A theoretical study of the magnetic circular dichroism spectrum for sulfite oxidase based on time-dependent density functional theory.

Michael Seth, Tom Ziegler, Elizabeth Hernandez-Marin

Journal: Inorganic chemistry 2009;48(7):2880-6

PMID: 19236042

Abstract

We present a theoretical study of the temperature-dependent magnetic circular dichroism (MCD) spectrum for complexes modeling the molybdoenzyme sulfite-oxidase (1) in its Mo(V) oxidation state. The theoretical study was based on a newly implemented time-dependent density functional method that takes into account first-order perturbations due to spin-orbit coupling and a constant magnetic field. It was possible, on the basis of the theoretical calculations, to give a full assignment of the MCD spectrum for 1 and interpret the C term of each band in the experimental MCD spectrum in terms of spin-orbit couplings between specific excited states and between excited states and the ground state.

Address: Department of Chemistry, University of Calgary, Calgary, Alberta, Canada, T2N 1N4.

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