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Helicene-Azulene Conjugates: Synthesis, Photophysical Properties and Proton-Induced Chiroptical Switching

  • Stefano Cadeddu
  • , Pierre Mathey
  • , Saurav Parmar
  • , Marie Cordier
  • , Nicolas Vanthuyne
  • , Clément Brouillac
  • , Jochen Autschbach
  • , Jean François Morin
  • , Jeanne Crassous
  • Université de Rennes
  • Université Laval
  • SUNY Buffalo
  • Aix-Marseille Université

Research output: Contribution to journalArticlepeer-review

Abstract

The synthesis of 4,13-dimethoxy-carbo[6]helicene derivatives substituted at positions 2,15 by either 2-azulene (H-2-azu) or 6-azulene (H-6-azu) units is presented. The photophysical and chiroptical properties of these new helicene-azulene derivatives have been examined in details. Both helical constitutional isomers H-2-azu and H-6-azu exhibit strong electronic circular dichroic responses in the azulene absorption region and reversible chiroptical switching upon protonation/deprotonation. Furthermore, although very weak, emission was also observed and was analyzed as originating from the S1 excited state, i.e., obeying the Kasha rule, which is not common in azulene derivatives. Theoretical calculations helped confirm these observations. Finally, these systems revealed efficient chemical acid-base triggered chiroptical switching activity, showing notably a strong red shift upon protonation.

Original languageEnglish
Article numbere03531
JournalChemistry - A European Journal
Volume32
Issue number9
DOIs
StatePublished - Mar 2 2026

Keywords

  • Kasha emission
  • azulene
  • circular dichroism
  • helicene
  • proton switch

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