Journal
CHEMICAL COMMUNICATIONS
Volume 53, Issue 94, Pages 12638-12641Publisher
ROYAL SOC CHEMISTRY
DOI: 10.1039/c7cc05094a
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Funding
- EPSRC
- World Premier International Research Center Initiative, MEXT, Japan
- Engineering and Physical Sciences Research Council [1504802] Funding Source: researchfish
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Visible-light driven H-2 evolution in water is achieved using catechol-photosensitised TiO2 nanoparticles with a molecular nickel catalyst. Layer-by-layer immobilisation of catechol-TiO2 onto tin-doped indium oxide electrodes generates photocathodic currents in the presence of an electron acceptor. This approach represents a new strategy for controlling photocurrent direction in dye-sensitised photoelectrochemical applications.
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