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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Molten salt electrochemical synthesis of sodium titanates as high performance anode materials for sodium ion batteries
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Molten salt electrochemical synthesis of sodium titanates as high performance anode materials for sodium ion batteries

机译:熔融盐电化学合成钛酸钠作为钠离子电池的高性能负极材料

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摘要

Sodium ion batteries are attractive alternatives to lithium ion batteries for stationary energy storage technology, and titanates are considered as promising anode materials for sodium ion batteries. Herein, a series of sodium titanates were synthesized via a simple, fast and controllable electrochemical route from solid TiO2 in molten salts of NaF-NaCl-NaI. For the first time, the as-prepared Na0.23TiO2 and Na0.46TiO2 were utilized as anode materials for sodium ion batteries, with a sodium storage capacity of 185 mA h g(-1) and 215 mA h g(-1) after 200 cycles, respectively. High rate and long term tests indicated the excellent cycle performance due to the formation of a 3D porous electrode structure during the long term charge/discharge processes.
机译:钠离子电池是用于固定式能量存储技术的锂离子电池的有吸引力的替代品,钛酸盐被认为是钠离子电池的有希望的负极材料。本文中,通过简单,快速和可控制的电化学路线,由NaF-NaCl-NaI熔融盐中的固体TiO2合成了一系列钛酸钠。首次将制得的Na0.23TiO2和Na0.46TiO2用作钠离子电池的负极材料,经过200个循环后,其钠存储容量为185 mA hg(-1)和215 mA hg(-1) , 分别。高速率和长期测试表明,由于在长期充电/放电过程中形成了3D多孔电极结构,因此具有出色的循环性能。

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