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首页> 外文期刊>Physica, B. Condensed Matter >The effect of crystal lattice distortions on the electronic band structure and optical properties of the N,V- and N,Na-doped anatase
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The effect of crystal lattice distortions on the electronic band structure and optical properties of the N,V- and N,Na-doped anatase

机译:晶格畸变对掺杂N,V和N,Na的锐钛矿的电子能带结构和光学性能的影响

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摘要

The crystal structure, energy band structure and optical absorption of the N,V-doped and N,Na-doped anatase are studied by means of the first-principle pseudo-potential plane wave and linear muffin-tin orbitals methods. We show that the nitrogen and vanadium atoms have a tendency to form covalently bonded pairs. The crystal lattice distortions associated with doping essentially affect the optical absorption. With doping the impurity bands emerge in the band gap of the host anatase, however, a noticeable increase of optical absorption takes place at the energy only above 3 eV. Possible impact of this effect on the photocatalytic activity of the doped anatase is outlined.
机译:利用第一性原理拟势平面波和线性松饼-锡轨道方法研究了N,V掺杂和N,Na掺杂的锐钛矿的晶体结构,能带结构和光吸收。我们表明,氮和钒原子具有形成共价键对的趋势。与掺杂有关的晶格畸变实质上影响光吸收。掺杂后,杂质带出现在宿主锐钛矿的带隙中,但是,仅在高于3 eV的能量处,光吸收率才显着增加。概述了该效应对掺杂的锐钛矿的光催化活性的可能影响。

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