Observation of space charge distribution up to electric breakdown in acetophenone-coated polyethylene film

S. Mitsumoto, M. Nagao, M. Kosaki
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引用次数: 5

Abstract

This paper describes the effects of polarity of applied voltage and electrode metal on electric conduction and space charge formation up to electric breakdown in one-sidedly acetophenone-coated low-density polyethylene (LDPE) film. Up to the electric field of about 0.5 MV/cm with Au electrode, the acetophenone-coated positive electrode gives much larger conduction current than the negative one, suggesting that the existence of acetophenone at electrode interface enhances the hole injection rather than the electron injection. In the case of Al electrode this polarity dependence is opposite, suggesting the electron injection is more enhanced for Al electrode. Above about 0.5 MV/cm, however, these polarity effects changed oppositely. This change of polarity effect in high field region is explained by considering the space charge distribution and carrier injection from the acetophenone non-coated-side electrode. With the polarity where the current above 0.5 MV/cm became much larger, the dc electric strength showed significant decrease, showing that the dc breakdown is governed by the thermal process caused by Joule heating.
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苯乙酮包覆聚乙烯薄膜电击穿前空间电荷分布的观察
本文研究了外加电压和电极金属极性对单面苯乙酮涂覆低密度聚乙烯(LDPE)薄膜的导电和空间电荷形成直至电击穿的影响。在Au电极约0.5 MV/cm的电场下,涂覆苯乙酮的正极产生的导电电流远大于负极,说明电极界面处苯乙酮的存在促进了空穴注入而不是电子注入。在Al电极的情况下,这种极性依赖性是相反的,表明Al电极的电子注入更强。然而,在0.5 MV/cm以上,这些极性效应发生相反的变化。从空间电荷分布和苯乙酮无涂层侧电极载流子注入的角度解释了高场区极性效应的变化。随着0.5 MV/cm以上电流的极性变大,直流电强度显著降低,说明直流击穿受焦耳加热引起的热过程控制。
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