Preparation of S-doped CuCoO 2 nanosheets with more oxygen defects for efficient oxygen evolution reaction

Noble metal catalysts are excellent oxygen evolution reaction (OER) catalysts, but the expensive price and scarce reserves constrain the development of water splitting. CuCoO 2 is known as a promising catalytic material due to its abundant raw materials and unique structure. However, its OER perform...

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Veröffentlicht in:New journal of chemistry 2024-09, Vol.48 (38), p.16692-16698
Hauptverfasser: Jiang, Chao, Bai, Jilin, Shen, Qingyang, Ku, Xin, Liao, Wei, Xiong, Dehua
Format: Artikel
Sprache:eng
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Zusammenfassung:Noble metal catalysts are excellent oxygen evolution reaction (OER) catalysts, but the expensive price and scarce reserves constrain the development of water splitting. CuCoO 2 is known as a promising catalytic material due to its abundant raw materials and unique structure. However, its OER performance requires further enhancement. In this research, S-doped CuCoO 2 nanocrystals were synthesized through a one-step solvothermal method. The electrochemical test results revealed that 0.33 mmol S doped CuCoO 2 (CCOS-3) exhibits superior catalytic activity ( η 10 = 375.5 mV, Tafel slope = 83.4 mV dec −1 ) in 1.0 M KOH electrolyte. Furthermore, after an 18 hours OER stability test, the CCOS-3 exhibited a minimal overpotential degradation of 27 mV. Brunauer–Emmett–Teller (BET) tests showed that the surface area of CCOS-3 is 12.51 m 2 g −1 . X-ray photoelectron spectroscopy (XPS) and ultraviolet-visible-near infrared (UV-Vis-NIR) absorption spectra results revealed that S doping boosts the quantity of oxygen defect sites and narrows the band gap of CuCoO 2 . Therefore, the charge transfer within the material is accelerated and the catalytic activity is optimized. This work may offer a novel insight into enhancing the OER performance of CuCoO 2 catalysts through nonmetallic doping.
ISSN:1144-0546
1369-9261
DOI:10.1039/D4NJ03425B