
Synergistic interplay between pH, temperature and supramolecular interactions for the design of smart polymeric materials
(2022)
- Author
- Aurélien Vebr
- Promoter
- Richard Hoogenboom (UGent) and Patrice Woisel
- Organization
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Citation
Please use this url to cite or link to this publication: http://hdl.handle.net/1854/LU-01GQS8SFH4BYS5QGAQECCE4266
- MLA
- Vebr, Aurélien. Synergistic Interplay between PH, Temperature and Supramolecular Interactions for the Design of Smart Polymeric Materials. Ghent University. Faculty of Sciences ; Lille University, 2022.
- APA
- Vebr, A. (2022). Synergistic interplay between pH, temperature and supramolecular interactions for the design of smart polymeric materials. Ghent University. Faculty of Sciences ; Lille University, Ghent, Belgium ; Lille, France.
- Chicago author-date
- Vebr, Aurélien. 2022. “Synergistic Interplay between PH, Temperature and Supramolecular Interactions for the Design of Smart Polymeric Materials.” Ghent, Belgium ; Lille, France: Ghent University. Faculty of Sciences ; Lille University.
- Chicago author-date (all authors)
- Vebr, Aurélien. 2022. “Synergistic Interplay between PH, Temperature and Supramolecular Interactions for the Design of Smart Polymeric Materials.” Ghent, Belgium ; Lille, France: Ghent University. Faculty of Sciences ; Lille University.
- Vancouver
- 1.Vebr A. Synergistic interplay between pH, temperature and supramolecular interactions for the design of smart polymeric materials. [Ghent, Belgium ; Lille, France]: Ghent University. Faculty of Sciences ; Lille University; 2022.
- IEEE
- [1]A. Vebr, “Synergistic interplay between pH, temperature and supramolecular interactions for the design of smart polymeric materials,” Ghent University. Faculty of Sciences ; Lille University, Ghent, Belgium ; Lille, France, 2022.
@phdthesis{01GQS8SFH4BYS5QGAQECCE4266, author = {{Vebr, Aurélien}}, language = {{eng}}, pages = {{210}}, publisher = {{Ghent University. Faculty of Sciences ; Lille University}}, school = {{Ghent University}}, title = {{Synergistic interplay between pH, temperature and supramolecular interactions for the design of smart polymeric materials}}, year = {{2022}}, }