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Electrochemical performances of lithium ion battery using alkoxides of group 13 as electrolyte solvent

机译:13族醇盐作为电解质溶剂的锂离子电池的电化学性能

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Tris(methoxy polyethylenglycol) borate ester (B-PEG) and aluminum tris(polyethylenglycoxide) (Al-PEG) were used as electrolyte solvent for lithium ion battery, and the electrochemical property of these electrolytes were investigated. These electrolyt es, especially B-PEG, showed poor electrochemical stability, leading to insufficient discharge capacity and rapid degradation with cycling. These observations would be ascribed to the decomposition of electrolyte, causing formation of unstable passive layer on the surface of electrode in lithium ion battery at high voltage. However, significant improvement was observed by the addition of aluminum phosphate (AlPO{sub}4) powder into electrolyte solvent. AC impedance technique revealed that the increase of interfacial resistance of electrode/electrolyte during cycling was suppressed by adding AlPO{sub}4, and this suppression could enhance the cell capabilities. We infer that dissolved AlPO{sub}4 components formed electrochemically stable layer on the surface of electrode.
机译:使用三(甲氧基聚乙二醇)硼酸酯(B-PEG)和三(聚乙二醇乙醇)铝(Al-PEG)作为锂离子电池的电解质溶剂,研究了这些电解质的电化学性能。这些电解质,尤其是B-PEG,表现出较差的电化学稳定性,导致放电容量不足并随着循环而迅速降解。这些观察结果归因于电解质的分解,导致在高压下锂离子电池的电极表面上形成不稳定的钝化层。然而,通过将磷酸铝(AlPO {sub} 4)粉末添加到电解质溶剂中,观察到显着改善。交流阻抗技术表明,通过添加AlPO {sub} 4可以抑制循环过程中电极/电解质的界面电阻增加,这种抑制作用可以增强电池性能。我们推断,溶解的AlPO {sub} 4组分在电极表面形成了电化学稳定层。

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