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The structural, electronic and optical properties of Au-ZnO interface structure from the first-principles calculation

机译:来自第一原理计算的Au-Zno接口结构的结构,电子和光学性能

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The interface structure, electronic and optical properties of Au-ZnO are studied using the first-principles calculation based on density functional theory (DFT). Given the interfacial distance, bonding configurations and terminated surface, we built the optimal interface structure and calculated the electronic and optical properties of the interface. The total density of states, partial electronic density of states, electric charge density and atomic populations (Mulliken) are also displayed. The results show that the electrons converge at 0 atoms at the interface, leading to a stronger binding of interfaces and thereby affecting the optical properties of interface structures. In addition, we present the binding energies of different interface structures. When the interface structure of Au-ZnO gets changed, furthermore, varying optical properties are exhibited.
机译:使用基于密度泛函理论(DFT)的第一原理计算来研究Au-ZnO的界面结构,电子和光学性质。 鉴于界面距离,粘接配置和终止表面,我们建立了最佳界面结构,并计算了接口的电子和光学特性。 还显示出状态的总密度,部分电子密度,电荷密度和原子种群(Mulliken)。 结果表明,电子在界面处的0个原子收敛,导致界面的更强的结合,从而影响界面结构的光学性质。 此外,我们介绍了不同界面结构的绑定能量。 此外,当Au-ZnO的界面结构变为改变时,展示了不同的光学性质。

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