Abstract

Copper(II) complexes of a series of tripodal ligands containing two phenolate moieties and NO 2X (X = S or O donor ligands) coordination sphere were synthesized: N, N-bis(3,5-di- tert-butyl-2-hydroxybenzyl)-2-(aminomethyl) furan, N, N-bis(3,5-di- tert-butyl-2-hydroxybenzyl)-2-(methoxyethylamine) and newly synthesized N, N-bis(3,5-di- tert-butyl-2-hydroxybenzyl)-2-(aminomethyl) thiophene H 2L have been used. The ligands H 2L yielded three binuclear [L 2 Cu 2 II ] complexes, which have been characterized by X-ray crystallography, UV–Vis and magnetic susceptibility measurements. The phenolate moieties of the copper complexes were electrochemically oxidized to phenoxyl radicals. The ferro- and antiferromagnetic exchange coupling of two copper centers of these complexes have been investigated by magnetic susceptibility (2–290 K) measurements. A weaker antiferromagnetic coupling is found in copper complex with methoxy arm, and a weaker ferromagnetic coupling has been observed in two other complexes with furan and thiophene arms, compared to other phenoxo-bridged dicopper(II) complexes. The weak exchange coupling constants ( J) of these complexes, when compared to the literature values, is most likely attributed to the smaller Cu⋯Cu distance and Cu–O(Ph)–Cu angle.

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