表面充电:场和照片效果

M. Pépin, A. Younsi, H. Wintle
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引用次数: 2

摘要

从与绝缘体表面齐平的电极注入电荷,研究了介电体表面电荷的积聚。测试材料为PET(聚对苯二甲酸乙二醇酯)19 /spl μ m和PI 25 /spl μ l μ m。对LDPE(低密度聚乙烯)和尼龙6-6也进行了一些试验。采用波长为4 W的短波管(254 nm)进行紫外照射,照射强度约为200 /spl mu/W/cm/sup 2/。结果表明,如果没有紫外线照射,效果很小。在气体环境中,电极边缘有同电荷注入,可能是由于阳极附近的塑料和阴极附近的电极金属的光电离。一旦发射,负电荷沿着表面传播,其迁移率与典型的离子运动的整体迁移率相当。在真空中,表面也会发生一般的光电离,这种情况不断增加,直到表面的原始场被取消。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Surface charging: Field and photo effects
Charge build-up on the surface of a dielectric is investigated on the injection of charge from electrodes lying flush with the insulator surface. The materials tested were 19 /spl mu/m PET (polyethylene terephthalate) and 25 /spl mu/m PI. Some tests were also done on LDPE (low-density polyethylene) and Nylon 6-6. UV (ultraviolet) irradiation was carried out with a 4 W short wavelength tube (254 nm), giving an intensity of about 200 /spl mu/W/cm/sup 2/ at the sample plane. The results suggest that there is little effect without UV light. In gaseous ambients, there is homocharge injection at the electrode edges, presumably due to photoionization of the plastic near the anode, and of the electrode metal near the cathode. Once launched, negative charges propagate along the surface with a mobility comparable to a bulk mobility typical of ionic motion. In vacuum, a general photoionization of the surface also occurs, and this builds up until the original field at the surface is annulled.<>
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