Superhydrophobic surfaces with low and high adhesion made from mixed (hydrocarbon and fluorocarbon) 3,4‐propylenedioxythiophene monomers
Author(s) -
ElMaiss Janwa,
Darmanin Thierry,
Taffin de Givenchy Elisabeth,
Amigoni Sonia,
Eastoe Julian,
Sagisaka Masanobu,
Guittard Frédéric
Publication year - 2014
Publication title -
journal of polymer science part b: polymer physics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.65
H-Index - 145
eISSN - 1099-0488
pISSN - 0887-6266
DOI - 10.1002/polb.23483
Subject(s) - fluorocarbon , alkyl , hydrocarbon , materials science , hexadecane , monomer , polymer chemistry , chemical engineering , adhesion , chemistry , organic chemistry , composite material , polymer , engineering
This work concerns new superhydrophobic surfaces, generated by replacing long fluorocarbon chains, which bioaccumulate, with short chains whilst at the same time retaining oleophobic properties. Here, is described the synthesis of novel 3,4‐propylenedioxythiophene derivatives containing both a short fluorocarbon chain (perfluorobutyl) and a hydrocarbon chain of various lengths (ethyl, butyl and hexyl). Superhydrophobic ( θ water > 150°) surfaces with good oleophobic properties (60° > θ hexadecane > 80°) have been obtained by electrodeposition using cyclic voltammetry. Surprisingly, the lowest hystereses and sliding angles (Lotus effect) are obtained with the shortest alkyl chains due to the presence of microstructures made of nanofibers on the surfaces, whereas, the longest alkyl chains leads to nanosheets with high adhesion (Petal effect). Such materials are potential candidates for biomedical applications. © 2014 Wiley Periodicals, Inc. J. Polym. Sci., Part B: Polym. Phys. 2014 , 52 , 782–788
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