| Literature DB >> 21591659 |
Peter Hrobárik1, Veronika Hrobáriková, Florian Meier, Michal Repiský, Stanislav Komorovský, Martin Kaupp.
Abstract
State-of-the-art relativistic four-component DFT-GIAO-based calculations of (1)H NMR chemical shifts of a series of 3d, 4d, and 5d transition-metal hydrides have revealed significant spin-orbit-induced heavy atom effects on the hydride shifts, in particular for several 4d and 5d complexes. The spin-orbit (SO) effects provide substantial, in some cases even the dominant, contributions to the well-known characteristic high-field hydride shifts of complexes with a partially filled d-shell, and thereby augment the Buckingham-Stephens model of off-center paramagnetic ring currents. In contrast, complexes with a 4d(10) and 5d(10) configuration exhibit large deshielding SO effects on their hydride (1)H NMR shifts. The differences between the two classes of complexes are attributed to the dominance of π-type d-orbitals for the true transition-metal systems compared to σ-type orbitals for the d(10) systems.Entities:
Year: 2011 PMID: 21591659 DOI: 10.1021/jp202327z
Source DB: PubMed Journal: J Phys Chem A ISSN: 1089-5639 Impact factor: 2.781