Cobalt-to-vanadium charge transfer in polyoxometalate water oxidation catalysts revealed by 2p3d resonant inelastic X-ray scattering

Publication date

2018-01-01

Authors

Liu, B.ISNI 0000000506017839
Glass, Elliot N.
Wang, Ru-PanISNI 0000000506297519
Cui, Yi Tao
Harada, Yoshihisa
Huang, Di Jing
Schuppler, Stefan
Hill, Craig L.
De Groot, F.ISNI 0000000114483312

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Advisors

Supervisors

Document Type

Article
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License

taverne

Abstract

Two isostructural cobalt containing polyoxometalate water oxidation catalysts, [Co4(H2O)2(α-PW9O34)2]10- (Co4P2) and [Co4(H2O)2(α-VW9O34)2]10- (Co4V2), exhibit large differences in their catalytic performance. The substitution of phosphorus centers in Co4P2 with redox-active vanadium centers in Co4V2 leads to electronic structure modifications. Evidence for the significance of the vanadium centers to catalysis, predicted by theory, was found from soft X-ray absorption (XAS) and resonant inelastic X-ray scattering (RIXS). The XAS and RIXS spectra determine the electronic structure of the cobalt and vanadium sites in the pre-reaction state of both Co4V2 and Co4P2. High-energy resolution RIXS results reveal that Co4V2 possesses a smaller ligand field within the tetra-cobalt core and a cobalt-to-vanadium charge transfer band. The differences in electronic structures offer insights into the enhanced catalysis of Co4V2.

Keywords

Taverne, General Physics and Astronomy, Physical and Theoretical Chemistry

Citation

Liu, B, Glass, E N, Wang, R P, Cui, Y T, Harada, Y, Huang, D J, Schuppler, S, Hill, C L & De Groot, F M F 2018, 'Cobalt-to-vanadium charge transfer in polyoxometalate water oxidation catalysts revealed by 2p3d resonant inelastic X-ray scattering', Physical Chemistry Chemical Physics, vol. 20, no. 6, pp. 4554-4562. https://doi.org/10.1039/c7cp06786k