首页> 外文期刊>Photochemical & Photobiological Sciences >Fluorescence of methylated derivatives of hydroxyphenylimidazopyridine. Resolution of strongly overlapping spectra and a new ESIPT dye showing very efficient radiationless deactivation
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Fluorescence of methylated derivatives of hydroxyphenylimidazopyridine. Resolution of strongly overlapping spectra and a new ESIPT dye showing very efficient radiationless deactivation

机译:羟基苯基咪唑并吡啶的甲基化衍生物的荧光。强烈重叠的光谱和一种新型ESIPT染料的拆分,显示出非常有效的无辐射失活

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The ground- and excited-state behaviour of the isomeric species 2-(2′-methoxyphenyl)imidazo[4,5-b]pyridine (1-OMe) and 2-(2′-hydroxyphenyl)-4-methylimidazo[4,5-b]pyridine (1-NMe) in neutral and acid media has been studied by UV-vis absorption spectroscopy, steady-state and time-resolved fluorescence spectroscopy. The new dye 1-NMe is non-fluorescent in neutral media except in trifluoroethanol, where it shows a very weak fluorescence. 1-NMe also exhibits highly solvent-dependent fluorescence intensity in acidic media. We propose that the neutral species experiences a fast excited-state intramolecular proton transfer (ESIPT), relaxing afterwards by intramolecular twisting associated with internal charge transfer (TICT) and subsequent very fast internal conversion of the proton-transferred TICT structure. The behaviour of 1-NMe in acidic media is explained by the existence of a ground-state tautomeric equilibrium between species with intramolecular hydrogen bonds N–HOH and NHO. The first type of tautomers dissociates at the hydroxyl group in water and ethanol, but fluoresces in acetonitrile and trifluoroethanol due to the inability of these solvents to accept the proton. The second type of tautomers is non-emissive due to fast radiationless deactivation through an ESIPT-TICT process. The fluorescence of 1-OMe was investigated in neutral and acidic media, demonstrating the photobasic character of the pyridine nitrogen. A ground-state equilibrium between pyridinium and imidazolium cations was found for this species, showing overlapping absorption and fluorescence spectra. We devised a method to resolve the spectra by applying principal component global analysis to a series of excitation spectra taken at different emission wavelengths, which allowed estimation of the equilibrium constant between the cations.
机译:异构体2-(2'-甲氧基苯基)咪唑并[4,5-b]吡啶(1-OMe)和2-(2'-羟基苯基)-4-甲基咪唑并[4,通过紫外可见吸收光谱,稳态和时间分辨荧光光谱研究了中性和酸性介质中的5-b]吡啶(1-NMe)。新型染料1-NMe在中性介质中不发荧光,但在三氟乙醇中则表现出非常弱的荧光。 1-NMe在酸性介质中还表现出高度依赖溶剂的荧光强度。我们建议中性物种经历一个快速的激发态分子内质子转移(ESIPT),随后通过与内部电荷转移(TICT)相关的分子内扭曲以及随后的质子转移的TICT结构的非常快速的内部转化而放松。 1-NMe在酸性介质中的行为可以通过分子内氢键N–HOH和NHO之间存在基态互变异构平衡来解释。第一类互变异构体在水和乙醇中的羟基处解离,但由于这些溶剂无法接受质子,因此在乙腈和三氟乙醇中发荧光。第二种互变异构体是非发射性的,这是由于通过ESIPT-TICT过程实现了快速无辐射失活。在中性和酸性介质中研究了1-OMe的荧光,证明了吡啶氮的光碱性。发现该物种的吡啶鎓和咪唑鎓阳离子之间存在基态平衡,显示出重叠的吸收光谱和荧光光谱。我们设计了一种通过将主成分全局分析应用于在不同发射波长下拍摄的一系列激发光谱来解析光谱的方法,该方法可以估算阳离子之间的平衡常数。

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