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首页> 外文期刊>Analytical chemistry >Schiff Base Substituent-Triggered Efficient Deboration Reaction and Its Application in Highly Sensitive Hydrogen Peroxide Vapor Detection
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Schiff Base Substituent-Triggered Efficient Deboration Reaction and Its Application in Highly Sensitive Hydrogen Peroxide Vapor Detection

机译:Schiff碱取代物引发的高效脱硼反应及其在高灵敏度过氧化氢蒸气检测中的应用

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摘要

The organic thin-film fluorescence probe, with the advantages of not polluting the analyte and fast response, has attracted much attention in explosive detection. Different with nitro explosives, the peroxide-based explosives are hardly to be detected because of their poor ultraviolet absorption and lack of an aromatic ring. As the signature compound of peroxide-based explosives, H2O2 vapor detection became more and more important. Boron ester or acid is considered to be a suitable functional group for the detection of hydrogen peroxide due to its reliable reactive activity. Its only drawback lies on its slow degradation velocity. In this work, we try to introduce some functional group to make the boron ester to be easily oxidized by H2O2. Herein, 4-(phenyl(4-(4,4,5,5-tetramethyl-1,3,2-dioxaborolan-2-yl)phenyl)amino)benzaldehyde (OTB) was synthesized and its imine derivatives, OTBXAs, were easily obtained just by putting OTB films in different primary amines vapors. OTBXAs show fast deboronation velocity in H2O2 vapor compared with OTB. The complete reaction time of (E)-N-phenyl-4((propylimino)methyl)-N-(4-(4,4,5,S-tetramethyl-1,3,2-dioxaborolan-2-yl)phenyl)aniline (OTBPA) was even shortened 40 times with a response time of seconds. The detection limit for H2O2 vapor was as low as 4.1 parts per trillion (ppt). Further study showed that it is a general approach to enhance the sensing performance of borate to hydrogen peroxide (H2O2) vapor by introducing an imine into an aromatic borate molecule via a solid/vapor reaction.
机译:有机薄膜荧光探针的优点是不污染分析物且反应迅速,在爆炸物检测中引起了广泛的关注。与硝基炸药不同,基于过氧化物的炸药由于紫外线吸收差且缺乏芳香环而几乎无法被检测到。作为过氧化物基炸药的标志性化合物,H2O2蒸气检测变得越来越重要。硼酸酯或硼酸由于其可靠的反应活性,被认为是检测过氧化氢的合适官能团。它唯一的缺点在于降解速度慢。在这项工作中,我们尝试引入一些官能团以使硼酸酯易于被H2O2氧化。本文合成了4-(苯基(4-(4,4,5,5-四甲基-1,3,2-二氧杂硼硼烷-2-基)苯基)氨基)苯甲醛(OTB),并合成了其亚胺衍生物OTBXAs只需将OTB薄膜置于不同的伯胺蒸气中即可轻松获得。与OTB相比,OTBXA在H2O2蒸气中显示出快速的脱硼速度。 (E)-N-苯基-4((丙基亚氨基)甲基)-N-(4-(4,4,5,S-四甲基-1,3,2-二氧杂硼烷-2-基)苯基的完全反应时间苯胺(OTBPA)甚至缩短了40倍,响应时间为几秒钟。 H2O2蒸气的检测极限低至4.1万亿分之一(ppt)。进一步的研究表明,这是通过固/汽反应将亚胺引入芳族硼酸盐分子中来增强硼酸盐对过氧化氢(H2O2)蒸气的传感性能的通用方法。

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