Guo Donglei, Yang Mengke, Li Yicong, Xue Yuwen, Liu Guilong, Wu Naiteng, Kim Jang-Kyo, Liu Xianming
Key Laboratory of Function-oriented Porous Materials, College of Chemistry and Chemical Engineering, Luoyang Normal University, Luoyang, 471934, P. R. China.
Department of Mechanical and Aerospace Engineering, Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, P. R. China.
Nanoscale. 2020 Feb 14;12(6):3812-3819. doi: 10.1039/d0nr00460j. Epub 2020 Jan 29.
Vanadium phosphate (VPO) is attracting extensive attention because of its advantages of low cost, stable structure and high theoretical capacity. However, similar to other phosphates, VPO suffers from low electrical conductivity and large volume expansion, adversely influencing its electrochemical performance and thus limiting its application as an anode in lithium and sodium ion batteries. Herein, we propose a novel, facile strategy based on the organic-inorganic network of a nanostructured hybrid hydrogel for immobilizing VPO in a hierarchically porous carbon framework (3DHP-VPO@C). VPO chemically interacts with the carbon framework via a P-C bond, functioning as a buffer layer to maintain structural stability during charge/discharge cycles. The carbon framework offers an efficient pathway for electron and Li/Na transport to ensure high electronic conductivity of the electrode. The 3DHP-VPO@C anode exhibits excellent lithium and sodium storage performances, and notably high capacities of 957 mA h g at 0.1 A g and 345.3 mA h g at 5 A g for lithium ion batteries. Full cells consisting of a LiFePO cathode and the 3DHP-VPO@C anode also prove to have superior cycling stability and rate performance for LIBs.
磷酸钒(VPO)因其成本低、结构稳定和理论容量高的优点而备受关注。然而,与其他磷酸盐类似,VPO存在电导率低和体积膨胀大的问题,这对其电化学性能产生不利影响,从而限制了其作为锂和钠离子电池负极的应用。在此,我们提出了一种基于纳米结构混合水凝胶的有机-无机网络的新颖、简便策略,用于将VPO固定在分级多孔碳框架(3DHP-VPO@C)中。VPO通过P-C键与碳框架发生化学相互作用,在充放电循环过程中作为缓冲层来维持结构稳定性。碳框架为电子和Li/Na传输提供了一条有效途径,以确保电极具有高电子导电性。3DHP-VPO@C负极表现出优异的锂和钠存储性能,对于锂离子电池,在0.1 A g时具有957 mA h g的高容量,在5 A g时具有345.3 mA h g的高容量。由LiFePO正极和3DHP-VPO@C负极组成的全电池对于锂离子电池也具有优异的循环稳定性和倍率性能。