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PbnM(M = C、Al、In、Mg、Sr、Ba和Pb;n = 8、10、12和14)团簇的结构和电子性质:基于第一性原理计算的理论研究

Structure and electronic properties of PbnM (M=C, Al, In, Mg, Sr, Ba, and Pb; n=8, 10, 12, and 14) clusters: theoretical investigations based on first principles calculations.

作者信息

Rajesh Chinagandham, Majumder Chiranjib

机构信息

Laboratory Nuclear Medicine Section, BARC, Trombay, Mumbai 400085, India.

出版信息

J Chem Phys. 2008 Jan 14;128(2):024308. doi: 10.1063/1.2814166.

Abstract

A systematic theoretical study of the PbnM (M=C, Al, In, Mg, Sr, Ba, and Pb; n=8, 10, 12, and 14) clusters have been investigated to explore the effect of impurity atoms on the structure and electronic properties of lead clusters. The calculations were carried out using the density functional theory with generalized gradient approximation for exchange-correlation potential. Extensive search based on large numbers of initial configurations has been carried out to locate the stable isomers of PbnM clusters. The results revealed that the location of the impurity atom depends on the nature of interaction between the impurity atom and the host cluster and the size of the impurity atom. Whereas, the impurity atoms smaller than Pb favor to occupy the endohedral position, the larger atoms form exohedral capping of the host cluster. The stability of these clusters has been analyzed based on the average binding energy, interaction energy of the impurity atoms, and the energy gap between the highest occupied and lowest unoccupied energy levels (HLG). Based on the energetics, it is found that p-p interaction dominates over the s-p interaction and smaller size atoms interact more strongly. The stability analysis of these clusters suggests that, while the substitution of Pb by C or Al enhances the stability of the Pbn clusters, Mg lowers the stability. Further investigations of the stability of PbnM clusters reveal that the interplay between the atomic and electronic structure is crucial to understand the stability of these clusters. The energy gap analysis reveals that, while the substitution of Mg atom widens the HLG, all other elements reduce the gap of the PbnM clusters.

摘要

已对PbnM(M = C、Al、In、Mg、Sr、Ba和Pb;n = 8、10、12和14)团簇进行了系统的理论研究,以探索杂质原子对铅团簇结构和电子性质的影响。使用密度泛函理论并采用广义梯度近似来计算交换相关势,进行了这些计算。基于大量初始构型进行了广泛搜索,以确定PbnM团簇的稳定异构体。结果表明,杂质原子的位置取决于杂质原子与主体团簇之间的相互作用性质以及杂质原子的大小。然而,比Pb小的杂质原子倾向于占据内包位置,较大的原子则形成主体团簇的外包封。已基于平均结合能、杂质原子的相互作用能以及最高占据能级和最低未占据能级之间的能隙(HLG)对这些团簇的稳定性进行了分析。基于能量学发现,p-p相互作用比s-p相互作用占主导,且较小尺寸的原子相互作用更强。这些团簇的稳定性分析表明,虽然用C或Al替代Pb会增强Pbn团簇的稳定性,但Mg会降低稳定性。对PbnM团簇稳定性的进一步研究表明,原子结构和电子结构之间的相互作用对于理解这些团簇的稳定性至关重要。能隙分析表明,虽然用Mg原子替代会拓宽HLG,但所有其他元素都会减小PbnM团簇的能隙。

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