聚合物薄膜中的电荷和极化动力学

K. Holdik, W. Eisenmenger
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引用次数: 12

摘要

近年来,非破坏性方法的发展使得在1 μm分辨率范围内研究介电材料中的层状电荷和偶极分布成为可能。这些不使用数学反卷积技术的直接方法是LIPP-[1]和pps -方法[2]。在几乎理想的声阶跃激励下,pps方法可以得到薄膜内纵向压电分布的1:1图像,如Haardt对PVDF的证明[3]。结果与在不完全极化薄膜中电荷补偿极化层的结果一致。为了获得更多关于这些分布的可能原因的信息,我们研究了轮询过程中阶跃响应信号的时间依赖性。补偿电荷的性质似乎是离子的,与电导的压力依赖性一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Charge and polarization dynamics in polymer films
Recently nondestructive methods have been developed which make it possible to investigate layered charge and dipolar distributions in dielectric materials within an order of 1 μm resolution. These direct methods which do not use mathematical deconvolution techniques are the LIPP-[1] and the PPS-method [2]. The PPS-method operating with an almost ideal acoustic step excitation results in getting an 1:1-image of the longitudinal piezoelectric distribution within a thin film as demonstrated for PVDF by Haardt [3J. The results are consistent with charge compensated polarization layers within incompletely poled films. In order to obtain more informations on the possible reasons for these distributions we investigated the time dependence of the step response signal during poling. The nature of the compensation charges appears to be ionic as consistent with the pressure dependence of conductance.
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