材料科学
钠
兴奋剂
相变
氧化还原
阴极
氧化物
阳极
离子
化学工程
过渡金属
无机化学
电极
冶金
光电子学
物理化学
催化作用
化学
凝聚态物理
有机化学
工程类
物理
生物化学
作者
Yanxia Wang,Liguang Wang,He Zhu,Jun Chu,Yongjin Fang,Lina Wu,Ling Huang,Yang Ren,Cheng‐Jun Sun,Qi Liu,Xinping Ai,Hanxi Yang,Yuliang Cao
标识
DOI:10.1002/adfm.201910327
摘要
Abstract Layered transition metal oxides have drawn much attention as a promising candidate cathode material for sodium‐ion batteries. However, their performance degradation originating from strains and lattice phase transitions remains a critical challenge. Herein, a high‐concentration Zn‐substituted Na x MnO 2 cathode with strongly suppressed P2–O2 transition is investigated, which exhibits a volume change as low as 1.0% in the charge/discharge process. Such ultralow strain characteristics ensure a stable host for sodium ion storage, which significantly improves the cycling stability and rate capability of the cathode material. Also, the strong coupling between the highly reversible capacity and the doping content of Zn in Na x MnO 2 is investigated. It is suggested that a reversible anionic redox reaction can be effectively triggered by Zn ions and is also highly dependent on the Zn content. Such an ion doping strategy could shed light on the design and construction of stable and high‐capacity sodium ion host.
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