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首页> 外文期刊>Bulletin of materials science >Transient charging and discharging current study in pure PVF and PVF/PVDF fluoro polyblends for application in microelectronics
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Transient charging and discharging current study in pure PVF and PVF/PVDF fluoro polyblends for application in microelectronics

机译:纯PVF和PVF / PVDF氟混纺中用于微电子学的瞬态充电和放电电流研究

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摘要

The transient current were analysed by considering the effect of variation of forming time, temperature, field and composition of blend specimens. Measurements indicated that transient charging and discharging currents exhibited thermally activated character but did not show mirror image behaviour at different temperatures and field values. The log e???a€“log e?‘? plots were found to follow the Curiea€“Von Schweidler law with the value of decay constant `e?‘?a€? lying in the range of 0.029a€“2.9456. These observed characteristics also indicated that the transient charging in PVF:PVDF fluoro polyblends occur partly due to orientation of dipoles but predominantly due to trapped space charges and hopping of charge carriers amongst localized states. The modification in transient behaviour on blending PVDF with PVF have been explained on the basis of plasticization effect which increases free volume and molecular mobility and e?‘?g modification in the trap structure.
机译:考虑到成形时间,温度,场和混合试样组成的变化对瞬态电流的影响。测量表明,瞬时充电和放电电流表现出热激活特性,但在不同温度和场值下未显示镜像行为。日志e ??? a?log e?'?发现这些图遵循居里叶“冯·斯威德勒定律”,其衰减常数为“ e”。范围为0.029a€2.9456。这些观察到的特征还表明,PVF:PVDF氟多掺合物中的瞬态充电部分是由于偶极子的取向而发生的,而主要是由于捕获的空间电荷和局部状态中电荷载流子的跳跃所致。在增塑作用的基础上解释了将PVDF与PVF混合时瞬态行为的改变,这种作用增加了自由体积和分子迁移率,并在陷阱结构中进行了e?’? g 修饰。

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