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First-principles study of structural, electronic, and optical properties of the rutile TiO_2(011)-2 × 1 surface

机译:金红石型TiO_2(011)-2×1表面的结构,电子和光学性质的第一性原理研究

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This work investigates surface reconstruction, electronic structure, and optical properties of the rutile TiO_2(011)-2 × 1 surface using means of density functional theory calculations. For the surface reconstruction of the rutile TiO_2(011) surface, a theoretical simulation with forming from bulk truncation to the 2 × 1 reconstruction was carried out. The calculated band structure shows a direct band gap at Γ point, and the band gap of 2.08 eV reproduces the experimental measurement value ~2.10 eV very well. Analysis of the density of states reveals that no surface state was introduced into the forbidden gap. Not coincidentally, the calculated optical absorption edge at about 2.01 eV further clarifies the band gap narrowing and such an intrinsic band gap nature effectively pushes the optical absorption edge into the visible light Hence, our theoretical calculations provide evidence that the rutile TiO_2(011)-2 × 1 surface possesses high photocatalytic activity.
机译:这项工作使用密度泛函理论计算方法研究了金红石型TiO_2(011)-2×1表面的表面重建,电子结构和光学性质。对于金红石型TiO_2(011)表面的表面重建,进行了从本体截短到2×1重建的理论模拟。计算得出的能带结构在Γ点处显示直接带隙,而2.08 eV的带隙很好地再现了实验测量值〜2.10 eV。对态密度的分析表明,没有表面态被引入到禁隙中。并非巧合的是,在大约2.01 eV处计算出的光吸收边缘进一步澄清了带隙变窄,并且这种固有的带隙性质有效地将光吸收边缘推入可见光。因此,我们的理论计算提供了金红石TiO_2(011)- 2×1表面具有较高的光催化活性。

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