Literature DB >> 18785680

Aromatic hydroxylation in a copper bis(imine) complex mediated by a micro-eta2:eta2 peroxo dicopper core: a mechanistic scenario.

Ole Sander1, Anja Henss, Christian Näther, Christian Würtele, Max C Holthausen, Siegfried Schindler, Felix Tuczek.   

Abstract

Detailed mechanistic studies on the ligand hydroxylation reaction mediated by a copper bis(imine) complex are presented. Starting from a structural analysis of the CuI complex and the CuII product with a hydroxylated ligand, the optical absorption and vibrational spectra of starting material and product are analyzed. Kinetic analysis of the ligand hydroxylation reaction shows that O2 binding is the rate-limiting step. The reaction proceeds much faster in methanol than in acetonitrile. Moreover, an inverse kinetic isotope effect (KIE) is evidenced for the reaction in acetonitrile, which is attributed to a sterically congested transition state leading to the peroxo adduct. In methanol, however, no KIE is observed. A DFT analysis of the oxygenation reaction mediated by the micro-eta2:eta2 peroxo core demonstrates that the major barrier after O2 binding corresponds to electrophilic attack on the arene ring. The relevant orbital interaction occurs between the sigma* orbital of the Cu2O2 unit and the HOMO of the ligand. On the basis of the activation energy for the rate-limiting step (18.3 kcal mol(-1)) this reaction is thermally allowed, in agreement with the experimental observation. The calculations also predict the presence of a stable dienone intermediate which, however, escaped experimental detection so far. Reasons for these findings are considered. The implications of the results for the mechanism of tyrosinase are discussed.

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Year:  2008        PMID: 18785680     DOI: 10.1002/chem.200800799

Source DB:  PubMed          Journal:  Chemistry        ISSN: 0947-6539            Impact factor:   5.236


  5 in total

Review 1.  Copper-Oxygen Complexes Revisited: Structures, Spectroscopy, and Reactivity.

Authors:  Courtney E Elwell; Nicole L Gagnon; Benjamin D Neisen; Debanjan Dhar; Andrew D Spaeth; Gereon M Yee; William B Tolman
Journal:  Chem Rev       Date:  2017-01-19       Impact factor: 60.622

2.  O2 activation and selective phenolate ortho hydroxylation by an unsymmetric dicopper mu-eta1:eta1-peroxido complex.

Authors:  Isaac Garcia-Bosch; Anna Company; Jonathan R Frisch; Miquel Torrent-Sucarrat; Mar Cardellach; Ilaria Gamba; Mireia Güell; Luigi Casella; Lawrence Que; Xavi Ribas; Josep M Luis; Miquel Costas
Journal:  Angew Chem Int Ed Engl       Date:  2010-03-22       Impact factor: 15.336

3.  Reversible dioxygen binding and arene hydroxylation reactions: Kinetic and thermodynamic studies involving ligand electronic and structural variations.

Authors:  Kenneth D Karlin; Christiana Xin Zhang; Arnold L Rheingold; Benedikt Galliker; Susan Kaderli; Andreas D Zuberbühler
Journal:  Inorganica Chim Acta       Date:  2012-02-02       Impact factor: 2.545

4.  Laser-Induced Dynamics of Peroxodicopper(II) Complexes Vary with the Ligand Architecture. One-Photon Two-Electron O2 Ejection and Formation of Mixed-Valent Cu(I)Cu(II)-Superoxide Intermediates.

Authors:  Claudio Saracini; Kei Ohkubo; Tomoyoshi Suenobu; Gerald J Meyer; Kenneth D Karlin; Shunichi Fukuzumi
Journal:  J Am Chem Soc       Date:  2015-12-11       Impact factor: 15.419

5.  Complete σ* intramolecular aromatic hydroxylation mechanism through O2 activation by a Schiff base macrocyclic dicopper(I) complex.

Authors:  Albert Poater; Miquel Solà
Journal:  Beilstein J Org Chem       Date:  2013-03-20       Impact factor: 2.883

  5 in total

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