Effect of Different g-C3N4 Content on Properties of NiCo2S4/g-C3N4 Composite as Electrode Material for Supercapacitor

被引:5
|
作者
Ding, Meijie [1 ,2 ]
Wei, Zhiqiang [1 ,3 ]
Zhu, Xiaojun [4 ]
Liu, Dexue [1 ,2 ]
机构
[1] Lanzhou Univ technol, State Key Lab Adv Proc & Recycling Nonferrous Met, Lanzhou 730050, Peoples R China
[2] Lanzhou Univ technol, Sch Mat & Engn, Lanzhou 730050, Peoples R China
[3] Lanzhou Univ Technol, Sch Sci, Lanzhou 730050, Peoples R China
[4] Jinchuan Grp CO LTD, Natl Nickel & Cobalt Adv Mat Engn Res Ctr, Lanzhou 730050, Peoples R China
来源
INTERNATIONAL JOURNAL OF ELECTROCHEMICAL SCIENCE | 2022年 / 17卷 / 12期
基金
中国国家自然科学基金;
关键词
electrochemical; supercapacitor; hydrothermal method; NICKEL FOAM; PERFORMANCE; FABRICATION; NICO2O4; ANODES; GROWTH; ARRAYS; ENERGY;
D O I
10.20964/2022.12.06
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Electronic conductivity of pure NiCo2S4 is limited, and fortunately, g-C3N4 has been explored in recent years for electrochemical applications with considerable potential. NiCo2S4/g-C3N4 nanocomposites, improving greatly the cycle life of supercapacitors, are synthesized via simple one-step hydrothermal method for supercapacitor electrode materials in this paper. The composite of g-C3N4 and NiCo2S4 materials can provide a good bridge for ion transport in the electrochemical reaction process, and can also provide more active sites for the electrochemical reaction due to g-C3N4 two-dimensional lamellar structure having a large specific surface area. It is demonstrated that NiCo2S4/g-C3N4 electrodes can achieve specific capacitance of 1229.9 F/g under a current density of 5 A/g and cycling life of 2000 cycles by retaining 66.24% of the energy storage capability in the paper. In general, the potential of g-C3N4 in electrochemical applications can be expanded by changing the molar composition of g-C3N4.
引用
收藏
页数:12
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