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Space charge characteristics of thermally and electrically aged polyimide films

机译:热和电老化的聚酰亚胺薄膜的空间电荷特性

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In order to study effects of thermal and electrical aging on space charge characteristics of polyimide (PI) films, accelerated aging experiments were carried out under the conditions of 150C, -50 kV/mm up to 90 days. In addition, field emission scanning electron microscopy, X-ray diffraction, conduction current and space charge were tested to reflect the microstructure, crystalline, and charge transport characteristics, respectively. Results show that the width of surface defeat increases and the regularity degree of short-range atomic arrangement decreases under thermal and electrical aging. Besides, the conduction current monotonously increases with long-term aging. Space charge measurement results indicate that during the process of accelerated thermal and electrical aging, heterocharge firstly accumulated near the electrodes, and the amount of it gradually decreases with the increase of aging time. Meanwhile, homocharges started to accumulate and replace the heterocharge accumulation finally. It is analyzed that the imide linkage and ether linkage are broken during the long-term accelerated aging, and the surface of PI reacts with oxygen, producing gas and forming defects in the surface. On the one hand, the break of linkage forms small molecular groups, resulting in the decrease of the regularity degree of short-range atomic arrangement. On the other hand, it forms new shallow traps, resulting in the decrease of average trap depth and the increase of mobility. Both of them affect the charge transport, resulting the change of charge distribution.
机译:为了研究热和电老化对聚酰亚胺(PI)薄膜空间电荷特性的影响,在150℃,-50 kV / mm的条件下进行了长达90天的加速老化实验。此外,还测试了场发射扫描电子显微镜,X射线衍射,传导电流和空间电荷,以分别反映其微观结构,晶体和电荷传输特性。结果表明,在热和电老化条件下,表面破坏的宽度增加,短程原子排列的规则性降低。此外,传导电流随着长期老化而单调增加。空间电荷测量结果表明,在加速电热老化过程中,首先在电极附近积累了杂电荷,随着老化时间的增加,其数量逐渐减少。同时,均电荷开始积累,最终取代了杂电荷的积累。分析表明,酰亚胺键和醚键在长期加速老化过程中会断裂,PI的表面会与氧气发生反应,产生气体并在表面形成缺陷。一方面,键的断裂形成小分子基团,导致短程原子排列的规则度降低。另一方面,它形成了新的浅层陷阱,导致平均陷阱深度的减小和迁移率的增加。它们都影响电荷传输,从而导致电荷分布的变化。

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