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Amphiphilic pentablock copolymers and their blends with PDMS for antibiofouling coatings
Author(s) -
Martinelli Elisa,
Guazzelli Elisa,
Bartoli Cristina,
Gazzarri Matteo,
Chiellini Federica,
Galli Giancarlo,
Callow Maureen E.,
Callow James A.,
Finlay John A.,
Hill Sophie
Publication year - 2015
Publication title -
journal of polymer science part a: polymer chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.768
H-Index - 152
eISSN - 1099-0518
pISSN - 0887-624X
DOI - 10.1002/pola.27554
Subject(s) - copolymer , materials science , amphiphile , polymer chemistry , monomer , contact angle , chemical engineering , adsorption , polymer , coating , chemistry , composite material , organic chemistry , engineering
Well‐defined amphiphilic pentablock copolymers Si y ‐(EG x ‐FA z ) 2 composed of polysiloxane (Si), polyethylene glycol (EG), and perfluorohexylethyl polyacrylate (FA) blocks are synthesized by ATRP of FA monomer starting from a difunctional bromo‐terminated macroinitiator. Diblock copolymers EG x ‐FA z are also synthesized as model systems. The block copolymers are used, either alone or blended with a PDMS matrix in varied loadings, to prepare antibiofouling coatings. Angle‐resolved XPS and contact angle measurements show that the coating surface is highly enriched in fluorine content but undergoes reconstruction after contact with water. Protein adsorption experiments with human serum albumin and calf serum highlight that diblock copolymers resist protein adhesion better than do pentablock copolymers. Blending of the pentablock copolymer with PDMS results in increased protein adsorption. By contrast, the PDMS‐matrix coatings show high removal percentages of sporelings of the green fouling alga Ulva linza . © 2015 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 2015 , 53 , 1213–1225

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