Literature DB >> 22909271

Structure, bonding, and catecholase mechanism of copper bispidine complexes.

Peter Comba1, Bodo Martin, Amsaveni Muruganantham, Johannes Straub.   

Abstract

Oxygen activation by copper(I) complexes with tetra- or pentadentate mono- or dinucleating bispidine ligands is known to lead to unusually stable end-on-[{(bispidine)Cu}(2)(O(2))](2+) complexes (bispidines are methyl-2,4-bis(2-pyridin-yl)-3,7-diazabicyclo-[3.3.1]-nonane-9-diol-1,5-dicarboxylates); catecholase activity of these dinuclear Cu(II/I) systems has been demonstrated experimentally, and the mechanism has been thoroughly analyzed. The present density functional theory (DFT) based study provides an analysis of the electronic structure and catalytic activity of [{(bispidine)Cu}(2)(O(2))](2+). As a result of the unique square pyramidal coordination geometry, the d(x(2)-y(2)) ground state leads to an unusual σ/π bonding pattern, responsible for the stability of the peroxo complex and the observed catecholase activity with a unique mechanistic pathway. The oxidation of catechol to ortho-quinone (one molecule per catalytic cycle and concomitant formation of one equivalent of H(2)O(2)) is shown to occur via an associative, stepwise pathway. The unusual stability of the end-on-peroxo-dicopper(II) complex and isomerization to copper(II) complexes with chelating catecholate ligands, which inhibit the catalytic cycle, are shown to be responsible for an only moderate catalytic activity.

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Year:  2012        PMID: 22909271     DOI: 10.1021/ic3004917

Source DB:  PubMed          Journal:  Inorg Chem        ISSN: 0020-1669            Impact factor:   5.165


  3 in total

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2.  Catechol oxidation promoted by bridging phenoxo moieties in a bis(μ-phenoxo)-bridged dicopper(ii) complex.

Authors:  Debojyoti Mukherjee; Probal Nag; Albert A Shteinman; Sivaranjana Reddy Vennapusa; Ujjwal Mandal; Mainak Mitra
Journal:  RSC Adv       Date:  2021-06-29       Impact factor: 4.036

3.  Exploring a new dinuclear Fe(iii) complex for the fixation of atmospheric CO2 and optical recognition of nano-molar levels of Zn2+ ions.

Authors:  Seikh Taniya; Somnath Khanra; Sabyasachi Ta; Sudeshna Chatterjee; Noor Salam; Debasis Das
Journal:  RSC Adv       Date:  2020-06-10       Impact factor: 4.036

  3 in total

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