快离子导体
过电位
钠
材料科学
电极
阴极
离子
磁滞
介电谱
分析化学(期刊)
化学
化学工程
电解质
电化学
工程类
物理
冶金
物理化学
有机化学
量子力学
色谱法
作者
Zijian Zhao,Mariyam Susana Dewi Darma,Guiying Tian,Xianlin Luo,Enyue Zhao,Bao‐Tian Wang,Jinkui Zhao,Weibo Hua,Xiaoyu Zhao,Yanfei Wang,Helmut Ehrenberg,Sonia Dsoke
标识
DOI:10.1016/j.cej.2022.136608
摘要
The Na superionic conductor (NASICON) is one of the promising electrode materials used in advanced Na-based secondary batteries, but designing a low-overpotential structure is crucial for developing NASICON-type electrodes to repress voltage hysteresis and reduce energy loss. In this study, the integration of Mn3+ into a NASICON-type material (Na2VTi(PO4)3) decreases the voltage hysteresis of the redox couples due to the enlarged migration pathway for mobile Na+ ions. When using Na2V0.67Mn0.33Ti(PO4)3 as cathode material, two Na+ ions can be extracted from the structure, leading to the specific capacity of 110 mAh g−1 at the current density of 0.1 C. In operando synchrotron radiation diffraction elucidates that there is a combination of mono- and biphasic mechanisms for reversible Na+ insertion/extraction within initial two cycles. Moreover, fast sodium diffusion in the NMVTP electrode has been measured and analysed via first-principles calculation and real-time impedance spectroscopy. The results of this work indicate that Na2V0.67Mn0.33Ti(PO4)3 is a promising material for sodium-ion batteries.
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