Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based Molecular Aggregates

Femtosecond time-resolved experiments demonstrate that the photoexcited state of perylene tetracarboxylic acid bisimide (PBI) aggregates in solution decays nonradiatively on a time-scale of 215 fs. High-level electronic structure calculations on dimers point toward the importance of an excited state...

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Veröffentlicht in:The journal of physical chemistry letters 2013-03, Vol.4 (5), p.792-796
Hauptverfasser: Schubert, Alexander, Settels, Volker, Liu, Wenlan, Würthner, Frank, Meier, Christoph, Fink, Reinhold F, Schindlbeck, Stefan, Lochbrunner, Stefan, Engels, Bernd, Engel, Volker
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Sprache:eng
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Zusammenfassung:Femtosecond time-resolved experiments demonstrate that the photoexcited state of perylene tetracarboxylic acid bisimide (PBI) aggregates in solution decays nonradiatively on a time-scale of 215 fs. High-level electronic structure calculations on dimers point toward the importance of an excited state intermolecular geometry distortion along a reaction coordinate that induces energy shifts and couplings between various electronic states. Time-dependent wave packet calculations incorporating a simple dissipation mechanism indicate that the fast energy quenching results from a doorway state with a charge-transfer character that is only transiently populated. The identified relaxation mechanism corresponds to a possible exciton trap in molecular materials.
ISSN:1948-7185
1948-7185
DOI:10.1021/jz4000752