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Fluorescence Detection of a Broad Class of Explosives with One Zinc(II)-Coordination Nanofiber

机译:一种锌(II)-配位纳米纤维对多种炸药的荧光检测。

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In this work, we report the development of one fluorescent carbazole-based oligomer 1-zinc(II) coordination nanofiber which enabled the detection of five classes of explosives, i.e., nitroaromatics (dinitrotoluene, DNT, and trinitrotoluene, TNT), aliphatic nitro-organics (2,3-dimethyl-2,3-dinitrobutane, DMNB), nitramines (cyclotrimethylenetrinitramine, RDX), nitro-esters (pentaerythritol tetranitrate, PETN), and black powder (sulfur). We demonstrate that the coordination of zinc ion with a carbazole-based oligomer 1 allows the formation of the Lewis acid base complex between explosives and the nanofiber that enhances the electron-accepting ability of the nitro-based explosives and the binding interactions between the sensing nanofibers and explosives. Furthermore, the resulting nanofiber-based sensor exhibited highly sensitive fluorescence quenching when exposed to trace sulfur, thereby enabling the sensitive detection of black powder. Herein, we present a new fluorescent sensor for five classes of explosives, which represents an important advance toward a richer identification of threats.
机译:在这项工作中,我们报告了一种基于荧光的咔唑低聚物1-zinc(II)配位纳米纤维的开发,该纤维能够检测五种爆炸物,即硝基芳烃(二硝基甲苯,DNT和三硝基甲苯,TNT),脂肪族硝基硝基有机物(2,3-二甲基-2,3-二硝基丁烷,DMNB),硝胺(环三亚甲基三硝胺,RDX),硝基酯(季戊四醇四硝酸酯,PETN)和黑色粉末(硫磺)。我们证明锌离子与咔唑基低聚物1的配位允许在炸药和纳米纤维之间形成路易斯酸碱配合物,从而增强基于硝基的炸药的电子接受能力以及感测纳米纤维之间的结合相互作用和炸药。此外,当暴露于痕量硫时,所得的基于纳米纤维的传感器表现出高度灵敏的荧光猝灭,从而能够灵敏地检测黑色粉末。在此,我们提出了一种用于五类爆炸物的新型荧光传感器,这是朝更广泛地识别威胁方面迈出的重要一步。

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