Application of dandelion-like Sm 2 O 3 /Co 3 O 4 /rGO in high performance supercapacitors

Novel 2D material-based supercapacitors are promising candidates for energy applications due to their distinctive physical, chemical, and electrochemical properties. In this study, a dandelion-like structure material comprised of Sm O , Co O , and 2D reduced graphene oxide (rGO) on nickel foam (NF)...

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Veröffentlicht in:RSC advances 2024-01, Vol.14 (3), p.2088-2101
Hauptverfasser: Lv, Yanling, Lu, Shixiang, Xu, Wenguo, Xin, Yulin, Wang, Xiaoyan, Wang, Shasha, Yu, Jiaan
Format: Artikel
Sprache:eng
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Zusammenfassung:Novel 2D material-based supercapacitors are promising candidates for energy applications due to their distinctive physical, chemical, and electrochemical properties. In this study, a dandelion-like structure material comprised of Sm O , Co O , and 2D reduced graphene oxide (rGO) on nickel foam (NF) was synthesised using a hydrothermal method followed by subsequent annealing treatment. This dandelion composite grows further through the tremella-like structure of Sm O and Co O , which facilitates the diffusion of ions and prevents structural collapse during charging and discharging. A substantial number of active sites are generated during redox reactions by the unique surface morphology of the Sm O /Co O /rGO/NF composite (SCGN). The maximum specific capacity the SCGN material achieves is 3448 F g for 1 A g in a 6 mol L KOH solution. Benefiting from its morphological structure, the prepared composite (SCGN) exhibits a high cyclability of 93.2% over 3000 charge-discharge cycles at 10 A g and a coulombic efficiency of 97.4%. Additionally, the assembled SCGN//SCGN symmetric supercapacitors deliver a high energy density of 64 W h kg with a power density of 300 W kg , which increases to an outstanding power density of 12 000 W kg at 28.7 W h kg and long cycle stability (80.9% capacitance retention after 30 000 cycles). These results suggest that the manufactured SCGN electrodes could be viable active electrode materials for electrochemical supercapacitors.
ISSN:2046-2069
2046-2069
DOI:10.1039/d3ra06352f