A zero-strain Na-deficient NASICON-type Na2.8Mn0.4V1.0Ti0.6(PO4)(3) cathode for wide-temperature rechargeable Na-ion batteries

Xing Shen,Yuefeng Su, Shunli He, Yali Li,Lifeng Xu,Ni Yang, Yanshun Liao,Meng Wang,Feng Wu

JOURNAL OF MATERIALS CHEMISTRY A(2023)

引用 0|浏览5
暂无评分
摘要
Na superionic conductor (NASICON) type cathode materials with high structural stability and fast Na+ diffusion have been considered as high-power candidates for the exploration of Na-ion batteries. However, the substitution of active elements with low cost and additional attributes remains epoch-making due to the structural flexibility and insufficient utilization of the introduced components. Herein, the Na-deficient strategy based on charge balance is employed to take full advantage of the Na+ ions and active transition metals within the voltage window of 2.0-4.2 V. The optimized Na2.8Mn0.4V1.0Ti0.6(PO4)(3) cathode realizes a 2.1 e(-) redox reaction with a 76% utilization rate of Na+ ions rooted in the lattice, allowing a discharge capacity of 126.2 mA h g(-1) and superior capacity retention of 88.1% at 20 C over 3000 cycles. Consequently, the developed cathode also achieved superior reaction reversibility and remarkable Na-storage properties, even under extreme working conditions and with full cell configurations. This work could provide new perspectives and an efficient regulation protocol for high-performance Na-ion batteries.
更多
查看译文
关键词
batteries,zero-strain,na-deficient,nasicon-type,wide-temperature,na-ion
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要