A simple scheme for magnetic balance in four-component relativistic Kohn-Sham calculations of nuclear magnetic resonance shielding constants in a Gaussian basis

被引:73
|
作者
Olejniczak, Malgorzata [1 ]
Bast, Radovan [2 ,3 ]
Saue, Trond [3 ]
Pecul, Magdalena [1 ]
机构
[1] Univ Warsaw, Dept Chem, PL-02093 Warsaw, Poland
[2] Univ Tromso, Dept Chem, Ctr Theoret & Computat Chem, N-9037 Tromso, Norway
[3] Univ Toulouse 3, CNRS, UMR 5626, Lab Chim & Phys Quant, F-31062 Toulouse, France
来源
JOURNAL OF CHEMICAL PHYSICS | 2012年 / 136卷 / 01期
关键词
density functional theory; hydrogen compounds; nuclear magnetic resonance; xenon; DENSITY-FUNCTIONAL THEORY; CORRELATED MOLECULAR CALCULATIONS; DIRAC-FOCK CALCULATIONS; AB-INITIO CALCULATIONS; SPIN COUPLING TENSORS; NMR CHEMICAL-SHIFTS; BASIS-SETS; LINEAR-RESPONSE; EXCHANGE-ENERGY; APPROXIMATION;
D O I
10.1063/1.3671390
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
We report the implementation of nuclear magnetic resonance (NMR) shielding tensors within the four-component relativistic Kohn-Sham density functional theory including non-collinear spin magnetization and employing London atomic orbitals to ensure gauge origin independent results, together with a new and efficient scheme for assuring correct balance between the large and small components of a molecular four-component spinor in the presence of an external magnetic field (simple magnetic balance). To test our formalism we have carried out calculations of NMR shielding tensors for the HX series (X = F, Cl, Br, I, At), the Xe atom, and the Xe dimer. The advantage of simple magnetic balance scheme combined with the use of London atomic orbitals is the fast convergence of results (when compared with restricted kinetic balance) and elimination of linear dependencies in the basis set (when compared to unrestricted kinetic balance). The effect of including spin magnetization in the description of NMR shielding tensor has been found important for hydrogen atoms in heavy HX molecules, causing an increase of isotropic values of 10%, but negligible for heavy atoms. (C) 2012 American Institute of Physics. [doi: 10.1063/1.3671390]
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页数:13
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