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首页> 外文期刊>Journal of King Saud University-Engineering Sciences >First-principles calculation on electronic properties of zinc oxide by zinc–air system
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First-principles calculation on electronic properties of zinc oxide by zinc–air system

机译:锌-空气体系计算氧化锌电子性质的第一性原理

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First-principles calculations are performed to study the electronic properties of zinc oxide (ZnO) formed on an anode after discharging a Zn–air system. Prior to calculation, the ZnO is characterised by X-ray diffraction using Rietveld refinement. Diffracted patterns proved the formation of single phase ZnO, while Rietveld analysis shows that the ZnO has a hexagonal wurtzite structure with lattice parameters, a =3.244 and c =5.199?. Geometry optimisation of the hexagonal wurtzite structure of the ZnO is performed using various exchange–correlation energy functionals. The local density approximation functional method is used to explain the structure, electronic band structure and density of state properties of hexagonal ZnO. The calculated energy band gap was 0.75eV while the density of states reveals that the O 2p (the top valence band) and Zn 4s (the bottom conduction band) states domination.
机译:进行第一性原理计算以研究在放电Zn-空气系统后在阳极上形成的氧化锌(ZnO)的电子性质。在计算之前,使用Rietveld精炼通过X射线衍射对ZnO进行表征。衍射图谱证明了单相ZnO的形成,而Rietveld分析表明该ZnO具有六方纤锌矿结构,晶格参数为a = 3.244和c = 5.199?。 ZnO六方纤锌矿结构的几何优化是使用各种交换相关能量函数进行的。用局部密度近似泛函方法解释了六方形ZnO的结构,电子能带结构和状态特性密度。计算出的能带隙为0.75eV,而态密度表明O 2p(顶部价带)和Zn 4s(底部导带)处于支配地位。

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