线性低密度聚乙烯电荷捕获和电导率的本体改性

M. Perlman, S. Haridoss
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引用次数: 12

摘要

在“纯”线性低密度聚乙烯树脂中加入抗氧化剂、中性酞菁和二氧化钛,并挤压成膜。采用TSCD和开路、短路TSC测量了电荷存储和导电性能;和TSPC。抗氧化剂增加了负离子和正离子的储存水平,降低了传导活化能,但对寿命影响不大。0.01 wt. %的酞菁氨酸增加了黑暗中的寿命(x 5)和传导活化能。笼状胺结构可引起捕获。5 wt. %的二氧化钛使充电寿命增加了大约7倍。缺陷陷阱在低浓度下被退火,而二氧化钛本身在所有浓度下都引入了新的深层陷阱。加性矩阵边界捕获是后两种加性的另一种可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bulk modification of charge trapping and conductivity in linear low density polyethylene
Antioxidants, neutral phthalocyanine and titanium dioxide were added to "pure" linear low density polyethylene resin, and films were extruded. Charge storage, and conduction properties, were measured using TSCD and open and short circuit TSC; and TSPC, respectively. Antioxidants increased negative and positive storage level and reduced conduction activation energies, but had little effect on lifetime. 0.01 wt. % of phthalocyanine increased lifetime in the dark (x 5) and conduction activation energy. Trapping may take place by the cage-like amine structure. 5 wt. % of titanium dioxide increased charge lifetime by a factor of roughly 7. Defect traps were annealed out at low concentrations, and new deep traps introduced by the titanium dioxide itself at all concentrations. Additive-matrix boundary trapping is another possibility for the latter two additives.
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