Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5376446 | Chemical Physics | 2007 | 9 Pages |
Abstract
The molecular structures and the S0 â Sn and S1 â Sn absorption spectra of 1,4-distyrylbenzene and four thio-analogues, where the side phenyl rings are replaced by 2â²-thienyl or 3â²-thienyl groups and the central benzene ring is replaced by a 2,5-disubstituted thiophene ring, have been investigated by a combined theoretical and experimental approach. The rotational isomerism of these flexible molecules has been analyzed by ab initio quantum chemistry methodologies. The S0 â Sn one-photon absorption spectra and the S1 â Sn transient spectra have been calculated using the CS INDO S-CI and SDT-CI procedures. The calculations on conformational isomers indicate that the stable molecular structures are those where the quasi-single bonds of the vinylene groups have almost planar s-trans configuration. In the 1,4-compounds, there may be an equilibrium between two molecular forms of C2h and C2v symmetry in the model of planar conformations. As concerns the UV-vis absorption spectra, the importance of the cis band, as probe to investigate the molecular structure of the 2,5-compounds, has been pointed out, and the presence of an equilibrium between two rotamers in the compound bearing side 3â²-thienyl groups has been confirmed. The S1 â Sn absorption spectra are interpretable only with configuration interaction calculations including the multiple excited configurations. In this respect, the role played by the H2 â L2 double excitation has been emphasized.
Related Topics
Physical Sciences and Engineering
Chemistry
Physical and Theoretical Chemistry
Authors
Ivan Baraldi, Gabriella Ginocchietti, Ugo Mazzucato, Anna Spalletti,