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Ion-conductivity study and anomalous diffusion analysis of plasticized gelatin films

机译:增塑明胶薄膜的离子电导率研究与反常扩散分析

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In this article, we report a study on ion conduction in gelatin films with different concentrations of glycerol as a plasticizer; these films might be a candidate for electrolyte materials in solid polymer batteries. The ion conductivity was appreciable, showing a maximum of about 9.14 × 10 ~(-3) S/m at room temperature without the addition of any ionic salt. Analysis of the impedance measurements was done with a model based on material properties instead of the usual equivalent circuit formalism, where circuit elements are difficult to interpret. Generalized calculus was used to model the anomalous diffusion in the system.
机译:在本文中,我们报告了有关使用不同浓度的甘油作为增塑剂的明胶薄膜中离子传导的研究。这些薄膜可能是固体聚合物电池中电解质材料的候选材料。离子电导率是可观的,在不添加任何离子盐的情况下,在室温下显示出最大值约为9.14×10〜(-3)S / m。阻抗测量的分析是基于材料特性的模型进行的,而不是通常的等效电路形式,因为在这种情况下很难解释电路元件。广义演算被用来模拟系统中的异常扩散。

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