4.6 Article

Influence of the ligand-field on EPR parameters of cis- and trans-isomers in MoV systems relevant to molybdenum enzymes: Experimental and density functional theory study

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JOURNAL OF INORGANIC BIOCHEMISTRY
卷 245, 期 -, 页码 -

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ELSEVIER SCIENCE INC
DOI: 10.1016/j.jinorgbio.2023.112228

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Molybdenum enzymes; DMSO reductase; EPR spectroscopy; DFT calculations; Molybdenum hyperfine parameters

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The EPR investigation of mononuclear cis- and trans-(L1O)MoOCl2 complexes reveals a difference in their spin Hamiltonian parameters due to the different ligand fields created by the heteroscorpionate donor atoms. DFT calculations were used to determine the values and orientations of the g and A tensors in various isomeric mononuclear oxo-molybdenum(V) complexes. The results showed that the use of a hybrid exchange-correlation functional with 25% of the Hartree-Fock exchange provided the best agreement between theory and experiment. The influence of ligand fields on the energies and contributions of molybdenum d orbitals to the g and A tensors and their relative orientations were analyzed using a simplified ligand-field approach.
The electron paramagnetic resonance (EPR) investigation of mononuclear cis- and trans-(L1O)MoOCl2 complexes [L1OH = bis(3,5-dimethylpyrazolyl)-3-tert-butyl-2-hydroxy-5-methylphenyl)methane] reveals a significant difference in their spin Hamiltonian parameters which reflect different equatorial and axial ligand fields created by the heteroscorpionate donor atoms. Density functional theory (DFT) was used to calculate the values of principal components and relative orientations of the g and A tensors, and the molecular framework in four pairs of isomeric mononuclear oxo-molybdenum(V) complexes (cis- and trans-(L1O)MoOCl2, cis,cis- and cis,trans-(L-N2S2) MoOCl [L-N2S2H2 = N,N '-dimethyl-N,N '-bis(mercaptophenyl)ethylenediamine], cis,cis- and cis,trans-(L-N2S2) MoO(SCN), and cis- and trans-[(dt)2MoO(OMe)]2- [dtH2 = 2,3-dimercapto-2-butene]). Scalar relativistic DFT calculations were conducted using three different exchange-correlation functionals. It was found that the use of hybrid exchange-correlation functional with 25% of the Hartree-Fock exchange leads to the best quantitative agreement between theory and experiment. A simplified ligand-field approach was used to analyze the influence of the ligand fields in all cis- and trans-isomers on energies and contributions of molybdenum d-orbital manifold to g and A tensors and relative orientations. Specifically, contributions that originated from the spin-orbit coupling of the dxz, dyz, and dx2-y2 orbitals into the ground state have been discussed. The new findings are discussed in the context of the experimental data of mononuclear molybdoenzyme, DMSO reductase.

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