Issue 7, 2022

The Kröhnke synthesis of benzo[a]indolizines revisited: towards small, red light emitters

Abstract

Benzo[a]indolizines with an ordered arrangement of various electron-withdrawing substituents (NO2, CF3, CN, CO2R and COPh) were prepared directly from pyridinium salts and chloronitroarenes, allowing for refined control of the photophysical properties. Facile entry into almost unknown isoindolo[1,2-a]isoquinolines is disclosed to demonstrate the potential of this method. The rational manipulation of the substituents makes it possible to obtain electron-deficient dyes (HOMO ≈ −5.6 eV) with yellow, orange to red emission, large Stokes shifts (up to 9000 cm−1) and fluorescence quantum yields reaching 0.58. Strong emission in spite of the presence of an NO2 group has been rationalized by a large singlet–triplet energy gap combined with small spin–orbit couplings, hence small intersystem crossing. The ability to substitute various electron-withdrawing groups at multiple positions on this heterocyclic skeleton offers an unprecedented opportunity to study their effect on the fate of the molecules in the excited state.

Graphical abstract: The Kröhnke synthesis of benzo[a]indolizines revisited: towards small, red light emitters

Supplementary files

Article information

Article type
Research Article
Submitted
20 Jan 2022
Accepted
09 Feb 2022
First published
14 Feb 2022

Org. Chem. Front., 2022,9, 1861-1874

Author version available

The Kröhnke synthesis of benzo[a]indolizines revisited: towards small, red light emitters

J. S. A. Badaro, B. Koszarna, M. H. E. Bousquet, E. T. Ouellette, D. Jacquemin and D. T. Gryko, Org. Chem. Front., 2022, 9, 1861 DOI: 10.1039/D2QO00097K

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