首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Selective and visual detection of a nerve agent mimic by phosphorylation and protonation of quinolin oximes
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Selective and visual detection of a nerve agent mimic by phosphorylation and protonation of quinolin oximes

机译:通过磷酸化和喹啉肟的质子化模拟神经剂的选择性和视觉检测

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Nerve agents are highly toxic organophosphorus compounds, and their possible uses in terrorist attacks pose an immediate threat to public safety. Consequently, there is an urgent need to develop reliable and facile methods to detect these lethal chemicals. In this paper, three 6-substituted aminoquinolin oximes with different N-substituents have been constructed as donor-acceptor (D-A) chemosensors for a nerve-agent simulant, diethyl chlorophosphate (DCP). These D-A molecules exhibit a regular change in intramolecular charge transfer (ICT) character with the donating ability of the 6-amine. The hydroxyl of the oxime, as the active site, can be rapidly phosphorylated by DCP via nucleophilic substitution to the product HCl, which enables protonation at the nitrogen of the quinoline. The resulting product exhibits a longer wavelength of ICT emission relative to the corresponding sensor. Consequently, the three sensors respond to DCP in a ratiometric fluorescence mode. Among the three sensors, NA-p3 displays the most remarkable fluorescence change and the lowest limit of detection (21 nM) with DCP in solution. Furthermore, a facile test strip with NA-p3 has been fabricated that can achieve visual detection of DCP vapor and discriminate between DCP vapor and acidic gas in air.
机译:神经剂是高度毒有机磷化合物,它们在恐怖主义攻击中可能的用途对公共安全的威胁提出了立即威胁。因此,迫切需要开发可靠的和容易的方法来检测这些致命化学品。在本文中,具有不同N-取代基的三种6取代的氨基氨基醇氧肟被构造为用于神经剂模拟剂,氯磷酸二乙酯(DCP)的供体 - 受体(D-A)化学分子。这些D-A分子表现出常规变化的分子内电荷转移(ICT)特征,其具有6-胺的捐赠能力。作为活性位点的肟的羟基可以通过DCP通过与产物HCl的亲核取代快速磷酸化,这使得在喹啉的氮气中能够质子化。所得到的产品相对于相应传感器表现出较长波长的ICT发射。因此,三个传感器以比例荧光模式响应DCP。在三个传感器中,NA-P3显示最显着的荧光变化和溶液中DCP的检测(21nm)最低限度。此外,已经制造了具有Na-P3的容易试验条,其可以实现DCP蒸气的视觉检测并在空气中区分DCP蒸汽和酸性气体。

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