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首页> 外文期刊>Organic & biomolecular chemistry >Steric effects on the intramolecular charge transfer fluorescence of benzo[b]thiophene-1,1-dioxide bridged macrocages
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Steric effects on the intramolecular charge transfer fluorescence of benzo[b]thiophene-1,1-dioxide bridged macrocages

机译:对苯并的分子内电荷转移荧光的空间作用[B]噻吩-1,1-二氧化碳桥接宏观

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Intramolecular charge transfer (ICT) fluorescence has been widely investigated and exploited in sensor molecules. However, steric effects on the ICT fluorescence properties have rarely been reported so far, although research in this area would promote an understanding of the basics of solvation. Herein, we report the detailed fluorescence properties of bis(trimethylsilyl)benzo[b]thiophene-1,1-dioxide (TMSBTO2) and its caged cyclophanes and non-cage isomers, which demonstrate ICT fluorescence in various solutions. The fluorescence band maxima for these benzo[b]thiophene-1,1-dioxides (BTO2s) showed a red-shift with increasing solvent polarity, confirming ICT fluorescence characteristics. The linearity of the Lippert-Mataga plots was confirmed for all ICT fluorescence measured in hexane, toluene, AcOEt, CH_2CI_2, and EtOH. The slopes of the plots decreased in the following order: TMSBTO2, non-cage isomers, and caged BTO2s. It is concluded that the Onsager radii for these BTO2s were increased in the abovementioned order, assuming that the difference in the dipole moments between the excited and ground states for these BTO2s was identical.
机译:分子内电荷转移(ICT)荧光已被广泛研究和利用在传感器分子中。然而,到目前为止,虽然该领域的研究将促进对溶剂化的基础知识,但迄今为止已经报告了对ICT荧光性质的空间效应。在此,我们报告了双(三甲基甲硅烷基)苯并[B]噻吩-1,1-二氧化氧化物(TMSBTO2)及其笼式环烷烃和非笼式异构体的详细荧光性质,其在各种溶液中表现出ICT荧光。这些苯并[B]噻吩-1,1-二氧化碳(BTO2S)的荧光带最大值显示出随溶剂极性的增加,确认ICT荧光特性。在己烷,甲苯,AcOEt,CH_2CI_2和EtOH中测量的所有ICT荧光确认了脂肪植物-MATAGA图的线性。该地块的斜率按以下顺序减少:TMSBTO2,非笼式异构体和笼式BTO2S。得出结论是,这些BTO2S的onsager半径以上述顺序增加,假设兴奋和地态与这些BTO2S之间的偶极矩之间的差异相同。

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  • 来源
    《Organic & biomolecular chemistry 》 |2021年第28期| 6328-6333| 共6页
  • 作者单位

    Division of Applied Chemistry Faculty of Urban Environmental Sciences Tokyo Metropolitan University 1-1 Minami-Osawa HachiojiTokyo 192-0397 Japan;

    Division of Applied Chemistry Faculty of Urban Environmental Sciences Tokyo Metropolitan University 1-1 Minami-Osawa HachiojiTokyo 192-0397 Japan;

    Division of Applied Chemistry Faculty of Urban Environmental Sciences Tokyo Metropolitan University 1-1 Minami-Osawa HachiojiTokyo 192-0397 Japan;

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