Literature DB >> 23432090

Correlation between structural, spectroscopic, and reactivity properties within a series of structurally analogous metastable manganese(III)-alkylperoxo complexes.

Michael K Coggins1, Vlad Martin-Diaconescu, Serena DeBeer, Julie A Kovacs.   

Abstract

Manganese-peroxos are proposed as key intermediates in a number of important biochemical and synthetic transformations. Our understanding of the structural, spectroscopic, and reactivity properties of these metastable species is limited, however, and correlations between these properties have yet to be established experimentally. Herein we report the crystallographic structures of a series of structurally related metastable Mn(III)-OOR compounds, and examine their spectroscopic and reactivity properties. The four reported Mn(III)-OOR compounds extend the number of known end-on Mn(III)-(η(1)-peroxos) to six. The ligand backbone is shown to alter the metal-ligand distances and modulate the electronic properties key to bonding and activation of the peroxo. The mechanism of thermal decay of these metastable species is examined via variable-temperature kinetics. Strong correlations between structural (O-O and Mn···N(py,quin) distances), spectroscopic (E(πv*(O-O) → Mn CT band), ν(O-O)), and kinetic (ΔH(‡) and ΔS(‡)) parameters for these complexes provide compelling evidence for rate-limiting O-O bond cleavage. Products identified in the final reaction mixtures of Mn(III)-OOR decay are consistent with homolytic O-O bond scission. The N-heterocyclic amines and ligand backbone (Et vs Pr) are found to modulate structural and reactivity properties, and O-O bond activation is shown, both experimentally and theoretically, to track with metal ion Lewis acidity. The peroxo O-O bond is shown to gradually become more activated as the N-heterocyclic amines move closer to the metal ion causing a decrease in π-donation from the peroxo πv*(O-O) orbital. The reported work represents one of very few examples of experimentally verified relationships between structure and function.

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Year:  2013        PMID: 23432090      PMCID: PMC3740743          DOI: 10.1021/ja308915x

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  60 in total

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4.  C-H activation by a mononuclear manganese(III) hydroxide complex: synthesis and characterization of a manganese-lipoxygenase mimic?

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5.  Resonance raman investigation of equatorial ligand donor effects on the Cu(2)O(2)(2+) core in end-on and side-on mu-peroxo-dicopper(II) and bis-mu-oxo-dicopper(III) complexes.

Authors:  Mark J Henson; Michael A Vance; Christiana Xin Zhang; Hong-Chang Liang; Kenneth D Karlin; Edward I Solomon
Journal:  J Am Chem Soc       Date:  2003-04-30       Impact factor: 15.419

6.  Co(III)-alkylperoxo complexes: syntheses, structure-reactivity correlations, and use in the oxidation of hydrocarbons.

Authors:  F A Chavez; P K Mascharak
Journal:  Acc Chem Res       Date:  2000-08       Impact factor: 22.384

7.  Kinetic analysis of the conversion of nonheme (alkylperoxo)iron(III) species to iron(IV) complexes.

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Review 9.  A ligand field chemistry of oxygen generation by the oxygen-evolving complex and synthetic active sites.

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10.  A monomeric Mn(III)-peroxo complex derived directly from dioxygen.

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  13 in total

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Journal:  J Biol Inorg Chem       Date:  2013-11-27       Impact factor: 3.358

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Authors:  Julian A Rees; Vlad Martin-Diaconescu; Julie A Kovacs; Serena DeBeer
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3.  Geometric and electronic structure of a crystallographically characterized thiolate-ligated binuclear peroxo-bridged cobalt(III) complex.

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4.  Decoding the Mechanism of Intramolecular Cu-Directed Hydroxylation of sp3 C-H Bonds.

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5.  Metal-Assisted Oxo Atom Addition to an Fe(III) Thiolate.

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Journal:  J Am Chem Soc       Date:  2016-12-29       Impact factor: 15.419

6.  Tuning the Relative Stability and Reactivity of Manganese Dioxygen and Peroxo Intermediates via Systematic Ligand Modification.

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7.  Reaction landscape of a pentadentate N5-ligated Mn(II) complex with O2˙- and H2O2 includes conversion of a peroxomanganese(III) adduct to a bis(μ-oxo)dimanganese(III,IV) species.

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8.  MnIII-Peroxo adduct supported by a new tetradentate ligand shows acid-sensitive aldehyde deformylation reactivity.

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9.  Ligand-Constraint-Induced Peroxide Activation for Electrophilic Reactivity.

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10.  Spectroscopic characterization and reactivity studies of a mononuclear nonheme Mn(III)-hydroperoxo complex.

Authors:  Hee So; Young Jun Park; Kyung-Bin Cho; Yong-Min Lee; Mi Sook Seo; Jaeheung Cho; Ritimukta Sarangi; Wonwoo Nam
Journal:  J Am Chem Soc       Date:  2014-08-20       Impact factor: 15.419

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