Overall photocatalytic water splitting with NiOx–SrTiO3 – a revised mechanism
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A review on visible light active perovskite-based photocatalystsPerovskite-type catalytic materials for environmental applicationsFrom natural to artificial photosynthesisSurface Activation of Faceted Photocatalyst: When Metal Cocatalyst Determines the Nature of the FacetsRecent Progress in Energy-Driven Water Splitting.Nanostructured tungsten trioxide thin films synthesized for photoelectrocatalytic water oxidation: a review.mP-BaP₃: a new phase from an old binary system.Structure, stability and photocatalytic H2 production by Cr-, Mn-, Fe-, Co-, and Ni-substituted decaniobate clusters.Synergetic effect of dual cocatalysts in photocatalytic H₂ production on Pd-IrOx/TiO₂: a new insight into dual cocatalyst location.NiO(x)-Fe2O3-coated p-Si photocathodes for enhanced solar water splitting in neutral pH water.Nickel-Based (Photo)Electrocatalysts for Hydrogen Production.Effects of the SrTiO3 support on visible-light water oxidation with Co3O4 nanoparticles.Surfactant-free nanoparticle-DNA complexes with ultrahigh stability against salt for environmental and biological sensing.Synthesis of Cr and La-codoped SrTiO3 nanoparticles for enhanced photocatalytic performance under sunlight irradiation.Exploring the mechanism of water-splitting reaction in NiOx/β-Ga₂O₃ photocatalysts by first-principles calculations.The effect of crystallinity on photocatalytic performance of Co3O4 water-splitting cocatalysts.Topochemical synthesis and photocatalytic activity of 3D hierarchical BaTiO3 microspheres constructed from crystal-axis-oriented nanosheets.Novel Au/La-SrTiO3 microspheres: superimposed effect of gold nanoparticles and lanthanum doping in photocatalysis.Efficient chemical and visible-light-driven water oxidation using nickel complexes and salts as precatalysts.Unveiling hole trapping and surface dynamics of NiO nanoparticles.Transition Metal Disulfides as Noble-Metal-Alternative Co-Catalysts for Solar Hydrogen ProductionExceptional enhancement of H2 production in alkaline environment over plasmonic Au/TiO2 photocatalyst under visible light
P2860
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P2860
Overall photocatalytic water splitting with NiOx–SrTiO3 – a revised mechanism
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im Januar 2012 veröffentlichter wissenschaftlicher Artikel
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wetenschappelijk artikel
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наукова стаття, опублікована у 2012
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name
Overall photocatalytic water splitting with NiOx–SrTiO3 – a revised mechanism
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Overall photocatalytic water splitting with NiOx–SrTiO3 – a revised mechanism
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type
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Overall photocatalytic water splitting with NiOx–SrTiO3 – a revised mechanism
@en
Overall photocatalytic water splitting with NiOx–SrTiO3 – a revised mechanism
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prefLabel
Overall photocatalytic water splitting with NiOx–SrTiO3 – a revised mechanism
@en
Overall photocatalytic water splitting with NiOx–SrTiO3 – a revised mechanism
@nl
P2093
P2860
P356
P1476
Overall photocatalytic water splitting with NiOx–SrTiO3 – a revised mechanism
@en
P2093
Frank E. Osterloh
Nigel D. Browning
Troy K. Townsend
P2860
P356
10.1039/C2EE22665K
P577
2012-01-01T00:00:00Z