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Charge Storage Capability of Cross-linked Polypropylene Electret Films

机译:交联聚丙烯驻极体薄膜的电荷存储能力

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摘要

Piezoelectrets, based on the bipolarity space-charge electret, become a new class of artificial piezoelectric functional materials. Their piezoelectric performances are relative to the charge storage capability of the material directly. In this paper, the storage stability and dynamic properties of the charges in the cross-linked polypropylene (XPP) electret films, treated by a hot-pressing process, are investigated by using the measurements of isothermal decay of the surface potential and open-circuit thermally stimulated discharge (TSD) current spectra. The results show that the charge storage stability of the positively charged samples is better than that of the negatively charged samples. When the pre-ageing temperatures are less than 90°C the surface potentials of positively charged samples still keep above 90% of the initial value after annealing for 5120min; while the values for the negatively charged samples are below 86%. The results also indicate that most of detrapped charges during TSD are retrapped in deeper traps. Therefore charge transport is controlled by a fast retrapping effect.
机译:基于双极性空间电荷驻极体的压电驻极体成为一类新型的人造压电功能材料。它们的压电性能直接与材料的电荷存储能力有关。本文利用表面电势的等温衰减和开路测量,研究了热压工艺处理后的交联聚丙烯(XPP)驻极体薄膜中电荷的存储稳定性和动态性质。热激发放电(TSD)电流谱。结果表明,带正电的样品的电荷存储稳定性优于带负电的样品。当预老化温度低于90°C时,经过5120min退火后,带正电的样品的表面电势仍保持在初始值的90%以上。带负电的样品的值低于86%。结果还表明,TSD期间大部分已释放的电荷被重新捕获到了更深的陷阱中。因此,电荷的传输受快速的重新俘获作用控制。

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