Langmuir-Blodgett技术研究两亲性氧化还原聚合物有序组装的光致电化学性质

A. Aoki, T. Miyashita
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引用次数: 0

摘要

为了控制光致电子转移反应产生的光电流方向和提高量子效率,对二吡啶钌配合物和二茂铁衍生物在异沉积氧化还原聚合物Langmuir-Blodgett (LB)薄膜中的空间排列进行了研究。利用LB技术改变氧化还原聚合物单层的沉积顺序,得到了两种不同的沉积结构。异质沉积的氧化还原聚合物LB膜具有电流整流和电荷存储特性。光照射可在ITO (Fc/Ru/ITO)电极上形成以Ru共聚物LB膜为内层、Fc共聚物LB膜为外层的异质沉积氧化还原聚合物LB膜的阳极光电流。另一方面,在反向层状结构(Ru/Fc/ITO)电极上观察到阴极电流。光电流的方向取决于氧化还原聚合物LB膜在ITO电极上的沉积顺序。异质沉积的氧化还原聚合物LB薄膜光电流量子效率达到5.9%。高光电流转换效率的原因是由于异质沉积LB膜结构抑制了光诱导电荷分离的复合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photoinduced Electrochemical Properties of Organized Assembly of Amphiphilic Redox Polymers by Langmuir-Blodgett Technique
Spatial arrangement of the ruthenium dipyridyl complex and ferrocene derivative in hetero-deposited redox polymer Langmuir-Blodgett (LB) films was carried out for direction control of photocurrent flow produced by photoinduced electron transfer reaction and for high quantum efficiency. Two hetero-deposited structures were obtained by varying the deposition order of the redox polymer monolayers by the LB technique. Cyclic voltammograms of hetero-deposited redox polymer LB films exhibited current rectifying and charge storage properties. Light irradiation led to anodic photocurrent of hetero-deposited redox polymer LB films consisting of Ru copolymer LB film as an inner layer and Fc copolymer LB film as an outer layer on the ITO (Fc/Ru/ITO) electrodes. On the other hand, cathodic current was observed at the reverse layered structure (Ru/Fc/ITO) electrodes. The direction of photocurrent flow depended on the deposition order of redox polymer LB films on the ITO electrode. Photocurrent quantum efficiency of 5.9% of the hetero-deposited redox polymer LB film was achieved. High photocurrent conversion efficiency is explained by inhibition of recombination of photoinduced charge separation due to hetero-deposited LB film structures.
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