Ring-opening reaction of a trifluorinated indolylfulgide: mode-specific photochemistry after pre-excitation

The ring-opening reaction of a trifluorinated indolylfulgide has been studied as a function of temperature and optical pre-excitation where it was found that reaction times decreased as temperature increased from 10.3 ps at 12 degrees C to 7.6 ps at 60 degrees C. Simultaneously, the quantum yields f...

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Veröffentlicht in:Physical chemistry chemical physics : PCCP 2009-01, Vol.11 (25), p.5019-5027
Hauptverfasser: Draxler, Simone, Brust, Thomas, Malkmus, Stephan, DiGirolamo, Jessica A, Lees, Watson J, Zinth, Wolfgang, Braun, Markus
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Sprache:eng
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Zusammenfassung:The ring-opening reaction of a trifluorinated indolylfulgide has been studied as a function of temperature and optical pre-excitation where it was found that reaction times decreased as temperature increased from 10.3 ps at 12 degrees C to 7.6 ps at 60 degrees C. Simultaneously, the quantum yields for the ring-opening reaction grew from 3.1% (12 degrees C) to 5.0% (60 degrees C). When the reaction was started from a non-equilibrium state generated by a directly preceding ring-closure process, the ring-opening reaction became faster and the quantum efficiency increased by more than a factor of three. Analysis of the experimental results points to mode-specific photochemistry in that the promoting, photochemically active modes of the photoreaction are efficiently excited by the directly preceding ring-closure reaction.
ISSN:1463-9076
1463-9084
DOI:10.1039/b819585d