Hajime Suzuki
0000-0002-8891-2033
Kyoto University
18 papers found
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Surface Modification with Metal Hexacyanoferrates for Expanding the Choice of H2‐Evolving Photocatalysts for Both Fe3+/Fe2+ Redox‐Mediated and Interparticle Z‐Scheme Water‐Splitting Systems
Conduction Band Control of Oxyhalides with a Triple-Fluorite Layer for Visible Light Photocatalysis
Developing sustainable, high-performance perovskites in photocatalysis: design strategies and applications
Controlling the carrier density in niobium oxynitride BaNbO2N via cation doping for efficient photoelectrochemical water splitting under visible light
Identification of Prime Factors to Maximize the Photocatalytic Hydrogen Evolution of Covalent Organic Frameworks
Fe/Ru Oxide as a Versatile and Effective Cocatalyst for Boosting Z-Scheme Water-Splitting: Suppressing Undesirable Backward Electron Transfer
Band Engineering of Double-Layered Sillén–Aurivillius Perovskite Oxychlorides for Visible-Light-Driven Water Splitting
Improved visible-light activity of nitrogen-doped layered niobate photocatalysts by NH3-nitridation with KCl flux
Flux Synthesis of Layered Oxyhalide Bi4NbO8Cl Photocatalyst for Efficient Z-Scheme Water Splitting Under Visible Light
Mimicking Natural Photosynthesis: Solar to Renewable H2 Fuel Synthesis by Z-Scheme Water Splitting Systems
The first example of an oxide semiconductor photocatalyst consisting of a heptavalent cation: visible-light-induced water oxidation on M3ReO8
New rare earth hafnium oxynitride perovskites with photocatalytic activity in water oxidation and reduction
Valence Band Engineering of Layered Bismuth Oxyhalides toward Stable Visible-Light Water Splitting: Madelung Site Potential Analysis
Tungstic acids H2WO4 and H4WO5 as stable photocatalysts for water oxidation under visible light
Layered Perovskite Oxychloride Bi4NbO8Cl: A Stable Visible Light Responsive Photocatalyst for Water Splitting
Design of nitrogen-doped layered tantalates for non-sacrificial and selective hydrogen evolution from water under visible light
Z-scheme Water Splitting into H2 and O2 Using Tungstic Acid as an Oxygen-evolving Photocatalyst under Visible Light Irradiation
Two-step photocatalytic water splitting into H2 and O2 using layered metal oxide KCa2Nb3O10 and its derivatives as O2-evolving photocatalysts with IO3–/I– or Fe3+/Fe2+ redox mediator
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