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STRUCTURAL AND DYNAMICAL PROPERTIES OF CU-AU BIMETALLIC CLUSTERS

机译:铜金双金属团簇的结构和动力学性质

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The effect of alloying on the structural and thermal properties of Cun-xAux (n=13,14) clusters is investigated by constant energy Molecular Dynamics simulations. The interactions between the atoms in the clusters are mimicked by a many-body (Gupta-like) potential based on the second moment approximation to the tight-binding model. The minimum energy structures and the lowest-lying isomers of the pure and mixed clusters are obtained by thermal quenching. We find icosahedral-like ground state structures for the 13- and 14-atom clusters and for all the concentrations, the only exception being Au-14 which has C-6v symmetry. Mixed structures are preferred over the segregated ones. The lowest-lying isomers of the binary clusters are the permutational ones; i.e., isomers having the same underlying geometry as the ground state structure and different relative arrangement of the unlike atoms in the atomic positions of the geometry. However, presence of these low lying permutational isomers does not affect the gross features of the melting-like transition. The 13- and 14-atom (icosahedral-like) binary clusters melt in one and two stages, respectively, as the corresponding pure Cu clusters. In constrast the melting-like transition of Au-14 exhibits a single stage. The melting temperature is studied as a function of cluster concentration and size. The main conclusion is that mixed Cu-Au clusters likely behave as pure Cu clusters both from the structural and the dynamical points of view, for all concentrations. (C) 1996 American Institute of Physics. [References: 67]
机译:通过恒能分子动力学模拟研究了合金化对Cun-xAux(n = 13,14)团簇的结构和热性能的影响。簇中原子之间的相互作用被紧密结合模型的第二矩近似所基于的多体(类古普塔)势所模拟。通过热猝灭获得纯的和混合的簇的最小能量结构和最低位的异构体。我们发现13和14原子簇以及所有浓度的二十面体状基态结构,唯一的例外是Au-14具有C-6v对称性。混合结构优于隔离结构。二元簇中最低的异构体是排列的。即,具有与基态结构相同的基本几何结构以及在几何结构的原子位置中不同原子的相对排列不同的异构体。然而,这些低位的排列异构体的存在不影响熔融样转变的总体特征。 13原子和14原子(二十面体状)二元团簇分别在一个阶段和两个阶段融化,成为相应的纯Cu团簇。相比之下,Au-14的熔融样转变表现出单一阶段。研究了熔化温度与团簇浓度和大小的关系。主要结论是,在所有浓度下,从结构和动力学的角度来看,混合的Cu-Au簇都可能表现为纯Cu簇。 (C)1996年美国物理研究所。 [参考:67]

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