Publication | Open Access
Enhancing visible-light photocatalytic activity of α-Bi <sub>2</sub> O <sub>3</sub> via non-metal N and S doping
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Citations
23
References
2014
Year
EngineeringInorganic PhotochemistryEffective MassChemistryPhotoelectrochemistryBand GapSemiconductorsPhotoredox ProcessNon-metal NPhotocatalysisS DopingMaterials ScienceInorganic ChemistryOxide HeterostructuresPhotochemistryVisible-light Photocatalytic ActivityOxide ElectronicsCatalysisElectronic StructuresFunctional Materials
In recent years, some important research indicated that the visible-light activity of photocatalysts could be enhanced via incorporating p-block non-metal elements into the lattice. In this paper, we investigated the electronic structures of pure and different non-metal (C, N, S, F, Cl, and Br) doped α-Bi2O3 using first-principles calculations based on the density functional theory. The band structures, the electronic densities of states, and the effective masses of electrons and holes for doped α-Bi2O3 were obtained and analyzed. The N and S dopings narrowed the band gap and reduced the effective mass of the carriers, which are beneficial for the photocatalytic performance. The theoretical predication was further confirmed by the experimental results.
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