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Detection of Munitions Grade G-Series Nerve Agents Using Raman Excitation at 1064 nm

机译:在1064 nm处使用拉曼激发检测弹药级G系列神经毒剂

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Raman spectroscopy is a powerful tool for obtaining molecular structure information of a sample. While Raman spectroscopy is a common laboratory based analytical tool, miniaturization of opto-electronic components has allowed handheld Raman analyzers to become commercially available. These handheld systems are utilized by Military and First Responder operators tasked with rapidly identifying potentially hazardous chemicals in the field. However, one limitation of many handheld Raman detection systems is strong interference caused by fluorescence of the sample or underlying surface which obscures the characteristic Raman signature of the target analyte. Munitions grade chemical warfare agents (CWAs) are produced and stored in large batches and typically have more impurities from the storage container, degradation, or unreacted precursors. In this work, Raman spectra of munitions grade CWAs were collected using a handheld Raman spectrometer with a 1064 nm excitation laser. While Raman scattering generated by a 1064 nm laser is inherently less efficient than excitation at shorter wavelengths, high quality spectra were easily obtained due to significantly reduced fluorescence of the munitions grade CWAs. The spectra of these less pure, but more operationally relevant, munitions grade CWAs were then compared to spectra of CASARM grade CWAs, as well as Raman spectra collected using the more common 785 nm excitation laser.
机译:拉曼光谱法是获得样品分子结构信息的有力工具。尽管拉曼光谱仪是实验室常用的分析工具,但光电组件的小型化已使手持式拉曼分析仪得以商业化。这些手持系统由军事和急救人员操作,负责迅速识别现场潜在的危险化学品。然而,许多手持式拉曼检测系统的局限性是由样品或下面的表面的荧光引起的强干扰,该干扰掩盖了目标分析物的特征拉曼特征。弹药级化学战剂(CWA)会大量生产和存储,通常会从存储容器中带走更多杂质,降解或未反应的前体。在这项工作中,使用具有1064 nm激发激光的手持式拉曼光谱仪收集了军用级CWA的弹药光谱。虽然由1064 nm激光器产生的拉曼散射固有地比在较短波长下激发效率低,但由于弹药级CWA的荧光大大降低,因此很容易获得高质量的光谱。然后将这些纯度较低但在操作上更相关的弹药级CWA的光谱与CASARM级CWA的光谱以及使用更常见的785 nm激发激光收集的拉曼光谱进行比较。

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