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Cycling Performances of Lithium-Air Cells Assembled with Mixed Electrolytes of Ionic Liquid and Diethylene Glycol Diethyl Ether

机译:用离子液体和二乙二醇二乙醚混合电解质组装的锂 - 空气电池的循环性能

摘要

Ionic liquid-based electrolytes composed of diethylene glycol diethyl ether (DEGDEE) and 1-butyl-1-methyl pyrrolidinium bis(trifluoromethane) sulfonyl imide (BMP-TFSI) were prepared and evaluated for non-aqueous lithium-air cell applications. Adding an appropriate amount of BMP-TFSI to the electrolyte solution improved ionic conductivity, oxidative stability and interfacial stability, and reduced flammability and volatility. When BMP-TFSI was mixed with DEGDEE under optimal condition, the cycle performance was remarkably improved as compared with either the organic electrolyte or ionic liquid electrolyte alone. The Li-air cell assembled with an optimized ionic liquid-based mixed electrolyte initially delivered a high discharge capacity of 10,620 mAh g(-1) and exhibited good cycling stability exceeding 150 cycles at a current density of 0.1 mA cm(-2) by limiting depth of discharge to 500 mAh g(-1). (C) The Author(s) 2015. Published by ECS.
机译:制备了由二甘醇二乙醚(DEGDEE)和1-丁基-1-甲基吡咯烷鎓双(三氟甲烷)磺酰基酰亚胺(BMP-TFSI)组成的离子液体电解质,并评估了其在非水锂空气电池中的应用。向电解液中添加适量的BMP-TFSI可改善离子电导率,氧化稳定性和界面稳定性,并降低易燃性和挥发性。当在最佳条件下将BMP-TFSI与DEGDEE混合时,与单独使用有机电解质或离子液体电解质相比,循环性能显着提高。装有优化的基于离子液体的混合电解质的锂空气电池最初提供了10,620 mAh g(-1)的高放电容量,并在0.1 mA cm(-2)的电流密度下表现出超过150次循环的良好循环稳定性。将放电深度限制为500 mAh g(-1)。 (C)2015年作者。由ECS出版。

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