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In-Situ Preparation of Black TiO2/Cu2O/Cu Composites as an Efficient Photocatalyst for Degradation Pollutants and Hydrogen Production
In-Situ Preparation of Black TiO2/Cu2O/Cu Composites as an Efficient Photocatalyst for Degradation Pollutants and Hydrogen Production
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In-Situ Preparation of Black TiO2/Cu2O/Cu Composites as an Efficient Photocatalyst for Degradation Pollutants and Hydrogen Production
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In-Situ Preparation of Black TiO2/Cu2O/Cu Composites as an Efficient Photocatalyst for Degradation Pollutants and Hydrogen Production
In-Situ Preparation of Black TiO2/Cu2O/Cu Composites as an Efficient Photocatalyst for Degradation Pollutants and Hydrogen Production

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In-Situ Preparation of Black TiO2/Cu2O/Cu Composites as an Efficient Photocatalyst for Degradation Pollutants and Hydrogen Production
In-Situ Preparation of Black TiO2/Cu2O/Cu Composites as an Efficient Photocatalyst for Degradation Pollutants and Hydrogen Production
Journal Article

In-Situ Preparation of Black TiO2/Cu2O/Cu Composites as an Efficient Photocatalyst for Degradation Pollutants and Hydrogen Production

2022
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Overview
In the present work, non-precious Cu2O and Cu loaded hydrogenated black TiO2 nanoparticles were prepared, and the H2 evolution and the removal of a waterbased organic pollutant under UV light were studied. The results revealed that the BTiO2/Cu2O/Cu (TC6-350) sample exhibited an improved photocatalytic hydrogen evolution performance, about 47 times higher than that of the TiO2, and photocatalytic degradation of the Rhodamine B aqueous solution about 2.2 times faster than the TiO2. The enhanced photocatalytic activity can be attributed to the integration of energy band alignment, effective carrier separation, and low charge transfer resistance. In addition, the constructed B–TiO2/Cu2O/Cu nanocomposite exhibited light stability, making it a long-term competitive photocatalyst for H2 evolution. Therefore, the B–TiO2/Cu2O photocatalyst is a promising candidate for a variety of photocatalytic applications.