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通过双极电化学实现导电聚合物薄膜的梯度掺杂。

Gradient doping of conducting polymer films by means of bipolar electrochemistry.

机构信息

Department of Electronic Chemistry, Tokyo Institute of Technology, 4259 Nagatsuta, Midori-ku, Yokohama 226-8502 Japan.

出版信息

Langmuir. 2011 Jun 7;27(11):7158-62. doi: 10.1021/la200464t. Epub 2011 May 16.

Abstract

In this paper, we report a novel electrochemical doping method for conducting polymer films based on bipolar electrochemistry. The electrochemical doping of conducting polymers such as poly(3-methylthiophene) (PMT), poly(3,4-ethylenedioxythiophene) (PEDOT), and poly(aniline) (PANI) on a bipolar electrode having a potential gradient on its surface successfully created gradually doped materials. In the case of PEDOT film, the color change at the anodic side was also observed to be gradually transparent. PANI film treated by the bipolar doping gave a multicolored gradation across the film. The results of UV-vis and energy dispersive X-ray analyses for the doped films supported the distribution of dopants in the polymer films reflecting the potential gradient on the bipolar electrode. Furthermore, the reversibility of the bipolar doping of the PMT film was demonstrated by a spectroelectrochemical investigation.

摘要

本文报道了一种基于双极电化学的新型导电聚合物薄膜电化学掺杂方法。在具有表面电势梯度的双极电极上对聚(3-甲基噻吩)(PMT)、聚(3,4-乙二氧基噻吩)(PEDOT)和聚(苯胺)(PANI)等导电聚合物进行电化学掺杂,成功地制备了逐渐掺杂的材料。在 PEDOT 薄膜的情况下,还观察到在阳极侧的颜色逐渐变为透明。用双极掺杂处理的 PANI 薄膜在整个薄膜上呈现出多彩的渐变。掺杂薄膜的紫外可见和能量色散 X 射线分析结果支持掺杂剂在聚合物薄膜中的分布反映了双极电极上的电势梯度。此外,通过光谱电化学研究证明了 PMT 薄膜的双极掺杂的可逆性。

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