| Literature DB >> 28224357 |
Mina Raeisolsadati Oskouei1, Albert M Brouwer2.
Abstract
Two fluorescent derivatives of 2-amino-3-carbonitrile-4H-chromene were synthesized by means of a fluorogenic Michael addition of dimedone to dicyano alkene labeled BODIPY derivatives. Different organocatalysts were used in different conditions to obtain compounds 3 and 4 in good yield (up to 65% and 85%) and moderate enantiomeric excess (51% and 41% ee, respectively). This work provides the first example of an enantioselective organocatalytic conversion combined with fluorogenesis.Entities:
Keywords: Chromene; Fluorescence spectroscopy; Fluorogenic reaction; Organocatalysis
Year: 2017 PMID: 28224357 PMCID: PMC5393152 DOI: 10.1007/s10895-017-2049-7
Source DB: PubMed Journal: J Fluoresc ISSN: 1053-0509 Impact factor: 2.217
Scheme 1Synthesis of 2-amino-3-carbonitrile-4H-chromenes 3 and 4
Scheme 2Organocatalysts used
Reaction between dimedone and compound 1 in the presence of different catalysts in DCM at room temperature
| Catalyst (10 mol%) |
|
|
|
|
|---|---|---|---|---|
| ee (%) | 44 | 42 | 20 | 10 |
| Yield (%) | 80 | 85 | 73 | 70 |
Reaction between dimedone and compound 1 in the presence of catalyst 5 (10 mol%)
| Solvent | Toluene | DCM | DCM | DCM | THF |
|---|---|---|---|---|---|
| Temperature (°C) | 25 | 25 | 0 | -20 | 25 |
| ee (%) | 42 | 44 | 44 | 51 | 0 |
Reaction between dimedone and compound 2 in the presence of different catalysts at room temperature
| Catalyst (10 mol%) |
|
|
|
|
|
|---|---|---|---|---|---|
| Solvent | Toluene | DCM | DCM | DCM | DCM |
| ee (%) | 27 | 34 | 41 | 12 | 34 |
| Yield (%) | 65 | 68 | 72 | 68 | 65 |
Photophysical parameters of compounds 1, 2, 3 and 4 in DCM
| Compound |
|
|
|
|
|
|
|
|---|---|---|---|---|---|---|---|
|
| 505 | 75 | 517 | 0.025 | 0.01(0.57); 1.4 (0.30); 3.1 (0.13) | ||
|
| 516 (514) | 77 (55) | 532 (543) | 0.54 (0.45) | 3.08 | 1.7 × 108 | 1.5 × 108 |
|
| 500 | 74 | 511 | 0.45 | 3.50 | 1.3 × 108 | 1.6 × 108 |
|
| 512 | 78 | 523 | 0.61 | 3.94 | 1.6 × 108 | 1.0 × 108 |
aAbsorbance maximum, bMolar absorption coefficient, cEmission maximum, dQuantum yield, eDecay time; for 1 the three time constants are given with amplitudes in parentheses, fFluorescence rate constant k = ϕ /τ, gNon-radiative rate constant k = τ - k , h Literature values from ref. 11c are given in parentheses
Fig. 1Emission spectra (λex = 478 nm) of the mixture of the reaction between dimedone and compound 1 in the presence of catalyst 5 in DCE at room temperature. a during the first two hours, b during the later stages of the reaction
Scheme 3Mechanism of formation of compound 3
Fig. 2Emission spectra of the mixture of the reaction between dimedone and compound 2 in the presence of catalyst 5 in DCE at room temperature (λex = 478 nm)
Fig. 3Emission spectra of compound 2 in dichloromethane at different concentrations (λex = 478 nm)