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首页> 外文期刊>ChemPlusChem >2,6-Bis( arylsulfonyl) anilines as Fluorescent Scaffolds through Intramolecular Hydrogen Bonds: Solid-State Fluorescence Materials and Turn-On-Type Probes Based on Aggregation-Induced Emission
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2,6-Bis( arylsulfonyl) anilines as Fluorescent Scaffolds through Intramolecular Hydrogen Bonds: Solid-State Fluorescence Materials and Turn-On-Type Probes Based on Aggregation-Induced Emission

机译:2,6-双(芳基磺酰基)苯胺作为荧光支架,通过分子内氢键:固态荧光材料和基于聚集诱导的发射的开启型探针

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A series of 2,6-bis[aryl(alkyl)sulfonyl]anilines were synthesized by nucleophilic aromatic substitution of 2,6-dichloronitrobenzene with various aryl or alkyl thiolates (benzyl-, phenyl-, 2-naphthyl-, and 2-aminophenyl thiolate), followed by hydrogenation and subsequent oxidation. All prepared 2,6-bis[aryl-(alkyl)sulfonyl]anilines showed high fluorescence emissions in the solid state; X-ray structures revealed well-defined intramolecular hydrogen bonds, which served to immobilize the rotatable amino group and generate a fluorescence enhancement in addition to improved photostability. Moreover, absorption and fluorescence spectra showed redshifts in the order of benzylhenyl<2-naphthyl in solution and the solid state, and DFT calculations confirmed charge transfer from the central aniline unit to the side aryl groups through the sulfonyl bridges, which together indicated the push-pull effect with an extended -conjugated system comprising the 2,6-bis(arylsulfonyl)aniline unit. Furthermore, 2,6-bis(2-aminophenylsulfonyl)aniline, with rotatable amino groups at the flanking aryl units, was affected by fluorescence quenching in solution. This nonemissive state showed an enhanced environmental sensitivity to solvent polarity and viscosity, along with a turn-on fluorescence response in frozen solvent and in the aggregated form. 2,6-Bis(2-aminophenylsulfonyl)aniline behaved as a turn-on fluorescence probe for selective detection of DNA based on its aggregation-induced emission.
机译:通过2,6-二氯硝基苯的亲核芳族取代合成了一系列的2,6-双(烷基)磺酰基]苯胺,其各种芳基或烷基硫醇酯(苄基,苯基 - ,2-萘基 - 和2-氨基苯基硫醇酸盐),然后氢化和随后的氧化。所有制备的2,6-双[芳基 - (烷基)磺酰基]苯胺显示出固态的高荧光发射; X射线结构揭示了定义明确的分子内氢键,其用于固定可旋转的氨基并除了改善的光稳定性之外,除了改善的光稳定性之外还产生荧光增强。此外,吸收和荧光光谱在溶液和固态中的苄基<苯基<2-萘基的顺序显示红移,DFT计算通过磺酰桥从中心苯胺单元确认从中央苯胺单元到侧芳基的电荷转移,并在一起表示用延伸的缀合系统的推挽效应,其包含2,6-双(芳基磺酰基)苯胺单元。此外,在侧翼芳基单元处具有旋转氨基的2,6-双(2-氨基苯基磺酰基)苯胺受溶液中荧光猝灭的影响。这种不称称的状态表明,对溶剂极性和粘度的环境敏感性提高,以及冷冻溶剂和聚集形式的导通荧光反应。 2,6-双(2-氨基苯基磺酰基)苯胺表现为基于其聚集诱导的发射的DNA选择性检测DNA的开启荧光探针。

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