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Fluorescence and solvatochromism of a merocyanine dye with a high quadratic polarizability in solutions and polymer films
Authors:Stanislav L. Bondarev  Sergei A. Tikhomirov  Alexander A. Turban  Andrey V. Kulinich
Affiliation:a Institute of Molecular and Atomic Physics, National Academy of Sciences of Belarus, Nezalezhnasti av. 70, Minsk 220072, Belarus
b Institute of Organic Chemistry, National Academy of Sciences of Ukraine, Kiev 02094, Ukraine
c Laboratoire de Photonique Quantique et Moleculaire—Ecole Normale Superieure de Cachan—61 avenue du president Wilson 94235 Cachan, France
Abstract:
The influence of medium polarity on the spectroscopic and photophysical properties of 2-[(2E,4E)-6-(1,3,3-trimethyl-2,3-dihydro-1H-2-indolyliden)-2,4-hexadienyliden]malononitrile (THDM) in solutions and polymer matrices is studied at room temperature and 77 K under conditions of steady-state and pulsed laser excitation. A large bathochromic shift of the absorption spectra observed upon an increase in the solvent polarity is caused by a strong increase of the dipole moment in the ground state (View the MathML source) on going to an excited Franck-Condon state (View the MathML source). Based on the solvatochromic data, the quadratic polarizability was calculated to be View the MathML source, which is close to the experimentally determined value View the MathML source. A strong narrowing of the fluorescence spectra in comparison with the absorption spectra at room temperature is observed upon an increase in the solvent polarity caused by a decrease in the bond length alternation parameter and by weakening of vibronic interactions in the singlet excited state. The mirror symmetry of the absorption and fluorescence spectra of THDM in ethanol at 77 K is explained by the increase of the electrostatic interactions between the solvent and merocyanine molecules. The dynamic fluorosolvatochromism of THDM in the picosecond range is caused by molecules reorientations of the polar environment occurring during a time period consistent with the dielectric relaxation time of these molecules.
Keywords:78.40.&minus  q   78.55.&minus  m   42.65.An
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