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Photophysical characterization of triazole-substituted coumarin fluorophores

机译:三唑取代的香豆素荧光团的光物理特征

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摘要

The photophysical properties of fluorochromes are directly influenced by their chemical structure. There is increasing interest in chemical strategies that provide controlled changes to the emission properties of biologically compatible fluorophores. One strategy employed is the conversion of a fluorophore-attached alkyne to a triazole through a copper-catalyzed Sharpless-Meldal reaction. In this study, we have examined a series of structurally related coumarin fluorophores and evaluated changes in their photophysical properties upon conversion from alkyne to triazole forms. Ethynyl-coumarin structures showed increases in quantum yield (ca. 1.2- to- 9 fold) and bathochromic shifts (up to 23 ran) after triazole formation. To extend these results, we tested the ability of time-dependent density functional theory (TD DFT) to predict the observed changes in fluorophore absorption properties. We found excellent correlation between the predicted absorption values and experiment, providing a useful tool in the design of new fluorogenic probes.
机译:荧光染料的光物理性质直接受其化学结构影响。人们对化学策略提出了越来越高的兴趣,该策略可控制地改变生物相容性荧光团的发射特性。使用的一种策略是通过铜催化的Sharpless-Meldal反应将附有荧光团的炔烃转化为三唑。在这项研究中,我们检查了一系列与结构相关的香豆素荧光团,并评估了从炔烃转变为三唑形式后其光物理性质的变化。乙炔香豆素结构在三唑形成后显示出量子产率的提高(约1.2至9倍)和红移(高达23 RAN)。为了扩展这些结果,我们测试了时变密度泛函理论(TD DFT)预测所观察到的荧光团吸收特性变化的能力。我们发现预测的吸收值与实验之间具有极好的相关性,为设计新的荧光探针提供了有用的工具。

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