4.7 Article

Theoretical analysis of electronic absorption spectra of vitamin B12 models

Journal

JOURNAL OF CHEMICAL PHYSICS
Volume 115, Issue 16, Pages 7522-7533

Publisher

AMER INST PHYSICS
DOI: 10.1063/1.1405436

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Time-dependent density-functional theory (TD-DFT) is applied to analyze the electronic absorption spectra of vitamin B-12. To accomplish this two model systems were considered: CN-[Co-III-corrin]-CN (dicyanocobinamide, DCC) and imidazole-[Co-III-corrin]-CN (cyanocobalamin, ImCC). For both models 30 lowest excited states were calculated together with transition dipole moments. When the results of TD-DFT calculations were directly compared with experiment it was found that the theoretical values systematically overestimate experimental data by approximately 0.5 eV. The uniform adjustment of the calculated transition energies allowed detailed analysis of electronic absorption spectra of vitamin B-12 models. All absorption bands in spectral range 2.0-5.0 eV were readily assigned. In particular, TD-DFT calculations were able to explain the origin of the shift of the lowest absorption band caused by replacement of the-CN axial ligand by imidazole. (C) 2001 American Institute of Physics.

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