Wang Wanlin, Gang Yong, Hu Zhe, Yan Zichao, Li Weijie, Li Yongcheng, Gu Qin-Fen, Wang Zhixing, Chou Shu-Lei, Liu Hua-Kun, Dou Shi-Xue
Institute for Superconducting and Electronic Materials, University of Wollongong, Innovation Campus, Squires Way, North Wollongong, NSW, 2522, Australia.
Liaoning Starry Sky Sodium-ion Battery Co., Ltd., Laser industrial park, High-tech district, Anshan, 114000, Liaoning, China.
Nat Commun. 2020 Feb 20;11(1):980. doi: 10.1038/s41467-020-14444-4.
Iron-based Prussian blue analogs are promising low-cost and easily prepared cathode materials for sodium-ion batteries. Their materials quality and electrochemical performance are heavily reliant on the precipitation process. Here we report a controllable precipitation method to synthesize high-performance Prussian blue for sodium-ion storage. Characterization of the nucleation and evolution processes of the highly crystalline Prussian blue microcubes reveals a rhombohedral structure that exhibits high initial Coulombic efficiency, excellent rate performance, and cycling properties. The phase transitions in the as-obtained material are investigated by synchrotron in situ powder X-ray diffraction, which shows highly reversible structural transformations between rhombohedral, cubic, and tetragonal structures upon sodium-ion (de)intercalations. Moreover, the Prussian blue material from a large-scale synthesis process shows stable cycling performance in a pouch full cell over 1000 times. We believe that this work could pave the way for the real application of Prussian blue materials in sodium-ion batteries.
铁基普鲁士蓝类似物是很有前景的低成本且易于制备的钠离子电池阴极材料。它们的材料质量和电化学性能在很大程度上依赖于沉淀过程。在此,我们报道一种可控沉淀法来合成用于钠离子存储的高性能普鲁士蓝。对高度结晶的普鲁士蓝微立方体的成核和演化过程进行表征,揭示出一种菱面体结构,该结构具有高初始库仑效率、优异的倍率性能和循环性能。通过同步辐射原位粉末X射线衍射研究了所制备材料中的相变,结果表明在钠离子嵌入(脱嵌)时,菱面体、立方和四方结构之间存在高度可逆的结构转变。此外,大规模合成过程得到的普鲁士蓝材料在软包全电池中显示出超过1000次的稳定循环性能。我们相信这项工作可为普鲁士蓝材料在钠离子电池中的实际应用铺平道路。