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gOverall Water Splitting by a SrTaO2N-Based Photocatalyst Decorated with an Ir-Promoted Ru-Based Cocatalysth
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(798) Z. Wang, J. Seo, T. Hisatomi, M. Nakabayashi, J. Xiao, S. Chen, L. Lin, Z. Pan, M. Krause, N. Yin, G. Smith, N. Shibata, T. Takata, K. Domen
gEfficient visible-light-driven water oxidation by single-crystal Ta3N5 nanoparticlesh
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(799) Y. Pihosh, V. Nandal, T. Higashi, R. Shoji, R. Bekarevich, H. Nishiyama, T. Yamada, V. Nicolosi, T. Hisatomi, H. Matsuzaki, K. Seki, K. Domen
gTantalum Nitride-Enabled Solar Water Splitting with Efficiency Above 10%h
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(800) S. Chen, S. Nandy, J. J. M. Vequizo, T. Hisatomi, M. Nakabayashi, Z. Pan, Q. Xiao, Z. Wang, L. Lin, S. Sun, K. Kato, A. Yamakata, N. Shibata, T. Takata, F. Zhang, K. Domen
gPromoted Utilization of Charge Carriers in La5Ti2Cu0.9Ag0.1O7S5-Based Photocatalyst Sheets for Efficient Z-Scheme Overall Water Splittingh
ACS Catal., 2023, 13, 3285-3294.
(801) Y. Kageshima, S. Kato, S. Shiga, F. Takagi, H. Minamisawa, M. Horita, T. Yamakami, K. Teshima, K. Domen, H. Nishikiori
gImpact of Ball Milling on the Hydrogen Evolution Performance of Cu2Sn0.38Ge0.62S3 Photocatalytic Particles Synthesized via a Flux Methodh
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(802) A. S. Alotabi, T. D. Small, Y. Yin, D. J. Osborn, S. Ozaki, Y. Kataoka, Y. Negishi, K. Domen, G. F. Metha, G. G. Andersson
gReduction and Diffusion of Cr-Oxide Layers into P25, BaLa4Ti4O15, and Al:SrTiO3 Particles upon High-Temperature Annealingh
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(803) M. Nakabayashi, K. Nishiguchi, X. Liang, T. Hisatomi, T. Takata, T. Tsuchimochi, N. Shibata, K. Domen, S. L. Ten-no
gCharacterization of Planar Defect in Layered Perovskite Photocatalyst Y2Ti2O5S2 by Electron Microscopy and First-Principles Calculationsh
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(804) X. Wang, Z. Pan, J. J. M. Vequizo, T. Hisatomi, S. Nandy, T. Higashi, L. Lin, J. Xiao, T. Takata, A. Yamakata, W. Yan, K. Domen
gCo-doping of a La5Ti2Cu0.9Ag0.1O7S5 photocatalyst (ă < 700 nm) with Ga and Al to enhance photocatalytic H2 evolutionh
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gOxide layer coating enabling oxysulfide-based photocatalyst sheet to drive Z-scheme water splitting at atmospheric pressureh
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gPhotodeposition of Fe-Based Cocatalysts Capable of Effectively Promoting the Oxygen Evolution Activity of BaTaO2Nh
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(807) L. Li, P. Kaewdee, V. Nandal, R. Shoji, H. Matsuzaki, K. Seki, M. Nakabayashi, N. Shibata, X. Tao, X. Liang, Y. Ma, T. Hisatomi, T. Takata, K. Domen
gFlux-Assisted Synthesis of Y2Ti2O5S2 for Photocatalytic Hydrogen and Oxygen Evolution Reactionsh
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gOrigin of Enhanced Overall Water Splitting Efficiency in Aluminum-Doped SrTiO3 Photocatalysth
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gProduction of Methane by Sunlight-Driven Photocatalytic Water Splitting and Carbon Dioxide Methanation as a Means of Artificial Photosynthesish
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(810) H. Yoshida, Z. Pan, R. Shoji, V. Nandal, H. Matsuzaki, K. Seki, L. Lin, M. Kaneko, T. Fukui, K. Yamashita, T. Takata, T. Hisatomi, K. Domen
gAn Oxysulfide Photocatalyst Evolving Hydrogen with an Apparent Quantum Efficiency of 30% under Visible Lighth
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gCorrection on "An Oxysulfide Photocatalyst Evolving Hydrogen with an Apparent Quantum Efficiency of 30% under Visible Lighth Angew. Chem. Int. Ed., 135, 46, 2023, e202312938"
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gCriteria for Efficient Photocatalytic Water Splitting Revealed by Studying Carrier Dynamics in a Model Al-doped SrTiO3 Photocatalysth
Angew. Chem. Int. Ed., 2023, 62, e202313537 (9 pages).