化学
动力学
电化学
大气(单位)
金属
碳酸盐
化学工程
化学稳定性
透射电子显微镜
热力学
物理化学
电极
有机化学
量子力学
物理
工程类
作者
Yuqi Li,Qiunan Liu,Siyuan Wu,Lin Geng,Jelena Popović,Yu Li,Chen Zhao,Haibo Wang,Yuqi Wang,Tao Dai,Yang Yang,Haiming Sun,Yaxiang Lu,Liqiang Zhang,Yongfu Tang,Ruijuan Xiao,Hong Li,Liquan Chen,Joachim Maier,Jianyu Huang,Yong‐Sheng Hu
摘要
Li and Na metals with high energy density are promising in application in rechargeable batteries but suffer from degradation in the ambient atmosphere. The phenomenon that in terms of kinetics, Li is stable but Na is unstable in dry air has not been fully understood. Here, we use in situ environmental transmission electron microscopy combined with theoretical simulations and reveal that the different stabilities in dry air for Li and Na are reflected by the formation of compact Li2O layers on Li metal, while porous and rough Na2O/Na2O2 layers on Na metal are a consequence of the different thermodynamic and kinetics in O2. It is shown that a preformed carbonate layer can change the kinetics of Na toward an anticorrosive behavior. Our study provides a deeper understanding of the often-overlooked chemical reactions with environmental gases and enhances the electrochemical performance of Li and Na by controlling interfacial stability.
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