超级电容器
五元
材料科学
合金
电容
功率密度
重量分析
电化学
电极
化学工程
冶金
高熵合金
电流密度
分析化学(期刊)
水溶液
固溶体
电容器
比能量
氧化物
作者
G. C. Mohanty,Chinmayee Chowde Gowda,Pooja Gakhad,Shubhasikha Das,Sanjay Mavinkere Rangappa,Shamik Chowdhury,Koushik Biswas,Abhishek K. Singh,Chandra Sekhar Tiwary
标识
DOI:10.1016/j.electacta.2023.143272
摘要
High entropy alloys (HEAs) are new-generation supercapacitive materials providing multiple active sites for enhanced electrochemical redox reactions. In this regard, we have successfully synthesized HEA comprising of Iron-Cobalt-Nickel-Copper-Zinc (Fe-Co-Ni-Cu-Zn) using induction melting and reduced its dimensions via ball milling. The ball-milled Fe-Co-Ni-Cu-Zn sample is throughly characterized by using basic structural and morphological techniques. A positive electrode is fabricated for supercapacitor application. This quinary HEA shows the highest gravimetric capacitance of 325.17 F g − 1 at 1 A g − 1 (3 M potassium hydroxide, aqueous electrolyte) in single electrode system. The asymmetric device also demonstrates energy density of 23.82 Wh kg−1 by consuming a power density of 325 W kg−1. Additionally, theoretical studies (DFT) shows that the electronic distribution of quinary Fe-Co-Ni-Cu-Zn elements in the alloy enhances chemical stability which is the reason for higher specific capacitance.
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