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Updated: Feb 22, 2026

Fabricating Superhydrophobic Polymeric Materials for Biomedical Applications
Published on: August 28, 2015
Integrated zwitterionic conjugated poly(carboxybetaine thiophene) as a new biomaterial platform
Bin Cao1, Qiong Tang1, Linlin Li2
1Department of Chemical and Biomolecular Engineering , University of Akron , Akron , Ohio 44325 , USA . Email: gc@uakron.edu ; Email: homeroc@uakron.edu ; http://gozips.uakron.edu/∼gc/index.html.
Abstract:
An integrated zwitterionic conjugated polymer-based biomaterial platform was designed and studied to address some of the key challenges of conjugated polymers in biomedical applications. This biomaterial platform consists of conjugated polymer backbones and multifunctional zwitterionic side chains. Zwitterionic materials gain electrical conductivity and interesting optical properties through conjugated polymer backbones, and non-biocompatible conjugated polymers obtain excellent antifouling properties, enhanced electrical conductivity, functional groups of bioconjugation and response to environmental stimuli via multifunctional zwitterionic side chains. This platform can potentially be adapted to a wide range of applications (e.g. bioelectronics, tissue engineering and biofuel cell), which require high performance conducting materials with excellent antifouling/biocompatibility at biointerfaces.
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