Literature DB >> 23301704

Iron coordination chemistry with new ligands containing triazole and pyridine moieties. Comparison of the coordination ability of the N-donors.

Nathalie Ségaud1, Jean-Noël Rebilly, Katell Sénéchal-David, Régis Guillot, Laurianne Billon, Jean-Pierre Baltaze, Jonathan Farjon, Olivia Reinaud, Frédéric Banse.   

Abstract

We report the synthesis, characterization, and solution chemistry of a series of new Fe(II) complexes based on the tetradentate ligand N-methyl-N,N'-bis(2-pyridyl-methyl)-1,2-diaminoethane or the pentadentate ones N,N',N'-tris(2-pyridyl-methyl)-1,2-diaminoethane and N,N',N'-tris(2-pyridyl-methyl)-1,3-diaminopropane, modified by propynyl or methoxyphenyltriazolyl groups on the amino functions. Six of these complexes are characterized by X-ray crystallography. In particular, two of them exhibit an hexadentate coordination environment around Fe(II) with two amino, three pyridyl, and one triazolyl groups. UV-visible and cyclic voltammetry experiments of acetonitrile solutions of the complexes allow to deduce accurately the structure of all Fe(II) species in equilibrium. The stability of the complexes could be ranked as follows: [L(5)Fe(II)-py](2+) > [L(5)Fe(II)-Cl](+) > [L(5)Fe(II)-triazolyl](2+) > [L(5)Fe(II)-(NCMe)](2+), where L(5) designates a pentadentate coordination sphere composed of the two amines of ethanediamine and three pyridines. For complexes based on propanediamine, the hierarchy determined is [L(5)Fe(II)-Cl](+) > [L(5)Fe(II)(OTf)](+) > [L(5)Fe(II)-(NCMe)](2+), and no ligand exchange could be evidenced for [L(5)Fe(II)-triazolyl](2+). Reactivity of the [L(5)Fe(II)-triazolyl](2+) complexes with hydrogen peroxide and PhIO is similar to the one of the parent complexes that lack this peculiar group, that is, generation of Fe(III)(OOH) and Fe(IV)(O), respectively. Accordingly, the ability of these complexes at catalyzing the oxidation of small organic molecules by these oxidants follows the tendencies of their previously reported counterparts. Noteworthy is the remarkable cyclooctene epoxidation activity by these complexes in the presence of PhIO.

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Year:  2013        PMID: 23301704     DOI: 10.1021/ic301834x

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


  4 in total

1.  Electrochemical study of a nonheme Fe(ii) complex in the presence of dioxygen. Insights into the reductive activation of O2 at Fe(ii) centers.

Authors:  Nathalie Ségaud; Elodie Anxolabéhère-Mallart; Katell Sénéchal-David; Laura Acosta-Rueda; Marc Robert; Frédéric Banse
Journal:  Chem Sci       Date:  2014-09-16       Impact factor: 9.825

2.  Successive light-induced two electron transfers in a Ru-Fe supramolecular assembly: from Ru-Fe(ii)-OH2 to Ru-Fe(iv)-oxo.

Authors:  Christian Herrero; Annamaria Quaranta; Marie Sircoglou; Katell Sénéchal-David; Aurélie Baron; Irene Mustieles Marín; Charlotte Buron; Jean-Pierre Baltaze; Winfried Leibl; Ally Aukauloo; Frédéric Banse
Journal:  Chem Sci       Date:  2015-01-26       Impact factor: 9.825

3.  Novel rGO-T-C(n) Nanosheets developed via click chemistry as a lubricant anti-wear additive.

Authors:  Samira Bagheri; Nadia Jamal; Ahmed Halilu; Amin TermehYousefi
Journal:  Sci Rep       Date:  2018-04-18       Impact factor: 4.379

4.  Second-sphere effects on H2O2 activation by non-heme FeII complexes: role of a phenol group in the [H2O2]-dependent accumulation of FeIVO vs. FeIIIOOH.

Authors:  Jean-Noël Rebilly; Christian Herrero; Katell Sénéchal-David; Régis Guillot; Tanya Inceoglu; Hélène Maisonneuve; Frédéric Banse
Journal:  Chem Sci       Date:  2021-11-17       Impact factor: 9.825

  4 in total

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