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首页> 外文期刊>Analytical chemistry >Surface-Enhanced Raman Detection of 2,4-Dinitrotoluene Impurity Vapor as a Marker To Locate Landmines
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Surface-Enhanced Raman Detection of 2,4-Dinitrotoluene Impurity Vapor as a Marker To Locate Landmines

机译:表面增强拉曼检测2,4-二硝基甲苯杂质蒸气作为标记物来定位地雷

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摘要

Time, cost, and casualties associated with demining efforts underscore the need for improved detection techniques. Reduction in the number of false positives by directly detecting the explosive material, rather than casing material, is desirable. The desired field sensor must, at a minimum, demonstrate reproducibility, the necessary level of sensitivity, portability, instrumental stability, and fast system response times. Ideally, vibrational spectroscopic techniques have the potential to remove false positives, since every chemical has a unique bond structure. Herein, we demonstrate the capabilities of surface-enhanced Raman spectroscopy to detect the chemical vapor signature emanating from buried TNT-based landmines. We present reproducible results obtained from blind tests controlled by the Defense Advanced Research Projects Agency (DARPA) that demonstrate vapor detection of 2,4-dinitrotoluene at concentration levels of 5 ppb or less. The results presented used acquisition times of 30 s on a fieldable system and showed that SERS can be a significant improvement over current landmine detection methods.
机译:与排雷工作有关的时间,成本和人员伤亡突出了对改进检测技术的需求。通过直接检测爆炸材料而不是外壳材料来减少误报的数量是理想的。所需的现场传感器必须至少表现出可重现性,必要的灵敏度,便携性,仪器稳定性和快速的系统响应时间。理想情况下,振动光谱技术具有消除假阳性的潜力,因为每种化学物质都有独特的键结构。在这里,我们展示了表面增强拉曼光谱技术检测从掩埋的基于TNT的地雷发出的化学蒸气特征的能力。我们提供了可重复的结果,这些结果是由国防高级研究计划局(DARPA)控制的盲试验获得的,该盲试验显示了浓度为5 ppb或更低的2,4-二硝基甲苯的蒸气检测。给出的结果在一个可现场使用的系统上使用了30 s的采集时间,并表明SERS可以比现有的地雷探测方法有重大改进。

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