| Literature DB >> 31755048 |
Anna Kolbus1, Andrzej Danel2, Danuta Grabka3, Mateusz Kucharek2, Karol Szary4.
Abstract
The new derivative of coumarin (E)-3-[7-(diethyloamino)-2-oxo-chromen-3yl]-2-(tiophene-2-carbonyl)prop-2-enenitrile (NOSQ) was easy synthesized with commercial substrates as a result of the search of new Michael type addition sensors based on coumarins. Spectral properties of highly emissive NOSQ were investigated by steady state analysis (absorption and fluorescence measurements) and time-resolved analysis (fluorescence lifetime measurements). The effect of water-methanol mixture on the photophysical properties of the NOSQ molecule was analyzed. With increasing of volumetric fraction of water the intensity of absorbance and fluorescence was strongly reduced. The NOSQ quantum yield in methanol was quite high and the first portions of water caused a significant increase in this value. Water, which is usually a quencher, in this case caused the increase in the quantum yield. The fluorescence lifetimes had second-order decay and the values of fluorescence lifetime increased with increasing alcohol content. Density functional theory (DFT) calculations and experimental data remained in agreement and showed that the interaction between the NOSQ molecule and the solvent affects the appearance of the new conformer.Entities:
Keywords: Binary solvent mixture; Derivative of coumarin; Fluorescence study; Quantum yield
Year: 2019 PMID: 31755048 PMCID: PMC6904392 DOI: 10.1007/s10895-019-02446-5
Source DB: PubMed Journal: J Fluoresc ISSN: 1053-0509 Impact factor: 2.217
Content of water and methanol in binary solvent mixtures
| l.p. | Volume of water [cm3] | Volume of methanol [cm3] | Water content [% of volume] |
|---|---|---|---|
| 1. | 0 | 2.5 | 0 |
| 2. | 0.1 | 2.4 | 4 |
| 3. | 0.2 | 2.3 | 8 |
| 4. | 0.3 | 2.2 | 12 |
| 5. | 0.4 | 2.1 | 16 |
| 6. | 0.5 | 2.0 | 20 |
| 7. | 0.6 | 1.9 | 24 |
| 8. | 0.7 | 1.8 | 28 |
| 9. | 0.8 | 1.7 | 32 |
| 10. | 0.9 | 1.6 | 36 |
| 11. | 1 | 1.5 | 40 |
Scheme 1a diethyl malonate/piperidine and next HCl; b DMF/POCl3; c toluene/NaH/100 °C/24 h; d ethanol/piperidine (cat) /boiling/2 h.
Fig. 1Optimized chemical structure of NOSQ obtained by DFT calculation in Scigress program (a). Particular atoms have been marked with colors: carbon – dark grey, hydrogen – white, nitrogen – light grey, oxygen – red and sulfur – yellow. On the right (b), the electron density is shown. Red indicates the highest electronegativity and blue indicates positive values of potential
Calculated values of dihedral angles for NOSQ molecule. In the first column, it is pointed out the NOSQ atom that forms a weak bond with the particular solvent.
Fig. 2Absorption spectra of NOSQ in binary mixture for different content of water and methanol. For solid lines, the arrow shows the water volume percentage increase in the system
Fig. 3Fluorescence spectra of NOSQ in binary mixture for different content of water and methanol. For solid lines, the arrow shows the water volume percentage increase in the system
Photophysical properties of NOSQ in the water-methanol mixture ( [cm−1] – absorption maximum, [dm3·mol−1·cm−1] – the value of the molar absorption coefficient in maximum, ∆ [cm−1] – Stokes shifts relative to the short-wavelength fluorescence band, ϕ – fluorescence quantum yield, τ1, τ2 [ns] – fluorescence lifetime, ,– natural fluorescence lifetime, f(ε,n) – polarity function)
| % of H2O | ɛ | ∆ | |||||||
|---|---|---|---|---|---|---|---|---|---|
| 0 | 13,290 | 19,300 | 18,800 | 2600 | 0,59 | 3,51 | 0,207 | 5,01 | 0,298 |
| 4 | 13,292 | 19,200 | 19,200 | 2500 | 0,87 | 3,80 | 0,196 | 4,37 | 0,226 |
| 8 | 13,293 | 19,200 | 17,200 | 2500 | 0,80 | 3,65 | 0,186 | 4,56 | 0,232 |
| 12 | 13,295 | 19,100 | 16,000 | 2400 | 0,82 | 3,70 | 0,171 | 4,51 | 0,208 |
| 16 | 13,296 | 19,000 | 15,900 | 2300 | 0,74 | 3,29 | 0,166 | 4,45 | 0,224 |
| 20 | 13,298 | 19,000 | 13,400 | 2300 | 0,76 | 4,10 | 0,166 | 5,39 | 0,218 |
| 24 | 13,300 | 18,900 | 12,400 | 2200 | 0,57 | 3,43 | 0,161 | 6,02 | 0,282 |
| 28 | 13,301 | 18,900 | 13,000 | 2200 | 0,52 | 2,95 | 0,142 | 5,67 | 0,273 |
| 32 | 13,303 | 18,900 | 13,000 | 2200 | 0,49 | 3,46 | 0,142 | 7,06 | 0,290 |
| 36 | 13,304 | 18,800 | 12,000 | 2100 | 0,46 | 4,24 | 0,14 | 9,22 | 0,304 |
| 40 | 13,306 | 18,800 | 10,600 | 2100 | 0,48 | 3,56 | 0,13 | 7,42 | 0,271 |
Fig. 4The solvent polarity dependence on Stokes shifts, quantum yield and fluorescence lifetimes