Composition-Dependent Functionality of Copper Vanadate Photoanodes

To understand functional roles of constituent elements in ternary metal oxide photoanodes, essential photoelectrochemical (PEC) properties are systematically analyzed on a series of copper vanadate compounds with different Cu:V elemental ratios. Homogeneous and highly continuous thin films of β-Cu2V...

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Veröffentlicht in:ACS applied materials & interfaces 2018-04, Vol.10 (13), p.10627-10633
Hauptverfasser: Jiang, Chang-Ming, Segev, Gideon, Hess, Lucas H, Liu, Guiji, Zaborski, Gregory, Toma, Francesca M, Cooper, Jason K, Sharp, Ian D
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Sprache:eng
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Zusammenfassung:To understand functional roles of constituent elements in ternary metal oxide photoanodes, essential photoelectrochemical (PEC) properties are systematically analyzed on a series of copper vanadate compounds with different Cu:V elemental ratios. Homogeneous and highly continuous thin films of β-Cu2V2O7, γ-Cu3V2O8, Cu11V6O26, and Cu5V2O10 are grown via reactive co-sputtering and their performance characteristics for the light-driven oxygen evolution reaction are evaluated. All four compounds have similar bandgaps in the range of 1.83–2.03 eV, though Cu-rich phases exhibit stronger optical absorption and higher charge separation efficiencies. Transient photocurrent analysis reveals a reduction of surface catalytic activity with increasing Cu:V elemental ratio due to competitive charge recombination at Cu-related surface states. This comprehensive analysis of PEC functionalitiesincluding photon absorption, carrier separation, and heterogeneous charge transferinforms strategies for improving PEC activity in the copper vanadate materials system and provides insights that may aid discovery, design, and engineering of new photoelectrode materials.
ISSN:1944-8244
1944-8252
DOI:10.1021/acsami.8b02977