阳极
煅烧
电解质
硫化
锂(药物)
金属有机骨架
电极
化学
纳米技术
纳米材料
化学工程
材料科学
吸附
催化作用
有机化学
医学
工程类
内分泌学
物理化学
作者
Bai-Ying Huang,Yuling Zhang,Hua Zhong,Yongbo Wu,Xiaoming Lin,Weiqin Xu,Guozheng Ma
标识
DOI:10.1021/acs.inorgchem.4c01680
摘要
The synergistic effect between multicomponent electrode materials often makes them have better lithium storage performance than single-component electrode materials. Therefore, to enhance surface reaction kinetics and encourage electron transfer, using multicomponent anode materials is a useful tactic for achieving high lithium-ion battery performance. In this article, ZnS/ZnO composites were synthesized by solvothermal sulfidation and calcination, with the utilization of metal-organic frameworks acting as sacrificial templates. From the point of material design, both ZnS and ZnO have high theoretical specific capacities, and the synergistic effect of ZnS and ZnO can promote charge transport. From the perspective of electrode engineering, the loose porous carbon skeleton that results from the calcination of metal-organic frameworks can enhance composite material conductivity as well as full electrolyte penetration and the area of contact between the electrolyte and active material, all of which are beneficial to enhancing lithium storage performance. As expected, ZnS/ZnO anode materials displayed remarkably high specific capacities and outstanding performance at different rates. Combining material design and electrode engineering, this paper provides another idea for preparing anode materials with excellent lithium storage properties.
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