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通过分子模板的拓扑控制形成的弹性导电聚苯胺。

Elastomeric Conducting Polyaniline Formed Through Topological Control of Molecular Templates.

机构信息

School of Materials Science and Engineering, University of Science & Technology Beijing , 30 Xueyuan Road, Beijing 100083, People's Republic of China.

School of Engineering, Peking University , Beijing 100871, People's Republic of China.

出版信息

ACS Nano. 2016 Jun 28;10(6):5991-8. doi: 10.1021/acsnano.6b01520. Epub 2016 May 19.

Abstract

A strategy for creating elastomeric conducting polyaniline networks is described. Simultaneous elastomeric mechanical properties (E < 10 MPa) and electronic conductivities (σ > 10 S cm(-1)) are achieved via molecular templating of conjugated polymer networks. Diblock copolymers with star topologies processed into self-assembled elastomeric thin films reduce the percolation threshold of polyaniline synthesized via in situ polymerization. Block copolymer templates with star topologies produce elastomeric conjugated polymer composites with Young's moduli ranging from 4 to 12 MPa, maximum elongations up to 90 ± 10%, and electrical conductivities of 30 ± 10 S cm(-1). Templated polyaniline films exhibit Young's moduli up to 3 orders of magnitude smaller compared to bulk polyaniline films while preserving comparable bulk electronic conductivity. Flexible conducting polymers have prospective applications in devices for energy storage and conversion, consumer electronics, and bioelectronics.

摘要

描述了一种制备弹性导电聚苯胺网络的策略。通过共轭聚合物网络的分子模板化,实现了同时具有弹性机械性能(E < 10 MPa)和电子电导率(σ > 10 S cm(-1))的弹性体。具有星形拓扑结构的两亲性嵌段共聚物加工成自组装弹性体薄膜,降低了通过原位聚合合成的聚苯胺的渗流阈值。具有星形拓扑结构的嵌段共聚物模板生成的弹性体共轭聚合物复合材料的杨氏模量范围为 4 至 12 MPa,最大伸长率高达 90 ± 10%,电导率为 30 ± 10 S cm(-1)。与块状聚苯胺薄膜相比,模板化聚苯胺薄膜的杨氏模量高达 3 个数量级,但保留了相当的体电子电导率。柔性导电聚合物在储能和转换、消费电子和生物电子设备中的应用具有广阔的前景。

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