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中国物理学会期刊

钠离子层状氧化物材料相变及其对性能的影响

CSTR: 32037.14.aps.71.20220291

Phase transitions of Na-ion layered oxide materials and their influence on properties

CSTR: 32037.14.aps.71.20220291
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  • 钠离子电池近年来在大规模储能领域展现出优异的发展和应用前景. 由于钠离子层状过渡金属氧化物正极材料(NaxTMO2)具有比容量高、容易制备、电压可调和成本低的优势, 在学术界和产业界得到了广泛的关注与研究. 但较大的Na+半径和较强的Na+-Na+静电排斥作用, 导致NaxTMO2具有多种结构类型和复杂的结构转变, 以及由此形成了多重结构-性能关系. 本文详细介绍了NaxTMO2的结构类型, 综述了在Na+脱出/嵌入过程中引发的结构演变, 旨在揭示钠离子层状过渡金属氧化物正极材料结构转变机理及其对电化学性能的影响, 最后讨论了现存的挑战并提出了改进策略.

     

    Na-ion batteries possess great potential applications in the large-scale energy storage. The Na-ion layered oxide cathode (NaxTMO2) has received increasing attention in scientific and industrial research due to its high capacity, easy manufacture, adjustable voltage, and low cost. However, the larger the Na+ radius and the stronger the Na+-Na+ electrostatic repulsion is, which will lead to various structural configurations and complex structural transitions, resulting in multiple structure-property connections. In this paper, the structural types of Na-ion layered transition metal oxide cathode materials are introduced, and their structural evolutions during Na+ de/intercalation are summarized for revealing the mechanism for structural transformation of Na-ion layered transition-metal oxide cathode material and its effect on electrochemical performance; the existing challenges are discussed; the improvement strategies are proposed finally.

     

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