Photoelectrochemical Properties of CuCrO2: Characterization of Light Absorption and Photocatalytic H2 Production Performance

CuCrO 2 delafossite was prepared by the solid-state reaction between Cr 2 O 3 and Cu 2 O at high temperature (900–1100 °C). The materials were characterized by XRD, X-ray photoelectron, Raman and UV–Vis spectroscopy and transmission electron microscopy. The visible light absorption of the p -type se...

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Veröffentlicht in:Catalysis letters 2014, Vol.144 (9), p.1487-1493
Hauptverfasser: Ma, Yi, Zhou, Xin, Ma, Quanbao, Litke, Anton, Liu, Peng, Zhang, Yi, Li, Can, Hensen, Emiel J. M.
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Sprache:eng
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Zusammenfassung:CuCrO 2 delafossite was prepared by the solid-state reaction between Cr 2 O 3 and Cu 2 O at high temperature (900–1100 °C). The materials were characterized by XRD, X-ray photoelectron, Raman and UV–Vis spectroscopy and transmission electron microscopy. The visible light absorption of the p -type semiconductor increased with increasing calcination temperature. First principles density functional theory calculations were used to compute the density of states and distinguish between Cr 3+ d–d transitions and the charge separation electron transitions, which cannot be distinguished in CuCrO 2 by UV–Vis spectroscopy. Photocathodes were prepared by depositing the as-prepared CuCrO 2 on an FTO substrate by electrophoresis. The resulting cathodic photocurrents under visible light irradiation increased with increasing calcination temperature. CuCrO 2 is a photostable semiconductor unlike Cu 2 O. Photocatalytic H 2 production in ethanol/water mixtures shows that the resulting materials are active in water splitting. Co-catalysts substantially increase the activity, the most preferred one is Pt with an order of magnitude increase in performance. Graphical Abstract
ISSN:1011-372X
1572-879X
DOI:10.1007/s10562-014-1318-1