Spectroscopic Properties of a Self-Assembled Zinc Porphyrin Tetramer II. Time-Resolved Fluorescence Spectroscopy

Excited-state kinetics of complexes of a functionalized zinc tetraphenylporphyrin (ZnTPP) derivative, zinc mono(4-pyridyl)triphenylporphyrin (ZnPyP) in toluene and polystyrene/toluene mixtures have been investigated by time-resolved fluorescence spectroscopy. In addition to the ∼2.0 ns monomer fluor...

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Published inThe journal of physical chemistry. A, Molecules, spectroscopy, kinetics, environment, & general theory Vol. 105; no. 51; pp. 11432 - 11440
Main Authors Yatskou, Mikalai M, Koehorst, Rob B. M, van Hoek, Arie, Donker, Harry, Schaafsma, Tjeerd J, Gobets, Bas, van Stokkum, Ivo, van Grondelle, Rienk
Format Journal Article
LanguageEnglish
Published American Chemical Society 27.12.2001
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Summary:Excited-state kinetics of complexes of a functionalized zinc tetraphenylporphyrin (ZnTPP) derivative, zinc mono(4-pyridyl)triphenylporphyrin (ZnPyP) in toluene and polystyrene/toluene mixtures have been investigated by time-resolved fluorescence spectroscopy. In addition to the ∼2.0 ns monomer fluorescence lifetime, a ≈ 1.5 ns component was found by applying global analysis to the time-resolved fluorescence decay. The 1.5 ns component is assigned to a cyclic porphyrin tetramer [Part I], with a ≈ 1 ns rotational correlation time at 10 °C. The initial fluorescence anisotropy of the monomer is found to be 0.1. In the tetramer an additional depolarization process occurs with a correlation time of ∼31 ps, resulting in a further decrease of the anisotropy from 0.1 to 0.025. This additional depolarization is ascribed to singlet energy transfer between the porphyrin units that constitute the tetramer. The intramolecular energy transfer processes have been simulated using the Monte Carlo method, yielding rate constants of (26 ± 4 ps)-1 and ≤ (180 ps)-1 for energy transfer between nearest neighbor and next nearest neighbor porphyrins in the tetramer.
Bibliography:istex:FE5D59187A8CBE002FF4B2B7358AF18D54CA4BD4
ark:/67375/TPS-JDJF5864-X
ISSN:1089-5639
1520-5215
DOI:10.1021/jp010411h