sander, et al. “Electrospinning: The Road to a New Class of Materials?” <i>Textiles of the Future</i>, 2008.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Vrieze S, Van Camp T, Westbroek P, De Clerck K. Electrospinning: the road to a new class of materials? In: Textiles of the Future. 2008.</div>
       </div>
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status: public
subject:
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title: 'Electrospinning: the road to a new class of materials?'
type: conference
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cite:
  apa: |2
      <div class="csl-entry">Decostere, B., Daels, N., De Vrieze, S., Dejans, P., Van Camp, T., Audenaert, W., … Van Hulle, S. (2008). Waterfiltratie met electrogesponnen nanovezels. <i>AFVALWATERWETENSCHAP</i>, <i>7</i>(4), 17–28.</div>
  chicago-author-date: |2
      <div class="csl-entry">Decostere, Bjorge, Nele Daels, Sander De Vrieze, Pascal Dejans, Tamara Van Camp, Wim Audenaert, Joël Hogie, Philippe Westbroek, Karen De Clerck, and Stijn Van Hulle. 2008. “Waterfiltratie Met Electrogesponnen Nanovezels.” <i>AFVALWATERWETENSCHAP</i> 7 (4): 17–28.</div>
  fwo: |2
      <div class="csl-entry">Decostere, Bjorge, Nele Daels, Sander De Vrieze, Pascal Dejans, Tamara Van Camp, Wim Audenaert, Joël Hogie, Philippe Westbroek, Karen De Clerck, and Stijn Van Hulle. 2008. “Waterfiltratie Met Electrogesponnen Nanovezels.” <i>AFVALWATERWETENSCHAP</i> 7 (4): 17–28.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. Decostere <i>et al.</i>, “Waterfiltratie met electrogesponnen nanovezels,” <i>AFVALWATERWETENSCHAP</i>, vol. 7, no. 4, pp. 17–28, 2008.</div>
      </div>
  mla: |2
      <div class="csl-entry">Decostere, Bjorge, et al. “Waterfiltratie Met Electrogesponnen Nanovezels.” <i>AFVALWATERWETENSCHAP</i>, vol. 7, no. 4, 2008, pp. 17–28.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Decostere B, Daels N, De Vrieze S, Dejans P, Van Camp T, Audenaert W, et al. Waterfiltratie met electrogesponnen nanovezels. AFVALWATERWETENSCHAP. 2008;7(4):17–28.</div>
       </div>
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date_created: 2009-04-17 11:34:36
date_updated: 2026-03-31 14:18:13
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title: Waterfiltratie met electrogesponnen nanovezels
type: journalArticle
volume: '7'
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...
---
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cite:
  apa: |2
      <div class="csl-entry">De Clerck, K., &#38; Kiekens, P. (2008). Variations in dyeing characteristics for PET-fibres: the effect of dye-fibre interactions. <i>IFATCC International Congress, 21st, Proceedings</i>. Presented at the 21st IFATCC International Congress : New Horizons of Textile Finishing, Barcelona, Spain.</div>
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      <div class="csl-entry">De Clerck, Karen, and Paul Kiekens. 2008. “Variations in Dyeing Characteristics for PET-Fibres: The Effect of Dye-Fibre Interactions.” In <i>IFATCC International Congress, 21st, Proceedings</i>. International Federation of Associations of Textile Chemists and Colorists (IFATCC).</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, and Paul Kiekens. 2008. “Variations in Dyeing Characteristics for PET-Fibres: The Effect of Dye-Fibre Interactions.” In <i>IFATCC International Congress, 21st, Proceedings</i>. International Federation of Associations of Textile Chemists and Colorists (IFATCC).</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck and P. Kiekens, “Variations in dyeing characteristics for PET-fibres: the effect of dye-fibre interactions,” in <i>IFATCC International Congress, 21st, Proceedings</i>, Barcelona, Spain, 2008.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Clerck, Karen, and Paul Kiekens. “Variations in Dyeing Characteristics for PET-Fibres: The Effect of Dye-Fibre Interactions.” <i>IFATCC International Congress, 21st, Proceedings</i>, International Federation of Associations of Textile Chemists and Colorists (IFATCC), 2008.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, Kiekens P. Variations in dyeing characteristics for PET-fibres: the effect of dye-fibre interactions. In: IFATCC International Congress, 21st, Proceedings. International Federation of Associations of Textile Chemists and Colorists (IFATCC); 2008.</div>
       </div>
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  apa: |2
      <div class="csl-entry">Decostere, B., De Vrieze, S., Dejans, P., Van Camp, T., Audenaert, W., Hogie, J., … Van Hulle, S. (2008). Analyse van de performantie van nanovezels voor waterfiltratie. <i>Congres Water En Klimaatverandering, Proceedings</i>. Presented at the Congres Water en Klimaatverandering, Antwerpen.</div>
  chicago-author-date: |2
      <div class="csl-entry">Decostere, Bjorge, Sander De Vrieze, Pascal Dejans, Tamara Van Camp, Wim Audenaert, Joël Hogie, Philippe Westbroek, Karen De Clerck, and Stijn Van Hulle. 2008. “Analyse van de Performantie van Nanovezels Voor Waterfiltratie.” In <i>Congres Water En Klimaatverandering, Proceedings</i>.</div>
  fwo: |2
      <div class="csl-entry">Decostere, Bjorge, Sander De Vrieze, Pascal Dejans, Tamara Van Camp, Wim Audenaert, Joël Hogie, Philippe Westbroek, Karen De Clerck, and Stijn Van Hulle. 2008. “Analyse van de Performantie van Nanovezels Voor Waterfiltratie.” In <i>Congres Water En Klimaatverandering, Proceedings</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. Decostere <i>et al.</i>, “Analyse van de performantie van nanovezels voor waterfiltratie,” in <i>Congres Water en Klimaatverandering, Proceedings</i>, Antwerpen, 2008.</div>
      </div>
  mla: |2
      <div class="csl-entry">Decostere, Bjorge, et al. “Analyse van de Performantie van Nanovezels Voor Waterfiltratie.” <i>Congres Water En Klimaatverandering, Proceedings</i>, 2008.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Decostere B, De Vrieze S, Dejans P, Van Camp T, Audenaert W, Hogie J, et al. Analyse van de performantie van nanovezels voor waterfiltratie. In: Congres Water en Klimaatverandering, Proceedings. 2008.</div>
       </div>
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...
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  apa: |2
      <div class="csl-entry">Decostere, B., De Vrieze, S., Dejans, P., Van Camp, T., Audenaert, W., Hogie, J., … Van Hulle, S. (2008). Performance assessment of electrospun nanofibres for filter applications. <i>Membrane Symposium and 12th Poster Day Membrane Technology, Abstracts</i>. Presented at the Membrane symposium and 12th Poster day membrane technology, Antwerp, Belgium.</div>
  chicago-author-date: |2
      <div class="csl-entry">Decostere, Bjorge, Sander De Vrieze, Pascal Dejans, Tamara Van Camp, Wim Audenaert, Joël Hogie, Nele Daels, Philippe Westbroek, Karen De Clerck, and Stijn Van Hulle. 2008. “Performance Assessment of Electrospun Nanofibres for Filter Applications.” In <i>Membrane Symposium and 12th Poster Day Membrane Technology, Abstracts</i>.</div>
  fwo: |2
      <div class="csl-entry">Decostere, Bjorge, Sander De Vrieze, Pascal Dejans, Tamara Van Camp, Wim Audenaert, Joël Hogie, Nele Daels, Philippe Westbroek, Karen De Clerck, and Stijn Van Hulle. 2008. “Performance Assessment of Electrospun Nanofibres for Filter Applications.” In <i>Membrane Symposium and 12th Poster Day Membrane Technology, Abstracts</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">B. Decostere <i>et al.</i>, “Performance assessment of electrospun nanofibres for filter applications,” in <i>Membrane symposium and 12th Poster day membrane technology, Abstracts</i>, Antwerp, Belgium, 2008.</div>
      </div>
  mla: |2
      <div class="csl-entry">Decostere, Bjorge, et al. “Performance Assessment of Electrospun Nanofibres for Filter Applications.” <i>Membrane Symposium and 12th Poster Day Membrane Technology, Abstracts</i>, 2008.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Decostere B, De Vrieze S, Dejans P, Van Camp T, Audenaert W, Hogie J, et al. Performance assessment of electrospun nanofibres for filter applications. In: Membrane symposium and 12th Poster day membrane technology, Abstracts. 2008.</div>
       </div>
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title: Performance assessment of electrospun nanofibres for filter applications
type: conference
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...
---
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  apa: |2
      <div class="csl-entry">De Vrieze, S., Van Camp, T., NELVIG, A., HAGSTRöM, B., Westbroek, P., &#38; De Clerck, K. (2008). Poster: The effect of temperature and humidity on electrospinning. <i>Biella - Italy : Proceedings of the 8th Autex Conference</i>.</div>
  bof: |2
      <div class="csl-entry">De Vrieze, Sander, Tamara Van Camp, A NELVIG, B HAGSTRöM, Philippe Westbroek, and Karen De Clerck. 2008. “Poster: The Effect of Temperature and Humidity on Electrospinning.” In <i>Biella - Italy : Proceedings of the 8th Autex Conference</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Vrieze, Sander, Tamara Van Camp, A NELVIG, B HAGSTRöM, Philippe Westbroek, and Karen De Clerck. 2008. “Poster: The Effect of Temperature and Humidity on Electrospinning.” In <i>Biella - Italy : Proceedings of the 8th Autex Conference</i>.</div>
  fwo: |2
      <div class="csl-entry">De Vrieze, Sander, Tamara Van Camp, A NELVIG, B HAGSTRöM, Philippe Westbroek, and Karen De Clerck. 2008. “Poster: The Effect of Temperature and Humidity on Electrospinning.” In <i>Biella - Italy : Proceedings of the 8th Autex Conference</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. De Vrieze, T. Van Camp, A. NELVIG, B. HAGSTRöM, P. Westbroek, and K. De Clerck, “Poster: The effect of temperature and humidity on electrospinning,” in <i>Biella - Italy : Proceedings of the 8th Autex Conference</i>, 2008.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Vrieze, Sander, et al. “Poster: The Effect of Temperature and Humidity on Electrospinning.” <i>Biella - Italy : Proceedings of the 8th Autex Conference</i>, 2008.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Vrieze S, Van Camp T, NELVIG A, HAGSTRöM B, Westbroek P, De Clerck K. Poster: The effect of temperature and humidity on electrospinning. In: Biella - Italy : Proceedings of the 8th Autex Conference. 2008.</div>
       </div>
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      <div class="csl-entry">Kiekens, P., De Vrieze, S., Van Camp, T., Decostere, B., Audenaert, W., Westbroek, P., … De Clerck, K. (2008). Electrospinning based nanofibrous structures for water filtration. <i>Biella - Italy : Proceedings of the 8th Autex Conference</i>.</div>
  bof: |2
      <div class="csl-entry">Kiekens, Paul, Sander De Vrieze, Tamara Van Camp, Bjorge Decostere, Wim Audenaert, Philippe Westbroek, Stijn Van Hulle, and Karen De Clerck. 2008. “Electrospinning Based Nanofibrous Structures for Water Filtration.” In <i>Biella - Italy : Proceedings of the 8th Autex Conference</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">Kiekens, Paul, Sander De Vrieze, Tamara Van Camp, Bjorge Decostere, Wim Audenaert, Philippe Westbroek, Stijn Van Hulle, and Karen De Clerck. 2008. “Electrospinning Based Nanofibrous Structures for Water Filtration.” In <i>Biella - Italy : Proceedings of the 8th Autex Conference</i>.</div>
  fwo: |2
      <div class="csl-entry">Kiekens, Paul, Sander De Vrieze, Tamara Van Camp, Bjorge Decostere, Wim Audenaert, Philippe Westbroek, Stijn Van Hulle, and Karen De Clerck. 2008. “Electrospinning Based Nanofibrous Structures for Water Filtration.” In <i>Biella - Italy : Proceedings of the 8th Autex Conference</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">P. Kiekens <i>et al.</i>, “Electrospinning based nanofibrous structures for water filtration,” in <i>Biella - Italy : Proceedings of the 8th Autex Conference</i>, 2008.</div>
      </div>
  mla: |2
      <div class="csl-entry">Kiekens, Paul, et al. “Electrospinning Based Nanofibrous Structures for Water Filtration.” <i>Biella - Italy : Proceedings of the 8th Autex Conference</i>, 2008.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Kiekens P, De Vrieze S, Van Camp T, Decostere B, Audenaert W, Westbroek P, et al. Electrospinning based nanofibrous structures for water filtration. In: Biella - Italy : Proceedings of the 8th Autex Conference. 2008.</div>
       </div>
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  apa: |2
      <div class="csl-entry">De Vrieze, S., Van Camp, T., Westbroek, P., &#38; De Clerck, K. (2008). Characterization of nanofibrous material. <i>Biella - Italy ; Proceedings of the 8th Autex Conference</i>.</div>
  bof: |2
      <div class="csl-entry">De Vrieze, Sander, Tamara Van Camp, Philippe Westbroek, and Karen De Clerck. 2008. “Characterization of Nanofibrous Material.” In <i>Biella - Italy ; Proceedings of the 8th Autex Conference</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Vrieze, Sander, Tamara Van Camp, Philippe Westbroek, and Karen De Clerck. 2008. “Characterization of Nanofibrous Material.” In <i>Biella - Italy ; Proceedings of the 8th Autex Conference</i>.</div>
  fwo: |2
      <div class="csl-entry">De Vrieze, Sander, Tamara Van Camp, Philippe Westbroek, and Karen De Clerck. 2008. “Characterization of Nanofibrous Material.” In <i>Biella - Italy ; Proceedings of the 8th Autex Conference</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">S. De Vrieze, T. Van Camp, P. Westbroek, and K. De Clerck, “Characterization of nanofibrous material,” in <i>Biella - Italy ; Proceedings of the 8th Autex Conference</i>, 2008.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Vrieze, Sander, et al. “Characterization of Nanofibrous Material.” <i>Biella - Italy ; Proceedings of the 8th Autex Conference</i>, 2008.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Vrieze S, Van Camp T, Westbroek P, De Clerck K. Characterization of nanofibrous material. In: Biella - Italy ; Proceedings of the 8th Autex Conference. 2008.</div>
       </div>
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cite:
  apa: |2
      <div class="csl-entry">De Clerck, K., RAHIER, H., VAN MELE, B., Westbroek, P., &#38; Kiekens, P. (2007). Dye-fiber interactions in PET fibers: Hydrogen bonding studied by IR-spectroscopy. <i>JOURNAL OF APPLIED POLYMER SCIENCE</i>, <i>106</i>(3), 1648–1658.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Clerck, Karen, H RAHIER, B VAN MELE, Philippe Westbroek, and Paul Kiekens. 2007. “Dye-Fiber Interactions in PET Fibers: Hydrogen Bonding Studied by IR-Spectroscopy.” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i> 106 (3): 1648–58.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, H RAHIER, B VAN MELE, Philippe Westbroek, and Paul Kiekens. 2007. “Dye-Fiber Interactions in PET Fibers: Hydrogen Bonding Studied by IR-Spectroscopy.” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i> 106 (3): 1648–1658.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck, H. RAHIER, B. VAN MELE, P. Westbroek, and P. Kiekens, “Dye-fiber interactions in PET fibers: Hydrogen bonding studied by IR-spectroscopy,” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i>, vol. 106, no. 3, pp. 1648–1658, 2007.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Clerck, Karen, et al. “Dye-Fiber Interactions in PET Fibers: Hydrogen Bonding Studied by IR-Spectroscopy.” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i>, vol. 106, no. 3, JOHN WILEY &#38; SONS INC, 2007, pp. 1648–58.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, RAHIER H, VAN MELE B, Westbroek P, Kiekens P. Dye-fiber interactions in PET fibers: Hydrogen bonding studied by IR-spectroscopy. JOURNAL OF APPLIED POLYMER SCIENCE. 2007;106(3):1648–58.</div>
       </div>
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- 0021-8995
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  short_title: J. Appl. Polym. Sci.
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status: public
subject:
- Technology and Engineering
title: 'Dye-fiber interactions in PET fibers: Hydrogen bonding studied by IR-spectroscopy'
type: journalArticle
volume: '106'
wos_id: '000249312000027'
wos_type: Article
year: '2007'
...
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  apa: |2
      <div class="csl-entry">Matemadombo, F., Westbroek, P., Nyokong, T., Ozoemena, K., De Clerck, K., &#38; Kiekens, P. (2007). Immobilization of tetra-amine substituted metallophthalocyanines at gold surfaces modified with mercaptopropionic acid or DTSP-SAMs. <i>ELECTROCHIMICA ACTA</i>, <i>52</i>(5), 2024–2031. https://doi.org/10.1016/j.electacta.2006.08.027</div>
  chicago-author-date: |2
      <div class="csl-entry">Matemadombo, Fungisai, Philippe Westbroek, Tebello Nyokong, Kenneth Ozoemena, Karen De Clerck, and Paul Kiekens. 2007. “Immobilization of Tetra-Amine Substituted Metallophthalocyanines at Gold Surfaces Modified with Mercaptopropionic Acid or DTSP-SAMs.” <i>ELECTROCHIMICA ACTA</i> 52 (5): 2024–31. https://doi.org/10.1016/j.electacta.2006.08.027.</div>
  fwo: |2
      <div class="csl-entry">Matemadombo, Fungisai, Philippe Westbroek, Tebello Nyokong, Kenneth Ozoemena, Karen De Clerck, and Paul Kiekens. 2007. “Immobilization of Tetra-Amine Substituted Metallophthalocyanines at Gold Surfaces Modified with Mercaptopropionic Acid or DTSP-SAMs.” <i>ELECTROCHIMICA ACTA</i> 52 (5): 2024–2031. doi:10.1016/j.electacta.2006.08.027.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">F. Matemadombo, P. Westbroek, T. Nyokong, K. Ozoemena, K. De Clerck, and P. Kiekens, “Immobilization of tetra-amine substituted metallophthalocyanines at gold surfaces modified with mercaptopropionic acid or DTSP-SAMs,” <i>ELECTROCHIMICA ACTA</i>, vol. 52, no. 5, pp. 2024–2031, 2007.</div>
      </div>
  mla: |2
      <div class="csl-entry">Matemadombo, Fungisai, et al. “Immobilization of Tetra-Amine Substituted Metallophthalocyanines at Gold Surfaces Modified with Mercaptopropionic Acid or DTSP-SAMs.” <i>ELECTROCHIMICA ACTA</i>, vol. 52, no. 5, Elsevier, 2007, pp. 2024–31, doi:10.1016/j.electacta.2006.08.027.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Matemadombo F, Westbroek P, Nyokong T, Ozoemena K, De Clerck K, Kiekens P. Immobilization of tetra-amine substituted metallophthalocyanines at gold surfaces modified with mercaptopropionic acid or DTSP-SAMs. ELECTROCHIMICA ACTA. 2007;52(5):2024–31.</div>
       </div>
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date_created: 2009-04-17 11:05:04
date_updated: 2026-03-31 14:18:13
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keyword:
- AQUEOUS-MEDIA
- CYTOCHROME-C
- electrocatalysis
- deposition
- SAM
- SELF-ASSEMBLED MONOLAYERS
- ELECTROCATALYTIC BEHAVIOR
- ELECTROCHEMICAL PROPERTIES
- RECORDABLE CDS
- CoTAPc
- gold
- L-CYSTEINE
- ELECTRODES
- PHTHALOCYANINES
- FILMS
language:
- eng
page:
  first: '2024'
  last: '2031'
parent:
  short_title: Electrochim. Acta
  title: ELECTROCHIMICA ACTA
publication_status: published
publication_status_sort: 2
publisher:
  name: Elsevier
status: public
subject:
- Technology and Engineering
title: Immobilization of tetra-amine substituted metallophthalocyanines at gold surfaces
  modified with mercaptopropionic acid or DTSP-SAMs
type: journalArticle
volume: '52'
wos_id: '000243647700025'
wos_type: Article
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cite:
  apa: |2
      <div class="csl-entry">St. Laurent, J., de Buzzaccarini, F., De Clerck, K., Demeyere, H., Lebeque, R., Lodewick, R., &#38; Van Langenhove, L. (2007). Laundry cleaning of textiles. In I. Johansson &#38; P. Somasundaran (Eds.), <i>Handbook for Cleaning/Decontamination of Surfaces</i>. Elsevier.</div>
  chicago-author-date: |2
      <div class="csl-entry">St. Laurent, JB, F de Buzzaccarini, Karen De Clerck, H Demeyere, R Lebeque, R Lodewick, and Lieva Van Langenhove. 2007. “Laundry Cleaning of Textiles.” In <i>Handbook for Cleaning/Decontamination of Surfaces</i>, edited by Ingegard Johansson and P Somasundaran. Elsevier.</div>
  fwo: |2
      <div class="csl-entry">St. Laurent, JB, F de Buzzaccarini, Karen De Clerck, H Demeyere, R Lebeque, R Lodewick, and Lieva Van Langenhove. 2007. “Laundry Cleaning of Textiles.” In <i>Handbook for Cleaning/Decontamination of Surfaces</i>, ed by. Ingegard Johansson and P Somasundaran. Elsevier.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">J. St. Laurent <i>et al.</i>, “Laundry cleaning of textiles,” in <i>Handbook for Cleaning/Decontamination of Surfaces</i>, I. Johansson and P. Somasundaran, Eds. Elsevier, 2007.</div>
      </div>
  mla: |2
      <div class="csl-entry">St. Laurent, JB, et al. “Laundry Cleaning of Textiles.” <i>Handbook for Cleaning/Decontamination of Surfaces</i>, edited by Ingegard Johansson and P Somasundaran, Elsevier, 2007.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">St. Laurent J, de Buzzaccarini F, De Clerck K, Demeyere H, Lebeque R, Lodewick R, et al. Laundry cleaning of textiles. In: Johansson I, Somasundaran P, editors. Handbook for Cleaning/Decontamination of Surfaces. Elsevier; 2007.</div>
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  title: Handbook for Cleaning/Decontamination of Surfaces
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title: Laundry cleaning of textiles
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cite:
  apa: |2
      <div class="csl-entry">De Clerck, K., Van Oostveldt, P., Westbroek, P., &#38; Kiekens, P. (2006). DYE DIFFUSION STUDIES BY CONFOCAL LASER SCANNING MICROSCOPY. <i>Proceedings of the INTERNATIONAL FIBER CONFERENCE 2006</i>, 183–184. THE FIBER SOCIETY.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Clerck, Karen, Patric Van Oostveldt, Philippe Westbroek, and Paul Kiekens. 2006. “DYE DIFFUSION STUDIES BY CONFOCAL LASER SCANNING MICROSCOPY.” In <i>Proceedings of the INTERNATIONAL FIBER CONFERENCE 2006</i>, 183–84. THE FIBER SOCIETY.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, Patric Van Oostveldt, Philippe Westbroek, and Paul Kiekens. 2006. “DYE DIFFUSION STUDIES BY CONFOCAL LASER SCANNING MICROSCOPY.” In <i>Proceedings of the INTERNATIONAL FIBER CONFERENCE 2006</i>, 183–184. THE FIBER SOCIETY.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck, P. Van Oostveldt, P. Westbroek, and P. Kiekens, “DYE DIFFUSION STUDIES BY CONFOCAL LASER SCANNING MICROSCOPY,” in <i>Proceedings of the INTERNATIONAL FIBER CONFERENCE 2006</i>, 2006, pp. 183–184.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Clerck, Karen, et al. “DYE DIFFUSION STUDIES BY CONFOCAL LASER SCANNING MICROSCOPY.” <i>Proceedings of the INTERNATIONAL FIBER CONFERENCE 2006</i>, THE FIBER SOCIETY, 2006, pp. 183–84.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, Van Oostveldt P, Westbroek P, Kiekens P. DYE DIFFUSION STUDIES BY CONFOCAL LASER SCANNING MICROSCOPY. In: Proceedings of the INTERNATIONAL FIBER CONFERENCE 2006. THE FIBER SOCIETY; 2006. p. 183–4.</div>
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parent:
  title: Proceedings of the INTERNATIONAL FIBER CONFERENCE 2006
publication_status: published
publication_status_sort: 2
publisher:
  name: THE FIBER SOCIETY
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  db: aleph:pug01
  id: '94968'
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    000094968 245   L $$aDYE DIFFUSION STUDIES BY CONFOCAL LASER SCANNING MICROSCOPY
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    000094968 7001  L $$aWestbroek, Philippe$$b801000885888$$cTW11
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    000094968 900   L $$aWestbroek, Philippe$$b801000885888$$cTW11
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    000094968 995   L $$aKiekens, Paul Arthur B$$b801000536183$$cTW11$$dauthor$$r4
    000094968 995   L $$aVan Oostveldt, Patric Maurice V$$b801000231039$$cLA14$$dauthor$$r2
    000094968 995   L $$aWestbroek, Philippe Leendert M L$$b801000885888$$cTW11$$dauthor$$r3
    000094968 998   L $$aDE CLERCK, K ; VAN OOSTVELDT, P ; WESTBROEK, P ; KIEKENS, P
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status: public
subject:
- Technology and Engineering
title: DYE DIFFUSION STUDIES BY CONFOCAL LASER SCANNING MICROSCOPY
type: conference
year: '2006'
...
---
_id: '332342'
abstract:
- Novel treatments for the reduction of dyebath induced hygral expansion are described.
  Their application in Neolan P dyebaths offers the potential for reduced dimensional
  instability with a limited impact on the final fabric colour.
abstract_full:
- lang: eng
  text: Novel treatments for the reduction of dyebath induced hygral expansion are
    described. Their application in Neolan P dyebaths offers the potential for reduced
    dimensional instability with a limited impact on the final fabric colour.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_type: original
author:
- first_name: Djamal
  last_name: Akbarov
  name: Djamal Akbarov
  name_last_first: Akbarov, Djamal
- first_name: Bahkhodir
  last_name: Baymuratov
  name: Bahkhodir Baymuratov
  name_last_first: Baymuratov, Bahkhodir
- _id: F4ABDEE6-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4ABDEE6-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Philippe
  last_name: Westbroek
  name: Philippe Westbroek
  name_last_first: Westbroek, Philippe
  ugent_id:
  - '801000885888'
- first_name: Rustam
  last_name: Akbarov
  name: Rustam Akbarov
  name_last_first: Akbarov, Rustam
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F41CA7A8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
    - ugent_id: UGent
    ugent_id: UGent
  biblio_id: F41CA7A8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Paul
  last_name: Kiekens
  name: Paul Kiekens
  name_last_first: Kiekens, Paul
  orcid_id: 0000-0002-8280-2108
  ugent_id:
  - '973210305734'
biblio_id: '332342'
cite:
  apa: |2
      <div class="csl-entry">Akbarov, D., Baymuratov, B., Westbroek, P., Akbarov, R., De Clerck, K., &#38; Kiekens, P. (2006). Development of electroconductive polyacrylonitrile fibers through chemical metallization and galvanisation. <i>JOURNAL OF APPLIED ELECTROCHEMISTRY</i>, <i>36</i>(4), 411–418. https://doi.org/10.1007/s10800-005-9085-8</div>
  bof: |2-
      <div class="csl-entry">Akbarov, Djamal, Bahkhodir Baymuratov, Philippe Westbroek, Rustam Akbarov, Karen De Clerck, and Paul Kiekens. 2006. “Development of Electroconductive Polyacrylonitrile Fibers through Chemical Metallization and Galvanisation.” <i>JOURNAL OF APPLIED ELECTROCHEMISTRY</i> 36 (4): 411–418. doi:10.1007/s10800-005-9085-8.</div>
    <div><i>Impact factor: 1.409, category: ELECTROCHEMISTRY, rank: 13/22, quartile: 3.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Akbarov, Djamal, Bahkhodir Baymuratov, Philippe Westbroek, Rustam Akbarov, Karen De Clerck, and Paul Kiekens. 2006. “Development of Electroconductive Polyacrylonitrile Fibers through Chemical Metallization and Galvanisation.” <i>JOURNAL OF APPLIED ELECTROCHEMISTRY</i> 36 (4): 411–18. https://doi.org/10.1007/s10800-005-9085-8.</div>
  fwo: |2
      <div class="csl-entry">Akbarov, Djamal, Bahkhodir Baymuratov, Philippe Westbroek, Rustam Akbarov, Karen De Clerck, and Paul Kiekens. 2006. “Development of Electroconductive Polyacrylonitrile Fibers through Chemical Metallization and Galvanisation.” <i>JOURNAL OF APPLIED ELECTROCHEMISTRY</i> 36 (4): 411–418. doi:10.1007/s10800-005-9085-8.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">D. Akbarov, B. Baymuratov, P. Westbroek, R. Akbarov, K. De Clerck, and P. Kiekens, “Development of electroconductive polyacrylonitrile fibers through chemical metallization and galvanisation,” <i>JOURNAL OF APPLIED ELECTROCHEMISTRY</i>, vol. 36, no. 4, pp. 411–418, 2006.</div>
      </div>
  mla: |2
      <div class="csl-entry">Akbarov, Djamal, et al. “Development of Electroconductive Polyacrylonitrile Fibers through Chemical Metallization and Galvanisation.” <i>JOURNAL OF APPLIED ELECTROCHEMISTRY</i>, vol. 36, no. 4, Springer, 2006, pp. 411–18, doi:10.1007/s10800-005-9085-8.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Akbarov D, Baymuratov B, Westbroek P, Akbarov R, De Clerck K, Kiekens P. Development of electroconductive polyacrylonitrile fibers through chemical metallization and galvanisation. JOURNAL OF APPLIED ELECTROCHEMISTRY. 2006;36(4):411–8.</div>
       </div>
classification: A1
copyright_statement: No license (in copyright)
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
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    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2006-04-24 14:50:00
date_updated: 2026-03-31 13:07:10
doi:
- 10.1007/s10800-005-9085-8
external: 0
file:
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  url: https://biblio.ugent.be/publication/332342/file/1135539.pdf
handle: http://hdl.handle.net/1854/LU-332342
issn:
- 0021-891X
issue: '4'
jcr:
  category: ELECTROCHEMISTRY
  category_decile: 6
  category_quartile: 3
  category_rank: 13/22
  category_vigintile: 12
  immediacy_index: 0.11
  impact_factor: 1.409
  prev_category_decile: 6
  prev_category_quartile: 3
  prev_category_vigintile: 11
  prev_impact_factor: 1.282
  total_cites: 4541
keyword:
- WOOL
language:
- eng
page:
  count: 411-418
  first: '411'
  last: '418'
parent:
  short_title: J. Appl. Electrochem.
  title: JOURNAL OF APPLIED ELECTROCHEMISTRY
publication_status: published
publication_status_sort: 2
publisher:
  name: Springer
source:
  db: aleph:pug01
  id: '90529'
  record: |
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status: public
subject:
- Technology and Engineering
title: Development of electroconductive polyacrylonitrile fibers through chemical
  metallization and galvanisation
type: journalArticle
volume: '36'
wos_id: '000235116000004'
wos_type: Article
year: '2006'
...
---
_id: '335300'
abstract:
- In this paper an electrochemical cell is developed to test and follow-up the quality
  of electrodes made of knitted, woven and non-woven conductive textile material.
  This cell is constructed of two electrodes planarly positioned against each other
  using a series of PVC plates. The obtained impedance, as a result of applied alternating
  potential and measured current signal, is equal to the resistance of the system
  electrode-electrolyte in the frequency region where no shift is observed in phase
  angle between applied potential and measured current. This resistance provides information
  about the properties and performance of the electrodes and a change of this resistance
  during the lifetime of the electrodes is an interesting parameter for quality control
  of the used electrodes. After characterization of the cell a range of textile electrodes
  (woven, non-woven and knitted) were investigated and compared. Results showed that
  the textile electrodes behave initially similar, obeying an equation that shows
  that the resistance is proportional to d, c(-1) and A(-2/3), d being the distance
  between the electrodes, c the electrolyte concentration and A the electrode surface.
  However, after longer exposure some indication of corrosion and malfunction was
  detected.
abstract_full:
- lang: eng
  text: In this paper an electrochemical cell is developed to test and follow-up the
    quality of electrodes made of knitted, woven and non-woven conductive textile
    material. This cell is constructed of two electrodes planarly positioned against
    each other using a series of PVC plates. The obtained impedance, as a result of
    applied alternating potential and measured current signal, is equal to the resistance
    of the system electrode-electrolyte in the frequency region where no shift is
    observed in phase angle between applied potential and measured current. This resistance
    provides information about the properties and performance of the electrodes and
    a change of this resistance during the lifetime of the electrodes is an interesting
    parameter for quality control of the used electrodes. After characterization of
    the cell a range of textile electrodes (woven, non-woven and knitted) were investigated
    and compared. Results showed that the textile electrodes behave initially similar,
    obeying an equation that shows that the resistance is proportional to d, c(-1)
    and A(-2/3), d being the distance between the electrodes, c the electrolyte concentration
    and A the electrode surface. However, after longer exposure some indication of
    corrosion and malfunction was detected.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_type: original
author:
- _id: F4ABDEE6-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4ABDEE6-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Philippe
  last_name: Westbroek
  name: Philippe Westbroek
  name_last_first: Westbroek, Philippe
  ugent_id:
  - '801000885888'
- _id: 7BDEF886-B25E-11E6-B104-2D2FD0AF0289
  affiliation:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: 7BDEF886-B25E-11E6-B104-2D2FD0AF0289
  first_name: Georgios
  last_name: Priniotakis
  name: Georgios Priniotakis
  name_last_first: Priniotakis, Georgios
  ugent_id:
  - '801001110002'
- first_name: Elina
  last_name: Palovuori
  name: Elina Palovuori
  name_last_first: Palovuori, Elina
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- _id: F4469E14-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
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    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  - path:
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    - ugent_id: TW18
    ugent_id: TW18
  biblio_id: F4469E14-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Lieva
  last_name: Van Langenhove
  name: Lieva Van Langenhove
  name_last_first: Van Langenhove, Lieva
  orcid_id: 0000-0001-9802-7399
  ugent_id:
  - '801000648543'
  - '972198930382'
- _id: F41CA7A8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - name: Ghent University
    path:
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    ugent_id: UGent
  biblio_id: F41CA7A8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Paul
  last_name: Kiekens
  name: Paul Kiekens
  name_last_first: Kiekens, Paul
  orcid_id: 0000-0002-8280-2108
  ugent_id:
  - '973210305734'
biblio_id: '335300'
cite:
  apa: |2
      <div class="csl-entry">Westbroek, P., Priniotakis, G., Palovuori, E., De Clerck, K., Van Langenhove, L., &#38; Kiekens, P. (2006). Quality control of textile electrodes by electrochemical impedance spectroscopy. <i>TEXTILE RESEARCH JOURNAL</i>, <i>76</i>(2), 152–159. https://doi.org/10.1177/0040517506053911</div>
  bof: |2-
      <div class="csl-entry">Westbroek, Philippe, Georgios Priniotakis, Elina Palovuori, Karen De Clerck, Lieva Van Langenhove, and Paul Kiekens. 2006. “Quality Control of Textile Electrodes by Electrochemical Impedance Spectroscopy.” <i>TEXTILE RESEARCH JOURNAL</i> 76 (2): 152–159. doi:10.1177/0040517506053911.</div>
    <div><i>Impact factor: 0.578, category: MATERIALS SCIENCE, TEXTILES, rank: 5/14, quartile: 2.</i></div>
  chicago-author-date: |2
      <div class="csl-entry">Westbroek, Philippe, Georgios Priniotakis, Elina Palovuori, Karen De Clerck, Lieva Van Langenhove, and Paul Kiekens. 2006. “Quality Control of Textile Electrodes by Electrochemical Impedance Spectroscopy.” <i>TEXTILE RESEARCH JOURNAL</i> 76 (2): 152–59. https://doi.org/10.1177/0040517506053911.</div>
  fwo: |2
      <div class="csl-entry">Westbroek, Philippe, Georgios Priniotakis, Elina Palovuori, Karen De Clerck, Lieva Van Langenhove, and Paul Kiekens. 2006. “Quality Control of Textile Electrodes by Electrochemical Impedance Spectroscopy.” <i>TEXTILE RESEARCH JOURNAL</i> 76 (2): 152–159. doi:10.1177/0040517506053911.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">P. Westbroek, G. Priniotakis, E. Palovuori, K. De Clerck, L. Van Langenhove, and P. Kiekens, “Quality control of textile electrodes by electrochemical impedance spectroscopy,” <i>TEXTILE RESEARCH JOURNAL</i>, vol. 76, no. 2, pp. 152–159, 2006.</div>
      </div>
  mla: |2
      <div class="csl-entry">Westbroek, Philippe, et al. “Quality Control of Textile Electrodes by Electrochemical Impedance Spectroscopy.” <i>TEXTILE RESEARCH JOURNAL</i>, vol. 76, no. 2, Sage Publications ltd, 2006, pp. 152–59, doi:10.1177/0040517506053911.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Westbroek P, Priniotakis G, Palovuori E, De Clerck K, Van Langenhove L, Kiekens P. Quality control of textile electrodes by electrochemical impedance spectroscopy. TEXTILE RESEARCH JOURNAL. 2006;76(2):152–9.</div>
       </div>
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      <div class="csl-entry">GASANA, E., Westbroek, P., Hakuzimana, J., De Clerck, K., Priniotakis, G., Kiekens, P., &#38; TSELES, D. (2006). Electroconductive textile structures through electroless deposition of polypyrrole and copper at polyaramide surfaces. <i>SURFACE &#38; COATINGS TECHNOLOGY</i>, <i>201</i>(6), 3547–3551.</div>
  chicago-author-date: |2
      <div class="csl-entry">GASANA, E, Philippe Westbroek, Jean Hakuzimana, Karen De Clerck, Georgios Priniotakis, Paul Kiekens, and D TSELES. 2006. “Electroconductive Textile Structures through Electroless Deposition of Polypyrrole and Copper at Polyaramide Surfaces.” <i>SURFACE &#38; COATINGS TECHNOLOGY</i> 201 (6): 3547–51.</div>
  fwo: |2
      <div class="csl-entry">GASANA, E, Philippe Westbroek, Jean Hakuzimana, Karen De Clerck, Georgios Priniotakis, Paul Kiekens, and D TSELES. 2006. “Electroconductive Textile Structures through Electroless Deposition of Polypyrrole and Copper at Polyaramide Surfaces.” <i>SURFACE &#38; COATINGS TECHNOLOGY</i> 201 (6): 3547–3551.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. GASANA <i>et al.</i>, “Electroconductive textile structures through electroless deposition of polypyrrole and copper at polyaramide surfaces,” <i>SURFACE &#38; COATINGS TECHNOLOGY</i>, vol. 201, no. 6, pp. 3547–3551, 2006.</div>
      </div>
  mla: |2
      <div class="csl-entry">GASANA, E., et al. “Electroconductive Textile Structures through Electroless Deposition of Polypyrrole and Copper at Polyaramide Surfaces.” <i>SURFACE &#38; COATINGS TECHNOLOGY</i>, vol. 201, no. 6, ELSEVIER SCIENCE SA, 2006, pp. 3547–51.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">GASANA E, Westbroek P, Hakuzimana J, De Clerck K, Priniotakis G, Kiekens P, et al. Electroconductive textile structures through electroless deposition of polypyrrole and copper at polyaramide surfaces. SURFACE &#38; COATINGS TECHNOLOGY. 2006;201(6):3547–51.</div>
       </div>
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  apa: |2
      <div class="csl-entry">Bolhová, E., Ujhelyiová, A., De Clerck, K., Van Oostveldt, P., &#38; Marcinčin, A. (2006). Influence of the poly (trimethylene terephthalate) phase distribution on the dyeing of polypropylene/poly (trimethylene terephthalate) bicomponent fibres. <i>VLAKNA A TEXTIL</i>, <i>13</i>(1–2), 16–22.</div>
  chicago-author-date: |2
      <div class="csl-entry">Bolhová, E, A Ujhelyiová, Karen De Clerck, Patric Van Oostveldt, and A Marcinčin. 2006. “Influence of the Poly (Trimethylene Terephthalate) Phase Distribution on the Dyeing of Polypropylene/Poly (Trimethylene Terephthalate) Bicomponent Fibres.” <i>VLAKNA A TEXTIL</i> 13 (1–2): 16–22.</div>
  fwo: |2
      <div class="csl-entry">Bolhová, E, A Ujhelyiová, Karen De Clerck, Patric Van Oostveldt, and A Marcinčin. 2006. “Influence of the Poly (Trimethylene Terephthalate) Phase Distribution on the Dyeing of Polypropylene/Poly (Trimethylene Terephthalate) Bicomponent Fibres.” <i>VLAKNA A TEXTIL</i> 13 (1–2): 16–22.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">E. Bolhová, A. Ujhelyiová, K. De Clerck, P. Van Oostveldt, and A. Marcinčin, “Influence of the poly (trimethylene terephthalate) phase distribution on the dyeing of polypropylene/poly (trimethylene terephthalate) bicomponent fibres,” <i>VLAKNA A TEXTIL</i>, vol. 13, no. 1–2, pp. 16–22, 2006.</div>
      </div>
  mla: |2
      <div class="csl-entry">Bolhová, E., et al. “Influence of the Poly (Trimethylene Terephthalate) Phase Distribution on the Dyeing of Polypropylene/Poly (Trimethylene Terephthalate) Bicomponent Fibres.” <i>VLAKNA A TEXTIL</i>, vol. 13, no. 1–2, 2006, pp. 16–22.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Bolhová E, Ujhelyiová A, De Clerck K, Van Oostveldt P, Marcinčin A. Influence of the poly (trimethylene terephthalate) phase distribution on the dyeing of polypropylene/poly (trimethylene terephthalate) bicomponent fibres. VLAKNA A TEXTIL. 2006;13(1–2):16–22.</div>
       </div>
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      <div class="csl-entry">Ujhelyiova, A, E Bolhova, Karen De Clerck, and A Marcincin. 2006. “The Influence of PES on the Dye Distribution in Blend Polypropylene/Polyester Fibres.” In <i>Textile, Clothing and Design Conference, 3rd International, Proceedings</i>, 360–65.</div>
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      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">A. Ujhelyiova, E. Bolhova, K. De Clerck, and A. Marcincin, “The influence of PES on the dye distribution in blend polypropylene/polyester fibres,” in <i>Textile, Clothing and Design Conference, 3rd International, Proceedings</i>, Dubrovnik, Croatia, 2006, pp. 360–365.</div>
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  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Ujhelyiova A, Bolhova E, De Clerck K, Marcincin A. The influence of PES on the dye distribution in blend polypropylene/polyester fibres. In: Textile, Clothing and Design Conference, 3rd International, Proceedings. 2006. p. 360–5.</div>
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      <div class="csl-entry">AKBAROV, D., BAYMURATOV, B., AKBAROV, R., Westbroek, P., De Clerck, K., &#38; Kiekens, P. (2005). Optimizing process parameters in polyacrylonitrile production for metallization with nickel. <i>TEXTILE RESEARCH JOURNAL</i>, <i>75</i>(3), 197–202.</div>
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      <div class="csl-entry">AKBAROV, D, B BAYMURATOV, R AKBAROV, Philippe Westbroek, Karen De Clerck, and Paul Kiekens. 2005. “Optimizing Process Parameters in Polyacrylonitrile Production for Metallization with Nickel.” <i>TEXTILE RESEARCH JOURNAL</i> 75 (3): 197–202.</div>
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      <div class="csl-entry">AKBAROV, D, B BAYMURATOV, R AKBAROV, Philippe Westbroek, Karen De Clerck, and Paul Kiekens. 2005. “Optimizing Process Parameters in Polyacrylonitrile Production for Metallization with Nickel.” <i>TEXTILE RESEARCH JOURNAL</i> 75 (3): 197–202.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">D. AKBAROV, B. BAYMURATOV, R. AKBAROV, P. Westbroek, K. De Clerck, and P. Kiekens, “Optimizing process parameters in polyacrylonitrile production for metallization with nickel,” <i>TEXTILE RESEARCH JOURNAL</i>, vol. 75, no. 3, pp. 197–202, 2005.</div>
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  mla: |2
      <div class="csl-entry">AKBAROV, D., et al. “Optimizing Process Parameters in Polyacrylonitrile Production for Metallization with Nickel.” <i>TEXTILE RESEARCH JOURNAL</i>, vol. 75, no. 3, TEXTILE RESEARCH INST, 2005, pp. 197–202.</div>
  vancouver: |2
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        <div class="csl-left-margin">1. </div><div class="csl-right-inline">AKBAROV D, BAYMURATOV B, AKBAROV R, Westbroek P, De Clerck K, Kiekens P. Optimizing process parameters in polyacrylonitrile production for metallization with nickel. TEXTILE RESEARCH JOURNAL. 2005;75(3):197–202.</div>
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      <div class="csl-entry">Schoukens, Gustaaf, and Karen De Clerck. 2005. “Thermal Analysis and Raman Spectroscopic Studies of Crystallization in Poly(Ethylene 2,6-Naphthalate).” <i>POLYMER</i> 46 (3): 845–57.</div>
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      <div class="csl-entry">Schoukens, Gustaaf, and Karen De Clerck. “Thermal Analysis and Raman Spectroscopic Studies of Crystallization in Poly(Ethylene 2,6-Naphthalate).” <i>POLYMER</i>, vol. 46, no. 3, ELSEVIER SCI LTD, 2005, pp. 845–57.</div>
  vancouver: |2
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  apa: |2
      <div class="csl-entry">De Clerck, K., Van Oostveldt, P., Rahier, H., Van Mele, B., Westbroek, P., &#38; Kiekens, P. (2005). Variations in diffusion coefficient of disperse dyes in single PET fibres: monitored and interpreted by confocal laser scanning microscopy. <i>POLYMER</i>, <i>46</i>(1), 101–108. https://doi.org/10.1016/j.polymer.2004.10.074</div>
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  mla: |2
      <div class="csl-entry">De Clerck, Karen, et al. “Variations in Diffusion Coefficient of Disperse Dyes in Single PET Fibres: Monitored and Interpreted by Confocal Laser Scanning Microscopy.” <i>POLYMER</i>, vol. 46, no. 1, 2005, pp. 101–08, doi:10.1016/j.polymer.2004.10.074.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, Van Oostveldt P, Rahier H, Van Mele B, Westbroek P, Kiekens P. Variations in diffusion coefficient of disperse dyes in single PET fibres: monitored and interpreted by confocal laser scanning microscopy. POLYMER. 2005;46(1):101–8.</div>
       </div>
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keyword:
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- CONCENTRATION-DEPENDENCE
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- poly(ethylene terephthalate) fibres
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- POLYESTER
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  apa: |2
      <div class="csl-entry">AKBAROV, D., BAYMURATOV, B., Westbroek, P., De Clerck, K., &#38; Kiekens, P. (2004). Metallization of synthetic fibres: Nickel absorbed polyacrylonitrile fibers. <i>World Textile Conference - 4th Autex Conference</i>. ENSAIT.</div>
  chicago-author-date: |2
      <div class="csl-entry">AKBAROV, D, B BAYMURATOV, Philippe Westbroek, Karen De Clerck, and Paul Kiekens. 2004. “Metallization of Synthetic Fibres: Nickel Absorbed Polyacrylonitrile Fibers.” In <i>World Textile Conference - 4th Autex Conference</i>. ENSAIT.</div>
  fwo: |2
      <div class="csl-entry">AKBAROV, D, B BAYMURATOV, Philippe Westbroek, Karen De Clerck, and Paul Kiekens. 2004. “Metallization of Synthetic Fibres: Nickel Absorbed Polyacrylonitrile Fibers.” In <i>World Textile Conference - 4th Autex Conference</i>. ENSAIT.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">D. AKBAROV, B. BAYMURATOV, P. Westbroek, K. De Clerck, and P. Kiekens, “Metallization of synthetic fibres: Nickel absorbed polyacrylonitrile fibers,” in <i>World Textile Conference - 4th Autex Conference</i>, 2004.</div>
      </div>
  mla: |2
      <div class="csl-entry">AKBAROV, D., et al. “Metallization of Synthetic Fibres: Nickel Absorbed Polyacrylonitrile Fibers.” <i>World Textile Conference - 4th Autex Conference</i>, ENSAIT, 2004.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">AKBAROV D, BAYMURATOV B, Westbroek P, De Clerck K, Kiekens P. Metallization of synthetic fibres: Nickel absorbed polyacrylonitrile fibers. In: World Textile Conference - 4th Autex Conference. ENSAIT; 2004.</div>
       </div>
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  apa: |2
      <div class="csl-entry">De Clerck, K., Van Oostveldt, P., Rahier, H., Van Mele, B., Westbroek, P., &#38; Kiekens, P. (2004). Dye diffusion studies in PET fibres by confocal laser scanning microscopy and the interrelation with the glass transition. <i>POLYMER</i>, <i>45</i>(12), 4105–4112. https://doi.org/10.1016/j.polymer.2004.03.103</div>
  chicago-author-date: |2
      <div class="csl-entry">De Clerck, Karen, Patric Van Oostveldt, Hubert Rahier, Bruno Van Mele, Philippe Westbroek, and Paul Kiekens. 2004. “Dye Diffusion Studies in PET Fibres by Confocal Laser Scanning Microscopy and the Interrelation with the Glass Transition.” <i>POLYMER</i> 45 (12): 4105–12. https://doi.org/10.1016/j.polymer.2004.03.103.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, Patric Van Oostveldt, Hubert Rahier, Bruno Van Mele, Philippe Westbroek, and Paul Kiekens. 2004. “Dye Diffusion Studies in PET Fibres by Confocal Laser Scanning Microscopy and the Interrelation with the Glass Transition.” <i>POLYMER</i> 45 (12): 4105–4112. doi:10.1016/j.polymer.2004.03.103.</div>
  ieee: |2
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        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck, P. Van Oostveldt, H. Rahier, B. Van Mele, P. Westbroek, and P. Kiekens, “Dye diffusion studies in PET fibres by confocal laser scanning microscopy and the interrelation with the glass transition,” <i>POLYMER</i>, vol. 45, no. 12, pp. 4105–4112, 2004.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Clerck, Karen, et al. “Dye Diffusion Studies in PET Fibres by Confocal Laser Scanning Microscopy and the Interrelation with the Glass Transition.” <i>POLYMER</i>, vol. 45, no. 12, 2004, pp. 4105–12, doi:10.1016/j.polymer.2004.03.103.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, Van Oostveldt P, Rahier H, Van Mele B, Westbroek P, Kiekens P. Dye diffusion studies in PET fibres by confocal laser scanning microscopy and the interrelation with the glass transition. POLYMER. 2004;45(12):4105–12.</div>
       </div>
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date_created: 2005-01-07 12:06:00
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keyword:
- POLYESTER MICROFIBERS
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      <div class="csl-entry">De Clerck, K., RAHIER, H., VAN MELE, B., &#38; Kiekens, P. (2003). Thermal properties relevant to the processing of PET fibers. <i>JOURNAL OF APPLIED POLYMER SCIENCE</i>, <i>89</i>(14), 3840–3849.</div>
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      <div class="csl-entry">De Clerck, Karen, H RAHIER, B VAN MELE, and Paul Kiekens. 2003. “Thermal Properties Relevant to the Processing of PET Fibers.” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i> 89 (14): 3840–49.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, H RAHIER, B VAN MELE, and Paul Kiekens. 2003. “Thermal Properties Relevant to the Processing of PET Fibers.” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i> 89 (14): 3840–3849.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck, H. RAHIER, B. VAN MELE, and P. Kiekens, “Thermal properties relevant to the processing of PET fibers,” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i>, vol. 89, no. 14, pp. 3840–3849, 2003.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Clerck, Karen, et al. “Thermal Properties Relevant to the Processing of PET Fibers.” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i>, vol. 89, no. 14, JOHN WILEY &#38; SONS INC, 2003, pp. 3840–49.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, RAHIER H, VAN MELE B, Kiekens P. Thermal properties relevant to the processing of PET fibers. JOURNAL OF APPLIED POLYMER SCIENCE. 2003;89(14):3840–9.</div>
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      <div class="csl-entry">De Clerck, K., RAHIER, H., VAN MELE, B., &#38; Kiekens, P. (2003). Interrelation between dyeing and thermal properties of PET fibers. <i>JOURNAL OF APPLIED POLYMER SCIENCE</i>, <i>90</i>(1), 105–114.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Clerck, Karen, H RAHIER, B VAN MELE, and Paul Kiekens. 2003. “Interrelation between Dyeing and Thermal Properties of PET Fibers.” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i> 90 (1): 105–14.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, H RAHIER, B VAN MELE, and Paul Kiekens. 2003. “Interrelation between Dyeing and Thermal Properties of PET Fibers.” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i> 90 (1): 105–114.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck, H. RAHIER, B. VAN MELE, and P. Kiekens, “Interrelation between dyeing and thermal properties of PET fibers,” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i>, vol. 90, no. 1, pp. 105–114, 2003.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Clerck, Karen, et al. “Interrelation between Dyeing and Thermal Properties of PET Fibers.” <i>JOURNAL OF APPLIED POLYMER SCIENCE</i>, vol. 90, no. 1, JOHN WILEY &#38; SONS INC, 2003, pp. 105–14.</div>
  vancouver: |2
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        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, RAHIER H, VAN MELE B, Kiekens P. Interrelation between dyeing and thermal properties of PET fibers. JOURNAL OF APPLIED POLYMER SCIENCE. 2003;90(1):105–14.</div>
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  apa: |2
      <div class="csl-entry">De Clerck, K., RAHIER, H., VAN MELE, B., VAN OOSTVELDT, P., Westbroek, P., &#38; Kiekens, P. (2003). A study of the thermal properties of PET fibres with relevance to the dye diffusion process. <i>Proceedings of the 3rd CEC Conference</i>.</div>
  bof: |2
      <div class="csl-entry">De Clerck, Karen, H RAHIER, B VAN MELE, P VAN OOSTVELDT, Philippe Westbroek, and Paul Kiekens. 2003. “A Study of the Thermal Properties of PET Fibres with Relevance to the Dye Diffusion Process.” In <i>Proceedings of the 3rd CEC Conference</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Clerck, Karen, H RAHIER, B VAN MELE, P VAN OOSTVELDT, Philippe Westbroek, and Paul Kiekens. 2003. “A Study of the Thermal Properties of PET Fibres with Relevance to the Dye Diffusion Process.” In <i>Proceedings of the 3rd CEC Conference</i>.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, H RAHIER, B VAN MELE, P VAN OOSTVELDT, Philippe Westbroek, and Paul Kiekens. 2003. “A Study of the Thermal Properties of PET Fibres with Relevance to the Dye Diffusion Process.” In <i>Proceedings of the 3rd CEC Conference</i>.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck, H. RAHIER, B. VAN MELE, P. VAN OOSTVELDT, P. Westbroek, and P. Kiekens, “A study of the thermal properties of PET fibres with relevance to the dye diffusion process,” in <i>Proceedings of the 3rd CEC Conference</i>, 2003.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Clerck, Karen, et al. “A Study of the Thermal Properties of PET Fibres with Relevance to the Dye Diffusion Process.” <i>Proceedings of the 3rd CEC Conference</i>, 2003.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, RAHIER H, VAN MELE B, VAN OOSTVELDT P, Westbroek P, Kiekens P. A study of the thermal properties of PET fibres with relevance to the dye diffusion process. In: Proceedings of the 3rd CEC Conference. 2003.</div>
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      <div class="csl-entry">Westbroek, Philippe, et al. “Improving Quality and Reproducibility of the Indigo Dye Process by Measuring and Controlling Indigo and Sodium Dithionite Concentrations.” <i>TEXTILE RESEARCH JOURNAL</i>, vol. 73, no. 12, 2003, pp. 1079–84.</div>
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        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Westbroek P, De Clerck K, Kiekens P, GASANA E, Temmerman E. Improving quality and reproducibility of the indigo dye process by measuring and controlling indigo and sodium dithionite concentrations. TEXTILE RESEARCH JOURNAL. 2003;73(12):1079–84.</div>
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  ieee: |2
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  apa: |2
      <div class="csl-entry">De Clerck, K., RAHIER, H., VAN MELE, B., Van Oostveldt, P., &#38; Kiekens, P. (2002). The Dyeing of PET Fibres, a Fundamental Analysis. <i>2nd Autex Conference : Textile Engineering at the Dawn of a New Millenium, Bruges, Belgium, 1-3 July, 2002, p.161-173</i>.</div>
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      <div class="csl-entry">De Clerck, Karen, H RAHIER, B VAN MELE, Patric Van Oostveldt, and Paul Kiekens. 2002. “The Dyeing of PET Fibres, a Fundamental Analysis.” In <i>2nd Autex Conference : Textile Engineering at the Dawn of a New Millenium, Bruges, Belgium, 1-3 July, 2002, p.161-173</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Clerck, Karen, H RAHIER, B VAN MELE, Patric Van Oostveldt, and Paul Kiekens. 2002. “The Dyeing of PET Fibres, a Fundamental Analysis.” In <i>2nd Autex Conference : Textile Engineering at the Dawn of a New Millenium, Bruges, Belgium, 1-3 July, 2002, p.161-173</i>.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, H RAHIER, B VAN MELE, Patric Van Oostveldt, and Paul Kiekens. 2002. “The Dyeing of PET Fibres, a Fundamental Analysis.” In <i>2nd Autex Conference : Textile Engineering at the Dawn of a New Millenium, Bruges, Belgium, 1-3 July, 2002, p.161-173</i>.</div>
  ieee: |2
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        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck, H. RAHIER, B. VAN MELE, P. Van Oostveldt, and P. Kiekens, “The Dyeing of PET Fibres, a Fundamental Analysis,” in <i>2nd Autex Conference : Textile Engineering at the Dawn of a New Millenium, Bruges, Belgium, 1-3 July, 2002, p.161-173</i>, 2002.</div>
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      <div class="csl-entry">De Clerck, Karen, et al. “The Dyeing of PET Fibres, a Fundamental Analysis.” <i>2nd Autex Conference : Textile Engineering at the Dawn of a New Millenium, Bruges, Belgium, 1-3 July, 2002, p.161-173</i>, 2002.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, RAHIER H, VAN MELE B, Van Oostveldt P, Kiekens P. The Dyeing of PET Fibres, a Fundamental Analysis. In: 2nd Autex Conference : Textile Engineering at the Dawn of a New Millenium, Bruges, Belgium, 1-3 July, 2002, p161-173. 2002.</div>
       </div>
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      <div class="csl-entry">De Clerck, K., &#38; Kiekens, P. (2002). Het verven van conventionele PET-weefsels en PET-microvezelweefsels : een fundamentele analyse. <i>UNITEX. TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i>, (2002 / 2), 57–57.</div>
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      <div class="csl-entry">De Clerck, Karen, and Paul Kiekens. 2002. “Het Verven van Conventionele PET-Weefsels En PET-Microvezelweefsels : Een Fundamentele Analyse.” <i>UNITEX. TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i>, no. 2002 / 2: 57–57.</div>
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      <div class="csl-entry">De Clerck, Karen, and Paul Kiekens. 2002. “Het Verven van Conventionele PET-Weefsels En PET-Microvezelweefsels : Een Fundamentele Analyse.” <i>UNITEX. TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i> (2002 / 2): 57–57.</div>
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  mla: |2
      <div class="csl-entry">De Clerck, Karen, and Paul Kiekens. “Het Verven van Conventionele PET-Weefsels En PET-Microvezelweefsels : Een Fundamentele Analyse.” <i>UNITEX. TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE</i>, no. 2002 / 2, Unitex vzw, 2002, pp. 57–57.</div>
  vancouver: |2
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        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, Kiekens P. Het verven van conventionele PET-weefsels en PET-microvezelweefsels : een fundamentele analyse. UNITEX TWEEMAANDELIJKS TIJDSCHRIFT VOOR DE TEXTIELINDUSTRIE. 2002;(2002 / 2):57–57.</div>
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      <div class="csl-entry">De Clerck, K. (2002). <i>A study of fundamental principles of the dyeing of pet conventional fibre and microfibre fabrics</i>. Ghent University. Faculty of Engineering and Architecture, Ghent, Belgium.</div>
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      <div class="csl-entry">De Clerck, Karen. 2002. “A Study of Fundamental Principles of the Dyeing of Pet Conventional Fibre and Microfibre Fabrics.” Ghent, Belgium: Ghent University. Faculty of Engineering and Architecture.</div>
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      <div class="csl-entry">De Clerck, Karen. 2002. “A Study of Fundamental Principles of the Dyeing of Pet Conventional Fibre and Microfibre Fabrics.” Ghent, Belgium: Ghent University. Faculty of Engineering and Architecture.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen. 2002. “A Study of Fundamental Principles of the Dyeing of Pet Conventional Fibre and Microfibre Fabrics.” Ghent, Belgium: Ghent University. Faculty of Engineering and Architecture.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck, “A study of fundamental principles of the dyeing of pet conventional fibre and microfibre fabrics,” Ghent University. Faculty of Engineering and Architecture, Ghent, Belgium, 2002.</div>
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  mla: |2
      <div class="csl-entry">De Clerck, Karen. <i>A Study of Fundamental Principles of the Dyeing of Pet Conventional Fibre and Microfibre Fabrics</i>. Ghent University. Faculty of Engineering and Architecture, 2002.</div>
  vancouver: |2
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        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K. A study of fundamental principles of the dyeing of pet conventional fibre and microfibre fabrics. [Ghent, Belgium]: Ghent University. Faculty of Engineering and Architecture; 2002.</div>
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  apa: |2
      <div class="csl-entry">De Clerck, K., &#38; Kiekens, P. (2001). The colour build-up of PET microfibre fabrics: a reinvestigation of the problem and possible causes. <i>Fibres and Textiles for the Future, Proceedings</i>, 83–90.</div>
  bof: |2
      <div class="csl-entry">De Clerck, Karen, and Paul Kiekens. 2001. “The Colour Build-up of PET Microfibre Fabrics: A Reinvestigation of the Problem and Possible Causes.” In <i>Fibres and Textiles for the Future, Proceedings</i>, 83–90.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Clerck, Karen, and Paul Kiekens. 2001. “The Colour Build-up of PET Microfibre Fabrics: A Reinvestigation of the Problem and Possible Causes.” In <i>Fibres and Textiles for the Future, Proceedings</i>, 83–90.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, and Paul Kiekens. 2001. “The Colour Build-up of PET Microfibre Fabrics: A Reinvestigation of the Problem and Possible Causes.” In <i>Fibres and Textiles for the Future, Proceedings</i>, 83–90.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck and P. Kiekens, “The colour build-up of PET microfibre fabrics: a reinvestigation of the problem and possible causes,” in <i>Fibres and textiles for the future, Proceedings</i>, Tampere, Finland, 2001, pp. 83–90.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Clerck, Karen, and Paul Kiekens. “The Colour Build-up of PET Microfibre Fabrics: A Reinvestigation of the Problem and Possible Causes.” <i>Fibres and Textiles for the Future, Proceedings</i>, 2001, pp. 83–90.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, Kiekens P. The colour build-up of PET microfibre fabrics: a reinvestigation of the problem and possible causes. In: Fibres and textiles for the future, Proceedings. 2001. p. 83–90.</div>
       </div>
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  apa: |2
      <div class="csl-entry">Kiekens, P., &#38; De Clerck, K. (1996). An Introduction into the Dyeing of Polyester Microfibres. <i>Proceedings of “Vllth International IZMIR Textile and Apparel Symposium”, 19-23 April Pp. F161-F166</i>.</div>
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      <div class="csl-entry">Kiekens, Paul, and Karen De Clerck. 1996. “An Introduction into the Dyeing of Polyester Microfibres.” In <i>Proceedings of “Vllth International IZMIR Textile and Apparel Symposium”, 19-23 April Pp. F161-F166</i>.</div>
  chicago-author-date: |2
      <div class="csl-entry">Kiekens, Paul, and Karen De Clerck. 1996. “An Introduction into the Dyeing of Polyester Microfibres.” In <i>Proceedings of “Vllth International IZMIR Textile and Apparel Symposium”, 19-23 April Pp. F161-F166</i>.</div>
  fwo: |2
      <div class="csl-entry">Kiekens, Paul, and Karen De Clerck. 1996. “An Introduction into the Dyeing of Polyester Microfibres.” In <i>Proceedings of “Vllth International IZMIR Textile and Apparel Symposium”, 19-23 April Pp. F161-F166</i>.</div>
  ieee: |2
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        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">P. Kiekens and K. De Clerck, “An Introduction into the Dyeing of Polyester Microfibres,” in <i>Proceedings of “Vllth International IZMIR Textile and Apparel Symposium”, 19-23 April pp. F161-F166</i>, 1996.</div>
      </div>
  mla: |2
      <div class="csl-entry">Kiekens, Paul, and Karen De Clerck. “An Introduction into the Dyeing of Polyester Microfibres.” <i>Proceedings of “Vllth International IZMIR Textile and Apparel Symposium”, 19-23 April Pp. F161-F166</i>, 1996.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">Kiekens P, De Clerck K. An Introduction into the Dyeing of Polyester Microfibres. In: Proceedings of “Vllth International IZMIR Textile and Apparel Symposium”, 19-23 April pp F161-F166. 1996.</div>
       </div>
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  apa: |2
      <div class="csl-entry">De Clerck, K., Kiekens, P., &#38; Van Oostveldt, P. (1996). Investigation into the dyeing of polyester microfibres, state of the art and possible new perspectives: e.g. the use of confocal laser scanning microscopy. <i>Joint Meeting Belgische Vereniging Voor Microscopie / Nederlandse Vereniging Voor Microscopie, Proceedings</i>. Presented at the Joint Meeting Belgische Vereniging voor Microscopie / Nederlandse Vereniging voor Microscopie, Gent.</div>
  bof: |2
      <div class="csl-entry">De Clerck, Karen, Paul Kiekens, and Patric Van Oostveldt. 1996. “Investigation into the Dyeing of Polyester Microfibres, State of the Art and Possible New Perspectives: E.g. the Use of Confocal Laser Scanning Microscopy.” In <i>Joint Meeting Belgische Vereniging Voor Microscopie / Nederlandse Vereniging Voor Microscopie, Proceedings</i>. Gent: Belgische Vereniging voor Microscopie ; Nederlandse Vereniging voor Microscopie.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Clerck, Karen, Paul Kiekens, and Patric Van Oostveldt. 1996. “Investigation into the Dyeing of Polyester Microfibres, State of the Art and Possible New Perspectives: E.g. the Use of Confocal Laser Scanning Microscopy.” In <i>Joint Meeting Belgische Vereniging Voor Microscopie / Nederlandse Vereniging Voor Microscopie, Proceedings</i>. Gent: Belgische Vereniging voor Microscopie ; Nederlandse Vereniging voor Microscopie.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, Paul Kiekens, and Patric Van Oostveldt. 1996. “Investigation into the Dyeing of Polyester Microfibres, State of the Art and Possible New Perspectives: E.g. the Use of Confocal Laser Scanning Microscopy.” In <i>Joint Meeting Belgische Vereniging Voor Microscopie / Nederlandse Vereniging Voor Microscopie, Proceedings</i>. Gent: Belgische Vereniging voor Microscopie ; Nederlandse Vereniging voor Microscopie.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck, P. Kiekens, and P. Van Oostveldt, “Investigation into the dyeing of polyester microfibres, state of the art and possible new perspectives: e.g. the use of confocal laser scanning microscopy,” in <i>Joint Meeting Belgische Vereniging voor Microscopie / Nederlandse Vereniging voor Microscopie, Proceedings</i>, Gent, 1996.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Clerck, Karen, et al. “Investigation into the Dyeing of Polyester Microfibres, State of the Art and Possible New Perspectives: E.g. the Use of Confocal Laser Scanning Microscopy.” <i>Joint Meeting Belgische Vereniging Voor Microscopie / Nederlandse Vereniging Voor Microscopie, Proceedings</i>, Belgische Vereniging voor Microscopie ; Nederlandse Vereniging voor Microscopie, 1996.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, Kiekens P, Van Oostveldt P. Investigation into the dyeing of polyester microfibres, state of the art and possible new perspectives: e.g. the use of confocal laser scanning microscopy. In: Joint Meeting Belgische Vereniging voor Microscopie / Nederlandse Vereniging voor Microscopie, Proceedings. Gent: Belgische Vereniging voor Microscopie ; Nederlandse Vereniging voor Microscopie; 1996.</div>
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  apa: |2
      <div class="csl-entry">De Clerck, K., Kiekens, P., &#38; Van Oostveldt, P. (1996). Investigation into the dyeing of polyester microfibres, state of the art and possible new perspectives : e.g. the use of confocal laser scanning microscopy. <i>IFVTCC Congress, 17th, Proceedings</i>, 201–203.</div>
  bof: |2
      <div class="csl-entry">De Clerck, Karen, Paul Kiekens, and Patric Van Oostveldt. 1996. “Investigation into the Dyeing of Polyester Microfibres, State of the Art and Possible New Perspectives : E.g. the Use of Confocal Laser Scanning Microscopy.” In <i>IFVTCC Congress, 17th, Proceedings</i>, 201–203.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Clerck, Karen, Paul Kiekens, and Patric Van Oostveldt. 1996. “Investigation into the Dyeing of Polyester Microfibres, State of the Art and Possible New Perspectives : E.g. the Use of Confocal Laser Scanning Microscopy.” In <i>IFVTCC Congress, 17th, Proceedings</i>, 201–3.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, Paul Kiekens, and Patric Van Oostveldt. 1996. “Investigation into the Dyeing of Polyester Microfibres, State of the Art and Possible New Perspectives : E.g. the Use of Confocal Laser Scanning Microscopy.” In <i>IFVTCC Congress, 17th, Proceedings</i>, 201–203.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck, P. Kiekens, and P. Van Oostveldt, “Investigation into the dyeing of polyester microfibres, state of the art and possible new perspectives : e.g. the use of confocal laser scanning microscopy,” in <i>IFVTCC Congress, 17th, Proceedings</i>, Vienna, 1996, pp. 201–203.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Clerck, Karen, et al. “Investigation into the Dyeing of Polyester Microfibres, State of the Art and Possible New Perspectives : E.g. the Use of Confocal Laser Scanning Microscopy.” <i>IFVTCC Congress, 17th, Proceedings</i>, 1996, pp. 201–03.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, Kiekens P, Van Oostveldt P. Investigation into the dyeing of polyester microfibres, state of the art and possible new perspectives : e.g. the use of confocal laser scanning microscopy. In: IFVTCC Congress, 17th, Proceedings. 1996. p. 201–3.</div>
       </div>
classification: C1
conference:
  end_date: 1996-06-07
  location: Vienna
  name: 17th IFVTCC Congress
  organizer: International Federation of the Associations of the Textile Chemists
    and Colourists / Internationale Föderation der Vereinigungen der Textilchemiker
    und  Coloristen (IFVTCC)
  start_date: 1996-06-05
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
date_created: 2009-04-17 13:22:12
date_updated: 2026-06-04 09:29:26
external: 0
handle: http://hdl.handle.net/1854/LU-595002
jcr: {}
language:
- eng
page:
  first: '201'
  last: '203'
parent:
  title: IFVTCC Congress, 17th, Proceedings
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: 'Investigation into the dyeing of polyester microfibres, state of the art and
  possible new perspectives : e.g. the use of confocal laser scanning microscopy'
type: conference
year: '1996'
...
---
_id: '594929'
abstract:
- Novel treatments for the reduction of dyebath induced hygral expansion are described.
  Their application in Neolan P dyebaths offers the potential for reduced dimensional
  instability with a limited impact on the final fabric colour.
abstract_full:
- lang: eng
  text: Novel treatments for the reduction of dyebath induced hygral expansion are
    described. Their application in Neolan P dyebaths offers the potential for reduced
    dimensional instability with a limited impact on the final fabric colour.
affiliation:
- name: Department of Materials, Textiles and Chemical Engineering
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11
  ugent_id: TW11
- name: Department of Textiles (ceased 1-2-2017)
  path:
  - ugent_id: UGent
  - ugent_id: TW
  - ugent_id: TW11*
  ugent_id: TW11*
article_type: original
author:
- _id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: TW
    - ugent_id: TW11
    ugent_id: TW11
  biblio_id: F4C9EBE8-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Karen
  last_name: De Clerck
  name: Karen De Clerck
  name_last_first: De Clerck, Karen
  orcid_id: 0000-0002-5650-3075
  ugent_id:
  - '801000947425'
  - '976215851340'
- first_name: CM
  last_name: Carr
  name: CM Carr
  name_last_first: Carr, CM
- first_name: KJ
  last_name: Dodd
  name: KJ Dodd
  name_last_first: Dodd, KJ
biblio_id: '594929'
cite:
  apa: |2
      <div class="csl-entry">De Clerck, K., Carr, C., &#38; Dodd, K. (1993). Novel dyebath treatments for the prevention of increased hygral expansion occurring in piece dyed worsted fabrics. <i>JOURNAL OF THE TEXTILE INSTITUTE</i>, <i>84</i>(4), 611–618.</div>
  chicago-author-date: |2
      <div class="csl-entry">De Clerck, Karen, CM Carr, and KJ Dodd. 1993. “Novel Dyebath Treatments for the Prevention of Increased Hygral Expansion Occurring in Piece Dyed Worsted Fabrics.” <i>JOURNAL OF THE TEXTILE INSTITUTE</i> 84 (4): 611–18.</div>
  fwo: |2
      <div class="csl-entry">De Clerck, Karen, CM Carr, and KJ Dodd. 1993. “Novel Dyebath Treatments for the Prevention of Increased Hygral Expansion Occurring in Piece Dyed Worsted Fabrics.” <i>JOURNAL OF THE TEXTILE INSTITUTE</i> 84 (4): 611–618.</div>
  ieee: |2
      <div class="csl-entry">
        <div class="csl-left-margin">[1]</div><div class="csl-right-inline">K. De Clerck, C. Carr, and K. Dodd, “Novel dyebath treatments for the prevention of increased hygral expansion occurring in piece dyed worsted fabrics,” <i>JOURNAL OF THE TEXTILE INSTITUTE</i>, vol. 84, no. 4, pp. 611–618, 1993.</div>
      </div>
  mla: |2
      <div class="csl-entry">De Clerck, Karen, et al. “Novel Dyebath Treatments for the Prevention of Increased Hygral Expansion Occurring in Piece Dyed Worsted Fabrics.” <i>JOURNAL OF THE TEXTILE INSTITUTE</i>, vol. 84, no. 4, 1993, pp. 611–18.</div>
  vancouver: |2
      <div class="csl-entry">
        <div class="csl-left-margin">1. </div><div class="csl-right-inline">De Clerck K, Carr C, Dodd K. Novel dyebath treatments for the prevention of increased hygral expansion occurring in piece dyed worsted fabrics. JOURNAL OF THE TEXTILE INSTITUTE. 1993;84(4):611–8.</div>
       </div>
classification: A1
created_by:
  _id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  affiliation:
  - path:
    - ugent_id: UGent
    - ugent_id: EB
    - ugent_id: EB21
    ugent_id: EB21
  biblio_id: F47376A0-F0ED-11E1-A9DE-61C894A0A6B4
  first_name: Martine
  last_name: Van Den Abbeele
  name: Martine Van Den Abbeele
  name_last_first: Van Den Abbeele, Martine
  ugent_id:
  - '801000739277'
  - '977385781070'
date_created: 2009-04-17 10:39:15
date_updated: 2026-03-31 14:18:13
external: 0
handle: http://hdl.handle.net/1854/LU-594929
issn:
- 0040-5000
issue: '4'
keyword:
- WOOL
language:
- eng
page:
  first: '611'
  last: '618'
parent:
  short_title: J. Text. Inst.
  title: JOURNAL OF THE TEXTILE INSTITUTE
publication_status: published
publication_status_sort: 2
status: public
subject:
- Technology and Engineering
title: Novel dyebath treatments for the prevention of increased hygral expansion occurring
  in piece dyed worsted fabrics
type: journalArticle
volume: '84'
wos_id: A1993NJ47200009
wos_type: Article
year: '1993'
...
