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Hydrogen Atom Abstraction and Hydride Transfer Reactions by Iron(IV)–Oxo Porphyrins
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Citations
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References
2008
Year
Inorganic ChemistryChemical EngineeringEngineeringBiochemistryNatural SciencesCh Bond ActivationRadical (Chemistry)Hydride Transfer ReactionsHydrogen BondOrganic ChemistryCatalysisNadh AnaloguesHydrogenChemistryRedox ChemistryMolecular CatalysisTrue Identity
True identity revealed: The CH bond activation of alkyl aromatics by synthetic iron(IV)–oxo porphyrin species and the hydride transfer of NADH analogues to them occur through H-atom abstraction and proton-coupled electron-transfer mechanisms, respectively. Mechanistic studies revealed that iron(IV)–oxo porphyrins, not iron(IV)–oxo porphyrin π-radical cations, are the true oxidant.
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