MP2 calculation of nuclear magnetic shielding constants involving gauge-invariant bases

1988 ◽  
Vol 66 (7) ◽  
pp. 1781-1785 ◽  
Author(s):  
Edouard C. Vauthier ◽  
Michel Comeau ◽  
Simone Odiot ◽  
Sandor Fliszar

Dia- and paramagnetic shielding constants of HF, NH3, N2, H2O, and CO were calculated in the 4-31G, 4-31G*, and 6-31G** bases, using gauge-invariant atomic orbitals. Correlation effects were evaluated by 2nd-order perturbation theory: while the diamagnetic contributions are virtually unaffected by correlation, the paramagnetic parts (σρ) are modified by ~10 ppm in the 6-31G** basis. With or without correlation, calculated σρ values differ significantly from results obtained from measured spin-rotation constants. However, improvements in the basis set descriptions and inclusion of correlation yield chemical shift values for 15N and 17O converging toward their experimental counterparts obtained from conventional nuclear magnetic resonance spectroscopy.

1977 ◽  
Vol 32 (5) ◽  
pp. 411-414 ◽  
Author(s):  
Matjaž Žaucer ◽  
Danilo Pumpernik ◽  
Milan Hladnik ◽  
Andrej Ažman

Abstract The magnetic susceptibility tensor and proton and fluorine magnetic shielding tensors are cal­ culated for F2 and (FHF)- using an ab initio finite perturbation method with gauge-invariant atomic orbitals (GIAO). The discussion of the basis set deficiency shows that the calculated values for the susceptibilities are reliable. Simple additivity (Pascal rule) for the susceptibility is con­ firmed.


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