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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >A silicon-cored tetraphenyl benzene derivative with aggregation-induced emission enhancement as a fluorescent probe for nitroaromatic compounds detection
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A silicon-cored tetraphenyl benzene derivative with aggregation-induced emission enhancement as a fluorescent probe for nitroaromatic compounds detection

机译:具有聚集诱导的发射增强的硅芯的四苯基苯衍生物作为硝基芳族化合物检测的荧光探针

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摘要

Two benzene with multiple contiguous phenyl substituent derivatives, namely, 1, 2, 3, 4-tetraphenyl benzene (TPB) and bis(1,2,3,4-tetraphenylbenzene-yl) diphenylsilane (TPB-Si), were synthesized by the Knoevenagel/Diels-Alder method. TPB and TPB-Si both showed aggregation-induced emission enhancement (AIEE) properties in tetrahydrofuran/water mixtures. The fluorescence-quenching behaviors of the two compounds with different nitroaromatic compounds were also investigated. TPB and TPB-Si both showed low detection limit, high sensitivity, and high quenching efficiency in detecting nitroaromatic compounds. Furthermore, the two compounds in aggregate state exhibited much better detection abilities than in THF solution. And TPB-Si exhibited better detection ability than TPB in both solution and aggregate state. The reason could be attributed to the special tetrahedral molecular structure of TPB-Si, which was demonstrated by theoretical calculations and crystal structures. Moreover, TPB-Si in solid film also exhibited excellent detection performance to nitroaromatic explosive vapor. This work may serve as a basis for designing new organic materials with great efficiency and sensitivity in fluorescence detection. (C) 2019 Elsevier B.V. All rights reserved.
机译:用多种连续苯基取代基衍生物的两个苯,即1,2,3,4-四苯基苯(TPB)和双(1,2,3,4-四苯基苯基苯基苯基)二苯基硅烷(TPB-Si)合成。 Knoevenagel / Diels-Alder方法。 TPB和TPB-Si都显示出四氢呋喃/水混合物中的聚集诱导的发射增强(AIEE)性质。还研究了两种具有不同硝基芳族化合物的两种化合物的荧光猝灭行为。 TPB和TPB-Si均显示出低检测极限,高灵敏度和检测硝基芳族化合物的高淬火效率。此外,聚集状态中的两种化合物比THF溶液呈现出更好的检测能力。在解决方案和骨料状态下,TPB-SI在TPB方面表现出更好的检测能力。原因可以归因于TPB-Si的特殊四面体分子结构,由理论计算和晶体结构证明。此外,固体膜中的TPB-Si也表现出优异的硝基爆炸蒸气的检测性能。这项工作可以作为设计新的有机材料的基础,以荧光检测的效率和敏感性。 (c)2019 Elsevier B.v.保留所有权利。

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