Structure and properties of bivalent nickel and copper complexes with pyrazine-amide-thioether coordination: stabilization of trivalent nickel

Singh, Akhilesh Kumar ; Mukherjee, Rabindra Nath (2005) Structure and properties of bivalent nickel and copper complexes with pyrazine-amide-thioether coordination: stabilization of trivalent nickel Dalton Transactions (17). pp. 2886-2891. ISSN 1477-9226

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Official URL: http://pubs.rsc.org/en/Content/ArticleLanding/2005...

Related URL: http://dx.doi.org/10.1039/B504893A

Abstract

Acyclic pyrazine-2-carboxamide and thioether containing hexadentate ligand 1,4-bis[o-(pyrazine-2-carboxamidophenyl)]-1,4-dithiobutane (H2bpzctb), in its deprotonated form, has afforded light brown [NiII(bpzctb)] (1) (S = 1) and green [CuII(bpzctb)] (2) (S =½) complexes. The crystal structures of 1·CH3OH and 2·CH2Cl2 revealed that in these complexes the ligand coordinates in a hexadentate mode, affording examples of distorted octahedral MIIN2(pyrazine)N'2(amide)S2(thioether) coordination. Each complex exhibits in CH2Cl2 a reversible to quasireversible cyclic voltammetric response, corresponding to the NiIII/NiII (1) and CuII/CuI (2) redox process. The E½ values reveal that the complexes of bpzctb(2-) are uniformly more anodic by ~0.2 V than those of the corresponding complexes with the analogous pyridine ligand, 1,4-bis[o-(pyridine-2-carboxamidophenyl)]-1,4-dithiobutane (H2bpctb), attesting that compared to pyridine, pyrazine is a better stabilizer of the Ni(II) or Cu(I) state. Coulometric oxidation of the previously reported complex [NiII(bpctb)] and 1 generates [NiIII(bpctb)]+ and [NiIII(bpzctb)]+ species, which exhibit a LMCT transition in the 470-480 nm region and axial EPR spectra corresponding to a tetragonally elongated octahedral geometry. Complex 2 exhibits EPR spectra characteristic of the dz2 ground state.

Item Type:Article
Source:Copyright of this article belongs to Royal Society of Chemistry.
ID Code:25976
Deposited On:04 Dec 2010 10:46
Last Modified:17 May 2016 09:21

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