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结构异构诱导 pH 依赖的聚集诱导发光-分子内质子转移:应用于胺蒸气传感的深入光谱研究。

Structural isomerism induces pH dependent AIE-coupled ESIPT: an in-depth spectroscopic exploration with application in amine vapor sensing.

机构信息

Department of Chemistry, University of Calcutta, 92, A.P.C. Road, Kolkata, 700009, India.

Departamento de Química Física, Facultad de Ciencias Ambientales y Bioquímica, and INAMOL, Universidad de Castilla-La Mancha, Avenida Carlos III, S.N., 45071 Toledo, Spain.

出版信息

Phys Chem Chem Phys. 2023 Jul 5;25(26):17482-17495. doi: 10.1039/d3cp01703f.

Abstract

A novel excited state intramolecular proton transfer probe 3-(benzo[]thiazol-2-yl)-4-hydroxy-5-methoxybenzaldehyde (3BTHMB) was synthesized and characterized using NMR, ESIMS and single crystal diffraction studies. The steady state and time resolved studies using the time correlated single photon counting (TCSPC) technique revealed that 3BTHMB shows ESIPT reaction with a time constant of 0.10-0.15 ns and longer local emission and anion emissions of time constants 0.5-2.0 ns and 3.0-4.0 ns, respectively, that co-exist in polar solution. In a polar protic solution like methanol, the ESIPT process is damped. Interestingly, 3BTHMB shows aggregation induced emission (AIE) solely in an acidic environment, evidenced by the enhanced quantum yield of emission (∼35%) in acidic solution as well as a long lifetime component of 7.4 ns that corresponds to the lifetime in the solid state. The AIE phenomenon was explored using the DLS technique where enhancement of the hydrodynamic radius in an acidic medium was observed. The judicious positioning of the formyl group in 3BTHMB gives the mentioned probe to show AIE in an acidic medium, as opposed to its previously reported structural isomer BTHMB, which showed no AIE phenomenon as well as its parent molecule 2-(benzo[]thiazol-2-yl)-6-methoxyphenol (TMP), which showed AIE in neutral pH. The AIE property of 3BTHMB was exploited by successful and rapid detection of amine vapor in the solid state, qualitative ratiometric detection of aqueous pH, by observing the colour change under UV light in acidic (yellow-green) and basic to neutral (blue) medium. The above results pave the way for multiutility fluorescent probes for environmental purposes along with a deep understanding of the underlying photophysical processes which bestow the probes with such outstanding utilities.

摘要

一种新型的激发态分子内质子转移探针 3-(苯并噻唑-2-基)-4-羟基-5-甲氧基苯甲醛(3BTHMB)已被合成并通过 NMR、ESIMS 和单晶衍射研究进行了表征。使用时间相关单光子计数(TCSPC)技术进行稳态和时间分辨研究表明,3BTHMB 显示出 ESIPT 反应,其时间常数为 0.10-0.15 ns,并且在极性溶液中存在更长的局部发射和阴离子发射,时间常数分别为 0.5-2.0 ns 和 3.0-4.0 ns。在像甲醇这样的极性质子溶液中,ESIPT 过程被阻尼。有趣的是,3BTHMB 仅在酸性环境中表现出聚集诱导发射(AIE),这一点可以通过在酸性溶液中发射量子产率的增强(约 35%)以及与固态相对应的 7.4 ns 的长寿命成分来证明。使用 DLS 技术研究了 AIE 现象,在酸性介质中观察到水动力半径的增强。在 3BTHMB 中巧妙地定位甲酰基赋予了该探针在酸性介质中表现出 AIE 的能力,而与其之前报道的结构异构体 BTHMB 相反,BTHMB 既没有表现出 AIE 现象,也没有其母体分子 2-(苯并噻唑-2-基)-6-甲氧基苯酚(TMP)在中性 pH 值下表现出 AIE。3BTHMB 的 AIE 性质在固态下成功快速检测胺蒸气、在酸性(黄绿色)和碱性到中性(蓝色)介质下通过观察紫外光下的颜色变化对水相 pH 值进行定性比色检测方面得到了应用。上述结果为环境多功能荧光探针铺平了道路,并深入了解赋予探针如此出色功能的潜在光物理过程。

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