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首页> 外文期刊>Dielectrics and Electrical Insulation, IEEE Transactions on >Modeling of charge injection and extraction in a metal/polymer interface through an exponential distribution of surface states
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Modeling of charge injection and extraction in a metal/polymer interface through an exponential distribution of surface states

机译:通过表面态的指数分布对金属/聚合物界面中的电荷注入和萃取进行建模

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From a brief review of the literature, it is shown that surface states within dielectrics represent a critical step in charge injection whereas only scarce physical descriptions of these phenomena are available. It is confirmed from space charge measurements on low density polyethylene (LDPE) that the work function of metals used as electrodes does not correlate to injected charge quantities, thereby supporting the need for alternative descriptions of injection to the Schottky law. Hence, the influence of surface states on space charge formation in LDPE is investigated using a one-dimensional model of electronic charge injection and transport under dc voltage. Transport and trapping in the bulk of the insulation are accounted for using an exponential distribution of traps with a maximum limit in trap depth. We have modeled interface states considering the same form of distribution, hypothesizing an increasing density of states and trap depth when approaching the surface. We suppose that the interface region with modulated properties extends over 1μm from both surfaces of the 200 μm thick insulation. We also considered a reservoir of charge for providing carriers into the dielectric, instead of a classical injection law. After a sensitivity analysis of model parameters on space charge results, we present simulation results on charge injection for a unipolar and a bipolar model. It is shown that the presence of surface states and the reservoir of charges could explain the particular behavior of charges observed experimentally, as regards heterocharge accumulation, and field enhancement.
机译:从文献的简要回顾可以看出,电介质中的表面状态代表了电荷注入中的关键步骤,而仅对这些现象进行了稀疏的物理描述。从在低密度聚乙烯(LDPE)上进行的空间电荷测量可以证实,用作电极的金属的功函与注入的电荷量不相关,从而支持对肖特基定律进行注入的替代描述。因此,使用一维电子电荷注入和在直流电压下传输的一维模型研究了表面状态对LDPE中空间电荷形成的影响。绝大部分绝缘材料中的运输和捕集是使用捕集阱的指数分布,且捕集阱深度最大。我们考虑到了相同的分布形式,对界面状态进行了建模,并假设接近表面时状态密度和陷阱深度会不断增加。我们假设具有调制特性的界面区域从200μm厚的绝缘体的两个表面延伸超过1μm。我们还考虑了电荷储存库,用于将载流子提供给电介质,而不是经典的注入定律。在对空间电荷结果的模型参数进行敏感性分析之后,我们给出了单极性和双极性模型电荷注入的模拟结果。结果表明,表面状态的存在和电荷的蓄积可以解释实验观察到的电荷的特定行为,涉及杂电荷积累和场增强。

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