115244-47-8Relevant academic research and scientific papers
Oxoferryl complexes of the Halogenated (Porphinato)iron Catalyst: (Tetrakis(2,6-dichlorophenyl)porphinato)iron
Gold, A.,Jayaraj, K.,Doppelt, P.,Weiss, R.,Chottard, G.,et al.
, p. 5756 - 5761 (2007/10/02)
Oxidation of (hydroxo)(tetrakis(2,6-dichlorophenyl)porphinato)iron(III) IIIOH> by m-chloroperoxybenzoic acid (mCPBA) in THF or DMF yields the THF and DMF adducts of the oxoferryl complex TPP(2,6-Cl)FeIV=O.Addition of 10-fold molar excess of 1-methylimidazole (1-MeIm) to the THF adduct gives the corresponding 1-MeIm complex. 1H NMR of the DMF-d7 adduct (200 MHz, DMF-d7, -50 deg C) shows proton resonances consistent with an oxoferryl S = 1 structure: 14 ppm (pyrrole H), 4.01 ppm (phenyl m- and p-H) in a ratio of 2:3.The UV-vis spectra (-40 deg C) of the red solutions show the band at ca. 550 nm which is typical of the ferryl oxidation state: (THF) TPP(2,6-Cl)FeIV=O, λmax(ε*10-3) 417 (169.5), 551 (10.6), 622 (3.4), 653 (1.4) nm; (DMF) TPP(2,6-Cl)FeIV=O, λmax(ε*10-3) 419 (157.6), 554 (11.1), 632 (3.5) nm; (1-MeIm) TPP(2,6-Cl)FeIV=O, λmax (ε*10-3) 421 (157.5), 561 (13.2), 624 (3.3), 661 (1.8) nm.Resonance Raman bands in the region of the Fe=O stretch provide support for the oxoferryl structure with frequencies that correlate inversely with the strength of the sixth axial ligand: THF (841 cm-1) -1) -1).The Moessbauer spectra, similar to those of other ferryl S = 1 complexes, establish the ferryl oxidation state of iron.While quadrupole splittings vary inversely with axial ligand strength (THF (2.08 mm s-1) -1) -1)), isomer shifts are essentially constant.Resonance Raman and Moessbauer data are rationalized by a rearrangement of bonding electron density from Fe 3dx2-y2 to 3dz2 with increasing axial ligand bonding.The Fe=O bond weakens, decreasing νFe=O, and the axial electric field gradient decreases, giving smaller quadrupole splitting.However, little net change in electron density at Fe results in constant δ.
