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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Utilizing Surface Acoustic Wave Nebulization (SAWN) for the Rapid and Sensitive Ambient Ionization Mass Spectrometric Analysis of Organic Explosives
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Utilizing Surface Acoustic Wave Nebulization (SAWN) for the Rapid and Sensitive Ambient Ionization Mass Spectrometric Analysis of Organic Explosives

机译:利用表面声波雾化(SAWN)对有机爆炸物的快速敏感环境电离质谱分析

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摘要

When considering incident investigations and security checks focused on energetic materials, there is an ongoing need for rapid, on-scene chemical identification. Currently applied methods are not capable of meeting all requirements, and hence, portable mass spectrometry is an interesting alternative although many instrumental challenges still exist. To be able to analyze explosives with mass spectrometry outside the traditional laboratory, suitable ambient ionization methods need to be developed. Ideally such methods are also easily implemented in the field requiring limited to no power sources, gas supplies, flow controllers, and heating devices. For this reason, the potential of SAWN (surface acoustic wave nebulization) for the ambient ionization and subsequent mass spectrometric (MS) analysis of organic explosives was investigated in this study. Excellent sensitivity was observed for nitrate-based organic explosives when operating the MS in negative mode. No dominant adduct peaks were observed for the peroxides TATP and HMTD with SAWN-MS in positive mode. The MS spectra indicate extensive fragmentation of the peroxide explosives even under the mild ionization conditions provided by SAWN. The potential of SAWN-MS was demonstrated with the correct identification of nitrate-based organic explosives in pre- and post-explosion case samples in only a fraction of the time and effort required for the regular laboratory analysis. Results show that SAWN-MS can convincingly identify intact organic energetic compounds and mixtures but that sensitivity is not always sufficient to detect traces of explosives in post-explosion residues.
机译:考虑到集中于能量材料的事件调查和安全检查,持续需要快速,现场化学鉴定。目前应用的方法不能满足所有要求,因此,便携式质谱是一种有趣的替代方案,尽管仍然存在许多乐器挑战。为了能够分析传统实验室之外的质谱分析爆炸物,需要开发合适的环境电离方法。理想地,这种方法也容易地在需要限制为无电源,气体供应,流量控制器和加热装置的场上。因此,在本研究中研究了用于环境电离和随后的质谱(MS)分析的锯(表面声波雾化)的潜力。在负面模式下操作MS时,对硝酸盐基有机炸药观察出优异的敏感性。对于通过阳性模式的SAWN-MS的过氧化物TATP和HMTD没有观察到显性加合峰。 MS光谱表明即使在由锯条提供的轻度电离条件下,也表明过氧化物爆炸物的广泛破碎。在常规实验室分析所需的时间和精力的一小部分中,在爆炸性壳体样本中正确鉴定了SAWAP-MS的潜力,并在爆炸后和爆炸后的乳液中的正确鉴定。结果表明,SAWN-MS可以令人信服地识别完整的有机能量化合物和混合物,但这种敏感性并不总是足以检测爆炸后残留物中的炸药痕迹。

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