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高分子基导电复合材料非线性导电行为及其机理(Ⅱ)量子力学隧道效应理论 被引量:11

Nonliear Conductive Behavior and Mechanisms of Conductive Polymer Composites:(Ⅱ) Quantum-Mechanical Tunnel Effect Theory
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摘要 简述了高分子基导电复合材料非线性导电行为的概念,详细讨论了高分子基导电复合材料非线性导电行为的机理——量子力学隧道效应理论及其它理论。高分子基导电复合材料的非线性导电行为是几种效应的综合过程:当导电填料的体积分数较小时,导电粒子无法形成导电通道,此时只有量子力学隧道效应在起作用;当导电填料的体积分数较大时,复合材料的导电行为是导电通道和隧道效应共同作用的结果。 The concept of the linear behavior of conductive polymer composites is introduced.One of the most important mechanisms,quantum-mechanical tunnel effect,of the nonlinear behavior of conductive polymer composites is discussed exhaustively.The nonlinear behavior of conductive polymer composites is considered as a compositive process of several effect.The contributing mechanism is only quantum-mechanical tunnel effect in the case of low volume fraction of conductive filler,while the quantum-mechanical tunnel effect and conductive passage should be contributed together to the conductive behavior of the composites at high volume fraction of conductive filler.
出处 《上海塑料》 2010年第1期1-5,共5页 Shanghai Plastics
关键词 导电复合材料 非线性 隧道效应 electrical conductive composites nonlinear tunnel effect
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参考文献30

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