Institute of organic chemistry, National Academy of Sciences of Ukraine, Murmans'ka Str., 5, 02660 Kyiv, Ukraine.
Methods Appl Fluoresc. 2016 Jul 12;4(3):034001. doi: 10.1088/2050-6120/4/3/034001.
Spectral-fluorescent properties of a series of merocyanine dyes comprising the barbituric acid residue as the electron-accepting terminal group are investigated in comparison with those of their N,N-methylated analogues in media of various polarity. It is revealed that in polar aprotic solvents the electronic absorption spectra of the studied compounds are influenced dramatically by the formation of hydrogen bonds between the NH-groups of barbituric residue and solvent molecules. An effect of such nucleophilic solvation on the electronic structure of the studied dyes is analysed using both the spectral data obtained and the DFT/B3LYP quantum chemical simulation. It is found also, that solvation has comparatively weak influence on the shape and position of the fluorescence bands of the studied merocyanines while the fluorescence quantum yield changes substantially in solvents of various polarity.
研究了一系列包含巴比妥酸残基作为电子受体端基的缩氨酸染料的光谱荧光性质,并与它们的 N,N-甲基类似物在不同极性介质中的性质进行了比较。结果表明,在极性非质子溶剂中,研究化合物的电子吸收光谱受到巴比妥酸残基的 NH 基团与溶剂分子之间氢键形成的显著影响。使用获得的光谱数据和 DFT/B3LYP 量子化学模拟分析了这种亲核溶剂化对研究染料电子结构的影响。还发现,溶剂化对研究的缩氨酸染料的荧光带的形状和位置的影响相对较弱,而荧光量子产率在各种极性溶剂中变化很大。