상세 보기
- Hussain, Sajjad;
- Vikraman, Dhanasekaran;
- Abbas, Zeesham;
- Sheikh, Zulfqar Ali;
- Aftab, Sikandar;
- ... Kim, Hyun-Seok;
- 외 4명
WEB OF SCIENCE
7SCOPUS
7초록
This paper presents the fabrication of hierarchical hollow 3D nanowires-like cobalt nickel oxide nanowires (NWs) embedded in tungsten disulfide/reduced graphene oxide hybrid (CoNiO2@WS2/rGO) composite through a facile hydrothermal process. The interaction between the 3D hollow WS2/rGO skeleton network and the well-defined CoNiO2 NWs enabled the remarkable electrochemical supercapacitor performances constructed with an enriched specific capacity (515C/g at 0.5 A/g) and superior cycling solidity (97.5 %). Asymmetric device assembled engaging the CoNiO2@WS2/rGO composite displayed a 236F/g specific capacitance at 1 A/g with ∼74 Wh/kg energy density at 2.4 kW/kg power density along with a high cycling stability (95.2 %). Furthermore, CoNiO2@WS2/rGO composite possessed bundles of pores with strong interfacial connection, and this enabled a large accessible surface area on the nanowires and facilitated the release of gas bubbles, resulting in excellent oxygen evolution and hydrogen evolution kinetics with a small overpotential (η10 = 195 and 33 mV, respectively). Assembled CoNiO2@WS2/rGO (+/-) electrolyzer achieved a current density of 10 mA cm−2 at a minimal cell voltage of 1.43 with long-span strength. Additionally, theoretical computation studies confirmed that the exceptional catalytic efficacy of the fabricated catalyst could be attributed to the transfer of charge from WS2/rGO to CONiO2 NWs. © 2025 Elsevier Inc.
키워드
- 제목
- Engineering cobalt nickel oxide nanowires embedded in tungsten disulfide/reduced graphene oxide hybrid composites for supercapacitor applications and overall water-splitting reactions
- 저자
- Hussain, Sajjad; Vikraman, Dhanasekaran; Abbas, Zeesham; Sheikh, Zulfqar Ali; Aftab, Sikandar; Hussain, Iftikhar; Shaikh, Shoyebmohamad F.; Kim, Hyun-Seok; Kim, Deok-Kee; Jung, Jongwan
- 발행일
- 2025-11
- 유형
- Article
- 권
- 697
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