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A stability study of plasma polymerized acrylic acid films

Pieter Cools (UGent) , Heidi Declercq (UGent) , Nathalie De Geyter (UGent) and Rino Morent (UGent)
(2018) APPLIED SURFACE SCIENCE. 432. p.214-223
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Keywords
Acrylic acid, Plasma polymerization, Stability, Human foreskin fibroblasts (HFF), Surface analysis, ATMOSPHERIC-PRESSURE, SURFACE MODIFICATION, BIOMEDICAL APPLICATIONS, POLY(ACRYLIC ACID), THIN-FILMS, DEPOSITION, COATINGS, DISCHARGE, POLYPROPYLENE, PERFORMANCE

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Please use this url to cite or link to this publication:

MLA
Cools, Pieter et al. “A Stability Study of Plasma Polymerized Acrylic Acid Films.” APPLIED SURFACE SCIENCE 432 (2018): 214–223. Print.
APA
Cools, Pieter, Declercq, H., De Geyter, N., & Morent, R. (2018). A stability study of plasma polymerized acrylic acid films. APPLIED SURFACE SCIENCE, 432, 214–223. Presented at the 20th International Vacuum congress (IVC) .
Chicago author-date
Cools, Pieter, Heidi Declercq, Nathalie De Geyter, and Rino Morent. 2018. “A Stability Study of Plasma Polymerized Acrylic Acid Films.” Applied Surface Science 432: 214–223.
Chicago author-date (all authors)
Cools, Pieter, Heidi Declercq, Nathalie De Geyter, and Rino Morent. 2018. “A Stability Study of Plasma Polymerized Acrylic Acid Films.” Applied Surface Science 432: 214–223.
Vancouver
1.
Cools P, Declercq H, De Geyter N, Morent R. A stability study of plasma polymerized acrylic acid films. APPLIED SURFACE SCIENCE. 2018;432:214–23.
IEEE
[1]
P. Cools, H. Declercq, N. De Geyter, and R. Morent, “A stability study of plasma polymerized acrylic acid films,” APPLIED SURFACE SCIENCE, vol. 432, pp. 214–223, 2018.
@article{8546082,
  author       = {Cools, Pieter and Declercq, Heidi and De Geyter, Nathalie and Morent, Rino},
  issn         = {0169-4332},
  journal      = {APPLIED SURFACE SCIENCE},
  keywords     = {Acrylic acid,Plasma polymerization,Stability,Human foreskin fibroblasts (HFF),Surface analysis,ATMOSPHERIC-PRESSURE,SURFACE MODIFICATION,BIOMEDICAL APPLICATIONS,POLY(ACRYLIC ACID),THIN-FILMS,DEPOSITION,COATINGS,DISCHARGE,POLYPROPYLENE,PERFORMANCE},
  language     = {eng},
  location     = {Busan, South Korea},
  pages        = {214--223},
  title        = {A stability study of plasma polymerized acrylic acid films},
  url          = {http://dx.doi.org/10.1016/j.apsusc.2017.04.015},
  volume       = {432},
  year         = {2018},
}

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