| Literature DB >> 28880006 |
Enrique Pérez-Gutiérrez1, M Judith Percino2, Víctor M Chapela3, Margarita Cerón4, José Luis Maldonado5, Gabriel Ramos-Ortiz6.
Abstract
We synthesized three novel highly fluorescent compounds, 2-(2'-pyridyl)-3-(N-ethyl-(3'-carbazolyl))acrylonitrile, 2-(3"-pyridyl)-3-(N-ethyl-(3'-carbazolyl))acrylonitrile, and 2-(4-pyridyl)-3-(N-ethyl-(3'-carbazolyl))acrylonitrile by Knoevenagel condensation. The first two were synthesized without solvent in the presence of piperidine as a catalyst; the third was synthesized without a catalyst and with N,N-dimethylformamide as a solvent. In solution, the molar absorption coefficients showed absorptions at 380, 378, and 396 nm, respectively; in solid state, absorptions were at 398, 390, and 442 nm, respectively. The fluorescence emission was at 540, 540 and 604 nm, respectively, the 2-(4-pyridyl)-3-(N-ethyl-(3'-carbazolyl))acrylonitrile showed a red shift in the emission of 64 nm compared to the other two compounds. The fluorescence quantum yield for the compounds in powder form showed values of 0.05, 0.14, and 0.006, respectively; compared with the value measured for the Alq3 reference, 2-(3"-pyridyl)-3-(N-ethyl-(3'-carbazolyl))acrylonitrile had a lightly higher value. The third harmonic generation measurement for 2-(2'-pyridyl)-3-(N-ethyl-(3'-carbazolyl))acrylonitrile yielded a χ(3) value of 5.5 × 10-12 esu, similar to that reported for commercial polymers.Entities:
Keywords: ciano derivatives; conjugated compounds; fluorescent compounds; optical properties; powder fluorescent quantum yield
Year: 2011 PMID: 28880006 PMCID: PMC5448495 DOI: 10.3390/ma4030562
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.623
Scheme ISynthetic routes of 2-(2’-pyridyl)-3-(N-ethyl-(3’-carbazolyl))acrylonitrile (I), 2-(3’-pyridyl)-3-(N-ethyl-(3”-carbazolyl))acrylonitrile (II), and 2-(4-pyridyl)-3-(N-ethyl-(3’-carbazolyl)) acrylonitrile (III).
Figure 1Molar absorptivity of compounds I, II, and III.
Figure 2Absorbance in the solid state for compounds I, II, and III.
Figure 3Fluorescence signals for compounds I, II, and III in the solid state.
Figure 4Third harmonic generation (THG) Maker-fringe pattern for a 92 nm-thin polystyrene polymer film of I doped with 30 wt. % of compound (filled circles) and for a 1 mm-thick substrate without a film deposited on it (open circles). The fundamental wavelength was 1200 nm.
Scheme IIIdentification of carbons for 13C NMR.