DEACTIVATION OF 9,9'-BIANTHRYL IN SOLUTION STUDIED BY PHOTOACOUSTIC CALORIMETRY AND FLUORESCENCE

Citation
M. Schutz et R. Schmidt, DEACTIVATION OF 9,9'-BIANTHRYL IN SOLUTION STUDIED BY PHOTOACOUSTIC CALORIMETRY AND FLUORESCENCE, Journal of physical chemistry, 100(6), 1996, pp. 2012-2018
Citations number
50
Categorie Soggetti
Chemistry Physical
ISSN journal
00223654
Volume
100
Issue
6
Year of publication
1996
Pages
2012 - 2018
Database
ISI
SICI code
0022-3654(1996)100:6<2012:DO9ISS>2.0.ZU;2-5
Abstract
The photophysics of singlet excited 9,9'-bianthryl has been studied in solution by stationary and time-resolved experiments using photoacous tic (PAC) and fluorescence methods. The results are interpreted under the assumption of a very fast solvent-dependent equilibrium between a pure local excited (LE) and a charge transfer (CT) state. The deactiva tion of the CT state is treated as nonadiabatic back electron transfer using the formalism developed by Could et al. for radiative and radia tionless deactivation of radical ion pairs. Fluorescence spectra have been separated into LE and CT emission spectra. Calculated CT spectra yield reasonable values for the free enthalpy change of back electron transfer and for the LE reversible arrow CT equilibrium constant. The energy of the nonpolar triplet state as well as the quantum yields Q(i sc) of intersystem crossing have been determined by the PAC method. Th e sum of Q(isc) and the fluorescence quantum yield Q(f) is near unity, independent of solvent polarity. A procedure for the quantitative cor rection of electrostriction effects in PAC is presented, which allows the determination of the enthalpy and entropy changes of the LE --> CT reaction and of the solvent reorganization reaction in the ground sta te. Intersystem crossing CT --> T-1 competes efficiently with CT fluor escence in strongly polar solvents due to spin-orbit coupling, the muc h smaller energy gap, and the large solvent reorganization energy.