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Trends in triplet excitation delocalization in highly conjugated (porphinato)zinc(II) arrays probed by EPR spectroscopy

Publication ,  Journal Article
Angiolillo, PJ; Susumu, K; Uyeda, HT; Lin, VSY; Shediac, R; Therien, MJ
Published in: Synthetic Metals
January 1, 2001

The lowest photoexcited metastable triplet state of a family of highly conjugated (porphinato)zinc(II) arrays in which ethyne, butadiyne, and octatetrayne units bridge the macrocycle carbon frameworks were studied by EPR spectroscopy at low temperature in solution. One series of meso-to-meso ethyne-bridged (porphinato)zinc(II) structures probes how the length of the conjugated bridge separating two (porphinato)zinc(II) units effects the nature of the triplet excited state, while a second set of compounds assesses the impact that oligomer size has upon triplet state spin distribution and orientation. Although the magnitude of the EPR |D| values decrease with increasing number of porphyrin units, the data do not suggest that the lowest triplet excitation extends beyond a single porphyrin unit. With augmented conjugation, these systems show a progressive oblate-to-prolate spin distribution transition that causes the direction of largest dipolar interaction to align along a vector defined by the highly conjugated axes of these molecules. Temperature EPR line shape studies of these Zn porphyrin arrays reveal that (1) the triplet spectrum evinces no changes up to 100 K, indicating the absence of Jahn-Teller-induced dynamics, and (2) the EPR spectra of the triplet states for all dimers, trimers, and pentamers exhibit electron spin polarization up to temperatures surpassing 100 K, suggesting spin lattice relaxation times that do not decrease significantly with temperature.

Duke Scholars

Published In

Synthetic Metals

DOI

ISSN

0379-6779

Publication Date

January 1, 2001

Volume

116

Issue

1-3

Start / End Page

247 / 253

Related Subject Headings

  • Applied Physics
  • 5104 Condensed matter physics
  • 3403 Macromolecular and materials chemistry
  • 0912 Materials Engineering
  • 0204 Condensed Matter Physics
 

Citation

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Angiolillo, P. J., Susumu, K., Uyeda, H. T., Lin, V. S. Y., Shediac, R., & Therien, M. J. (2001). Trends in triplet excitation delocalization in highly conjugated (porphinato)zinc(II) arrays probed by EPR spectroscopy. Synthetic Metals, 116(1–3), 247–253. https://doi.org/10.1016/S0379-6779(00)00461-6
Angiolillo, P. J., K. Susumu, H. T. Uyeda, V. S. Y. Lin, R. Shediac, and M. J. Therien. “Trends in triplet excitation delocalization in highly conjugated (porphinato)zinc(II) arrays probed by EPR spectroscopy.” Synthetic Metals 116, no. 1–3 (January 1, 2001): 247–53. https://doi.org/10.1016/S0379-6779(00)00461-6.
Angiolillo PJ, Susumu K, Uyeda HT, Lin VSY, Shediac R, Therien MJ. Trends in triplet excitation delocalization in highly conjugated (porphinato)zinc(II) arrays probed by EPR spectroscopy. Synthetic Metals. 2001 Jan 1;116(1–3):247–53.
Angiolillo, P. J., et al. “Trends in triplet excitation delocalization in highly conjugated (porphinato)zinc(II) arrays probed by EPR spectroscopy.” Synthetic Metals, vol. 116, no. 1–3, Jan. 2001, pp. 247–53. Scopus, doi:10.1016/S0379-6779(00)00461-6.
Angiolillo PJ, Susumu K, Uyeda HT, Lin VSY, Shediac R, Therien MJ. Trends in triplet excitation delocalization in highly conjugated (porphinato)zinc(II) arrays probed by EPR spectroscopy. Synthetic Metals. 2001 Jan 1;116(1–3):247–253.
Journal cover image

Published In

Synthetic Metals

DOI

ISSN

0379-6779

Publication Date

January 1, 2001

Volume

116

Issue

1-3

Start / End Page

247 / 253

Related Subject Headings

  • Applied Physics
  • 5104 Condensed matter physics
  • 3403 Macromolecular and materials chemistry
  • 0912 Materials Engineering
  • 0204 Condensed Matter Physics