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通过表面引发的熊田催化剂转移缩聚反应制备的用于传感器应用的微粒负载共轭聚电解质刷。

Microparticle-supported conjugated polyelectrolyte brushes prepared by surface-initiated kumada catalyst transfer polycondensation for sensor applications.

作者信息

Tkachov Roman, Senkovskyy Volodymyr, Oertel Ulrich, Synytska Alla, Horecha Marta, Kiriy Anton

机构信息

Leibniz-Institut für Polymerforschung Dresden e.V., 01069 Dresden, Germany.

出版信息

Macromol Rapid Commun. 2010 Dec 15;31(24):2146-50. doi: 10.1002/marc.201000411. Epub 2010 Oct 21.

Abstract

A 'grafting-from' approach to synthesize microparticle-supported conjugated polyelectrolyte brushes is presented. Poly(3-bromohexylthiophene) is selectively grown from monodisperse organosilica microparticles by surface-initiated Kumada catalyst-transfer polycondensation (SI-KCTP) and then ionizable amino groups are introduced by a two-step polymer analogous transformation. Optical properties of the resulting microparticle-supported conjugated polyelectrolyte brushes were found to be dependent on the surrounding chemical environment and thus the particles are promising materials for sensor applications.

摘要

本文提出了一种“接枝生长”方法来合成微粒负载的共轭聚电解质刷。通过表面引发的 Kumada 催化剂转移缩聚反应(SI-KCTP),聚(3-溴己基噻吩)在单分散有机硅微粒上选择性生长,然后通过两步聚合物类似转化引入可离子化的氨基。结果表明,所得微粒负载的共轭聚电解质刷的光学性质取决于周围的化学环境,因此这些微粒有望成为传感器应用的材料。

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