August 12, 2016
Journal Article

Theoretical modeling of 99Tc NMR chemical shifts

Abstract

Technetium (Tc) displays a rich chemistry due to the wide range of oxidation states (from -I to +VII) and ability to form coordination compounds. Determination of Tc speciation in complex mixtures is a major challenge, and 99Tc NMR spec-troscopy is widely used to probe chemical environments of Tc in odd oxidation states. However interpretation of the 99Tc NMR data is hindered by the lack of reference compounds. DFT computations can help fill this gap, but to date few com-putational studies have focused on 99Tc NMR of compounds and complexes. This work systematically evaluates the inclu-sion small percentages of Hartree-Fock exchange correlation and relativistic effects in DFT computations to support in-terpretation of the 99Tc NMR spectra. Hybrid functionals are found to perform better than their pure GGA counterparts, and non-relativistic calculations have been found to generally show a lower mean absolute deviation from experiment. Overall non-relativistic PBE0 and B3PW91 calculations are found to most accurately predict 99Tc NMR chemical shifts.

Revised: January 24, 2017 | Published: August 12, 2016

Citation

Hall G.B., A. Andersen, N.M. Washton, S. Chatterjee, and T.G. Levitskaia. 2016. Theoretical modeling of 99Tc NMR chemical shifts. Inorganic Chemistry 55, no. 17:8341-8347. PNNL-SA-116205. doi:10.1021/acs.inorgchem.6b00458