Duan Wenyuan, Husain Mubashir, Li Yanlin, Lashari Najeeb Ur Rehman, Yang Yuhuan, Ma Cheng, Zhao Yuzhen, Li Xiaorui
Xi'an Key Laboratory of Advanced Photo-electronics Materials and Energy Conversion Device, Xijing University Xi'an 710123 China.
Materials Research Laboratory, Department of Physics, Faculty of Sciences (FOS), International Islamic University (IIU) H-10 Islamabad 44000 Pakistan.
RSC Adv. 2023 Aug 23;13(36):25327-25333. doi: 10.1039/d3ra04143c. eCollection 2023 Aug 21.
Electrodes that offer quick ion transport, a large surface area, and excellent electrical conductivity support high performance aqueous rechargeable lithium batteries. LiFePO (LFP) nanoparticles have been successfully coated with carbon by a chemical sol-gel route, and assembled on graphite by an ultrasonication method to acquire LFP/C/graphite. This LFP/C/graphite composite exhibits exceptional electrochemical performance at various current densities (1C to 20C). LFP/C/graphite delivers better capacity that is higher than that of LFP/C particles and high stability after 60 cycles at a current density of 1C for aqueous rechargeable lithium batteries as a cathode material. The graphite serves as a good volume buffer in improving the lithium performance of LFP/C/graphite during the charge/discharge process. The LFP/C/graphite composite shows high rate capability at 20C that returned to the initial capacity at 1C after 25 cycles with coulombic efficiency of 97%. Therefore, this effort presents a super low-cost route to fabricate high performance cathode materials in aqueous rechargeable lithium batteries and other energy storage appliances.
具有快速离子传输、大表面积和优异导电性的电极有助于高性能水系可充电锂电池的发展。通过化学溶胶-凝胶法成功地在磷酸铁锂(LFP)纳米颗粒上包覆了碳,并通过超声法将其组装在石墨上,从而获得了LFP/C/石墨复合材料。这种LFP/C/石墨复合材料在各种电流密度(1C至20C)下均表现出优异的电化学性能。作为水系可充电锂电池的阴极材料,LFP/C/石墨具有比LFP/C颗粒更高的容量,并且在1C电流密度下循环60次后具有高稳定性。在充放电过程中,石墨作为良好的体积缓冲剂,有助于提高LFP/C/石墨的锂性能。LFP/C/石墨复合材料在20C时具有高倍率性能,在25次循环后回到1C时的初始容量,库仑效率为97%。因此,这项工作为在水系可充电锂电池和其他储能装置中制备高性能阴极材料提供了一种超低成本的途径。