Effect of the π-bridge on the light absorption and emission in push-pull coumarins and on their supramolecular organization

Spectrochim Acta A Mol Biomol Spectrosc. 2022 Feb 15;267(Pt 2):120520. doi: 10.1016/j.saa.2021.120520. Epub 2021 Oct 20.

Abstract

A family of eight π-extended push-pull coumarins with cross-conjugated (amide) and directly conjugated (p-phenylene, alkyne, alkene) bridges were synthesized through a convergent strategy. Using an experimentally calibrated computational protocol, their UV-Visible light absorption and emission spectra in solution were investigated. Remarkably, amide-, alkyne- and alkene-bridges undergo comparable vertical excitations. The different nature of these bridges manifests during excited-state relaxation and fluorescence. We predict that these molecules can serve as building blocks for p-type semiconductors with low reorganization energies, below 0.2 eV. Since solid-state self-assembly is crucial for this application, we examined the effect of the π-bridge over the supramolecular organization in this family of compounds to determine if stacking prevails in these π-extended coumarin derivatives. Amide and alkyne spacers allow coplanar conformations which crystallize readily; p-phenylene hinders planarity yet allows facile crystallization; alkene-bridged molecules eluded all crystallization attempts. All the crystals obtained feature dense face-to-face π-stacking with 3.5-3.7 Å interlayer distances, expected to facilitate charge transfer processes in the solid state.

Keywords: Benchmark; Coumarin; Crystalline materials; Organic building blocks; Organic electronics; Push–pull.

MeSH terms

  • Coumarins*
  • Molecular Conformation
  • Semiconductors*

Substances

  • Coumarins