氧化还原
氧气
电化学
锂(药物)
氧化物
化学
离子
材料科学
无机化学
光化学
化学工程
电极
物理化学
有机化学
内分泌学
工程类
医学
作者
Fanghua Ning,Biao Li,Song Jin,Yuxuan Zuo,Huaifang Shang,Zimeng Zhao,Zhen Yu,Wangsheng Chu,Kun Zhang,Guang Feng,Xiayan Wang,Dingguo Xia
标识
DOI:10.1038/s41467-020-18423-7
摘要
Abstract Li-rich layered oxide cathode materials show high capacities in lithium-ion batteries owing to the contribution of the oxygen redox reaction. However, structural accommodation of this reaction usually results in O–O dimerization, leading to oxygen release and poor electrochemical performance. In this study, we propose a new structural response mechanism inhibiting O–O dimerization for the oxygen redox reaction by tuning the local symmetry around the oxygen ions. Compared with regular Li 2 RuO 3 , the structural response of the as-prepared local-symmetry-tuned Li 2 RuO 3 to the oxygen redox reaction involves the telescopic O–Ru–O configuration rather than O–O dimerization, which inhibits oxygen release, enabling significantly enhanced cycling stability and negligible voltage decay. This discovery of the new structural response mechanism for the oxygen redox reaction will provide a new scope for the strategy of enhancing the anionic redox stability, paving unexplored pathways toward further development of high capacity Li-rich layered oxides.
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