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The Effects of the Substitution on the lmidazole Ligand on the Photochemical Properties of fac [Mn(CO) 3 (phen)(lmidazole)](SO 3 CF 3 ) Complexes ¶
Author(s) -
Carlos Rose Maria,
Neto Benedito S. Lima,
Neumann Miguel G.
Publication year - 2004
Publication title -
photochemistry and photobiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.818
H-Index - 131
eISSN - 1751-1097
pISSN - 0031-8655
DOI - 10.1111/j.1751-1097.2004.tb00072.x
Subject(s) - chemistry , ligand (biochemistry) , substituent , photochemistry , imidazole , photodissociation , absorption spectroscopy , substitution reaction , emission spectrum , spectral line , crystallography , stereochemistry , medicinal chemistry , quantum mechanics , astronomy , biochemistry , physics , receptor
Photochemical and photophysical data are reported for a series of fac ‐[Mn(CO) 3 (phen)(Im‐R)](SO 3 CF 3 ) complexes, where phen is 1,10‐phenanthroline and Im is imidazole. Intraligand and metal‐to‐ligand charge transfer (MLCT) transitions are observed in the electronic absorption spectra of these complexes and are sensitive to the nature of the ligand substituent. At room temperature the emission spectra show a clear progression from broad structureless MLCT to highly structured π‐π* emission on going from R = ‐H, ‐CH 3 , ‐C 6 H 5 , to ‐Metro, where Metro is 2‐methyl‐5‐nitroimidazole. Even at low temperatures the latter complexes show only the π‐π* emission. The trend in the photophysical properties found in the emission spectra parallels the changes in the photochemical properties with the electron‐donating or electron‐withdrawing power of the substituent on the imidazole ligand. Although MLCT irradiation of the complexes with R = ‐H, ‐CH 3 leads to the mer ‐[Mn(CO) 3 (phen)(Im‐R)] + isomers, the complexes with the imidazole ligand substituted by ‐C 6 H 5 or ‐Metro release the Im‐R ligand and produce the stereoretentive fac ‐[Mn(CO) 3 (phen)(S)] + complexes. The stereochemical fate and mechanistic implications of the photolysis reactions are discussed in terms of the nature of ligand substitution.

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