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Influence of Charge Density on Charge Decay in Chemically Modified Polypropylene Films

机译:电荷密度对化学改性聚丙烯薄膜中电荷衰减的影响

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Previous work has shown that surface modification with orthophosphoric acid can significantly enhance the charge stability on polypropylene (PP) surface by generating deeper traps. In the present study, thermally stimulated potential-decay measurements revealed that the chemical treatment may also significantly increase the number of available trapping sites on the surface. Thus, as a consequence, the so-called “cross-over” phenomenon, which is observed on as-received and thermally treated PP electrets, may be overcome in a certain range of initial charge densities. Furthermore, the discharge behavior of chemically modified samples indicates that charges can be injected from the treated surface into the bulk, and/or charges of opposite polarity can be pulled from the rear electrode into the bulk at elevated temperatures and at the high electric fields that are caused by the deposited charges. In the bulk, a lack of deep traps causes rapid charge decay already in the temperature range around 95 °C.
机译:先前的工作表明,用正磷酸进行表面改性可以通过产生更深的陷阱来显着提高聚丙烯(PP)表面的电荷稳定性。在本研究中,热刺激电位衰减测量结果表明,化学处理还可能显着增加表面上可用的捕获位点的数量。因此,因此,可以在一定范围的初始电荷密度下克服所谓的“交越”现象,这种现象在原样和热处理的PP驻极体上观察到。此外,化学修饰样品的放电行为表明,可以在升高的温度和高电场下,将电荷从处理后的表面注入到主体中,和/或将相反极性的电荷从后电极拉入主体中。是由存放的费用引起的。大体上,缺乏深陷阱会导致已经在95°C左右的温度范围内迅速产生电荷衰减。

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