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In situ formation of surface sulfide species and its role in enhancing the photocatalytic and photoelectrochemical properties of wide bandgap ZrO2

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Abstract Development of visible light active photocatalysts for hydrogen generation from water is important for the effective utilization of solar energy. In this paper, we demonstrate visible light photocatalytic activity… Click to show full abstract

Abstract Development of visible light active photocatalysts for hydrogen generation from water is important for the effective utilization of solar energy. In this paper, we demonstrate visible light photocatalytic activity (>410 nm) for wide bandgap ZrO2 when irradiated in the presence of Na2S and Na2SO3 (SS) as sacrificial reagents instead of methanol. When irradiated with fluorescent lamp (UV

Keywords: formation surface; bandgap zro2; situ formation; wide bandgap

Journal Title: Molecular Catalysis
Year Published: 2017

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