The Solvatofluorochromism of 2,4,6-Triarylpyrimidine Derivatives.
José Rodríguez-AguilarMatías VidalCamila PastenesCarolina AliagaMarcos Caroli RezendeMoisés DomínguezPublished in: Photochemistry and photobiology (2018)
Seven new 2,4,6-triarylpyrimidines were synthesized and their solvatofluorochromism investigated in 12 solvents and in an aqueous micellar solution of reduced Triton X-100. A multiparametric analysis of their emission band showed that the solvent dipolarity and basicity were mainly responsible for their solvatofluorochromism, which arose from an internal charge-transfer from a donor fragment to the pyrimidine acceptor, confirmed by theoretical calculations. In the micellar system, quenching of their fluorescence by addition of derivatives of 2,2,6,6-tetramethylpiperidinoxyl (TEMPO) radical was investigated and the results were consistent with the spectral changes brought about by the micro-heterogeneous system.
Keyphrases
- ionic liquid
- energy transfer
- atomic force microscopy
- single molecule
- structure activity relationship
- solar cells
- density functional theory
- optical coherence tomography
- molecular dynamics
- molecular dynamics simulations
- solid state
- quantum dots
- magnetic resonance imaging
- high speed
- computed tomography
- mass spectrometry