普鲁士蓝
硫化
材料科学
化学工程
锂(药物)
聚合
锂离子电池
电极
硫化物
无机化学
电池(电)
电化学
化学
聚合物
冶金
复合材料
物理化学
功率(物理)
内分泌学
硫黄
工程类
物理
医学
量子力学
作者
Behnoosh Bornamehr,Volker Presser,Samantha Husmann
出处
期刊:ACS omega
[American Chemical Society]
日期:2022-10-17
卷期号:7 (43): 38674-38685
被引量:6
标识
DOI:10.1021/acsomega.2c04209
摘要
Batteries employing transition-metal sulfides enable high-charge storage capacities, but polysulfide shuttling and volume expansion cause structural disintegration and early capacity fading. The design of heterostructures combining metal sulfides and carbon with an optimized morphology can effectively address these issues. Our work introduces dopamine-coated copper Prussian blue (CuPB) analogue as a template to prepare nanostructured mixed copper-iron sulfide electrodes. The material was prepared by coprecipitation of CuPB with in situ dopamine polymerization, followed by thermal sulfidation. Dopamine controls the particle size and favors K-rich CuPB due to its polymerization mechanism. While the presence of the coating prevents particle agglomeration during thermal sulfidation, its thickness demonstrates a key effect on the electrochemical performance of the derived sulfides. After a two-step activation process during cycling, the C-coated KCuFeS2 electrodes showed capacities up to 800 mAh/g at 10 mA/g with nearly 100% capacity recovery after rate handling and a capacity of 380 mAh/g at 250 mA/g after 500 cycles.
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