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On the structural and impedance characteristics of Li- doped PEO, using n-butyl lithium in hexane as dopant

机译:己烷中正丁基锂作为掺杂剂的水丁基锂的结构和阻抗特性

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Nowadays polymer based solid state electrolytes for applications in rechargeable battery systems are highly sought after materials, pursued extensively by various research groups worldwide. Numerous methods are discussed in literature to improve the fundamental properties like electrical conductivity, mechanical stability and interfacial stability of polymer based electrolytes. The application of these electrolytes in Li-ion cells is still in the amateur state, due to low ionic conductivity, low lithium transport number and the processing difficulties. The present work is an attempt to study the effects of Li doping on the structural and transport properties of the polymer electrolyte, poly-ethelene oxide (PEO) (Molecular weight: 200,000).Li doped PEO was obtained by treating PEO with n-Butyllithium in hexane for different doping concentrations. Structural characterization of the samples was done by XRD and FTIR techniques. Impedance measurements were carried out to estimate the ionic conductivity of Li doped PEO samples. It is seen that, the crystallinity of the doped PEO decreases on increasing the doping concentration. XRD and FTIR studies support this observation. It is inferred that, ionic conductivity of the sample is increasing on increasing the doping concentration since less crystallinity permits more ionic transport. Impedance measurements confirm the results quantitatively.
机译:如今,基于聚合物的固态电解质,用于可充电电池系统中的应用,高度追捧,在全球各种研究群体广泛追求。在文献中讨论了许多方法,以改善基于聚合物基电解质的电导率,机械稳定性和界面稳定性等基本性质。由于低离子电导率,低锂传输数和加工困难,这些电解质在锂离子细胞中的应用仍然处于业余状态。目前的作品是通过用正丁基锂处理PEO来研究Li掺杂对聚合物电解质,聚环氧(PEO)(分子量:200,000).li掺杂PEO的效果的效果。在己烷中用于不同掺杂浓度。样品的结构表征通过XRD和FTIR技术完成。进行阻抗测量以估计Li掺杂PEO样品的离子电导率。可以看出,掺杂PEO的结晶度降低了增加掺杂浓度。 XRD和FTIR研究支持这一观察。推断,由于较少的结晶度允许更多的离子转运,样品的离子电导率越来越大。阻抗测量定量确认结果。

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