等离子体处理对聚丙烯储电荷表面的影响

Hui-juan Zhao, D. Tu, Liang-yu Gao, Yaonan Liu, K. Kao
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引用次数: 0

摘要

在低温下800 khz空气等离子体处理的聚丙烯样品表面,电荷存储水平增加。发现这种电荷存储在很大程度上取决于等离子体处理和电荷注入条件。在最佳条件下,等离子体处理的聚丙烯平均可多存储约50%的电荷。与未经处理的样品相比,热激发的电荷衰减变得慢得多。红外吸收光谱和光电导光谱表明,等离子体处理增强了C=O和C=C键的形成和结晶度,导致极性基团和深阱的增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of plasma treatment of surfaces of charge storage in polypropylene
On the surfaces of polypropylene samples treated in an 800-kHz plasma of air at low temperatures, the level of charge storage is increased. This charge storage is found to depend strongly on the plasma treatment and charge injection conditions. Under optimal conditions, polypropylene with plasma treatment can store about 50% on average more charge. The thermally stimulated charge decay becomes much slower than for samples without treatment. Infrared absorption and photoconductivity spectra indicate that the plasma treatment enhances the formation of C=O and C=C bonds and the degree of crystallinity, which results in an increase of polar groups and deep traps.<>
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