溶剂化
电解质
电池(电)
调制(音乐)
计算机科学
材料科学
化学
物理
离子
物理化学
电极
热力学
功率(物理)
有机化学
声学
作者
Dapeng Liu,Zerui Fu,Zonghua Wang,Xiangrui Gong,Tingting You,Haohan Yu,Ying Jiang,Yu Zhang
标识
DOI:10.1002/anie.202425277
摘要
As the "blood" of Li‐O2 batteries (LOBs), electrolytes with various solvation structures of Li+ can greatly influence the composition of solid electrolyte interphase (SEI) on anode and the growth kinetics of Li2O2 on cathode, and further the battery performance. However, achieving delicate modulation of the multi‐composition electrolytes remains significantly challenging to simultaneously give consideration to both the anode and cathode reactions. In this work, we employed Bayesian optimization to develop advanced electrolytes for LOBs, enabling the formation of a stable inorganic‐rich SEI, and modulation of Li2O2 morphologies. Thus obtained LOBs using the optimized dual‐solvent electrolyte could deliver a discharge capacity of 14,063 mAh g−1 at a current density of 500 mA g−1, which is far higher than those using the single‐solvent electrolytes. This study not only highlights the critical role of the solvation structure for improving the battery performance, but also provides new insights and important theoretical guidance for delicate modulation of electrolyte compositions.
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