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Z-Scheme Water Splitting Using Two Different Semiconductor Photocatalysts

ACS Catalysis · 2013 · Vol. 3(7) · pp. 1486–1503
Kazuhiko Maeda

Abstract

Water splitting on illuminated semiconductors has long been studied as a potential means of converting solar energy into chemical energy in the form of H2, a clean and renewable energy carrier. Photocatalytic water splitting through two-step photoexcitation using two different semiconductor powders and a reversible donor/acceptor pair (so-called shuttle redox mediator) is one of the possible forms of artificial photosynthesis. This system was inspired by natural photosynthesis in green plants and is called the “Z-scheme”. The development of Z-scheme water splitting systems has relied on both finding a new semiconductor photocatalyst that efficiently works in the presence of a shuttle redox mediator and creating active sites to promote surface chemical reactions while suppressing backward reactions involving redox mediators. This review article describes the historical development of photocatalytic water splitting systems driven by the Z-scheme principle.

Advanced Photocatalysis TechniquesTiO2 Photocatalysis and Solar CellsCopper-based nanomaterials and applicationsWater splittingRedoxPhotocatalysisSemiconductorArtificial photosynthesisPhotoexcitationChemical energyPhotochemistryPhotocatalytic water splittingMaterials science

Funding

  • Nippon Sheet Glass Foundation for Materials Science and Engineering
  • Precursory Research for Embryonic Science and Technology
Citations
1,171
FWCI
28.07
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93
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References
Photocatalytic decomposition of water vapour on an NiO–SrTiO<sub>3</sub>catalyst
Journal of the Chemical Society Chemical Communications · 1980 · 425 citations
Heterogeneous photocatalyst materials for water splitting
Chemical Society Reviews · 2008 · 10,309 citations
New Non-Oxide Photocatalysts Designed for Overall Water Splitting under Visible Light
The Journal of Physical Chemistry C · 2007 · 1,497 citations
Photocatalytic Water Splitting: Recent Progress and Future Challenges
The Journal of Physical Chemistry Letters · 2010 · 2,648 citations
Artificial Photosynthesis: Solar Splitting of Water to Hydrogen and Oxygen
Accounts of Chemical Research · 1995 · 2,554 citations
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