阴极
材料科学
氧化物
图层(电子)
过渡金属
离子
化学工程
金属
电化学
纳米技术
电极
化学
冶金
催化作用
工程类
物理化学
有机化学
生物化学
作者
Wenhua Zuo,Xiangsi Liu,Jimin Qiu,Dexin Zhang,Zhu-mei Xiao,Jisheng Xie,Fucheng Ren,Jinming Wang,Yixiao Li,Gregorio F. Ortiz,Wen Wen,Shunqing Wu,Ming-Sheng Wang,Riqiang Fu,Yong Yang,Wenhua Zuo,Xiangsi Liu,Jimin Qiu,Dexin Zhang,Zhu-mei Xiao
标识
DOI:10.1038/s41467-021-25074-9
摘要
Abstract Layered transition metal oxides are the most important cathode materials for Li/Na/K ion batteries. Suppressing undesirable phase transformations during charge-discharge processes is a critical and fundamental challenge towards the rational design of high-performance layered oxide cathodes. Here we report a shale-like Na x MnO 2 (S-NMO) electrode that is derived from a simple but effective water-mediated strategy. This strategy expands the Na + layer spacings of P2-type Na 0.67 MnO 2 and transforms the particles into accordion-like morphology. Therefore, the S-NMO electrode exhibits improved Na + mobility and near-zero-strain property during charge-discharge processes, which leads to outstanding rate capability (100 mAh g −1 at the operation time of 6 min) and cycling stability (>3000 cycles). In addition, the water-mediated strategy is feasible to other layered sodium oxides and the obtained S-NMO electrode has an excellent tolerance to humidity. This work demonstrates that engineering the spacings of alkali-metal layer is an effective strategy to stabilize the structure of layered transition metal oxides.
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