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Rapid chemical agent identification by surface-enhanced Raman spectroscopy

机译:通过表面增强拉曼光谱法鉴定快速化学试剂

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Although the Chemical Weapons Conventions prohibits the development, production, stockpiling, and use of chemical warfare agents (CWAs), the use of these agents persists due to their low cost, simplicity in manufacturing and ease of deployment. These attributes make these weapons especially attractive to low technology countries and terrorists. The military and the public at large require portable, fast, sensitive, and accurate analyzers to provide early warning of the use of chemical weapons. Traditional laboratory analyzers such as the combination of gas chromatography and mass spectrometry, although sensitive and accurate, are large and require up to an hour per analysis. New, chemical specific analyzers, such as immunoassays and molecular recognition sensors, are portable, fast, and sensitive, but are plagued by false-positives (response to interferents). To overcome these limitations, we have been investigating the potential of surface-enhanced Raman spectroscopy (SERS) to identify and quantify chemical warfare agents in either the gas or liquid phase. The approach is based on the extreme sensitivity of SERS demonstrated by single molecule detection, a new SERS material that we have developed to allow reproducible and reversible measurements, and the molecular specific information provided by Raman spectroscopy. Here we present SER spectra of chemical agent simulants in both the liquid and gas phase, as well as CWA hydrolysis products.
机译:虽然化学武器惯例禁止开发,生产,储存和使用化学战代理(CWAS),但由于它们的低成本,制造和易于部署的简单性,使用这些代理商的使用仍然存在。这些属性使这些武器特别有吸引力的低技术国家和恐怖分子。大型军事和公众需要便携式,快速,敏感,准确的分析仪,以提供化学武器的预警。传统的实验室分析仪,例如气相色谱和质谱,虽然敏感和准确,但每分析均多为一小时。新的化学特异性分析仪,如免疫测定和分子识别传感器,是便携式,快速和敏感的,但是被误报(对干涉的响应)困扰。为了克服这些限制,我们已经研究了表面增强拉曼光谱(SERS)的潜力,以识别和量化气体或液相中的化学战剂。该方法是基于单分子检测证明SERS的极端敏感性,这是我们开发的新的SERS材料,以允许可再现和可逆测量,以及拉曼光谱提供的分子特定信息。在这里,我们在液体和气相中呈现化学试剂模拟剂的SER,以及CWA水解产物。

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