首页> 外文期刊>The Journal of Chemical Physics >Correlations between bonding, size, and second hyperpolarizability (gamma) of small semiconductor clusters: Ab initio study on AlnPn clusters with n=2, 3, 4, 6, and 9
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Correlations between bonding, size, and second hyperpolarizability (gamma) of small semiconductor clusters: Ab initio study on AlnPn clusters with n=2, 3, 4, 6, and 9

机译:小型半导体簇的键合,大小和第二超极化率(γ)之间的相关性:对n = 2、3、4、6和9的AlnPn簇的从头算研究

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A comprehensive investigation of the correlation between the second hyperpolarizability and the bonding and structural characteristics of stoichiometric aluminum phosphide clusters up to 18 atoms is presented. Several aluminum phosphide species displaying different types of configurations and bonding have been studied. The obtained ab initio and density functional finite field results suggest that the ionic AlP clusters are considerably less hyperpolarizable than the covalent bonded species. Other structural features such as symmetry, atoms' arrangement, and shape also play an important role on the hyperpolarizabilities of those species. However, they are only noticeable among clusters characterized by the same bonding patterns. Furthermore, the results of this study demonstrate that the bonding which is determined by the atoms' arrangement of a cluster has a more profound effect on the second hyperpolarizability than the cluster's composition or size. In addition, the mean second hyperpolarizability increases with the increasing number of atoms, assuming that the bonding characteristics among the clusters of increasing size are similar. On the other hand, the hyperpolarizability per atom rapidly decreases with the increase of atoms' number in the cluster and converges to values of similar to 900e(4)a(0)(4) and similar to 1300e(4)a(0)(4)Eh(-3) at the HF/cc-pVDZ and MP2/cc-pVDZ levels of theory respectively. Lastly, this work provides the first systematic study on the hyperpolarizabilities of small aluminum phosphide clusters which, in their covalent forms, exhibit larger second order hyperpolarizabilities than the well studied small gallium arsenide clusters. (c) 2008 American Institute of Physics.
机译:提出了对第二超极化率与化学计量的磷化铝簇团(最多18个原子)的键合和结构特征之间的相关性的全面研究。已经研究了几种显示出不同类型的构型和键合的磷化铝物质。从头算和密度泛函的有限域结果表明,离子型AlP团簇比共价键合团簇的超极化性小得多。其他结构特征(例如对称性,原子的排列和形状)也对这些物种的超极化性起着重要作用。但是,它们仅在以相同键合模式为特征的群集中可见。此外,这项研究的结果表明,由簇的原子排列决定的键合对第二超极化性的影响远大于簇的组成或大小。另外,假设增加尺寸的簇之间的键合特性相似,则平均第二超极化率随原子数的增加而增加。另一方面,每个原子的超极化性随簇中原子数的增加而迅速降低,并收敛到类似于900e(4)a(0)(4)和类似于1300e(4)a(0)的值(4)Eh(-3)分别在理论上的HF / cc-pVDZ和MP2 / cc-pVDZ级别。最后,这项工作为小型磷化铝团簇的超极化性提供了首次系统研究,这些磷化铝团簇的共价形式比经过充分研究的小型砷化镓团簇具有更大的二阶超极化性。 (c)2008年美国物理研究所。

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