Peng Jian, Zhang Wang, Hu Zhe, Zhao Lingfei, Wu Can, Peleckis Germanas, Gu Qinfen, Wang Jia-Zhao, Liu Hua Kun, Dou Shi Xue, Chou Shulei
Institute of Carbon Neutralization, College of Chemistry and Materials Engineering, Wenzhou University, Wenzhou, Zhejiang 325035, China.
Institute for Superconducting and Electronic Materials, Australian Institute for Innovative Materials, University of Wollongong, Innovation Campus, Squires Way, North Wollongong, New South Wales 2522, Australia.
Nano Lett. 2022 Feb 9;22(3):1302-1310. doi: 10.1021/acs.nanolett.1c04492. Epub 2022 Jan 28.
For practical sodium-ion batteries, both high electrochemical performance and cost efficiency of the electrode materials are considered as two key parameters. Prussian blue analogues (PBAs) are broadly recognized as promising cathode materials due to their low cost, high theoretical capacity, and cycling stability, although they suffer from low-crystallinity-induced performance deterioration. Herein, a facile "ice-assisted" strategy is presented to prepare highly crystallized PBAs without any additives. By suppressing structure defects, the cathode exhibits a high capacity of 123 mAh g with initial Coulombic efficiency of 87.2%, a long cycling lifespan of 3000 cycles, and significantly enhanced high/low temperature performance and calendar life. Remarkably, the low structure distortion and high sodium diffusion coefficient have been identified synchrotron powder diffraction and first-principles calculations, while its thermal stability has been analyzed by heated X-ray powder diffraction. We believe the results could pave the way to the low-cost and large-scale application of PBAs in all-climate sodium-ion batteries.
对于实用的钠离子电池而言,电极材料的高电化学性能和成本效益被视为两个关键参数。普鲁士蓝类似物(PBAs)因其低成本、高理论容量和循环稳定性而被广泛认为是有前景的正极材料,尽管它们会因低结晶度导致性能恶化。在此,我们提出了一种简便的“冰辅助”策略,无需任何添加剂即可制备高度结晶的PBAs。通过抑制结构缺陷,该正极表现出123 mAh g的高容量,初始库仑效率为87.2%,长循环寿命达3000次循环,并且高低温性能和日历寿命显著增强。值得注意的是,通过同步辐射粉末衍射和第一性原理计算确定了其低结构畸变和高钠扩散系数,同时通过加热X射线粉末衍射分析了其热稳定性。我们相信这些结果可为PBAs在全气候钠离子电池中的低成本大规模应用铺平道路。