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Study of pure and doped hydrogenated germanium cages: a density functional investigation

机译:纯掺杂氢化锗笼的研究:密度泛函研究

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In this paper we present an ab initio electronic-structure calculation performed using density functional theory (DFT) with a polarized basis set (SDD) within the spin polarized generalized gradient approximation for pure and divalent transition metal doped hydrogenated germanium nanocluster cages GenHnM (M = Zn, Cd and Hg, n = 6-28). In the first step of the calculation, geometrical optimizations of the nanoclusters are done. In the next step only the ground state optimized geometries are used to calculate the binding energy (E-b), HOMO-LUMO gap (Delta E-g) and embedding energy of the clusters. To study the optical behaviour of the clusters, IR and Raman spectra are calculated. Further calculations on cation and anion clusters have been done only for pure and Zn doped clusters to obtain their vertical ionization potential ( VIP), adiabatic electron affinity ( AEA) and chemical potential.
机译:在本文中,我们介绍了使用密度泛函理论(DFT)和极化基集(SDD)在纯和二价过渡金属掺杂的氢化锗纳米簇笼GenHnM(M = Zn,Cd和Hg,n = 6-28)。在计算的第一步中,完成了纳米团簇的几何优化。在下一步中,仅使用基态优化的几何形状来计算簇的结合能(E-b),HOMO-LUMO间隙(ΔE-g)和嵌入能。为了研究团簇的光学行为,计算了IR和拉曼光谱。仅对纯和锌掺杂的簇进行了阳离子和阴离子簇的进一步计算,以获得其垂直电离势(VIP),绝热电子亲和力(AEA)和化学势。

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