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A computational study on the photoelectric properties of various Bi_2O_3 polymorphs as visible-light driven photocatalysts

机译:各种Bi_2O_3多晶型物作为可见光驱动光催化剂的光电性能的计算研究

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This paper presents first-principle studies on the photoelectric properties of various Bi_2O_3 polymorphs. The intrinsic reason of different photocatalytic activities was revealed by electronic structures and optical features. Results showed that for α, β, and γ- Bi_2O_3, the top of valence bands were mainly constructed by Bi6s and O2p orbitals, and the bottom of conduction bands were dominantly composed by Bi6p orbital. However, two intermediate bands were found at the Fermi level for γ-Bi_2O_3, which leads to a two-step transition from the top of valence band to the bottom of conduction band and facilitates electron transition under irradiation. Absent forbidden gap was found in δ-Bi_2O_3, resulting in a semimetallic character due to its intrinsic oxygen vacancy and high ionic conductivity. Moreover, the optical properties of α, β, and γ-Bi_2O_3 were investigated by absorption spectrum, dielectric constant function, and energy loss spectroscopy. We concluded that the photocatalytic activities followed in the order of γ-Bi_2O_3>β-Bi_2O_3>α-Bi_2O_3, in accord with the experimental report. Calculation results illustrated the experimental observations and provided a useful guidance in exploring promising visible-light semiconductor photocatalysts.
机译:本文介绍了各种Bi_2O_3多晶型物的光电性能的第一性原理研究。电子结构和光学特征揭示了不同光催化活性的内在原因。结果表明,对于α,β和γ-Bi_2O_3,价带的顶部主要由Bi6s和O2p轨道构成,导带的底部主要由Bi6p轨道构成。然而,在γ-Bi_2O_3的费米能级上发现了两个中间带,这导致从价带顶部到导带底部的两步跃迁,并促进了电子在辐照下的跃迁。在δ-Bi_2O_3中未发现禁带,由于其固有的氧空位和高离子电导率,导致了半金属特性。此外,通过吸收光谱,介电常数函数和能量损耗光谱研究了α,β和γ-Bi_2O_3的光学性质。我们得出的结论是,根据实验报告,光催化活性的顺序为γ-Bi_2O_3>β-Bi_2O_3>α-Bi_2O_3。计算结果说明了实验观察结果,并为探索有前途的可见光半导体光催化剂提供了有用的指导。

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