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中性和带电Pbn团簇(n = 2 - 15)的原子和电子结构:基于密度泛函理论的理论研究

Atomic and electronic structures of neutral and charged Pbn clusters (n=2-15): theoretical investigation based on density functional theory.

作者信息

Rajesh Chinagandham, Majumder Chiranjib

机构信息

Laboratory Nuclear Medicine Section, BARC, Trombay, Mumbai 400 085, India.

出版信息

J Chem Phys. 2007 Jun 28;126(24):244704. doi: 10.1063/1.2741537.

Abstract

The geometric and electronic structures of the Pbn+ clusters (n=2-15) have been investigated and compared with neutral clusters. The search for several low-lying isomers was carried out under the framework of the density functional theory formalism using the generalized gradient approximation for the exchange correlation energy. The wave functions were expanded using a plane wave basis set and the electron-ion interactions have been described by the projector augmented wave method. The ground state geometries of the singly positively charged Pbn+ clusters showed compact growth pattern as those observed for neutrals with small local distortions. Based on the total energy of the lowest energy isomers, a systematic analysis was carried out to obtain the physicochemical properties, viz., binding energy, second order difference in energy, and fragmentation behavior. It is found that n=4, 7, 10, and 13 clusters are more stable than their neighbors, reflecting good agreement with experimental observation. The chemical stability of these clusters was analyzed by evaluating their energy gap between the highest occupied and lowest unoccupied molecular orbitals and adiabatic ionization potentials. The results revealed that, although Pb13 showed higher stability from the total energy analysis, its energy gap and ionization potential do not follow the trend. Albeit of higher stability in terms of binding energy, the lower ionization potential of Pb13 is interesting which has been explained based on its electronic structure through the density of states and electron shell filling model of spherical clusters.

摘要

已对Pbn+团簇(n = 2 - 15)的几何结构和电子结构进行了研究,并与中性团簇进行了比较。在密度泛函理论形式体系的框架下,使用交换相关能的广义梯度近似,对几种低能异构体进行了搜索。波函数使用平面波基组展开,电子 - 离子相互作用采用投影增强波方法描述。单正电荷Pbn+团簇的基态几何结构呈现出紧凑的生长模式,与中性团簇观察到的情况类似,但存在小的局部畸变。基于最低能量异构体的总能量,进行了系统分析以获得其物理化学性质,即结合能、能量的二阶差分和碎片化行为。发现n = 4、7、10和13的团簇比其相邻团簇更稳定,这与实验观察结果吻合良好。通过评估这些团簇最高占据分子轨道和最低未占据分子轨道之间的能隙以及绝热电离势,对其化学稳定性进行了分析。结果表明,尽管从总能量分析来看Pb13显示出更高的稳定性,但其能隙和电离势并不符合该趋势。尽管Pb13在结合能方面具有较高的稳定性,但其较低的电离势很有趣,已通过基于其电子结构的态密度和球形团簇的电子壳层填充模型进行了解释。

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