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小钾团簇性质的从头算研究。

Ab initio studies of properties of small potassium clusters.

作者信息

Banerjee Arup, Ghanty Tapan K, Chakrabarti Aparna

机构信息

Laser Physics Application Division, Raja Ramanna Centre for Advanced Technology, Indore 452013, India.

出版信息

J Phys Chem A. 2008 Dec 4;112(48):12303-11. doi: 10.1021/jp807571a.

DOI:10.1021/jp807571a
PMID:18998655
Abstract

We have studied the properties of various isomers of potassium clusters containing even number of atoms ranging from 2 to 20 at the ab initio level. The geometry optimization calculations of the isomers of each cluster are performed by using all-electron density functional theory with gradient corrected exchange-correlation functional. Using the optimized geometries of different isomers we investigate the evolution of binding energy, ionization potential, and static polarizability with the increasing size of the clusters. The polarizabilities are calculated by employing Möller-Plesset perturbation theory and time-dependent density functional theory. The polarizabilities of dimer and tetramer are also calculated by employing large basis set coupled cluster theory with single and double excitations and perturbative triple excitations. The time-dependent density functional theory calculations of polarizabilities are carried out with two different exchange-correlation potentials: (i) an asymptotically correct model potential and (ii) within the local density approximation. A systematic comparison with the other available theoretical and experimental data for various properties of small potassium clusters mentioned above has been performed. These comparisons reveal that both the binding energy and the ionization potential obtained with gradient-corrected potential match quite well with the already published data. Similarly, the polarizabilities obtained with Möller-Plesset perturbation theory and with model potential are quite close to each other and also close to experimental data.

摘要

我们在从头算水平上研究了含2至20个偶数原子的钾团簇各种异构体的性质。通过使用具有梯度校正交换关联泛函的全电子密度泛函理论对每个团簇的异构体进行几何优化计算。利用不同异构体的优化几何结构,我们研究了结合能、电离势和静态极化率随团簇尺寸增大的演化。极化率通过采用莫勒-普列斯特定理微扰理论和含时密度泛函理论进行计算。二聚体和四聚体的极化率也通过采用含单双激发和微扰三激发的大基组耦合簇理论进行计算。极化率的含时密度泛函理论计算使用两种不同的交换关联势进行:(i) 一种渐近正确的模型势;(ii) 在局域密度近似范围内。已对上述小尺寸钾团簇各种性质的其他可用理论和实验数据进行了系统比较。这些比较表明,用梯度校正势得到的结合能和电离势与已发表的数据相当吻合。同样,用莫勒-普列斯特定理微扰理论和模型势得到的极化率彼此相当接近,并且也接近实验数据。

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