Inverse Hypercorroles.

Inorg Chem

Department of Chemistry, University of the Free State, 9300 Bloemfontein, Republic of South Africa.

Published: May 2024

AI Article Synopsis

  • The study uses advanced computational methods to explore the unique properties of dicyanidocobalt(III) corrole dianions with nitrophenyl groups attached, specifically looking at their "inverse hypercorrole" character.
  • Significant findings reveal that the presence of nitrophenyl groups leads to strong near-infrared (NIR) absorptions, particularly in the 5,15-bis(-nitrophenyl) derivatives.
  • The electronic transitions observed in these complexes differ from typical charge transfer in similar compounds, highlighting a novel transition from the corrole's highest occupied molecular orbital (HOMO) to a nitrophenyl-based lowest unoccupied molecular orbital (LUMO), marking them as unique inverse hyper

Article Abstract

Ground-state and time-dependent density functional theory (TDDFT) calculations with the long-range-corrected, Coulomb-attenuating CAMY-B3LYP exchange-correlation functional and large, all-electron STO-TZ2P basis sets have been used to examine the potential "inverse hypercorrole" character of -nitrophenyl-appended dicyanidocobalt(III) corrole dianions. The effect is most dramatic for 5,15-bis(-nitrophenyl) derivatives, where it manifests itself in intense NIR absorptions. The 10-aryl groups in these complexes play a modulatory role, as evinced by experimental UV-visible spectroscopic and electrochemical data for a series of 5,15-bis(-nitrophenyl) dicyanidocobalt(III) corroles. TDDFT (CAMY-B3LYP) calculations ascribe these features clearly to a transition from the corrole's a-like HOMO (retaining the irrep used for metalloporphyrins) to a nitrophenyl-based LUMO. The outward nature of this transition contrasts with the usual phenyl-to-macrocycle direction of charge transfer transitions in many hyperporphyrins and hypercorroles; thus, the complexes studied are aptly described as inverse hypercorroles.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11094798PMC
http://dx.doi.org/10.1021/acs.inorgchem.4c00344DOI Listing

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