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首页> 外文期刊>Dyes and Pigments >Aggregation-induced emission-active tetraphenylethylene derivatives containing arylimidazole unit for reversible mechanofluorochromism and selective detection of picric acid
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Aggregation-induced emission-active tetraphenylethylene derivatives containing arylimidazole unit for reversible mechanofluorochromism and selective detection of picric acid

机译:含有芳基咪唑单元的聚集诱导的发光活性四苯基乙烯衍生物,用于可逆机械氟色体和选择性检测吡啶酸

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摘要

Subtle modification of molecular structure can play a crucial role in determining photophysical properties and stimuli-responsive behavior. Herein, four aggregation-induced emission (AIE)-active tetraphenylethylene-based positional isomers S1, S2, S3 and S4 have been designed and synthesized. S2 and S4 exhibit higher fluorescence quantum yield (Phi(FL))as compared to Si and S3, respectively, which was due to the positional isomerism. In addition, all four isomers exhibit reversible mechanofluorochromic (MFC) behavior with mechanical-induced emission enhancement (MIEE), which was studied using powder X-ray diffraction (PXRD), differential scanning calorimetry (DSC) and scanning electron microscopy (SEM). S1 and S2 display better MFC activities, compared with S3 and S4, due to opened phenylimidazole presenting a more twisted conformation. Moreover, they can detect picric acid (PA) in a highly selective and sensitive manner in aqueous media, due to the excellent proton-binding property of the imidazole group, which was verified by H-1 NMR spectra and supported by theoretical calculations. Overall, tetraphenylethylene containing arylimidazole derivatives described herein will efficiently expand the development of design principles to supply diverse multifunctional tools for material science and material engineering.
机译:分子结构的微妙改性可以在确定光学性质和刺激响应性行为方面发挥至关重要的作用。这里,已经设计和合成了四种聚集诱导的发射(AIE) - 活性四苯基亚乙烯的位置异构体S1,S2,S3和S4。与Si和S3相比,S2和S4分别表现出更高的荧光量子产率(PHI(FL)),其由于位置异构性而导致的。此外,所有四个异构体都表现出具有机械诱导的发射增强(Miee)的可逆机械荧光素(MFC)行为,其使用粉末X射线衍射(PXRD),差示扫描量热法(DSC)和扫描电子显微镜(SEM)进行研究。 S1和S2显示出更好的MFC活性,与S3和S4相比,由于开放的苯基咪唑呈现出更扭曲的构象。此外,由于咪唑基的优异质子 - 结合性,它们可以在水性介质中以高选择性和敏感的方式检测野生酸(PA),其由咪唑基团的优异质子结合特性通过H-1 NMR光谱验证并由理论计算支持。总体而言,本文所述的含芳基咪唑衍生物的四苯基乙烯将有效地扩展设计原则的开发,以供应不同的材料科学和材料工程的多功能工具。

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