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首页> 外文期刊>Analytical and Bioanalytical Chemistry >Rapid on-site detection of explosives on surfaces by ambient pressure laser desorption and direct inlet single photon ionization or chemical ionization mass spectrometry
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Rapid on-site detection of explosives on surfaces by ambient pressure laser desorption and direct inlet single photon ionization or chemical ionization mass spectrometry

机译:通过环境压力激光解吸和直接入口单光子电离或化学电离质谱快速现场检测炸药

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摘要

Considering current security issues, powerful tools for detection of security-relevant substances such as traces of explosives and drugs/drug precursors related to clandestine laboratories are required. Especially in the field of detection of explosives and improvised explosive devices, several relevant compounds exhibit a very low vapor pressure. Ambient pressure laser desorption is proposed to make these substances available in the gas phase for the detection by adapted mass spectrometers or in the future with ion-mobility spectrometry as well. In contrast to the state-of-the-art thermal desorption approach, by which the sample surface is probed for explosive traces by a wipe pad being transferred to a thermal desorber unit, by the ambient pressure laser desorption approach presented here, the sample is directly shockwave ablated from the surface. The laser-dispersed molecules are sampled by a heated sniffing capillary located in the vicinity of the ablation spot into the mass analyzer. This approach has the advantage that the target molecules are dispersed more gently than in a thermal desorber unit where the analyte molecules may be decomposed by the thermal intake. In the technical realization, the sampling capillary as well as the laser desorption optics are integrated in the tip of an endoscopic probe or a handheld sampling module. Laboratory as well as field test scenarios were performed, partially in cooperation with the Federal Criminal Police Office (Bundeskriminalamt, BKA, Wiesbaden, Germany), in order to demonstrate the applicability for various explosives, drugs, and drug precursors. In this work, we concentrate on the detection of explosives. A wide range of samples and matrices have been investigated successfully.
机译:考虑到当前的安全问题,需要强大的工具来检测与安全相关的物质,例如与秘密实验室有关的爆炸物和毒品/药物前体的痕迹。特别是在爆炸物和简易爆炸装置的检测领域,几种相关的化合物表现出非常低的蒸气压。提出了环境压力激光解吸技术,以使这些物质在气相中可用以通过适合的质谱仪进行检测,或者在将来也可以通过离子迁移谱仪进行检测。与现有技术的热脱附方法相反,通过将此处介绍的环境压力激光脱附方法,将擦拭垫转移到热脱附器上,可以探测样品表面是否有爆炸痕迹,而样品是直接从表面烧蚀掉冲击波。激光散布的分子通过位于消融点附近的加热的嗅探毛细管采样到质量分析仪中。这种方法的优势在于,目标分子的分散比热解吸器中的分子更缓和,在热解吸器中,分析物分子可能会因热量吸收而分解。在技​​术实现中,采样毛细管以及激光解吸光学器件都集成在内窥镜探头或手持式采样模块的尖端中。部分与联邦刑事警察局(Bundeskriminalamt,BKA,威斯巴登,德国)合作进行了实验室以及现场测试,以证明其适用于各种炸药,毒品和毒品前体。在这项工作中,我们专注于爆炸物的检测。成功地研究了各种各样的样品和基质。

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