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首页> 外文期刊>Journal of power sources >Development of rechargeable lithium-bromine batteries with lithium ion conducting solid electrolyte
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Development of rechargeable lithium-bromine batteries with lithium ion conducting solid electrolyte

机译:具有锂离子传导性固体电解质的可充电锂溴电池的开发

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Electrochemical performances of a prototype lithium bromine battery (LBB) employing a solid electrolyte is investigated. The discharge capacity decreases with repeating charge/discharge cycles. Electrochemical impedance analysis reveals that the capacity fading is mainly due to increase in the interfacial resistance between an aqueous active material solution and a solid electrolyte. Based on the results of symmetric cells and structural analysis of the surface of the solid electrolyte immersed in Br-2 solutions, it is suggested that a Lit-depletion layer is formed on the surface of the solid electrolyte as a result of contact with bromine. Addition of tetraethylammonium bromide (TEABr) depresses the interfacial resistance, which results in improved cycleability. LBB with 1.0 M LiBr and 0.25 M TEABr shows discharge capacity of 139 mAh/g-LiBr and Coulombic efficiency of 99.6% at 5th cycle. (C) 2015 Elsevier B.V. All rights reserved.
机译:研究了使用固体电解质的原型溴化锂电池(LBB)的电化学性能。放电容量随着重复的充电/放电循环而降低。电化学阻抗分析表明,容量下降主要是由于活性物质水溶液和固体电解质之间的界面电阻增加。基于对称电池的结果以及浸入Br-2溶液中的固体电解质的表面的结构分析,建议由于与溴接触而在固体电解质的表面上形成了Lit耗尽层。加入四乙基溴化铵(TEABr)会降低界面电阻,从而改善循环性能。在第5个循环中,具有1.0 M LiBr和0.25 M TEABr的LBB的放电容量为139 mAh / g-LiBr,库仑效率为99.6%。 (C)2015 Elsevier B.V.保留所有权利。

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