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咪唑修饰的双氰基芪大环:一种用于农药四唑虫酰胺的高效荧光传感器。

Imidazolium-decorated Bis-cyanostilbene Macrocycle: An Effect Fluorescence Sensor for Pesticide Starane.

作者信息

Wu Yunmei, Lin Hui, Zheng Sining, Guo Hongyu, Yang Fafu

机构信息

College of Chemistry and Materials Science, Fujian Normal University, Fuzhou, 350007, P. R. China.

Fujian Key Laboratory of Polymer Materials, Fujian Normal University, Fuzhou, 350007, P. R. China.

出版信息

Chem Asian J. 2024 Nov 4;19(21):e202400857. doi: 10.1002/asia.202400857. Epub 2024 Sep 24.

Abstract

Fluorescence sensors for complicated molecules such as pesticides were paid much attention lately due to the merits of simple operation, high sensitivity and selectivity, and in-situ detection. In this work, a novel fluorescent sensor for pesticide starane was prepared based on imidazolium-decorated bis-cyanostilbene macrocycle (IBM). IBM exhibited the obvious "turn-on" fluorescence change from dark blue-green to bright blue after sensing starane with the high sensing selectivity among 28 kinds of guests. The detecting limitation was as low as 0.011 μM, which was the lowest one in literatures. The sensing mechanism was confirmed as that starane was located in cavity of IBM based on the molecular interaction of multiple hydrogen bonds, π-π stacking and hydrophobic interaction. The application experiments suggested that starane was examined well on test paper with good selectivity and was quantitatively detected in water samples, implying the good real-time and in-situ application potential for IBM on sensing starane in real environment and daily life.

摘要

由于操作简单、灵敏度和选择性高以及原位检测等优点,用于检测农药等复杂分子的荧光传感器近来备受关注。在本工作中,基于咪唑修饰的双氰基二苯乙烯大环化合物(IBM)制备了一种新型的农药司螨斯荧光传感器。在检测28种客体时,IBM对司螨斯具有高选择性,在检测到司螨斯后,其荧光呈现出明显的“开启”变化,从深蓝绿色变为亮蓝色。检测限低至0.011 μM,这是文献报道中的最低值。传感机制经证实是基于多重氢键、π-π堆积和疏水相互作用的分子间相互作用,司螨斯位于IBM的空腔中。应用实验表明,IBM在试纸条上对司螨斯具有良好的选择性检测效果,并且能够对水样中的司螨斯进行定量检测,这意味着IBM在实际环境和日常生活中对司螨斯传感具有良好的实时原位应用潜力。

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