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Dipolar 3-methoxychromones as bright and highly solvatochromic fluorescent dyesf

机译:偶极3-甲氧基色酮作为明亮且高度溶剂化的荧光染料f

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Herein, three environment-sensitive (solvatochromic) fluorescent dyes presenting a strong electron acceptor 3-methoxychromone unit and varied electron donor 2-aryl were developed. All three dyes showed remarkable polarity-dependent shifts of the emission maximum, which increase with extension of the dye conjugation. For the 3-methoxychromone bearing a 7-(diethylamino)-9,9-dimethylfluoren-2-yl donor group the difference between the excited and the ground state dipole moments, estimated from the Lippert-Mataga expression, reached 20 D, which is among the largest reported for neutral dipolar fluorophores. Moreover, the new dyes are characterized by significant two-photon absorption cross-section (up to 450 GM) and large fluorescence quantum yields. The strong decrease in the fluorescence quantum yields of the dyes in polar protic solvents was observed together with the increase in the non-radiative deactivation rates, which can originate from twisted intramolecular charge transfer and intermolecular proton transfer phenomena. In comparison to the parent 3-hydroxychromone derivatives, the new dyes presented significantly improved photostability, which confirms that photodegradation of 3-hydroxychromones occurs from a product of the excited-state intramolecular proton transfer (phototautomer). Finally, an application of the new dyes for probing local binding site polarity of serum albumin was shown. This new class of fluorescent dyes may serve as attractive building blocks for future molecular sensors utilizing environment-sensitive fluorophores.
机译:在此,开发了具有强电子受体3-甲氧基色酮单元和变化的电子给体2-芳基的三种环境敏感(溶剂致变色)荧光染料。所有三种染料均显示出最大的发射极显着的极性相关位移,其随染料缀合的扩展而增加。对于带有7-(二乙氨基)-9,9-二甲基芴-2-基供体基团的3-甲氧基色酮,根据Lippert-Mataga表达估计,激发态和基态偶极矩之间的差异达到20 D,这是在报道的最大的中性偶极荧光团中。此外,新染料的特征是具有显着的双光子吸收截面(高达450 GM)和大的荧光量子产率。观察到极性质子溶剂中染料的荧光量子产率大大降低,同时非辐射失活速率增加,这可能是由于扭曲的分子内电荷转移和分子间质子转移现象引起的。与母体3-羟基色酮衍生物相比,新染料呈现出显着改善的光稳定性,这证实3-羟基色酮的光降解是由激发态分子内质子转移的产物(光互变异构体)引起的。最后,显示了新染料在探测血清白蛋白局部结合位点极性上的应用。这类新的荧光染料可以作为利用环境敏感型荧光团的未来分子传感器的有吸引力的构建基块。

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