수열합성법으로 제조된 니켈코발트산화물(NiCo₂O₄) 나노시트 전극의 특성

In a carbon-zero social atmospher, research is underway to reduce the use of fossil fuels. Interest in cleaner energy sources and their storage system is growing, and among them, research on effective energy storage is being actively conducted. Energy storage system(ESS) can be divided into secondar...

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Veröffentlicht in:Biuletyn Uniejowski 2022, 55(1), , pp.32-37
Hauptverfasser: 이석희(Seokhee Lee), 차현진(Hyunjin Cha), 이상운(Sangwoon Lee), 김준아(Juna Kim), 박정환(Jeonghwan Park), 손영국(Young Guk Son)
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Sprache:kor
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Zusammenfassung:In a carbon-zero social atmospher, research is underway to reduce the use of fossil fuels. Interest in cleaner energy sources and their storage system is growing, and among them, research on effective energy storage is being actively conducted. Energy storage system(ESS) can be divided into secondary batteries, fuel cells, and capacitors, and the superiority of energy density of secondary batteries has a dominent influence on the ESS market. However, as problems with secondary batteries, charge/discharge speed, safety, and deterioration of electrodes are being highlighted. In this study, an electrode for supercapacitor with superior charge/discharge speed and specific capacitance is manufactured. The manufactured spinel nickel cobalt electrodes had specific capacitances of 1018.8 F/g, 690.8 F/g, and 475.1 F/g at 1 A/g in 1 M KOH electrolyte, and shows a performance retention rate of 77.48%, 63.30%, and 58.16% after 2000cycles at 7 A/g.
ISSN:1225-8024
2299-8403
2288-8403