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Published in: Colloid and Polymer Science 5/2006

01-02-2006 | Original Contribution

Determination of accurate surface tensions of maleimide copolymers containing fluorinated side chain from contact angle measurements

Authors: Hossein Tavana, Dietmar Appelhans, Rong-Chuan Zhuang, Stefan Zschoche, Karina Grundke, Michael L. Hair, A. Wilhelm Neumann

Published in: Colloid and Polymer Science | Issue 5/2006

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Abstract

Surface energetics of two fluorinated maleimide copolymers containing fluorinated side chain, i.e., poly(ethene-alt-N-(4-(perfluoroheptylcarbonyl)aminobutyl)maleimide) (ETMF) and poly(octadecene-alt-N-(4-(perfluoroheptylcarbonyl)aminobutyl)maleimide) (ODMF), are studied by contact angle measurements with 10 liquids consisting of fairly bulky molecules. Because of the inertness of octamethylcyclotetrasiloxane (OMCTS) and decamethylcyclopentasiloxane (DMCPS) molecules, their contact angles are used to determine the surface tension of the two polymers. It is found that other liquids show specific interactions with the ETMF films, and their contact angles deviate from a smooth curve that represents the surface tension of ETMF, i.e., 11.00 mJ/m2. On ODMF surfaces, only OMCTS and DMCPS yield useful contact angles. Other liquids either dissolve the polymer film or show a slip-stick pattern. This finding is discussed in terms of interactions between segments of the polymer chains and the test liquids. OMCTS and DMCPS are suggested as the appropriate probe liquids, meeting specific criteria necessary for the determination of accurate surface tension of fluoropolymers.

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Metadata
Title
Determination of accurate surface tensions of maleimide copolymers containing fluorinated side chain from contact angle measurements
Authors
Hossein Tavana
Dietmar Appelhans
Rong-Chuan Zhuang
Stefan Zschoche
Karina Grundke
Michael L. Hair
A. Wilhelm Neumann
Publication date
01-02-2006
Publisher
Springer-Verlag
Published in
Colloid and Polymer Science / Issue 5/2006
Print ISSN: 0303-402X
Electronic ISSN: 1435-1536
DOI
https://doi.org/10.1007/s00396-005-1410-6

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