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首页> 外文期刊>Journal of Applied Spectroscopy >ABSORPTION, FLUORESCENCE, AND FLUORESCENCE EXCITATION SPECTRA OF FREE MOLECULES OF INDOLE AND ITS DERIVATIVES
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ABSORPTION, FLUORESCENCE, AND FLUORESCENCE EXCITATION SPECTRA OF FREE MOLECULES OF INDOLE AND ITS DERIVATIVES

机译:吲哚及其衍生物的自由分子的吸收,荧光和荧光激发光谱

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We have obtained and analyzed the absorption, fluorescence, and fluorescence excitation spectra of indole vapor, N-acetyl-L-tryptophan vapor, and 3-indole aldehyde vapor. From analysis of the dependence of the fluorescence spectrum of the free indole molecules on the wavelength of the exciting radiation λ{sub}(ex), it follows that emission of fluorescence occurs when the molecules undergo a transition from the one electronically excited state 1{sup left}L{sub}b. The fluorescence spectra of the studied compounds are insignificantly different, suggesting a major role for the indole chromophore in formation of the compounds. The absorption spectrum of N-acetyl-L-tryptophan, in which the group of atoms is added to the indole ring through a -C-C bond, is similar to the spectrum of indole, while the spectrum of 3-indole aldehyde is significantly different from the indole spectrum due to the effect of the C-O group conjugated with the indole ring. The fluorescence excitation spectra are considerably different from the absorption spectra. This is associated with the strong dependence of the quantum yield for the free molecules on λ{sub}(ex). Qualitatively, they are mirror-symmetric to the fluorescence spectra of the stodied compounds. Analysis of the data obtained provides a basis for assuming that in the case of free molecules of indole and its derivatives, the 1{sup left}L{sub}b absorption in the extreme long-wavelength region of the spectrum does not overlap 1{sup left}L{sub}b absorption.
机译:我们已经获得并分析了吲哚蒸气,N-乙酰基-L-色氨酸蒸气和3-吲哚醛蒸气的吸收,荧光和荧光激发光谱。通过分析游离吲哚分子的荧光光谱对激发辐射波长λ{sub}(ex)的依赖性,可以得出结论,当分子从一个电子激发态1 {左上} L {sub} b。所研究化合物的荧光光谱差异不明显,表明吲哚发色团在化合物形成中起主要作用。 N-乙酰基-L-色氨酸的吸收光谱(其中的原子团通过-CC键添加到吲哚环中)与吲哚的光谱相似,而3-吲哚醛的光谱与吲哚光谱是由于与吲哚环共轭的CO基团的作用。荧光激发光谱与吸收光谱有很大不同。这与自由分子的量子产率对λ{sub}(ex)的强烈依赖性有关。定性地,它们与所研究化合物的荧光光谱镜像对称。对获得的数据的分析为假设吲哚及其衍生物的自由分子提供了一个基础,该光谱在极长波长区域的1 {sup left} L {sub} b吸收量不与1 {左上} L {sub} b吸收。

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