Preparation and capacitance performance of NiCo layered double hydroxide by multi-step constant current electrodeposition method

被引:1
|
作者
Wang, Xiaoliang [1 ]
Zhang, Yibo [1 ]
Song, Xiaoqi [1 ]
Gao, Jingsong [1 ]
Liu, Yi [2 ]
Yang, Shaobin [1 ]
机构
[1] Liaoning Tech Univ, Geol & Mineral Engn Special Mat Profess Technol In, Sch Mat Sci & Engn, Liaoning Key Lab Mineral High Value Convers & Ener, Fuxin 123000, Peoples R China
[2] Xuzhou Univ Technol, Sch Mech & Elect Engn, Xuzhou 221111, Peoples R China
基金
中国国家自然科学基金;
关键词
Electrodeposition; Layered double hydroxide; Supercapacitor; Multi-step; Constant current; SUPERCAPACITOR ELECTRODES; CARBON; NANOSHEETS; CLOTH;
D O I
10.1016/j.electacta.2024.144514
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
In comparison with single-step electrodeposition, multi-step electrodeposition for electrode preparation is more effective in releasing internal stresses, utilizing the highly efficient deposition time at the beginning of the electrodeposition, improving deposition efficiency, and producing adhesive-free high-performance electrodes with controllable mass. In this paper, NiCo layered double hydroxide (NiCo-LDH) with similar mass was successfully deposited by a two-electrode constant-current electrodeposition method using nickel foam as the substrate through different electrodeposition steps. A comparative study was conducted on the effects of NiCoLDH deposition steps on the morphology, total deposition time, and electrochemical performance of NiCo-LDH samples. The results show that the mass of NiCo-LDH grown on foam nickel is similar when the number of deposition steps is from 1 to 6 at 12-13 mg, the coating of foam nickel substrate became more uniform. The total deposition time has decreased from 2550 s for 1-step deposition to 1542 s for 6-step deposition, reducing the occupation time of the electrodeposition equipment. As the number of deposition layers increases, the specific capacitance of NiCo-LDH shows a trend of first increasing and then stabilizing. The high mass specific capacitance of NiCo-LDH electrode material deposited in 6 steps is 953 F g- 1 at a current density of 3 mA cm-2. The assembled asymmetric supercapacitor device achieved an energy density of 0.309 mWh cm-2 at a power density of 4.25 mW cm-2, and a capacitance retention rate of 94% after 10,000 cycles at a current density of 40 mA cm-2. This indicates that the NiCo-LDH material prepared by multi-step electrodeposition method has good capacitance performance, providing a simple and time-saving method for manufacturing large-scale multi-step electrodeposition of adhesive-free supercapacitor electrodes.
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页数:11
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