A (μ-hydroxido, μ-phenoxido)CuCu complex 1 has been synthesized using an unsymmetrical ligand bearing an N, N-bis(2-pyridyl)methylamine (BPA) moiety coordinating one copper and a dianionic bis-amide moiety coordinating the other copper(II) ion. Electrochemical mono-oxidation of the complex in DMF occurs reversibly at 213 K at E = 0.12 V vs Fc/Fc through a metal-centered process. The resulting species (complex 1) is only stable at low temperature and has been spectroscopically characterized by UV-vis-NIR cryo-spectroelectrochemical and EPR methods. DFT and TD-DFT calculations, consistent with experimental data, support the formation of a CuCu phenoxido-hydroxido complex. Low-temperature chemical oxidation of 1 by NOSbF yields a tetranuclear complex 2(SbF)(NO) which displays two binuclear CuCu subunits. The X-ray crystal structure of 2(SbF)(NO) evidences that the nitrogen of the terminal amide group is protonated and the coordination of the amide occurs via the O atom. The bis-amide moiety appears to be a non-innocent proton acceptor along the redox process. Alternatively, protonation of complex 1 leads to the complex 2(ClO), as evidenced by X-ray crystallography, cyclic voltammetry, and H NMR.
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http://dx.doi.org/10.1021/acs.inorgchem.8b02127 | DOI Listing |
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