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Three-Dimensional Assignment of the Structures of Atomic Clusters: an Example of Au8M (M=Si Ge Sn) Anion Clusters

机译:原子团簇结构的三维分配:一个Au8M(M = SiGeSn)阴离子团簇的例子

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摘要

Identification of different isomer structures of atomic and molecular clusters has long been a challenging task in the field of cluster science. Here we present a three-dimensional (3D) assignment method, combining the energy (1D) and simulated (2D) spectra to assure the assignment of the global minimum structure. This method is more accurate and convenient than traditional methods, which only consider the total energy and first vertical detachment energies (VDEs) of anion clusters. There are two prerequisites when the 3D assignment method is ultilized. First, a reliable global minimum search algorithm is necessary to explore enough valleys on the potential energy surface. Second, trustworthy simulated spectra are necessary, that is to say, spectra that are in quantitative agreement. In this paper, we demonstrate the validity of the 3D assignment method using Au8M (M = Si, Ge, Sn) systems. Results from this study indicate that the global minimum structures of Au8Ge and Au8Sn clusters are different from those described in previous studies.
机译:在原子团簇科学领域,鉴定原子团簇和分子团簇的不同异构体结构一直是一项艰巨的任务。在这里,我们提出了一种三维(3D)分配方法,将能量(1D)和模拟(2D)光谱结合起来以确保分配全局最小结构。该方法比传统方法更准确,更方便,传统方法仅考虑阴离子簇的总能量和第一垂直脱离能(VDE)。使用3D分配方法时有两个先决条件。首先,必须使用可靠的全局最小搜索算法来探索势能表面上足够的波谷。第二,值得信赖的模拟光谱是必需的,也就是说,光谱上的定量一致。在本文中,我们证明了使用Au8M -(M = Si,Ge,Sn)系统的3D分配方法的有效性。这项研究的结果表明,Au8Ge -和Au8Sn -团簇的整体最小结构不同于先前的研究。

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