The high field conductivity in organosilicon plasma polymers

P. Kazimierski, M. Kryszewski, J. Tyczkowski
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Abstract

The electrical conductivity by electron hopping in the case of high electric fields is discussed with special attention to the Poole-Frenkel generation mechanism. Computer simulations of charge carriers tunneling between different kinds of localized states are presented. The model consequence is the existence of the exp(F/F/sub 0/) term in high-field direct current. These theoretical results are supported by measurements of current versus voltage characteristics for thin films of plasma polymers obtained by glow discharge in vapors of different organosilicon monomers. The present model also implies the existence of temperature-independent direct current in the case of sufficiently high electric fields.<>
有机硅等离子体聚合物的高场导电性
讨论了高电场条件下电子跳变的电导率,重点讨论了普尔-弗伦克尔的产生机理。给出了不同局域态间载流子隧穿的计算机模拟。模型的结果是在高场直流电中存在exp(F/F/sub 0/)项。通过在不同有机硅单体的蒸汽中发光放电获得的等离子体聚合物薄膜的电流与电压特性的测量支持了这些理论结果。本模型还表明,在足够高的电场条件下,存在与温度无关的直流电。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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