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首页> 外文期刊>Materials Chemistry Frontiers >The fluorescence quenching mechanism of tetrazine-functionalized fluorogenic labels with integrated π-conjugations: internal conversion to a dark state
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The fluorescence quenching mechanism of tetrazine-functionalized fluorogenic labels with integrated π-conjugations: internal conversion to a dark state

机译:集成π偶联的四嗪功能化荧光标记的荧光猝灭机理:内部转化为暗态

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摘要

Tetrazine-based fluorogenic labels have been extensively applied to the studies of living systems due to their excellent selectivity, rapid reaction kinetics, and unique fluorogenicity. However, the fluorescence quenching mechanism in many precursor dyes remains controversial, impeding rational molecular engineering to optimize their fluorescence enhancement ratios. Herein, employing quantum chemical calculations, we established a quenching mechanism – internal conversion to a dark state (ICDS), to rationalize the fluorogenicity in tetrazine-functionalized labels with integrated π-conjugations. We show that the ICDS efficiency is negatively correlated with the energy gap between these labels’ first excited state (the dark state) and the second excited state (the bright state). Based on this correlation, we further proposed molecular design strategies for developing biocompatible long-wavelength fluorophores with improved fluorogenicity.
机译:Tetrazine-based fluorogenic标签广泛应用于生活的研究系统由于其优良的选择性、快速反应动力学,独特的fluorogenicity。然而,荧光猝灭机制许多染料前体仍然是有争议的,阻碍理性的分子工程优化他们的荧光增强比率。在此,采用量子化学计算,我们建立了一个淬火-内部机制转换为一个黑暗的状态(ICDS),合理化的fluorogenicity tetrazine-functionalized标签与集成π的结合。ICDS效率负相关这些标签的能量差距的激发态(黑暗状态)和第二个激发态(的状态)。相关性,我们进一步提出了分子设计战略发展中不会引起排斥的长波荧光团与改进fluorogenicity。

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