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An all solid-state Li ion battery composed of low molecular weight crystalline electrolyte

机译:一种由低分子量晶体电解质组成的所有固态锂离子电池

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Conduction mechanisms in solid polymer electrolytes of Li ion batteries have always been a concern due to their theoretical limitation in conductivity value. In an attempt to increase the ionic conductivity of solid state electrolytes, used in lithium ion secondary batteries (LiBs), we studied the synthesis and conductive properties of a low molecular weight cyclic organoboron crystalline electrolyte. This electrolyte was expected to show better electrochemical properties than solid polymer electrolytes. The electrolyte was doped with LiTFSI salt via two different methods viz. (1) facile grinding of the crystalline sample with lithium salt under a nitrogen atmosphere and (2) a conventional method of solvent dissolution and evaporation under vacuum. The electrochemical properties were studied under specific composition of Li salt. The presence of crystallinity in the electrolyte can be considered as an important factor behind the high ionic conductivity of an all solid electrolyte of this type. Charge–discharge properties of the cell using the electrolyte were investigated in anodic half-cell configuration.
机译:Li离子电池的固体聚合物电解质中的传导机制始终是由于其导电性值的理论限制。在试图增加用于锂离子二次电池(LIBS)的固态电解质的离子电导率,我们研究了低分子量环状有机硼晶电解质的合成和导电性能。该电解质预期显示比固体聚合物电解质更好的电化学性质。通过两种不同的方法掺杂电解质掺杂两种不同的方法。 (1)在氮气氛下,在氮气氛下与锂盐进行结晶样品的磨削,并在真空下常规溶剂溶解和蒸发方法。在Li盐的特定组合物下研究了电化学性质。电解质中的结晶度的存在可以被认为是这种类型的所有固体电解质的高离子导电性背后的重要因素。在阳极半电池构型中研究了使用电解质的电池电荷放电性能。

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