Abstract

A new ligand N, N′-bis{3-(2-formyl-4-methyl-phenol)-6-iminopropyl}oxamide ( L) and its mono- and binuclear copper(II) complexes have been synthesized and characterized. The ligand shows absorption maxima at 249 and 360 with a weak transition at 455 nm. The ligand was found to be fluorescent and shows an emission maximum at 516 nm on excitation at 360 nm. The electronic spectra of the mono- and binuclear Cu(II) complexes exhibited a d–d transition in the region 520–560 nm characteristic of square planar geometry around Cu(II) ion. The ESR spectrum of the mononuclear complex showed four lines with nuclear hyperfine splitting. The binuclear complex showed a broad ESR spectrum with g = 2.10 due to antiferromagnetic interaction between the two Cu(II) ions. The room-temperature magnetic moment values ( μ eff) for the mono- and binuclear Cu(II) complexes are found to be 1.70 μ B and 1.45 μ B, respectively. The electrochemical studies of the mononuclear Cu(II) complex showed a single irreversible one-electron wave at −0.70 V ( E pc) and the binuclear Cu(II) complex showed two irreversible one-electron reduction waves at −0.75 V ( E pc 1 ) and −1.27 V ( E pc 2 ) in the cathodic region.

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