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Control of the photo-isomerization mechanism in 3h-naphthopyrans to prevent formation of unwanted long-lived photoproducts

  • Sabina Brazevic
  • , Stanisław Nizinski
  • , Michel Sliwa
  • , Jiro Abe
  • , Michał F. Rode
  • , Gotard Burdzinski
  • Adam Mickiewicz University/Faculty of Biology
  • Université de Lille
  • Aoyama Gakuin University
  • Institute of Physics of the Polish Academy of Sciences

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

19 Citations (Scopus)

Résumé

In the photochromic reactions of 3H-naphthopyrans, two colored isomers TC (transoid-cis) and TT (transoid-trans) are formed. In terms of optimized photo-switchable materials, synthetic efforts are nowadays evolving toward developing 3H-naphthopyran derivatives that would not be able to photoproduce the long-living transoid-trans, TT, photoproduct. The substitution with a methoxy group at position 10 results in significant reduction of the TT isomer formation yield. The TC photophysics responsible for TT suppression were revealed here using a combination of multi-scale time resolved absorption UV-vis spectroscopy and ab initio calculations. The substitution changes the TC excited-state potential energy landscape, the bicycle-pedal isomerization path is favored over the rotation around a single double bond. The bicycle-pedal path is aborted in halfway to TT formation due to S1 →S0 internal conversion populating back the TC species in the ground electronic state. This is validated by a shorter TC S1 state lifetime for methoxy derivative in comparison to that of the parent-unsubstituted compound (0.47 ± 0.05 ps vs. 0.87 ± 0.09 ps) in cyclohexane.

langue originaleAnglais
Numéro d'article7825
Pages (de - à)1-15
Nombre de pages15
journalInternational Journal of Molecular Sciences
Volume21
Numéro de publication21
Les DOIs
étatPublié - 1 nov. 2020
Modification externeOui

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