Your browser doesn't support javascript.
loading
Mechanistic Insights into the Triplet Sensitized Photochromism of Diarylethenes.
Fredrich, Sebastian; Morack, Tobias; Sliwa, Michel; Hecht, Stefan.
Affiliation
  • Fredrich S; Department of Chemistry & IRIS Adlershof, Humboldt-Universität zu Berlin, Brook-Taylor-Strasse 2, 12489, Berlin, Germany.
  • Morack T; Department of Chemistry & IRIS Adlershof, Humboldt-Universität zu Berlin, Brook-Taylor-Strasse 2, 12489, Berlin, Germany.
  • Sliwa M; Univ. Lille, CNRS, UMR 8516 - LASIR -, Laboratoire de, Spectrochimie Infrarouge et Raman, F-59000, Lille, France.
  • Hecht S; Department of Chemistry & IRIS Adlershof, Humboldt-Universität zu Berlin, Brook-Taylor-Strasse 2, 12489, Berlin, Germany.
Chemistry ; 26(34): 7672-7677, 2020 Jun 18.
Article in En | MEDLINE | ID: mdl-32185822
ABSTRACT
Operating photoswitchable molecules repetitively and reliably is crucial for most of their applications, in particular in (opto)electronic devices, and related to reversibility and fatigue resistance, which both critically depend on the photoisomerization mechanism defined by the substitution pattern. Two diarylethene photoswitches bearing biacetyl triplet sensitizers either at the periphery or at the core were investigated using both stationary as well as transient UV/Vis absorption spectroscopy ranging from the femtosecond to the microsecond time scale. The diarylethene with two biacetyl moieties at the periphery is switching predominantly from the triplet excited state, giving rise to an enhanced fatigue resistance. In contrast, the diarylethene bearing one diketone at the photoreactive inner carbon atom cyclizes from the singlet excited state and shows significantly higher quantum yields for both cyclization and cycloreversion.
Key words