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Deciphering the unusual fluorescence in weakly coupled bis-nitro-pyrrolo[3,2-b]pyrroles

  • Yevgen M. Poronik
  • , Glib V. Baryshnikov
  • , Irena Deperasińska
  • , Eli M. Espinoza
  • , John A. Clark
  • , Hans Ågren*
  • , Daniel T. Gryko*
  • , Valentine I. Vullev*
  • *Corresponding author for this work
  • Polish Academy of Sciences
  • Uppsala University
  • Institute of Physics of the Polish Academy of Sciences
  • University of California at Riverside
  • University of California at Berkeley
  • Tomsk State University

Research output: Contribution to journalArticlepeer-review

Abstract

Electron-deficient π-conjugated functional dyes lie at the heart of organic optoelectronics. Adding nitro groups to aromatic compounds usually quenches their fluorescence via inter-system crossing (ISC) or internal conversion (IC). While strong electronic coupling of the nitro groups with the dyes ensures the benefits from these electron-withdrawing substituents, it also leads to fluorescence quenching. Here, we demonstrate how such electronic coupling affects the photophysics of acceptor–donor–acceptor fluorescent dyes, with nitrophenyl acceptors and a pyrrolo[3,2-b]pyrrole donor. The position of the nitro groups and the donor-acceptor distance strongly affect the fluorescence properties of the bis-nitrotetraphenylpyrrolopyrroles. Concurrently, increasing solvent polarity quenches the emission that recovers upon solidifying the media. Intramolecular charge transfer (CT) and molecular dynamics, therefore, govern the fluorescence of these nitro-aromatics. While balanced donor-acceptor coupling ensures fast radiative deactivation and slow ISC essential for large fluorescence quantum yields, vibronic borrowing accounts for medium dependent IC via back CT. These mechanistic paradigms set important design principles for molecular photonics and electronics.

Original languageEnglish
Article number190
JournalCommunications Chemistry
Volume3
Issue number1
DOIs
StatePublished - Dec 2020
Externally publishedYes

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