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Structure and electronic excitation spectra of low-lying isomers of Au-n clusters (n=2-20). A DFT study

机译:Au-n簇的低位异构体的结构和电子激发光谱(n = 2-20)。 DFT研究

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摘要

The global structure optimization using the DFT-calibrated empirical potentials followed by the geometry optimization at the DFT level (BPW91/LANL2DZ) has been carried out in order to locate the low-lying isomers of Au-n, clusters (n = 2-20) modeling the sub-nanoparticles of the photocatalytic composite materials. The total energies, thermodynamic parameters and electronic properties of the located global and low-lying structures of various multiplicities are estimated, and their dependence on the nuclearity and cluster morphology are discussed. For the low-lying isomers, the electronic excitations spectra were calculated at the CAM-B3LYP/LANL2DZ level, and the electronic density redistribution during the excitations were analyzed. This analysis demonstrates that the planar clusters have the highest absorption ability and, at the same time, are the favorable structures for the intermolecular charge redistribution.
机译:已经进行了使用DFT校准的经验潜力的全局结构优化,然后进行DFT级别(BPW91 / LANL2DZ)的几何优化,以定位Au-N,簇的低位异构体(n = 2-20 )模拟光催化复合材料的亚纳米颗粒。 据估计,所定位的全局和低洼结构的总能量,热力学参数和电子特性,并讨论了它们对核电和群体形态的依赖。 对于低洼的异构体,在CAM-B3LYP / LANL2DZ水平上计算电子激发谱,分析了激发过程中的电子密度再分配。 该分析表明平面簇具有最高的吸收能力,同时是分子间电荷再分布的有利结构。

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