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Four- and Five-Component Syntheses and Photophysical Properties of Emission Solvatochromic 3-Aminovinylquinoxalines.

Charlotte F Gers-PantherHenry FischerJan NordmannTheresa SeilerThomas BehnkeChristian WürthWalter FrankUte Resch-GengerThomas J J Müller
Published in: The Journal of organic chemistry (2016)
3-Aminovinylquinoxalines are readily accessible from (hetero)aryl glyoxylic acids or heterocyclic π-nucleophiles by consecutive four- and five-component syntheses in the sense of an activation-alkynylation-cyclocondensation-addition sequence or glyoxylation-alkynylation-cyclocondensation-addition sequence in good yields. The title compounds are highly fluorescent with pronounced emission solvatochromicity and protochromic fluorescence quenching. Time-resolved fluorescence spectroscopy furnishes radiative and nonradiative fluorescence decay rates in various solvent polarities. The electronic structure is corroborated by DFT and TD-DFT calculations rationalizing the observed spectroscopic effects.
Keyphrases
  • single molecule
  • energy transfer
  • density functional theory
  • molecular docking
  • living cells
  • quantum dots
  • solid state
  • molecular dynamics
  • molecular dynamics simulations
  • high resolution
  • fluorescent probe