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本征导电聚合物的过氧化

Overoxidation of Intrinsically Conducting Polymers.

作者信息

Holze Rudolf

机构信息

Institut für Chemie, Chemnitz University of Technology, D-09107 Chemnitz, Germany.

Institute of Chemistry, Saint Petersburg State University, 199034 St. Petersburg, Russia.

出版信息

Polymers (Basel). 2022 Apr 13;14(8):1584. doi: 10.3390/polym14081584.

Abstract

Intrinsically conducting polymers may undergo significant changes of molecular structure and material properties when exposed to highly oxidizing conditions or very positive electrode potentials, commonly called overoxidation. The type and extent of the changes depend on the experimental conditions and chemical environment. They may proceed already at much lower rates at lower electrode potentials because some of the processes associated with overoxidation are closely related to more or less reversible redox processes employed in electrochemical energy conversion and electrochromism. These changes may be welcome for some applications of these polymers in sensors, extraction, and surface functionalization, but in many cases, the change of properties affects the performance of the material negatively, contributing to material and device degradation. This report presents published examples, experimental observations, and their interpretations in terms of both structural and of material property changes. Options to limit and suppress overoxidation are presented, and useful applications are described extensively.

摘要

本征导电聚合物在暴露于高氧化条件或非常正的电极电位(通常称为过氧化)时,其分子结构和材料性能可能会发生显著变化。变化的类型和程度取决于实验条件和化学环境。由于一些与过氧化相关的过程与电化学能量转换和电致变色中或多或少可逆的氧化还原过程密切相关,因此在较低的电极电位下,这些变化可能已经以低得多的速率进行。这些变化对于这些聚合物在传感器、萃取和表面功能化中的某些应用可能是有利的,但在许多情况下,性能的变化会对材料性能产生负面影响,导致材料和器件降解。本报告展示了已发表的实例、实验观察结果以及从结构和材料性能变化方面进行的解释。还介绍了限制和抑制过氧化的方法,并广泛描述了其有用的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b740/9027932/b321839cadd3/polymers-14-01584-g001.jpg

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