Li 2 O 2 Formation Electrochemistry and Its Influence on Oxygen Reduction/Evolution Reaction Kinetics in Aprotic Li-O 2 Batteries.

Small methods(2022)

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摘要
Aprotic Li-O batteries are regarded as the most promising technology to resolve the energy crisis in the near future because of its high theoretical specific energy. The key electrochemistry of a nonaqueous Li-O battery highly relies on the formation of Li O during discharge and its reversible decomposition during charge. The properties of Li O and its formation mechanisms are of high significance in influencing the battery performance. This review article demonstrates the latest progress in understanding the Li O electrochemistry and the recent advances in regulating the Li O growth pathway. The first part of this review elaborates the Li O formation mechanism and its relationship with the oxygen reduction reaction/oxygen evolution reaction electrochemistry. The following part discusses how the cycling parameters, e.g., current density and discharge depth, influence the Li O morphology. A comprehensive summary of recent strategies in tailoring Li O formation including rational design of cathode structure, certain catalyst, and surface engineering is demonstrated. The influence resulted from the electrolyte, e.g., salt, solvent, and some additives on Li O growth pathway, is finally discussed. Further prospects of the ways in making advanced Li-O batteries by control of favorable Li O formation are highlighted, which are valuable for practical construction of aprotic lithium-oxygen batteries.
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关键词
Li 2O 2 electrochemistry,Li 2O 2 growth pathway regulation,electrolytes,rational structure design,surface engineering
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