Mechanistic Studies of the Oxidative N-Dealkylation of a Substrate Tethered to Carboxylate-Bridged Diiron(II) Complexes, [Fe2(μ-O2CArTol)2(O2CArTol)2(N,N-Bn2en)2]
- 9 June 2006
- journal article
- research article
- Published by American Chemical Society (ACS) in Inorganic Chemistry
- Vol. 45 (14) , 5438-5446
- https://doi.org/10.1021/ic060307k
Abstract
Carboxylate-bridged diiron(II) centers activate dioxygen for the selective oxidation of hydrocarbon substrates in bacterial multicomponent monooxygenases. Synthetic analogues of these systems exist in which substrate fragments tethered to the diiron(II) core through attachment to an N-donor ligand are oxidized by transient species that arise following the introduction of O2 into the system. The present study describes the results of experiments designed to probe mechanistic details of these oxidative N-dealkylation reactions. A series of diiron(II) complexes with ligands N,N-(4-R−Bn)Bnen, where en is ethylenediamine, Bn is benzyl, and R−Bn is benzyl with a para-directing group R = Cl, F, CH3, t-Bu, or OCH3, were prepared. A Hammett plot of the oxygenation product distributions of these complexes, determined by gas chromatographic analysis, reveals a small positive slope of ρ = +0.48. Kinetic isotope effect (KIEintra) values for oxygenation of [Fe2(μ-O2CArTol)2(O2CArTol)2(N,N-(C6H5CDH)2en)2] and [Fe2(μ-O2CArTol)2(O2CArTol)2(N,N-(C6H5CD2)(C6H5CH2)en)2] are 1.3(1) and 2.2(2) at 23 °C, respectively. The positive slope ρ and low KIEintra values are consistent with a mechanism involving one-electron transfer from the dangling nitrogen atom in N,N-Bn2en to a transient electrophilic diiron intermediate, followed by proton transfer and rearrangement to eliminate benzaldehyde.Keywords
This publication has 36 references indexed in Scilit:
- Synthesis, Characterization, and Dioxygen Reactivity of Tetracarboxylate-Bridged Diiron(II) Complexes with Coordinated SubstratesInorganic Chemistry, 2003
- Structural and Spectroscopic Studies of Valence-Delocalized Diiron(II,III) Complexes Supported by Carboxylate-Only Bridging LigandsInorganic Chemistry, 2002
- Synthetic Analogue of the {Fe2(μ-OH)2(μ-O2CR)}3+ Core of Soluble Methane Monooxygenase Hydroxylase via Synthesis and Dioxygen Reactivity of Carboxylate-Bridged Diiron(II) ComplexesInorganic Chemistry, 2002
- Oxidative N-Dealkylation of a Carboxylate-Bridged Diiron(II) Precursor Complex by Reaction with O2 Affords the Elusive {Fe2(μ-OH)2(μ-O2CR)}3+ Core of Soluble Methane Monooxygenase HydroxylaseJournal of the American Chemical Society, 2001
- A Bulky Benzoate Ligand for Modeling the Carboxylate-Rich Active Sites of Non-Heme Diiron EnzymesJournal of the American Chemical Society, 1998
- Safe and Convenient Procedure for Solvent PurificationOrganometallics, 1996
- Structural and Functional Aspects of Metal Sites in BiologyChemical Reviews, 1996
- Heme-Containing OxygenasesChemical Reviews, 1996
- Multicopper Oxidases and OxygenasesChemical Reviews, 1996
- CarbethoxynitreneJournal of the American Chemical Society, 1963