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中性和带电 Hg(n)团簇(n = 2-8)的分子结构、能量和电子性质。

Molecular structures, energetics, and electronic properties of neutral and charged Hg(n) clusters (n = 2-8).

机构信息

Department of Chemistry, KAIST, Daejeon, 305-701, Republic of Korea.

出版信息

J Phys Chem A. 2010 May 13;114(18):5630-9. doi: 10.1021/jp909703u.

Abstract

The geometric and electronic structures of small mercury clusters, Hg(n), Hg(n)(+), and Hg(n)(-) (n </= 8) have been calculated using a density functional theory. The results indicate that as the cluster size increases, the lowest energy states of neutral and anionic mercury clusters prefer three-dimensional structure whereas those of cationic clusters are peculiarly linear structure due to s-p hybridization. This structural feature has influence on the energetic and electronic properties of cationic clusters which deviate from the characteristics of van der Waals cluster. As the cluster size increases, energetic properties, binding energies per atom and second order difference in total energy of cationic clusters consistently decrease, in contrast to the neutral and anionic clusters. However, neutral and charged mercury clusters show common features in terms of size dependent transition of bonding character, such as the decrease of band gap and vertical ionization potential, and the increase of vertical electron affinity. These various properties are also qualitatively and quantitatively in line with the available experimental and theoretical results, implying the reliability of the ground state geometries of these clusters.

摘要

使用密度泛函理论计算了小汞团簇 Hg(n)、Hg(n)(+)和 Hg(n)(-)(n <= 8)的几何和电子结构。结果表明,随着团簇尺寸的增加,中性和阴离子汞团簇的最低能量状态优先具有三维结构,而阳离子团簇的结构则由于 s-p 杂化而呈现出奇特的线性结构。这种结构特征对阳离子团簇的能量和电子性质有影响,使其偏离了范德华团簇的特征。随着团簇尺寸的增加,阳离子团簇的能量特性、每个原子的结合能和总能量的二阶差分一致减小,而中性和阴离子团簇则相反。然而,中性和带电汞团簇在键合性质的尺寸依赖性跃迁方面表现出共同的特征,例如带隙和垂直电离势的减小,以及垂直电子亲和能的增加。这些各种性质在定性和定量上都与可用的实验和理论结果一致,表明这些团簇基态几何形状的可靠性。

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