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Studies of dielectric and electrical properties of plasticized polymer nanocomposite electrolytes

机译:增塑聚合物纳米复合电解质的介电和电性能研究

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The effect of plasticizer (polyethylene glycol, PEG200) on dielectric and electrical properties of an ionically conducting polymer nanocomposites PEO_(25)-NaI + 5 wt.% DMMT (dodecyl amine modified Na~+-montmorillonite)+χwt.% PEG_(200) with different value of χ has been investigated At low frequency, the variation of relative dielectric constant with frequency shows the presence of material electrode interface polarization processes. The tangent loss peaks appearing at a characteristic frequency suggest the presence of relaxing dipoles in all the samples. On addition of plasticizer, the peak shifts towards higher frequency side suggesting the speed up the relaxation time. The electrical modulus formalism is used to study the ionic relaxation processes in these composites in terms of conductivity relaxation time. Analysis of electrical modulus and dielectric permittivity functions suggest that ionic and polymer segmental motions are strongly coupled. The frequency dependence of ac conductivity follows the universal power law with a small deviation in the low frequency region due to the electrode polarization effect.
机译:增塑剂(聚乙二醇,PEG200)对离子导电聚合物纳米复合材料PEO_(25)-NaI + 5 wt。%DMMT(十二烷基胺改性的Na〜+-蒙脱土)+ xwt。%PEG_(200)的介电和电性能的影响)在低频下研究了具有不同χ值的),相对介电常数随频率的变化表明存在材料电极界面极化过程。在特征频率处出现的切线损耗峰表明在所有样品中均存在弛豫偶极子。加入增塑剂后,峰移向较高频率侧,表明加速了弛豫时间。电导率形式用于研究电导率弛豫时间方面这些复合材料的离子弛豫过程。电模量和介电常数函数的分析表明,离子和聚合物的分段运动是强烈耦合的。交流电导率的频率依赖性遵循通用幂定律,由于电极极化效应,低频区域的偏差很小。

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