Li Cong, Zang Rui, Li Pengxin, Man Zengming, Wang Shijian, Li Xuemei, Wu Yuhan, Liu Shuaishuai, Wang Guoxiu
College of Materials Science and Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing, 210006, P.R. China.
Centre for Clean Energy Technology, Faculty of Science, University of Technology Sydney, NSW, 2007, Australia.
Chem Asian J. 2018 Feb 2;13(3):342-349. doi: 10.1002/asia.201701715. Epub 2018 Jan 17.
Prussian blue and its analogues (PBAs) have been recognized as one of the most promising cathode materials for room-temperature sodium-ion batteries (SIBs). Herein, we report high crystalline and Na-rich Prussian white Na CoFe(CN) nanocubes synthesized by an optimized and facile co-precipitation method. The influence of crystallinity and sodium content on the electrochemical properties was systematically investigated. The optimized Na CoFe(CN) nanocubes exhibited an initial capacity of 151 mA h g , which is close to its theoretical capacity (170 mA h g ). Meanwhile, the Na CoFe(CN) cathode demonstrated an outstanding long-term cycle performance, retaining 78 % of its initial capacity after 500 cycles. Furthermore, the Na CoFe(CN) Prussian white nanocubes also achieved a superior rate capability (115 mA h g at 400 mA g , 92 mA h g at 800 mA g ). The enhanced performances could be attributed to the robust crystal structure and rapid transport of Na ions through large channels in the open-framework. Most noteworthy, the as-prepared Na CoFe(CN) nanocubes are not only low-cost in raw materials but also contain a rich sodium content (1.87 Na ions per lattice unit cell), which will be favorable for full cell fabrication and large-scale electric storage applications.
普鲁士蓝及其类似物(PBAs)已被公认为是室温钠离子电池(SIBs)最具前景的正极材料之一。在此,我们报道了通过优化的简便共沉淀法合成的高结晶度且富钠的普鲁士白NaCoFe(CN)纳米立方体。系统研究了结晶度和钠含量对电化学性能的影响。优化后的NaCoFe(CN)纳米立方体展现出151 mA h g的初始容量,接近其理论容量(170 mA h g)。同时,NaCoFe(CN)正极表现出出色的长期循环性能,在500次循环后仍保留其初始容量的78%。此外,NaCoFe(CN)普鲁士白纳米立方体还实现了优异的倍率性能(在400 mA g时为115 mA h g,在800 mA g时为92 mA h g)。性能的提升可归因于坚固的晶体结构以及钠离子在开放框架中通过大通道的快速传输。最值得注意的是,所制备的NaCoFe(CN)纳米立方体不仅原材料成本低,而且钠含量丰富(每个晶格单元有1.87个钠离子),这将有利于全电池制造和大规模蓄电应用。