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Integrated zwitterionic conjugated poly(carboxybetaine thiophene) as a new biomaterial platform

机译:整合两性离子共轭聚(羧基甜菜碱噻吩)作为一种新的生物材料平台。

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摘要

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.
机译:设计并研究了基于两性离子共轭聚合物的集成生物材料平台,以解决共轭聚合物在生物医学应用中的一些关键挑战。该生物材料平台由共轭聚合物主链和多功能两性离子侧链组成。两性离子材料通过共轭聚合物主链获得导电性和令人感兴趣的光学性能,非生物相容性共轭聚合物通过多功能两性离子侧链获得出色的防污性能,增强的电导率,生物共轭官能团以及对环境刺激的响应。该平台可以潜在地适用于广泛的应用(例如生物电子学,组织工程和生物燃料电池),这些应用需要高性能的导电材料以及在生物界面上具有出色的防污/生物相容性。

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