Accurate relativistic Gaussian basis sets for H through Lr determined by atomic self-consistent field calculations with the third-order Douglas-Kroll approximation

被引:148
作者
Tsuchiya, T [1 ]
Abe, M [1 ]
Nakajima, T [1 ]
Hirao, K [1 ]
机构
[1] Univ Tokyo, Grad Sch Engn, Dept Appl Chem, Tokyo 1138656, Japan
关键词
D O I
10.1063/1.1390515
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Highly accurate relativistic Gaussian basis sets are developed for the 103 elements from H(Z=1) to Lr (Z=103). Orbital exponents are optimized by minimizing the atomic self-consistent field (SCF) energy with the scalar relativistic third-order Douglas-Kroll approximation. The basis sets are designed to have equal quality and to be appropriate for the incorporation of relativistic effects. The basis set performance is tested by calculations on prototypical molecules, hydrides, and dimers of copper, silver, and gold using SCF, Moller-Plesset theory, and the singles and doubles coupled-cluster methods with and without perturbative triples [CCSD, CCSD(T)]. Spectroscopic constants and dissociation energies are reported for the ground state of each species. The effects of relativity, electron correlation, and the basis set superposition error (BSSE) are investigated. At the BSSE corrected CCSD(T) level, the mean absolute error relative to experiment in D-e for three dimers (hydrides) is 0.13 (0.09) eV; for R-e the error is 0.024 (0.003) A, and for omega (e) it is 2 (13) cm-1. These illustrative calculations confirm that the present basis sets fulfill their design objectives. (C) 2001 American Institute of Physics.
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页码:4463 / 4472
页数:10
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