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首页> 外文期刊>Electrochimica Acta >Improving cyclic stability of lithium cobalt oxide based lithium ion battery at high voltage by using trimethylboroxine as an electrolyte additive
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Improving cyclic stability of lithium cobalt oxide based lithium ion battery at high voltage by using trimethylboroxine as an electrolyte additive

机译:通过使用三甲基环硼氧烷作为电解质添加剂改善锂钴氧化物基锂离子电池在高压下的循环稳定性

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Trimethylboroxine (TMB) is used as electrolyte additive to improve the cyclic stability of LiCoO2/graphite full cell under high voltage. It is found that capacity retention of LiCoO2/graphite cell at 0.3C rate after 200 cycles between 3.0 similar to 4.5 V is improved from 29 % to 66 % by applying 0.5 % (by weight) TMB in EC-based electrolyte. Charge-discharge tests on graphite/Li and LiCoO2/Li half cells demonstrate that the improvement in cyclic stability of the full cell results from the contribution of TMB to the enforced stability of LiCoO2 cathode. Cyclic voltammogram shows that TMB is oxidized preferentially to the EC-based electrolyte, while physical characterizations, from SEM, TEM, FTIR and XPS, indicate that TMB helps build a thin but protective film on LiCoO2, which improves the interfacial stability of high voltage electrode/electrolyte. (C)2015 Elsevier Ltd. All rights reserved.
机译:三甲基环硼氧烷(TMB)用作电解质添加剂可改善LiCoO2 /石墨全电池在高压下的循环稳定性。发现通过在EC基电解质中施加0.5%(重量)的TMB,在3.0(类似于4.5V)之间的200次循环之后,以0.3C的速率在0.3C速率下LiCoO 2 /石墨电池的容量保持率从29%提高到66%。对石墨/ Li和LiCoO2 / Li半电池的充放电测试表明,全电池循环稳定性的提高是由于TMB对LiCoO2阴极增强的稳定性的贡献。循环伏安图显示,TMB优先被氧化为基于EC的电解质,而SEM,TEM,FTIR和XPS的物理表征表明,TMB有助于在LiCoO2上形成薄而保护的膜,从而改善了高压电极的界面稳定性/电解质。 (C)2015 Elsevier Ltd.保留所有权利。

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