Literature DB >> 16025171

Synthesis, structure, spectroscopy and redox chemistry of square-planar nickel(II) complexes with tetradentate o-phenylenedioxamidates and related ligands.

Xavier Ottenwaelder1, Ally Aukauloo, Yves Journaux, Rosa Carrasco, Joan Cano, Beatriz Cervera, Isabel Castro, Simona Curreli, M Carmen Muñoz, Antonio L Roselló, Bernardino Soto, Rafael Ruiz-García.   

Abstract

A series of four-coordinate square-planar nickel(II) complexes of o-phenylenebis(N'-methyloxamidate)(L1) and related o-phenylene(N'-methyloxamidate)oxamate (L2) and o-phenylenebis(oxamate)(L3) tetradentate ligands have been synthesized and characterized structurally, spectroscopically and electrochemically. The parent nickel(II)-L1 complex presents an intense MLCT band in the UV region (lambda max = 357 nm) and a distinctive 1 s --> 4p CT satellite in the Ni K-edge XANES spectrum (E = 8339.2 eV). These features together with the short Ni-N(amidate) bond lengths (1.85-1.93 A) as revealed by the analysis of the Ni K-edge EXAFS spectrum and confirmed by single-crystal X-ray diffraction are typical of square-planar low spin (S = 0) Ni(II) ions. The dianionic nickel(II) complexes, [Ni(II)L(i)](2-)(i = -3), experience two redox processes in acetonitrile at 25 degrees C. The first redox process, at moderately low potentials (E1 = 0.12-0.52 V vs. SCE), is a reversible one-electron metal-centered oxidation to the corresponding monoanionic nickel(III) complexes, [Ni(III)L(i)]-. The second redox process, at relatively high potentials (E2 = 0.86-1.04 V vs. SCE), is a quasireversible to irreversible one-electron oxidation largely centered on the o-benzenediamidate fragment of the non-innocent ligand, yielding the corresponding neutral nickel(iii) complexes with a o-benzosemiquinonediimine pi-cation radical ligand, [Ni(III)(L(i))*+]. The singly and doubly oxidized species of the parent nickel(II)-L1 complex have been prepared by chemical oxidation and characterized spectroscopically in acetonitrile at -40 degrees C. The stable singly oxidized nickel(III)-L1 species presents an intense LMCT band in the NIR region (lambda max = 910 nm) and a rhombic X-band EPR spectrum (g1 = 2.193, g2 = 2.080 and g3 = 2.006) characteristic of square-planar low spin (S = 1/2) Ni(III) ions. The unstable double oxidized nickel(III)-L1 pi-cation radical species exhibits a rather intense visible band (lambda max = 645 nm) that is tentatively assigned as a MLCT transition from the Ni(III)-benzosemiquinone type ground state to the Ni(IV) excited state.

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Year:  2005        PMID: 16025171     DOI: 10.1039/b502478a

Source DB:  PubMed          Journal:  Dalton Trans        ISSN: 1477-9226            Impact factor:   4.390


  4 in total

1.  Crystal structure of an unknown solvate of bis-(tetra-n-butyl-ammonium) [N,N'-(4-tri-fluoro-methyl-1,2-phenyl-ene)bis-(oxamato)-κ(4) O,N,N',O']nickelate(II).

Authors:  François Eya'ane Meva; Dieter Schaarschmidt; Tobias Rüffer
Journal:  Acta Crystallogr E Crystallogr Commun       Date:  2015-05-07

2.  Probing the magnetic superexchange couplings between terminal CuII ions in heterotrinuclear bis(oxamidato) type complexes.

Authors:  Mohammad A Abdulmalic; Saddam Weheabby; Francois E Meva; Azar Aliabadi; Vladislav Kataev; Bernd Büchner; Frederik Schleife; Berthold Kersting; Tobias Rüffer
Journal:  Beilstein J Nanotechnol       Date:  2017-04-06       Impact factor: 3.649

3.  Tuning the spin coherence time of Cu(II)-(bis)oxamato and Cu(II)-(bis)oxamidato complexes by advanced ESR pulse protocols.

Authors:  Ruslan Zaripov; Evgeniya Vavilova; Iskander Khairuzhdinov; Kev Salikhov; Violeta Voronkova; Mohammad A Abdulmalic; Francois E Meva; Saddam Weheabby; Tobias Rüffer; Bernd Büchner; Vladislav Kataev
Journal:  Beilstein J Nanotechnol       Date:  2017-04-27       Impact factor: 3.649

4.  Ligand binding at the A-cluster in full-length or truncated acetyl-CoA synthase studied by X-ray absorption spectroscopy.

Authors:  Peer Schrapers; Julia Ilina; Christina M Gregg; Stefan Mebs; Jae-Hun Jeoung; Holger Dau; Holger Dobbek; Michael Haumann
Journal:  PLoS One       Date:  2017-02-08       Impact factor: 3.240

  4 in total

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