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Rational Perturbation of the Fluorescence Quantum Yield in Emission‐Tunable and Predictable Fluorophores (Seoul‐Fluors) by a Facile Synthetic Method Involving C—H Activation

机译:通过涉及CH活化的简便合成方法对可调谐和可预测的荧光团(首尔荧光团)中的荧光量子产率进行合理的扰动

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摘要

Fluorescence imaging enables the uniquely sensitive observation of functional‐ and molecular‐recognition events in living cells. However, only a limited range of biological processes have been subjected to imaging because of the lack of a design strategy and difficulties in the synthesis of biosensors. Herein, we report a facile synthesis of emission‐tunable and predictable Seoul‐Fluors, 9‐aryl‐1,2‐dihydrolopyrrolo[3,4‐b]indolizin‐3‐ones, with various R1 and R2 substituents by coinage‐metal‐catalyzed intramolecular 1,3‐dipolar cycloaddition and subsequent palladium‐mediated C—H activation. We also showed that the quantum yields of Seoul‐Fluors are controlled by the electronic nature of the substituents, which influences the extent of photoinduced electron transfer. On the basis of this understanding, we demonstrated our design strategy by the development of a Seoul‐Fluor‐based chemosensor >20 for reactive oxygen species that was not accessible by a previous synthetic route.
机译:荧光成像可实现对活细胞中功能和分子识别事件的独特敏感观察。然而,由于缺乏设计策略和生物传感器的合成困难,仅对有限范围的生物过程进行了成像。本文中,我们报告了一种可调节且可预测的汉城氟,9-芳基1,2-二氢洛吡咯并[3,4-b]吲哚啉-3-酮的简便合成方法,其中R 1 硬币金属催化的分子内1,3-偶极环加成反应和随后的钯介导的CH活化作用而形成R和R 2 取代基。我们还表明,首尔荧光的量子产率受取代基的电子性质控制,这会影响光诱导电子的转移程度。在此基础上,我们通过开发基于首尔-氟基化学传感器> 20 展示了我们的设计策略,该化学传感器是以前合成途径无法获得的。

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