Photostimulated discharge of corona and electron-beam charged electret polymers

A. Mellinger, F.C. Gonzalez, R. Gerhard-Multhaupt, L. F. Santos, R. Faria
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引用次数: 5

Abstract

Despite the long-time use of space-charge electrets in various commercial applications, the mechanism of charge storage is still poorly understood. To study the energy distribution of deep traps, photostimulated discharge spectra of electron-beam and corona-charged polytetrafluoroethylene (PTFE), polyethylene terephthalate (PETP) and cellular polypropylene (PP) films were recorded for wavelengths between 200 and 400 nm. In addition, space-charge profiles were measured using the piezoelectrically generated pressure-step (PPS) method in order to monitor the detrapping process. Strong discharge currents of up to 15 pA/cm/sup 2/ were found in PETP around the UV absorption edge near 310 nm. Initial results show a quantitative depopulation of near-surface charges, whereas only partial detrapping could be achieved for bulk charges. Three distinct trapping levels could be identified in PP films.
电晕和电子束带电驻极体聚合物的光刺激放电
尽管空间电荷驻极体在各种商业应用中长期使用,但电荷存储的机制仍然知之甚少。为了研究深阱的能量分布,记录了电子束和带电晕的聚四氟乙烯(PTFE)、聚对苯二甲酸乙二醇酯(PETP)和蜂窝聚丙烯(PP)薄膜在200 ~ 400 nm波长范围内的光激发放电光谱。此外,利用压电产生的压力阶跃(PPS)方法测量空间电荷分布,以监测去除过程。PETP在310 nm附近的紫外吸收边缘处发现了高达15 pA/cm/sup 2/的强放电电流。初步结果表明,近地表电荷数量减少,而大块电荷只能实现部分减少。在PP薄膜中可以识别出三个不同的捕获水平。
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