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First-principles study of the geometrical and electronic structures of In-n (n=2-16) clusters

机译:In-n(n = 2-16)团簇的几何和电子结构的第一性原理研究

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摘要

The lowest-energy structures and electronic properties of indium clusters have been systematically investigated by using density-functional theory with the generalized gradient approximation (GGA). Our calculations show that the lowest-energy structure for the n atom cluster can be obtained by capping an atom on the structure of the n - 1 atom cluster. With increasing cluster size, we find that indium clusters tend to adopt compact structures. The calculated results on the average binding energy, second-order difference of cluster energies, the vertical ionization potentials as well as the HOMO-LUMO gaps of the In-n (n = 2-16) clusters indicate that the relative stability of In-2, In-4, In-6, In-8, In-10 and In-13 is stronger than that of other size clusters. On the other hand, stability of In clusters can also be explained according to the average slope of the average binding energy curve varying with cluster size n. Moreover, the stability is more prominent at n = 8 and 13.
机译:利用密度泛函理论和广义梯度近似(GGA),系统研究了铟团簇的最低能级结构和电子性质。我们的计算表明,通过在n-1原子簇的结构上加一个原子,可以获得n原子簇的最低能量结构。随着团簇尺寸的增加,我们发现铟团簇倾向于采用紧凑的结构。 In-n(n = 2-16)团簇的平均结合能,团簇能量的二级差,垂直电离势以及HOMO-LUMO间隙的计算结果表明,In-n团簇的相对稳定性2,In-4,In-6,In-8,In-10和In-13比其他大小的群集强。另一方面,还可以根据随团簇尺寸n变化的平均结合能曲线的平均斜率来说明In团簇的稳定性。此外,在n = 8和13时,稳定性更加突出。

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