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首页> 外文期刊>The Journal of Chemical Physics >Structural characterizations and electronic properties of Ti-doped SnO_2(110)surface:A first-principles study
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Structural characterizations and electronic properties of Ti-doped SnO_2(110)surface:A first-principles study

机译:掺Ti SnO_2(110)表面的结构表征和电子性能:第一性原理研究

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The Ti-doped SnO_2(110)surface has been investigated by using first-principles method with a slab model.The geometrical optimizations and band-structure calculations have been performed for four possible doping models.Our results indicate that the substitution of Ti for sixfold-coordinated Sn atom at the top layer is most energetically favorable.Compared to the undoped surface,those Sn and O atoms located above Ti atom tend to move toward the bulk side.Besides the surface relaxations,the doping of Ti has significant influences on the electronic structures of SnO_2(110)surface,including the value and position of minimum band gap,the components of valence and conduction bands,the distributions of the charge densities,and the work function of the surface.Furthermore,the effects introduced by the substitution of Ti atom observed in the experiments can be well explained when the sixfold-coordinated Sn atom at the first layer is replaced by Ti atom.
机译:采用第一性原理和平板模型研究了掺Ti的SnO_2(110)表面,对四种可能的掺杂模型进行了几何优化和能带结构计算,结果表明Ti被替代了六倍。与未掺杂的表面相比,位于Ti原子上方的那些Sn和O原子趋向于向体侧移动。除了表面弛豫之外,Ti的掺杂也对未掺杂表面具有显着影响。 SnO_2(110)表面的电子结构,包括最小带隙的值和位置,价带和导带的组成,电荷密度的分布以及表面的功函数。此外,取代带来的效应当第一层的六重配位的Sn原子被Ti原子取代时,可以很好地解释实验中观察到的Ti原子的原子数。

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