4.6 Article

Origin of the bathochromically shifted optical spectra of meso-tetrathien-2 '- and 3 '-ylporphyrins as compared to meso-tetraphenylporphyrin

Journal

PHYSICAL CHEMISTRY CHEMICAL PHYSICS
Volume 8, Issue 20, Pages 2402-2412

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/b600010j

Keywords

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Funding

  1. NATIONAL INSTITUTE OF GENERAL MEDICAL SCIENCES [R01GM034548] Funding Source: NIH RePORTER
  2. NIGMS NIH HHS [R01 GM034548, R01 GM034548-16, GM-34548] Funding Source: Medline

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The UV-Vis and fluorescence spectra of free base and diprotonated meso-tetrathien-20-yl-porphyrins are, when compared to the spectra of meso-tetra-phenyl-or even -thien-30-yl-porphyrins, characterized by surprisingly large red-shifts. A comparison of the optical spectra and the computed rotational barriers for these meso-aryl-substituted porphyrins and a detailed conformational analysis of the single crystal X-ray structure of a diprotonated meso-tetrathien-20-ylporphyrin suggest that the origin of the altered electronic properties of meso-tetrathien-20-yl-porphyrins are mainly due to the contribution of conformations in which the thienyl groups adopt idealized co-planar arrangements with the porphyrin ring. These conformations allow an efficient extension of the porphyrinic pi-system through conjugation. We synthesized a meso-tetrathien-2'-ylporphyrin with methyl groups in the o-position, thus preventing the formation of conformers with co-planar thienyl groups and a corresponding thien-2'-ylporphyrin with methyl substituents in a distal position that possesses the same steric requirements for thienyl group rotation as the parent compound, to conclusively deduce the influence of the conformers on the electronic structure. A MNDO-PSDCI computation of their optical spectra further supports our key hypothesis. DFT computations of the total energies of the hypothetical diprotonated thien-2'-ylporphyrin conformer with perpendicular thienyl groups and the conformer containing near-coplanar thienyl groups quantify the resonance stabilization energy. Our results support and complement recent photophysical and theoretical studies by Gupta and Ravikanth and Friedlein et al. on thien-2'-yl-substituted core-modified porphyrins and [meso-tetra(5'-bromothien-2'-yl)porphyrinato]Zn(ii), respectively.

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