Copper and Nickel Complexes of Oxamate-Phenol Containing Ligands: A Structural Dichotomy in Oxidized Species

The copper and nickel complexes of two tetradentate ligands derived from bis(aminophenol) and bis(phenol) architectures connected by an oxamate linker were isolated. Depending on the metal and ligand, the complex is isolated with either an intact (deprotonated) ligand (12-), one-electron oxidized ligand (2-) or quinone form (3). Surprisingly, the Mannich base is easier to oxidize than the amidophenol derivatives The complexes were characterized by X-ray diffraction, cyclic voltammetry, UV-Vis-NIR and EPR spectroscopies. Complex 1 shows two reversible oxidation waves assigned to the successive iminosemiquinone/aminophenolate redox systems. Complex 2- shows an intense NIR feature, as well as an EPR signal at giso=2.043, consistent with a metallic contribution to the main ligand radical SOMO. Complex 3 shows the typical feature of an isolated Cu(II) complex. Spectro-electrochem. coupled to DFT calculations demonstrate a ligand-centered oxidative redox chem. for all the complexes.

Références

Titre
Copper and Nickel Complexes of Oxamate-Phenol Containing Ligands: A Structural Dichotomy in Oxidized Species
Type de publication
Article de revue
Année de publication
2023
Revue
European Journal of Inorganic Chemistry
Volume
26
Pagination
e202200781
ISSN
1434-1948
Soumis le 5 septembre 2023