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明胶-高氯酸锂薄膜的形态和离子电导率:分数扩散分析。

Morphology and ion-conductivity of gelatin-LiClO4 films: fractional diffusion analysis.

机构信息

Condensed Matter Physics Research Centre, Physics Department, Jadavpur University, Kolkata 700032, India.

出版信息

J Phys Chem B. 2012 Sep 13;116(36):11362-9. doi: 10.1021/jp306205h. Epub 2012 Sep 4.

Abstract

Biopolymers are expected to replace synthetic polymers in the quest for cost-effective, environment friendly, and pollution free technology. We report here a study on gelatin films with different concentrations of lithium perchlorate, which may be a candidate for electrolyte material in solid polymer batteries. Morphology studies and impedance spectroscopy both are done on the same set of samples. We study the microstructure of the film by SEM and try to see if a correlation between impedance spectroscopy results and features of gel morphology can be identified. A network structure is revealed in the SEM images where details of the network parameters appear to depend on the salt fraction. Analysis of the impedance measurements is done using a physically meaningful model based on material properties instead of the usual equivalent circuit formalism, where circuit elements are difficult to interpret. We find that anomalous diffusion of charge carriers plays an important role; this is incorporated through a fractional calculus approach.

摘要

生物聚合物有望在寻求具有成本效益、环保且无污染的技术的过程中取代合成聚合物。我们在此报告了一项关于不同浓度高氯酸锂明胶薄膜的研究,该薄膜可能是用于固态聚合物电池电解质材料的候选物。对同一组样品进行了形貌研究和阻抗谱研究。我们通过 SEM 研究了薄膜的微观结构,并试图确定阻抗谱结果和凝胶形态特征之间是否存在相关性。在 SEM 图像中揭示了一种网络结构,其中网络参数的细节似乎取决于盐的分数。使用基于材料特性而不是通常的等效电路形式的物理意义模型对阻抗测量进行分析,因为在等效电路形式中,电路元件难以解释。我们发现,电荷载流子的反常扩散起着重要作用;这是通过分数微积分方法来实现的。

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