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一种基于芘的显色荧光探针,用于特异性检测沙林毒气模拟物二乙基氯膦酸酯。

A pyrene-based chromo-fluorogenic probe for specific detection of sarin gas mimic, diethylchlorophosphate.

机构信息

Department of Chemistry, University of North Bengal, Darjeeling, West Bengal, India.

出版信息

Luminescence. 2024 Apr;39(4):e4731. doi: 10.1002/bio.4731.

DOI:10.1002/bio.4731
PMID:38566570
Abstract

Nerve agents are becoming serious issues for the healthy and sustainable environment of modern civilization. Therefore, its detection and degradation are of paramount importance to the scientific community. In the present contribution, we have introduced a chromo-fluorogenic pyrene-based  probe, (E)-2-methoxy-3-(pyren-1-ylimino)-3,8a-dihydro-2H-chromen-4-ol (PMCO) to detect sarin stimulant diethylchlorophosphate (DCP) in solution and gaseous phases. On inserting DCP in PMCO solution, a visual colorimetric change from yellow to clear colourless in daylight and highly intensified blue fluorescence was observed instantly under a 365 nm portable UV lamp light. PMCO has outstanding selectivity and high sensitivity with a limit of detection of 1.32 μM in dimethyl sulfoxide (DMSO) medium and 77.5 nM in 20% HO-DMSO. A handy strained paper strip-based experiment was demonstrated to recognize DCP in a mixture of similar toxic analytes. A dip-stick experiment was performed to identify DCP vapour, and may be used as an effective photonic tool. We also demonstrated real sample analysis utilizing different DCP-spiked water samples and validating DCP detection even in various types of soils such as sand, field, and mud. Therefore, this present study provides an effective chemosensor for instant and on-site detection of toxic nerve agents in dangerous circumstances.

摘要

神经毒剂正成为现代文明健康和可持续环境的严重问题。因此,对科学界而言,检测和降解神经毒剂至关重要。在本研究中,我们引入了一种基于芘的色荧光探针(E)-2-甲氧基-3-(芘-1-亚氨基)-3,8a-二氢-2H-色烯-4-醇(PMCO),以检测溶液和气态中的沙林刺激剂二乙基氯膦酸盐(DCP)。在将 DCP 插入 PMCO 溶液中时,观察到从黄色到日光下无色的明显比色变化,在 365nm 便携式紫外灯下观察到强烈增强的蓝色荧光。PMCO 具有出色的选择性和高灵敏度,在二甲基亚砜(DMSO)介质中的检测限为 1.32μM,在 20%HO-DMSO 中的检测限为 77.5nM。展示了一个基于应变纸条的便携实验,以识别混合物中类似的有毒分析物中的 DCP。进行了蘸棒实验以识别 DCP 蒸气,并且可以用作有效的光子工具。我们还利用不同 DCP 污染的水样进行了实际样品分析,并验证了即使在不同类型的土壤(如沙子、田地和泥浆)中也能检测到 DCP。因此,本研究提供了一种有效的化学传感器,可在危险情况下即时、现场检测有毒神经毒剂。

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