Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5413157 | Journal of Molecular Liquids | 2008 | 7 Pages |
Abstract
The reaction dynamics of the complete photo cycle, ring-opening (C â E) and ring-closure (E â C), of N-methyl-(6-bromo-1,2-dimethyl-3-indolyl)fulgimide dissolved in acetonitrile are analysed via steady-state and ultrafast spectroscopy using transient absorption in the UV/VIS and mid-IR complemented by ultrafast fluorescence broad-band spectroscopy with a Kerr-gate setup. For the C â E ring-opening reaction induced by light at ~Â 550Â nm, a time constant of ~Â 3Â ps was found for the S1 decay and the S0 repopulation. Non-exponential signatures, which occur in the 10Â ps time domain, were observed and are assigned to the cooling of hot molecules in the electronic ground state. The E â C reaction dynamics induced by UV-light pulses at 360Â nm and 387Â nm occur within less than 1Â ps and are followed by vibrational cooling on the 10Â ps time domain. Thus, both ring-opening and ring-closure reactions are completed within a few picoseconds. From transient IR studies and fluorescence measurements it is concluded that these pericyclic reactions occur from different geometries on the excited state potential energy surface.
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Authors
Simone Draxler, Thomas Brust, Stephan Malkmus, Florian O. Koller, Björn Heinz, Stefan Laimgruber, Christine Schulz, Steffen Dietrich, Karola Rück-Braun, Wolfgang Zinth, Markus Braun,