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Analysis of Raman Spectral Characteristics of Chemical Warfare Agents by Using 248‐nm UV Raman Spectroscopy

机译:使用248纳米UV拉曼光谱法分析化学战剂的拉曼光谱特性

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Chemical warfare agents (CWAs) are extremely toxic and fatal to humans. It is required to quickly identify the released chemical agents and warn against the CWAs for protecting human life. The primary CWA contamination due to attacks occurs mostly on the ground surface, and Raman spectroscopy can quickly identify CWA on the surface in a non‐contact manner. In particular, the interference can be reduced by avoiding the fluorescence of materials on the surface while increasing the Raman‐scattering intensity with the excitation light source of deep ultra violet (UV) smaller than 250 nm. In this study, the Raman spectra of 18 chemical agents, including major CWAs, were measured using a Raman spectroscopy system with 248‐nm deep‐UV light source, and the spectral characteristics of each agent were analyzed. From the results, we confirmed that deep‐UV Raman spectroscopy could be the main method for quickly and accurately detecting and identifying CWA contamination.
机译:化学战代理(CWAS)对人类来说是极大的毒性和致命的。需要快速识别释放的化学代理,并警告对抗人类生命的警告。由于攻击引起的主要CWA污染主要发生在地面上,并且拉曼光谱可以以非接触方式快速识别表面上的CWA。特别地,可以通过避免表面上的材料的荧光同时增加具有小于250nm的深紫外(UV)的激发光源的拉曼散射强度来降低干扰。在该研究中,使用具有248nm深 - UV光源的拉曼光谱系统测量18种化学试剂的拉曼光谱,包括具有248nm深 - UV光源的拉曼光谱系统,并分析了每种试剂的光谱特性。从结果中,我们证实深紫色拉曼光谱可以是快速准确地检测和识别CWA污染的主要方法。

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