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Structural stability, electronic structures and enhanced photocatalytic properties of BiF3 nanowires: A first-principles study

机译:BIF3纳米线的结构稳定性,电子结构和增强的光催化性能:第一原理研究

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摘要

Three types of BiF3 nanowires (NWs) with different sizes have been investigated via the first-principles calculaition. The stoichiometric NWs is found to be the most stable structure, while F-terminated NWs is the most unstable one. It is found that the surface electronic states strongly influence the band structure of BiF-terminated NWs and that of stoichiometric NWs, making their band gaps all essentially smaller than that of bulk BiF3. For F-terminated NWs, the reduction effect of band gap is weaker. The critical states of valence band maximum (VBM), conduction band minimum (CBM) and the bands near the Fermi level are found to be located on surface atoms in BiF-terminated NWs and stoichiometric NWs, which could enhance their photocatalytic activities, and with their high valence band edge positions and small band gaps this two types of BiF3 NWs are predicted to have better photocatalytic properties than bulk BiF3.
机译:已经通过第一原理凝视研究了三种类型的BIF3纳米线(NWS),具有不同尺寸。 发现化学计量的NWS是最稳定的结构,而F端终止的NW是最不稳定的。 结果发现,表面电子状态强烈影响BIF端接NWS的带结构和化学计量的NWS的带状结构,使其带空隙基本上小于散装BIF3。 对于F终止的NW,带隙的减少效果较弱。 价带最大值(VBM)的临界状态(VBM),导电带最小(CBM)和靠近费米水平附近的带位于BIF端终止的NWS和化学计量NWS的表面原子上,这可以增强它们的光催化活性,并与其增强 它们的高价带边缘位置和小频带间隙这两种类型的BIF 3 NWS预测比散装BIF 3更好的光催化性质。

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