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Theoretical study on oligothiophene N-succinimidyl esters: size and push-pull effects

Authors :
Manuel Piacenza
F. Della Sala
Massimo Zambianchi
G. Barbarella
Giuseppe Gigli
Gigli, Giuseppe
Piacenza, M
Zambianchi, M
Barbarella, G
DELLA SALA, F.
Source :
PCCP. Physical chemistry chemical physics, info:cnr-pdr/source/autori:Piacenza, M; Zambianchi, M; Barbarella, G; Gigli, G; Della Sala, F/titolo:Theoretical study on oligothiophene N-succinimidyl esters: size and push-pull effects/doi:/rivista:PCCP. Physical chemistry chemical physics (Print)/anno:2008/pagina_da:5363/pagina_a:5373/intervallo_pagine:5363–5373/volume:10
Publication Year :
2008
Publisher :
The Royal Society of Chemistry, Cambridge , Regno Unito, 2008.

Abstract

We report a theoretical study on the optical properties of bithiophene and terthiophene N-succinimidyl esters, which have been functionalized with a methylsulfanyl group in the alpha or the beta positions. Time-dependent density functional theory (TD-DFT) and approximate coupled-cluster singles and doubles with the resolution of identity technique (RI-CC2) calculations have been performed in the ground and excited states. The RI-CC2 results for absorption and fluorescence energies are in better qualitative agreement with experiments, whereas TD-DFT does not correctly describe the higher energy part of the absorption spectra of beta-substituted bithiophenes, due to the presence of charge-transfer states. Systems functionalized at the alpha position show a large red-shift of the main absorption and fluorescence band and a larger Stokes-shift compared to the unsubstituted species. These effects are in most cases less pronounced for the beta-substituted structures. In particular, we found that the Stokes-shift of the alpha-substituted structures is larger than the one of the beta-substituted species due to a more planar orientation of the methylsulfanyl group with respect to the neighbouring thiophene in the excited state.

Details

Language :
English
Database :
OpenAIRE
Journal :
PCCP. Physical chemistry chemical physics, info:cnr-pdr/source/autori:Piacenza, M; Zambianchi, M; Barbarella, G; Gigli, G; Della Sala, F/titolo:Theoretical study on oligothiophene N-succinimidyl esters: size and push-pull effects/doi:/rivista:PCCP. Physical chemistry chemical physics (Print)/anno:2008/pagina_da:5363/pagina_a:5373/intervallo_pagine:5363–5373/volume:10
Accession number :
edsair.doi.dedup.....8f7929a552bf2ca413eb957651813a77