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Excited-State Dynamics of [(1,1′-Biphenyl)-4,4-diyldi-2,1-ethenediyl]bis(dimethylsilane).

Authors :
Kuan-Lin Liu
Sheng-Jui Lee
I-Chia Chen
Chao-Ping Hsu
Mei-Yu Yeh
Tien-Yau Luh
Source :
Journal of Physical Chemistry A. Feb2009, Vol. 113 Issue 7, p1218-1224. 7p.
Publication Year :
2009

Abstract

The relaxation dynamics of excited electronic states of [(1,1′-biphenyl)-4,4′-diyldi-2,1-ethenediyl]bis(dimethylsilane) dissolved in various solvents with varied polarity and viscosity have been investigated. Upon excitation at wavelength 266 nm, we measured the fluorescence curves that exhibit a rise time constant ∼100 fs, and two decay time constants, 7−65 ps and ∼1 ns. We attribute the former decay to upper excited states to the S1state, and the latter decay to geometric relaxation and the lifetime of the S1state. Only the tens of picosecond decay shows a dependence on the solvent viscosity, indicating that the torsional motion dominates the relaxation. Theoretical calculations were performed to obtain the optimized structures of the free [(1,1′-biphenyl)-4,4′-diyldi-2,1-ethenediyl]bis(dimethylsilane) molecule in its ground and first excited states with methods B3LYP/6-311G(d) and CIS/6-311G(d), respectively. The results of these calculations show that the dihedral angle between the two phenyl rings is ∼34° for transand ∼38° for cisconformers in the ground state and that the first excited state has a planar structure, in agreement with the experimental results that indicate that the torsional motion of two phenyl groups elevates the relaxation of the S1state. Enhanced vibrational relaxation of S1in alcoholic solvents is observed. Rapid relaxation in methanol-OH compared with that in methanol-OD is explained by the excess energy dissipated efficiently through high-frequency vibrational mode (>500 cm−1). [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10895639
Volume :
113
Issue :
7
Database :
Academic Search Index
Journal :
Journal of Physical Chemistry A
Publication Type :
Academic Journal
Accession number :
36473933
Full Text :
https://doi.org/10.1021/jp807662g