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碱土金属团簇精确的从头算结合能。

Accurate ab initio binding energies of alkaline earth metal clusters.

作者信息

Lee Jae Shin

机构信息

Department of Chemistry, College of Natural Sciences, Ajou University, Suwon, Korea 443-749.

出版信息

J Phys Chem A. 2005 Dec 29;109(51):11927-32. doi: 10.1021/jp040705d.

Abstract

The effects of basis set superposition error (BSSE) and core-correlation on the electronic binding energies of alkaline earth metal clusters Y(n) (Y = Be, Mg, Ca; n = 2-4) at the Moller-Plesset second-order perturbation theory (MP2) and the single and double coupled cluster method with perturbative triples correction (CCSD(T)) levels are examined using the correlation consistent basis sets cc-pVXZ and cc-pCVXZ (X = D, T, Q, 5). It is found that, while BSSE has a negligible effect for valence-electron-only-correlated calculations for most basis sets, its magnitude becomes more pronounced for all-electron-correlated calculations, including core electrons. By utilizing the negligible effect of BSSE on the binding energies for valence-electron-only-correlated calculations, in combination with the negligible core-correlation effect at the CCSD(T) level, accurate binding energies of these clusters up to pentamers (octamers in the case of the Be clusters) are estimated via the basis set extrapolation of ab initio CCSD(T) correlation energies of the monomer and cluster with only the cc-pVDZ and cc-pVTZ sets, using the basis set and correlation-dependent extrapolation formula recently devised. A comparison between the CCSD(T) and density functional theory (DFT) binding energies is made to identify the most appropriate DFT method for the study of these clusters.

摘要

在二阶莫勒-普莱斯特定理(MP2)以及含微扰三重激发修正的单双耦合簇方法(CCSD(T))水平下,使用相关一致基组cc-pVXZ和cc-pCVXZ(X = D、T、Q、5),研究了基组叠加误差(BSSE)和芯相关对碱土金属簇Y(n)(Y = Be、Mg、Ca;n = 2 - 4)电子结合能的影响。研究发现,虽然对于大多数基组,BSSE对价电子相关计算的影响可忽略不计,但对于包括芯电子的全电子相关计算,其影响程度更为显著。通过利用BSSE对价电子相关计算结合能的可忽略影响,再结合CCSD(T)水平下可忽略的芯相关效应,利用最近设计的基组和相关依赖外推公式,通过仅使用cc-pVDZ和cc-pVTZ基组对单体和簇的从头算CCSD(T)相关能进行基组外推,估算了这些簇直至五聚体(Be簇为八聚体)的准确结合能。对CCSD(T)和密度泛函理论(DFT)结合能进行了比较,以确定研究这些簇最合适的DFT方法。

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