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Highly Conductive Oriented PEO-Based Polymer Electrolytes

机译:高导电性PEO基聚合物电解质

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This contribution presents an overview of the study of the effect of stretching on semicrystalline and amorphous complexes of poly(ethylene oxide) (PEO) with different salts, such as lithium iodide, lithium trifluoromethane-sulfonate, lithium hexafluoroarsenate, lithium bis(oxalato)borate and lithium trifluoromethanesulfonimide. In spite of the conventional belief that ion transport in polymer electrolytes (PE) is mediated primarily by polymer segmental motion, we suggest that ion transport occurs preferentially along the PEO helical axis, at least in the crystalline phase. It was found that the more amorphous the PE, the less its lengthwise conductivity is influenced by stretching. It is suggested that the rate-determining step of ion conduction in semicrystalline LiX:P(EO)_(20), polymer electrolytes below the melting point (T_m) is "interchain" hopping.
机译:该贡献概述了拉伸对具有不同盐(例如碘化锂,三氟甲烷磺酸锂,六氟砷酸锂,双(草酸酯)硼酸锂)的聚环氧乙烷(PEO)的半结晶和无定形络合物的影响的研究概述。和三氟甲烷磺酰亚胺锂。尽管常规认为聚合物电解质(PE)中的离子迁移主要是由聚合物的分段运动介导的,但我们建议离子迁移优先沿PEO螺旋轴发生,至少在结晶相中发生。发现PE越是无定形,其纵向导电性受拉伸的影响就越小。建议在低于熔点(T_m)的半结晶LiX:P(EO)_(20),聚合物电解质中离子传导的速率确定步骤是“链间”跳跃。

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