Li Lina, Dong Sai, Peng Wenchao, Liu Jiapeng
School of Chemical Engineering and Technology, Hebei University of Technology, Tianjin 300130, China.
School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China.
J Colloid Interface Sci. 2025 Jan;677(Pt B):608-616. doi: 10.1016/j.jcis.2024.08.082. Epub 2024 Aug 13.
Aqueous zinc-ion batteries (AZIBs) are expected to be a promising large-scale energy storage system owing to their intrinsic safety and low cost. Nevertheless, the development of AZIBs is still plagued by the design and fabrication of advanced cathode materials. Herein, the amorphous vanadium pentoxide and hollow porous carbon spheres (AVO-HPCS) hybrid is elaborately designed as AZIBs cathode material by integrating vacuum drying and annealing strategy. Amorphous vanadium pentoxide provides abundant active sites and isotropic ion diffusion channels. Meanwhile, the hollow porous carbon sphere not only provides a stable conductive network, but also enhances the stability during charging/discharging process. Consequently, the AVO-HPCS exhibits a capacity of 474 mAh/g at 0.5 A/g and long-term cycle stability. Moreover, the corresponding reversible insertion/extraction mechanism is elucidated by ex-situ X-ray diffraction, X-ray photoelectron spectroscopy and transmission electron microscopy. Furthermore, the flexible pouch battery with AVO-HPCS cathode shows high comprehensive performance. Hence, this work provides insights into the development of advanced amorphous cathode materials for AZIBs.
水系锌离子电池(AZIBs)因其本质安全性和低成本有望成为一种很有前景的大规模储能系统。然而,先进阴极材料的设计与制造仍然困扰着AZIBs的发展。在此,通过整合真空干燥和退火策略,精心设计了非晶态五氧化二钒与中空多孔碳球(AVO-HPCS)的复合材料作为AZIBs的阴极材料。非晶态五氧化二钒提供了丰富的活性位点和各向同性的离子扩散通道。同时,中空多孔碳球不仅提供了稳定的导电网络,还增强了充放电过程中的稳定性。因此,AVO-HPCS在0.5 A/g的电流密度下表现出474 mAh/g的容量以及长期循环稳定性。此外,通过非原位X射线衍射、X射线光电子能谱和透射电子显微镜阐明了相应的可逆嵌入/脱出机制。此外,具有AVO-HPCS阴极的柔性软包电池表现出高综合性能。因此,这项工作为AZIBs先进非晶态阴极材料的发展提供了见解。