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首页> 外文期刊>Journal of power sources >Ionic liquid electrolyte for room to intermediate temperature operating Li metal batteries: Dendrite suppression and improved performance
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Ionic liquid electrolyte for room to intermediate temperature operating Li metal batteries: Dendrite suppression and improved performance

机译:离子液体电解质用于中间温度操作Li金属电池:树突抑制和改进的性能

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摘要

Lithium metal is considered to be the ultimate negative electrode material to maximize the energy density of lithium secondary batteries based on its high theoretical specific capacity and low redox potential. Despite these outstanding features, lithium metal is facing difficulties in overcoming of dendritic lithium growth, low coulombic efficiency, and poor cycle performance. In this study, the Li [FSA]41-ethy1-3-methylimidazoliuml [FSA] (FSA(-) = bis(fluorosulfonyl)amide) ionic liquid system is proposed to be an electrolyte for wide temperature operable Li metal batteries. The ionic liquid presents unique properties of suppressing Li dendrite growth, dead Li accumulation, and long-life cycling performance across 25 and 90 degrees C. Full-cell tests with Li2FeP2O7 positive electrode and this ionic liquid electrolyte demonstrate the feasibility of operating lithium metal batteries from room to intermediate temperature. The full cell retained 99.1% of its initial capacity after 200 cycles with an average coulombic efficiency of 99.97%.
机译:锂金属被认为是最终的负极材料,以基于其高理论特异性容量和低氧化还原潜力来最大化锂二次电池的能量密度。尽管具有这些优异的特点,但锂金属越来越难以克服树突锂生长,低库仑效率,循环性能差。在该研究中,提出了Li [FSA] 41-乙烯1-3-甲基咪唑[FSA](FSA( - )=双(氟磺酰基)酰胺)离子液体体系是宽温度可操作的Li金属电池的电解质。离子液体呈现出抑制Li Dendrite生长,死锂积累和长寿命的独特性质,横跨25和90摄氏度的循环循环性能。用Li2FeP2O7正极和该离子液体电解质的全细胞试验表明了操作锂金属电池的可行性从房间到中间温度。 200次循环后,全细胞占其初始容量的99.1%,平均库仑效率为99.97%。

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