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Review of explosive detection methodologies and the emergence of standoff deep UV resonance Raman

机译:爆炸物探测方法的回顾和远距离深紫外共振拉曼的出现

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摘要

Due to terrorist use of explosive devices, intense interest has been directed towards the development of techniques and instrumentation to detect explosives. A number of analytical techniques are currently under investigation for trace explosive detection. Several methods have been successfully commercialized including colorimetric kits, fluorescence quenching sensors, and ion mobility spectrometers that see widespread field use. A key limitation of all currently utilized field techniques is that they require close proximity or physical interaction with the object being analyzed. The ideal trace explosive detection technique would be able to detect trace amounts of explosives from a distance to ensure personnel safety. Laser-based spectroscopies are the only currently viable techniques that can be utilized to sense trace amounts of explosives at standoff distances. This review compares currently used explosive detection techniques with recently developed standoff methods. We emphasize the development of UV resonance Raman spectroscopy for standoff explosive detection. This work has recently been enabled by advances in laser and spectrometer design. Trace explosive detection has also been advanced by the recently developed understanding of deep UV photochemistry for several explosive molecules. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:由于恐怖分子使用爆炸装置,引起了人们对开发探测爆炸物的技术和仪器的浓厚兴趣。目前正在研究用于痕量爆炸物检测的许多分析技术。几种方法已经成功地商业化,包括比色试剂盒,荧光猝灭传感器和离子迁移谱仪,这些方法在现场已得到广泛使用。所有当前使用的现场技术的主要局限性在于它们需要与被分析物体紧密接近或物理相互作用。理想的痕量爆炸物检测技术将能够从远处检测痕量爆炸物,以确保人员安全。基于激光的光谱学是目前唯一可行的技术,可用于在对峙距离下感测痕量炸药。这篇评论将当前使用的爆炸物探测技术与最近开发的防区位方法进行了比较。我们着重介绍用于远距离爆炸物检测的紫外共振拉曼光谱技术的发展。这项工作最近通过激光和光谱仪设计的进步而得以实现。最近发展的对几种爆炸物分子的深紫外光化学的了解也促进了痕量爆炸物的检测。版权所有(c)2016 John Wiley&Sons,Ltd.

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