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Effect of Alkali Metal Atoms Doping on Structural and Nonlinear Optical Properties of the Gold-Germanium Bimetallic Clusters

机译:碱金属原子掺杂对金-锗双金属簇的结构和非线性光学性质的影响

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A new series of alkali-based complexes, AM@Ge n Au (AM = Li, Na, and K), have been theoretically designed and investigated by means of the density functional theory calculations. The geometric structures and electronic properties of the species are systematically analyzed. The adsorption of alkali metals maintains the structural framework of the gold-germanium bimetallic clusters, and the alkali metals prefer energetically to be attached on clusters’ surfaces or edges. The high chemical stability of Li@Ge 12 Au is revealed by the spherical aromaticity, the hybridization between the Ge atoms and Au-4 d states, and delocalized multi-center bonds, as well as large binding energies. The static first hyperpolarizability ( β tot ) is related to the cluster size and geometric structure, and the AM@Ge n Au (AM = Na and K) clusters exhibit the much larger β tot values up to 13050 a.u., which are considerable to establish their strong nonlinear optical (NLO) behaviors. We hope that this study will promote further application of alkali metals-adsorbed germanium-based semiconductor materials, serving for the design of remarkable and tunable NLO materials.
机译:通过密度泛函理论计算,从理论上设计和研究了一系列新的碱金属配合物AM @ Ge n Au(AM = Li,Na和K)。系统地分析了该物种的几何结构和电子特性。碱金属的吸附保持了金锗双金属簇的结构框架,碱金属更倾向于从能量上附着在簇的表面或边缘上。 Li @ Ge 12 Au的高化学稳定性通过球形芳香性,Ge原子与Au-4 d态之间的杂化以及离域的多中心键以及大的结合能来揭示。静态第一超极化率(βtot)与团簇的大小和几何结构有关,AM @ Ge n Au(AM = Na和K)团簇的βtot值最大,高达13050 au,这对于建立具有很强的非线性光学(NLO)行为。我们希望这项研究将促进碱金属吸附锗基半导体材料的进一步应用,为设计卓越且可调谐的NLO材料提供帮助。

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