聚合物绝缘体中电子输运的时间分辨研究

M. Abkowitz
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引用次数: 0

摘要

在各种各样的玻璃化聚合物绝缘体中,输运的特点是在玻璃化转变温度T/sub g/以下有一个复杂而熟悉的电场和温度依赖模式,在T/sub g/附近有一个相对突然的温度依赖变化。尽管各不相同,但所有这些玻璃介质都有一个共同的特征,即电子输运是由局域态的场辅助热激发发射介导的,这一过程仍未完全了解。通过适当的“分子工程”,已经有可能设计出具有高效和完全无陷阱传输的介电聚合物,这是电子摄影实际应用的必要特征。讨论了从时间分辨注入分析中得到的机理认识在有机聚合物基光导体历史发展中的重要性。描述了三种材料体系:(1)聚(n -乙烯基咔唑),PVK;(2)分子掺杂聚合物;(3)聚硅烷和聚日耳曼
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Time resolved studies of electronic transport in polymeric insulators
Transport in a wide variety of glassy polymeric insulators has been found to be characterized by a convoluted yet familiar pattern of electric field and temperature dependence below T/sub g/, the glass transition temperature, and by a relatively abrupt change in temperature dependence near T/sub g/. Though diverse, all of these glassy dielectrics share the feature that electronic transport is mediated by field-assisted thermally stimulated emission from localized states, a process which remains incompletely understood. By proper 'molecular engineering' it has become possible to design dielectric polymers which exhibit efficient and completely trap-free transport, a requisite feature for practical applications to electrophotography. The importance of the mechanistic understanding derived from analysis of time-resolved injection in the historical development of viable organic-polymer-based photoconductors is discussed. Three materials systems are described: (1) poly(N-vinylcarbazole), PVK; (2) molecularly doped polymers; and (3) polysilanes and polygermanes.<>
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