氧化还原
氧气
阴极
格子(音乐)
化学
化学物理
晶格能
过渡金属
无机化学
锂(药物)
晶体结构
结晶学
物理化学
催化作用
物理
有机化学
内分泌学
医学
声学
作者
Enyue Zhao,Qinghao Li,Fanqi Meng,Jue Liu,Junyang Wang,Lunhua He,Zheng Jiang,Qinghua Zhang,Xiqian Yu,Lin Gu,Wanli Yang,Hong Li,Fangwei Wang,Xuejie Huang
标识
DOI:10.1002/anie.201900444
摘要
Lattice-oxygen redox (l-OR) has become an essential companion to the traditional transition-metal (TM) redox charge compensation to achieve high capacity in Li-rich cathode oxides. However, the understanding of l-OR chemistry remains elusive, and a critical question is the structural effect on the stability of l-OR reactions. Herein, the coupling between l-OR and structure dimensionality is studied. We reveal that the evolution of the oxygen-lattice structure upon l-OR in Li-rich TM oxides which have a three-dimensional (3D)-disordered cation framework is relatively stable, which is in direct contrast to the clearly distorted oxygen-lattice framework in Li-rich oxides which have a two-dimensional (2D)/3D-ordered cation structure. Our results highlight the role of structure dimensionality in stabilizing the oxygen lattice in reversible l-OR, which broadens the horizon for designing high-energy-density Li-rich cathode oxides with stable l-OR chemistry.
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