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Vibrational Corrections to NMR Spin–Spin Coupling Constants from Relativistic Four-Component DFT Calculations

Autor
Ruud, Kenneth
Pecul-Kudelska, Magdalena
Jakubowska, Katarzyna
Data publikacji
2022
Abstrakt (EN)

Zero-point vibrational (ZPV) corrections to the nuclear spin-spin coupling constants have been calculated using four-component Dirac-Kohn-Sham DFT for H2X (where X = O, S, Se, Te, Po), XH3(where X = N, P, As, Sb, Bi), and XH4(where X = C, Si, Ge, Sn, and Pb) molecules and for HCCPbH3. The main goal was to study the influence of relativistic effects on the ZPV corrections and thus results calculated at relativistic and nonrelativistic approaches have been compared. The effects of relativity become notable for the ZPV corrections to the spin-spin coupling constants for compounds with lighter elements (selenium and germanium) than for the spin-spin coupling constants themselves. In the case of molecules containing heavier atoms, for instance BiH3and PbH4, relativistic effects play a crucial role on the results and approximating ZPV corrections by the nonrelativistic results may lead to larger errors than omitting ZPV corrections altogether.

Dyscyplina PBN
nauki chemiczne
Czasopismo
Journal of Physical Chemistry A
Tom
126
Zeszyt
39
Strony od-do
7013-7020
ISSN
1089-5639
Data udostępnienia w otwartym dostępie
2022-09-22
Licencja otwartego dostępu
Uznanie autorstwa