Synthesis and Characterization of Cobalt(II) N, N′-Diphenylazodioxide Complexes

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Abstract

Removal of chloride from CoCl2 with TlPF6 in acetonitrile, followed by addition of excess nitrosobenzene, yielded the eight-coordinate cobalt(II) complex salt [Co{Ph(O)NN(O)Ph}4](PF6)2, shown by single-crystal X-ray analysis to have a distorted tetragonal geometry. The analogous treatment of the bipyridyl complex Co(bpy)Cl2 yielded the mixed-ligand cobalt(II) complex salt [Co(bpy){Ph(O)NN(O)Ph}2](PF6)2, whose single-crystal X-ray structure displays a trigonal prismatic geometry, similar to that of the iron(II) cation in the previously known complex salt [Fe{Ph(O)NN(O)Ph}3](FeCl4)2. The use of TlPF6 to generate solvated metal complex cations from chloride salts or chlorido complexes, followed by the addition of nitrosobenzene, is shown to be a useful synthetic strategy for the preparation of azodioxide complex cations with the noncoordinating, diamagnetic PF6- counteranion. Coordination number appears to be more important than d electron count in determining the geometry and metal-ligand bond distances of diphenylazodioxide complexes.

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Emhoff, K. A., Balaraman, L., Simpson, S. R., Stromyer, M. L., Kalil, H. F., Beemiller, J. R., … Boyd, W. C. (2018). Synthesis and Characterization of Cobalt(II) N, N′-Diphenylazodioxide Complexes. ACS Omega, 3(11), 16021–16027. https://doi.org/10.1021/acsomega.8b01200

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