首页> 外文会议>Sensors, and Command, Control, Communications, and Intelligence(C3I) Technologies for Homeland Security and Homeland Defense IV pt.1 >Reactive Chromophores for Sensitive and Selective Detection of Chemical Warfare Agents and Toxic Industrial Chemicals
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Reactive Chromophores for Sensitive and Selective Detection of Chemical Warfare Agents and Toxic Industrial Chemicals

机译:反应性生色团用于化学战剂和有毒工业化学品的敏感和选择性检测

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A reactive chromophore developed at MIT exhibits sensitive and selective detection of surrogates for G-class nerve agents. This reporter acts by reacting with the agent to form an intermediate that goes through an internal cyclization reaction. The reaction locks the molecule into a form that provides a strong fluorescent signal. Using a fluorescent sensor platform, Nomadics has demonstrated rapid and sensitive detection of reactive simulants such as diethyl chloro-phosphate (simulant for sarin, soman, and related agents) and diethyl cyanophosphate (simulant for tabun). Since the unreacted chromophore does not fluoresce at the excitation wavelength used for the cyclized reporter, the onset of fluorescence can be easily detected. This fluorescence-based detection method provides very high sensitivity and could enable rapid detection at permissible exposure levels. Tests with potential interferents show that the reporter is very selective, with responses from only a few highly toxic, electrophilic chemicals such as phosgene, thionyl chloride, and strong acids such as HF, HCl, and nitric acid. Dimethyl methyl phosphonate (DMMP), a common and inactive simulant for other CW detectors, is not reactive enough to generate a signal. The unique selectivity to chemical reactivity means that a highly toxic and hazardous chemical is present when the reporter responds and illustrates that this sensor can provide very low false alarm rates. Current efforts focus on demonstrating the sensitivity and range of agents and toxic industrial chemicals detected with this reporter as well as developing additional fluorescent reporters for a range of chemical reactivity classes. The goal is to produce a hand-held sensor that can sensitively detect a broad range of chemical warfare agent and toxic industrial chemical threats.
机译:麻省理工学院开发的反应性生色团对G类神经毒剂的替代物表现出灵敏和选择性的检测。该报道分子通过与试剂反应形成中间体,该中间体经历内部环化反应。该反应将分子锁定为提供强荧光信号的形式。使用荧光传感器平台,Nomadics展示了快速灵敏的反应性模拟物检测方法,例如氯代磷酸二乙酯(沙林,梭曼和相关试剂的模拟物)和氰基磷酸二乙酯(塔邦的模拟物)。由于未反应的生色团在用于环化报道分子的激发波长下不发荧光,因此可以容易地检测到荧光的发生。这种基于荧光的检测方法具有很高的灵敏度,并且可以在允许的暴露水平下进行快速检测。对潜在干扰物的测试表明,该报道分子具有很高的选择性,仅对几种高毒性的亲电子试剂(如光气,亚硫酰氯)和强酸(如HF,HCl和硝酸)作出响应。二甲基甲基膦酸二甲酯(DMMP)是其他CW检测器的常见和非活性模拟物,其反应性不足以产生信号。对化学反应性的独特选择性意味着,当报告者做出反应并说明该传感器可以提供非常低的误报率时,便会存在剧毒和危险的化学物质。当前的工作重点是证明用该报告分子检测到的试剂和有毒工业化学品的敏感性和范围,以及针对一系列化学反应性类别开发其他荧光报告分子。目标是生产一种可以灵敏地检测各种化学战剂和有毒工业化学威胁的手持式传感器。

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