Yuan Guoqiang, Su Yichun, Zhang Xiangling, Gao Biao, Hu Jinliang, Sun Yangyang, Li Wenting, Zhang Zhan, Shakouri Mohsen, Pang Huan
School of Chemistry and Chemical Engineering, Yangzhou University, Yangzhou 225009, China.
Jiangsu Yangnong Chemical Group Co. Ltd., Yangzhou 225009, China.
Natl Sci Rev. 2024 Sep 20;11(10):nwae336. doi: 10.1093/nsr/nwae336. eCollection 2024 Oct.
Given their high safety, environmental friendliness and low cost, aqueous zinc-ion batteries (AZIBs) have the potential for high-performance energy storage. However, issues with the structural stability and electrochemical kinetics during discharge/charge limit the development of AZIBs. In this study, vanadium oxide electrodes with organic molecular intercalation were designed based on intercalating 11 kinds of charged organic carboxylic acid ligands between 2D layers to regulate the interlayer spacing. The negatively charged carboxylic acid group can neutralize Zn, reduce electrostatic repulsion and enhance electrochemical kinetics. The intercalated organic molecules increased the interlayer spacing. Among them, the 0.028EDTA · 0.28NH · VO · 0.069HO was employed as the cathode with a high specific capacity (464.6 mAh g at 0.5 A g) and excellent rate performance (324.4 mAh g at 10 A g). Even at a current density of 20 A g, the specific capacity after 2000 charge/discharge cycles was 215.2 mAh g (capacity retention of 78%). The results of this study demonstrate that modulation of the electrostatic repulsion and interlayer spacing through the intercalation of organic ligands can enhance the properties of vanadium-based materials.
水系锌离子电池(AZIBs)因其高安全性、环境友好性和低成本,具有实现高性能储能的潜力。然而,充放电过程中的结构稳定性和电化学动力学问题限制了水系锌离子电池的发展。在本研究中,基于在二维层间嵌入11种带电荷的有机羧酸配体以调节层间距,设计了具有有机分子嵌入的氧化钒电极。带负电荷的羧酸基团可以中和锌离子,减少静电排斥并增强电化学动力学。嵌入的有机分子增加了层间距。其中,0.028EDTA·0.28NH·VO·0.069HO被用作阴极,具有高比容量(在0.5 A g时为464.6 mAh g)和优异的倍率性能(在10 A g时为324.4 mAh g)。即使在20 A g的电流密度下,经过2000次充放电循环后的比容量仍为215.2 mAh g(容量保持率为78%)。本研究结果表明,通过嵌入有机配体来调节静电排斥和层间距,可以增强钒基材料的性能。