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Combined use of direct analysis in real-time/Orbitrap mass spectrometry and micro-Raman spectroscopy for the comprehensive characterization of real explosive samples

机译:结合使用实时/ Orbitrap质谱法和显微拉曼光谱法进行直接分析对真实爆炸物进行全面表征

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摘要

Direct Analysis in Real Time (DART™) high-resolution Orbitrap™ mass spectrometry (HRMS) in combination with Raman microscopy was used for the detailed molecular level characterization of explosives including not only the charge but also the complex matrix of binders, plasticizers, polymers, and other possible organic additives. A total of 15 defused military weapons including grenades, mines, rockets, submunitions, and mortars were examined. Swabs and wipes were used to collect trace (residual) amounts of explosives and their organic constituents from the defused military weapons and micrometer-size explosive particles were transferred using a vacuum suction-impact collection device (vacuum impactor) from wipe and swap samples to an impaction plate made of carbon. The particles deposited on the carbon plate were then characterized using micro-Raman spectroscopy followed by DART-HRMS providing fingerprint signatures of orthogonal nature. The optical microscope of the micro-Raman spectrometer was first used to localize and characterize the explosive charge on the impaction plate which was then targeted for identification by DART-HRMS analysis in both the negative and positive modes. Raman spectra of the explosives TNT, RDX and PETN were acquired from micrometer size particles and characterized by the presence of their characteristic Raman bands obtained directly at the surface of the impaction plate nondestructively without further sample preparation. Negative mode DART-HRMS confirmed the types of charges contained in the weapons (mainly TNT, RDX, HMX, and PETN; either as individual components or as mixtures). These energetic compounds were mainly detected as deprotonated species [M–H], or as adduct [M + 35Cl], [M + 37Cl], or [M + NO3] anions. Chloride adducts were promoted in the heated DART reagent gas by adding chloroform vapors to the helium stream using an “in-house” delivery method. When the polarity was switched to positive mode, DART-HRMS revealed a very complex distribution of polymeric binders (mainly polyethylene glycols and polypropylene glycols), plasticizers (e.g., dioctyl sebacate, tributyl phosphate), as well as wax-like compounds whose structural features could not be precisely assigned. In positive mode, compounds were identified either as protonated molecules or ammonium adduct species. These results clearly demonstrate the complementarity of micro-Raman microscopy combined with DART-MS. The former technique provides structural information on the type of explosives present at the surface of the sample, whereas the latter provides not only a confirmation of the nature of the explosive charge but also useful additional information regarding the nature of the complex organic matrix of binders, plasticizers, polymers, oils, and potentially other organic additives and contaminants present in the sample. Combining these two techniques provides a powerful tool for the screening, comprehensive characterization, and differentiation of particulate explosive samples for forensic sciences and homeland security applications.>Graphical AbstractComprehensive characterization of explosive particles collected from swipe samples by micro-Raman and DART™-HRMS
机译:实时直接分析(DART™)高分辨率Orbitrap™质谱(HRMS)结合拉曼显微镜用于炸药的详细分子水平表征,不仅包括装药,还包括粘合剂,增塑剂,聚合物的复杂基质以及其他可能的有机添加剂。总共检查了15种被拆除的军事武器,包括手榴弹,地雷,火箭,子弹药和迫击炮。拭子和抹布用于从解散后的军用武器中收集痕量(残留)爆炸物及其有机成分,微米级爆炸性粒子使用真空吸力碰撞收集装置(真空撞击器)从抹布中转移并交换样品。冲击板由碳制成。沉积在碳板上的颗粒然后用显微拉曼光谱法表征,然后用DART-HRMS表征正交特征的指纹。首先使用显微拉曼光谱仪的光学显微镜对撞击板上的炸药进行定位和表征,然后通过DART-HRMS分析以负向和正向对目标进行鉴定。炸药TNT,RDX和PETN的拉曼光谱是从微米大小的颗粒中获取的,其特征是存在直接在冲击板表面无损获得的特征拉曼谱带,而无需进一步制备样品。负模式DART-HRMS确认了武器中所含电荷的类型(主要是TNT,RDX,HMX和PETN;是单独的成分还是混合物)。这些高能化合物主要被检测为去质子化的[M–H] -或加合物[M + 35 Cl] -,[M + 37 Cl] -或[M + NO3] -阴离子。通过使用“内部”输送方法将氯仿蒸气添加到氦流中,可以在加热的DART反应气中促进氯化物加合物的生成。当极性切换为正模式时,DART-HRMS显示聚合物粘合剂(主要是聚乙二醇和聚丙二醇),增塑剂(例如癸二酸二辛酯,磷酸三丁酯)以及具有结构特征的蜡状化合物分布非常复杂无法精确分配。在阳性模式下,化合物被鉴定为质子化分子或铵加合物。这些结果清楚地证明了显微拉曼显微镜与DART-MS的互补性。前一种技术提供有关样品表面存在的炸药类型的结构信息,而后一种技术不仅提供对炸药装料性质的确认,而且还提供有关粘合剂的复杂有机基体性质的有用信息,样品中存在的增塑剂,聚合物,油以及其他可能的有机添加剂和污染物。结合这两种技术可为法证科学和国土安全应用提供用于颗粒状爆炸物样品的筛选,全面表征和区分的强大工具。<!-fig ft0-> <!-fig @ position =“ anchor”模式=文章f4-> <!-fig mode =“ anchored” f5-> >图形摘要<!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> <!-标题a7->通过微拉曼和DART™-HRMS从擦拭样品中收集的爆炸性颗粒的全面表征

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