Investigations on Ionic Conductivity of Nanocomposite Solid Polymer Electrolytes (PEG)xLiCF3SO3:(SiO2)y

R. V. Patil, R. Damle
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Abstract

Polymers complexed with lithium salts are promising for use as solid electrolytes in solid-state lithium batteries. However, the key issue is the ionic conductivity and the process of enhancing it for better performance. Polyethylene glycol-based solid polymer electrolytes complexed with lithium salts are being investigated to explore their suitability in battery applications. In the present work, we report the investigations carried out on PEG-based solid polymer electrolyte complexed with lithium tri-fluoromethanesulfonate (LiCF3SO3). The ionic conductivity profile as a function of salt content is studied. The effect of the addition of inert nanofiller SiO2 is also investigated to understand the mechanism of enhancement of ionic conductivity. The preparation of the nanocomposite solid polymer electrolytes and characterization by other techniques like powder XRD, IR spectroscopy, thermal measurements and conductivity profile obtained from AC impedance measurements are discussed to get an insight into the mechanism of ion transport and the influence of the addition of nanofiller.
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纳米复合固体聚合物电解质(PEG)xLiCF3SO3:(SiO2)的离子电导率研究
与锂盐络合的聚合物有望用作固态锂电池的固体电解质。然而,关键问题是离子电导率和提高离子电导率以获得更好性能的过程。研究了聚乙二醇基固体聚合物电解质与锂盐的络合,以探索其在电池中的适用性。在本工作中,我们报道了聚乙二醇基固体聚合物电解质与三氟甲烷磺酸锂(LiCF3SO3)络合的研究。研究了离子电导率随盐含量的变化规律。研究了惰性纳米填料SiO2的加入对离子电导率增强的作用机制。讨论了纳米复合固体聚合物电解质的制备和其他技术的表征,如粉末XRD, IR光谱,热测量和交流阻抗测量获得的电导率曲线,以深入了解离子传输的机制和纳米填料的添加对离子传输的影响。
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