4.6 Article

Electronic Structure of Cobalt-Corrole-Pyridine Complexes: Noninnocent Five-Coordinate Co(II) Corrole-Radical States

Journal

JOURNAL OF PHYSICAL CHEMISTRY A
Volume 121, Issue 50, Pages 9589-9598

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.jpca.7b09440

Keywords

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Funding

  1. Research Council of Norway [231086, 262229]
  2. National Research Fund of the Republic of South Africa
  3. Advanced Light Source, Berkeley, California
  4. Office of Science, Office of Basic Energy Sciences, of the U.S. Department of Energy [DE-AC02-05CH11231]

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Two sets of complexes of Co-triarylcorrole-bispyridine complexes, Co[TpXPC](py)(2) and Co[Br(8)TpXPC](py)(2) have been synthesized, where TpXPC refers to a meso-tris(para-X-phenyl)corrole ligand with X = CF3, H, Me, and OMe and Br8TpXPC to the corresponding beta-octabrominated ligand. The axial pyridines in these complexes were found to be labile and, in dilute solutions in dichloromethane, the complexes dissociate almost completely to the five-coordinate monopyridine complexes. Upon addition of a small quantity of pyridine, the complexes revert back to the six coordinate forms. These transformations are accompanied by dramatic changes in color and optical spectra. H-1 NMR spectroscopy and X-ray crystallography have confirmed that the bispyridine complexes are authentic low-spin Co(III) species. Strong substituent effects on the Soret maxima and broken-symmetry DFT calculations, however, indicate a Co-II-corrole(center dot 2-) formulation for the five-coordinate Co[TpXPC]-(py) series. The calculations implicate a Co(d(z)(2))-corrole(a(2u)) orbital interaction as responsible for the metal-ligand antiferromagnetic coupling that leads to the open-shell singlet ground state of these species. Furthermore, the calculations predict two low-energy S = 1 intermediate-spin Co(III) states, a scenario that we have been able to experimentally corroborate with temperature-dependent EPR studies. Our findings add to the growing body of evidence for noninnocent electronic structures among first-row transition metal corrole derivatives.

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