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  • Oxysulfide photocatalyst fo...
    Wang, Qian; Nakabayashi, Mamiko; Hisatomi, Takashi; Sun, Song; Akiyama, Seiji; Wang, Zheng; Pan, Zhenhua; Xiao, Xiong; Watanabe, Tomoaki; Yamada, Taro; Shibata, Naoya; Takata, Tsuyoshi; Domen, Kazunari

    Nature materials, 08/2019, Letnik: 18, Številka: 8
    Journal Article

    Oxysulfide semiconductors have narrow bandgaps suitable for water splitting under visible-light irradiation, because the electronegative sulfide ions negatively shift the valence band edges of the corresponding oxides . However, the instability of sulfide ions during the water oxidation is a critical obstacle to simultaneous evolution of hydrogen and oxygen . Here, we demonstrate the activation and stabilization of Y Ti O S , with a bandgap of 1.9 eV, as a photocatalyst for overall water splitting. On loading of IrO and Rh/Cr O as oxygen and hydrogen evolution co-catalysts, respectively, and fine-tuning of the reaction conditions, simultaneous production of stoichiometric amounts of hydrogen and oxygen was achieved on Y Ti O S during a 20 h reaction. The discovery of the overall water splitting capabilities of Y Ti O S extends the range of promising materials for solar hydrogen production.