Unusual pathways of triplet state dynamic relaxation in meso-aryl-substituted porphyrins and their chemical dimers at 295 K

Citation
Vn. Knyukshto et al., Unusual pathways of triplet state dynamic relaxation in meso-aryl-substituted porphyrins and their chemical dimers at 295 K, J FLUORESC, 10(1), 2000, pp. 55-68
Citations number
53
Categorie Soggetti
Spectroscopy /Instrumentation/Analytical Sciences
Journal title
JOURNAL OF FLUORESCENCE
ISSN journal
10530509 → ACNP
Volume
10
Issue
1
Year of publication
2000
Pages
55 - 68
Database
ISI
SICI code
1053-0509(200003)10:1<55:UPOTSD>2.0.ZU;2-H
Abstract
It was found that mono- and di-meso-phenyl substitution in octaethylporphyr ins (OEP)and their chemical dimers with the phenyl ring as a spacer manifes ts itself in the dramatical shortening of T-1 state lifetimes at 295 K (fro m similar to 1.5 ms down to 2-5 mu s in degassed toluene solutions). On the other hand, this substitution does not influence spectral-kinetic paramete rs of S-0 and S-1 states. The enhancement of the T-1 state non-radiative de activation is explained by torsional librations of the phenyl ring around a single C-C bond in sterically encumbered OEP molecules leading to nonplana r dynamic distorted conformations in the excited T-1 states. For these comp ounds with electron-accepting NO2-groups in the meso-phenyl ring the strong non-radiative deactivation of S-1 and T-1 states (by similar to 2-3 orders of magnitude) is observed upon the displacement of NO2-group from para- to ortho-position of the phenyl ring. The S-1 state quenching is caused by th e direct intramolecular electron transfer to low-lying CT state of the radi cal ion pair (the normal region, non-adiabatic case presumably, V = 130-190 cm(-1) in dimethylformamide). The additional deactivation of the T-1 state is connected with thermally activated transitions to upper-lying CT states as well as the strengthening of intersystem crossing probabilities.