One-step facile synthesis of dense cloud-like tiny bundled nanoparticles of CuS nanostructures as an efficient electrode material for high-performance supercapacitors

被引:37
|
作者
Raghavendra, Kummara Venkata Guru [1 ]
Gopi, Chandu V. V. Muralee [1 ,2 ]
Vinodh, Rajangam [1 ]
Durga, Ikkurthi Kanaka [1 ]
Kim, Hee-Je [1 ]
机构
[1] Pusan Natl Univ, Sch Elect Engn, Busandaehak Ro 63beon Gil, Busan 46241, South Korea
[2] KAUST, Div Comp Elect & Math Sci & Engn, Photon Lab, Thuwal Jeddah 239556900, Saudi Arabia
关键词
Dense cloud; Tiny bundles; Chemical bath deposition method; Supercapacitors; Specific capacity; CONTROLLABLE SYNTHESIS; NI FOAM; HIERARCHICAL STRUCTURES; NANOPOROUS CUS; NANOSHEETS; ARRAYS; FABRICATION; GROWTH; MICROSPHERES; COMPOSITE;
D O I
10.1016/j.est.2019.101148
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The dense cloud like tiny bundles consisting of CuS nanoparticles were prepared successfully by a simple facile one-step chemical bath deposition method. The CuS electrodes at three different time periods such as 5, 10 and 20 h were prepared and their crystallographic phase, structural, morphological and the composition of the as-prepared electrodes are studied in detail. The CuS-10 h electrode possessed the dense cloud like structured nanoparticles on the surface of the Ni foam created pathways in a more efficient manner that allows the swift mobility of electrons/ions. Moreover, the electrochemical behavior and performance of the electrodes are carried out in a 3 M KOH electrolyte in the three-electrode system. The cyclic voltammetry and galvanostatic charge/discharge results confirm that all the fabricated CuS electrodes exhibit the battery-type behavior. As a battery-type material, the binder-free CuS-10 h electrode exhibits the enhanced specific capacity of 164.053 m Ah g(-1) at 1 A g(-1), higher rate capability of 82.54% and good cycling stability of 97.12% after 4000 cycles, respectively, that is very high when compared to the CuS-5 h and CuS-20 h electrodes. As a result, from the detailed analysis, it is found that CuS as an excellent electrode material for high energy storage supercapacitor applications.
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页数:8
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