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Sodium tantalate (NaTaO3), a typical mixed metal oxide with orthorhombic structure, has been modified by incorporation of lanthana (LaxNa(1 − x)TaO(3 + y) or LNTO), followed by doping/co-doping with N and Fe3+, with the objective of improving visible light absorption and photo physical properties.
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As a result, the obtained H-Fe2O3/TiO2 demonstrated a markedly improved visible light-harvesting property.
Ns exhibit the improved visible photocatalytic property with scarce decrease of UV photoactivity.
Zn-Fe2O3 thin films modified with Fe-TiO2 exhibited improved visible light absorption.
The improved visible graph imitating human pipe-routing behaviour is conducted to form possible edge sequence tree.
The calculated optical absorption spectra confirm that (Y, Te -codoped sysTe -codopednificantly improved visystemlighasabsignificantly
In order to improve visible light photocatalytic activity of ZTO nanoparticles, mixed phase zinc stannate/zinc oxide (ZnO) composites were prepared by co-precipitation at room temperature.
The CS/g-C3N4 composites exhibit large specific surface area, improved visible light utilization, more negative potential of conduction band, and enhanced separation of photo-generated charge carriers.
Owing to the synergetic effects of the components, the resulting hybrid heterostructures exhibited much improved visible light photocatalytic performance, which could degrade the RhB dye completely in 7.5 min.
The factors enhancing the photocatalytic performance were the high electron-withdraing ability and high conductivity of goethite and improved visible light-harvesting ability of C-GOF with a hierarchical architecture due to the surface scatring and reflecting effect.
The enhanced photocatalytic activities were ascribed to the combined effects of the highly efficient separation of electrons and holes, improved visible light utilization and increased BET specific surface areas of the Pd-Bi2WO6 nanocomposites.
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