Solvatomorphs of dimeric transition metal complexes based on the V 4O 12 cyclic anion as building block: Crystalline packing and magnetic properties

Paredes-Garcia, V; Gaune, S; Saldias, M; Garland M.T.; Venegas-Yazigi, D; Spodine, E.; Baggio R.; Vega A.; El Fallah M.S.; Escuer, A; Fur E.L.

Abstract

Dinuclear [{M(phen) 2} 2V 4O 12] · C 6H 12O · H 2O (M = Co II 1, Mn II 2, Ni II 3 and Cu II 4) and [{Cu(phen) 2} 2V 4O 12] · 3.5H 2O 5 has been prepared by biphasic and hydrothermal syntheses, respectively. All five structures exhibit the {V 4O 12} 4- cluster in a chair-like configuration, covalently bonded to two [M(phen) 2] 2+ fragments, producing a super-exchange magnetic phenomenon. The magnetic study of complexes 1-5 shows that they are very weak antiferromagnetically coupled systems, with J values of -0.14, 2; -0.64, 3 and -0.23, 4 cm -1. Complexes 1 to 3 correspond to isostructural compounds in which the cyclovanadate group acts as a bidentate bridged ligand. In the copper complexes (4 and 5) the {V 4O 12} 4- anion presents the novel monodentate bridging mode, and therefore a more significant distortion from the chair-like configuration. The mentioned complexes, together with that reported in the literature, permit to conclude that it is quite common for a single molecular species to exist in more than one crystalline arrangement. A detailed analysis of the structures of 1-4 shows that the crystal symmetry cannot be strictly centrosymmetric, due to the presence of the cyclohexanol molecule with a single -OH group in the lattice. © 2008 Elsevier B.V. All rights reserved.

Más información

Título de la Revista: INORGANICA CHIMICA ACTA
Volumen: 361
Número: 12-13
Editorial: ELSEVIER SCIENCE SA
Fecha de publicación: 2008
Página de inicio: 3681
Página final: 3689
URL: http://www.scopus.com/inward/record.url?eid=2-s2.0-48849092915&partnerID=q2rCbXpz