| Literature DB >> 28300349 |
Allyssa A Massie1, Melissa C Denler1, Luísa Thiara Cardoso1, Ashlie N Walker1, M Kamal Hossain2, Victor W Day1, Ebbe Nordlander2, Timothy A Jackson1.
Abstract
Manganese(IV)-oxo complexes are often invoked as intermediates in Mn-catalyzed C-H bond activation reactions. While many synthetic MnIV -oxo species are mild oxidants, other members of this class can attack strong C-H bonds. The basis for these reactivity differences is not well understood. Here we describe a series of MnIV -oxo complexes with N5 pentadentate ligands that modulate the equatorial ligand field of the MnIV center, as assessed by electronic absorption, electron paramagnetic resonance, and Mn K-edge X-ray absorption methods. Kinetic experiments show dramatic rate variations in hydrogen-atom and oxygen-atom transfer reactions, with faster rates corresponding to weaker equatorial ligand fields. For these MnIV -oxo complexes, the rate enhancements are correlated with both 1) the energy of a low-lying 4 E excited state, which has been postulated to be involved in a two-state reactivity model, and 2) the MnIII/IV reduction potentials.Entities:
Keywords: C−H activation; hydrogen atom transfer; kinetics; manganese; metal-oxo compounds
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Year: 2017 PMID: 28300349 PMCID: PMC5579827 DOI: 10.1002/anie.201612309
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336