Symmetry Breaking in the Relaxed S1 Excited State of Bianthryl Derivatives in Weakly Polar Solvents
- 12 May 2001
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 123 (22) , 5337-5347
- https://doi.org/10.1021/ja004341o
Abstract
The flash-photolysis time-resolved microwave conductivity technique (FP-TRMC) has been used to investigate the nature of the relaxed S1 state of 9,9‘-bianthryl (AA), 10-cyano-9,9‘-bianthryl (CAA), and 10,10‘-dicyano-9,9‘-bianthryl (CAAC). Changes in both the real, Δε‘ (dielectric constant), and imaginary, Δε‘ ‘ (dielectric loss), components of the complex permittivity have been measured. The dielectric loss transients conclusively demonstrate the dipolar nature of S1 for all three compounds in the pseudopolar solvents benzene and 1,4-dioxane, and even in the nonpolar solvents n-hexane and cyclohexane. The required symmetry breaking is considered to result from density and structural fluctuations in the solvent environment. The dipole relaxation times for AA (CAAC) are ca. 2 ps for the alkanes and 7.9 (5.3) and 14 (14) ps for benzene and dioxane, respectively. The time scale of dipole relaxation for the symmetrical compounds is much shorter than that for rotational diffusion and is attributed to intramolecular, flip-flop dipole reversal via a neutral excitonic state. The dipole moment of the transient dipolar state is estimated to be ca. 8 D, that is much lower than the value of ca. 20 D determined from the solvatochromic shifts in the fluorescence in intermediate to highly polar solvents which corresponds to close to complete charge separation. For the asymmetric compound, CAA, a dipole moment close to 20 D is found in all solvents, including n-hexane. Dipole relaxation in this case occurs on a time scale of several hundred picoseconds and is controlled mainly by diffusional rotation of the molecules. The mechanism and kinetics of formation of the dipolar excited states are discussed in the light of these results.Keywords
This publication has 28 references indexed in Scilit:
- Excitonic and Charge Transfer States in Oligomeric 9,10-Anthrylene ChainsThe Journal of Physical Chemistry A, 1997
- Deactivation of 9,9‘-Bianthryl in Solution Studied by Photoacoustic Calorimetry and FluorescenceThe Journal of Physical Chemistry, 1996
- Influence of cyano substituents on the effective S1 torsional potentials of symmetrical and symmetry-disturbed derivatives of 9,9'-bianthryl in condensed mediaThe Journal of Physical Chemistry, 1993
- Experimental determination of the S1 torsional potential of 9,9′-bianthryl in 2-methyl-butane by simultaneous Franck–Condon and band shape analysis of temperature dependent optical fluorescence spectraThe Journal of Chemical Physics, 1991
- Charge-transfer rates in symmetric and symmetry-disturbed derivatives of 9,9'-bianthrylThe Journal of Physical Chemistry, 1989
- Rapid polarity reversal in the charge-transfer excited state of 9,9'-bianthrylThe Journal of Physical Chemistry, 1989
- Reference materials for fluorescence measurementPure and Applied Chemistry, 1988
- Electron-transfer times are not equal to longitudinal relaxation times in polar aprotic solventsThe Journal of Physical Chemistry, 1987
- Time-resolved spectroscopic measurements on microscopic solvation dynamicsThe Journal of Chemical Physics, 1987
- Intramolecular proton exchange in 9-hydroxyphenalen-1-one and methyl-9-hydroxyphenalen-1-oneJournal of the American Chemical Society, 1984