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利用热解吸-单光子电离-离子阱质谱(TD-SPI-ITMS)实时检测复杂样品基质中的安全相关化合物。

Real-time trace detection of security-relevant compounds in complex sample matrices by thermal desorption-single photon ionization-ion trap mass spectrometry (TD-SPI-ITMS).

机构信息

Helmholtz Zentrum München, Institute of Ecological Chemistry, Ingolstädter Landstrasse 1, 85764, Neuherberg, Germany.

出版信息

Anal Bioanal Chem. 2009 Nov;395(6):1795-807. doi: 10.1007/s00216-009-2916-4. Epub 2009 Jul 9.

Abstract

For the detection of security-relevant substances at low concentrations in complex matrices, coupling of thermal desorption-single photon ionization-ion trap mass spectrometry (TD-SPI-ITMS) was successfully tested. The main advantage of taking solid samples with a wipe pad followed by thermal desorption is the low detection limit by enhanced vapor pressure. Single photon ionization is a soft ionization technique which reduces the target ion fragmentation and shields bulk components with high ionization energies (IE) like nitrogen yielding to clearly arranged mass spectra with significant high mass peaks. To obtain low false-positive and false-negative rates, especially necessary for security-relevant substances, the ion trap mass spectrometer allows identification of signals with MS/MS studies. In this concept, the soft ionization technique fits well with the MS/MS studies, as peaks with high masses are generated yielding significant MS/MS fragments. For the ionization, photon energies between about 8 eV (155 nm) and 12 eV (103 nm) were generated with electron-beam-pumped rare gas excimer lamps (EBEL). Depending on the rare gas used, light with different photon energy is generated, adapted to the substances of interest. So, even most narcotics, having relatively low IEs, can be ionized with 8.4 eV photons without massive fragmentation. For most explosives, photons with higher energy must be used as their IEs are higher. In this work, a mobile setup with a commercial ion trap mass spectrometer has been developed and tested. Even a first real-scenario measurement campaign was accomplished successfully proving the field-suitability of the system.

摘要

为了在复杂基质中检测低浓度的安全相关物质,成功地测试了热解吸-单光子电离-离子阱质谱(TD-SPI-ITMS)的耦合。用擦拭垫采集固体样品并进行热解吸的主要优点是增强的蒸气压可实现低检测限。单光子电离是一种软电离技术,可减少目标离子的碎片化,并屏蔽具有高电离能(IE)的大量成分,如氮气,从而产生清晰排列的质谱图,具有显著的高质量峰。为了获得低的假阳性和假阴性率,特别是对于安全相关物质,离子阱质谱仪允许通过 MS/MS 研究来识别信号。在这种概念中,软电离技术非常适合 MS/MS 研究,因为生成了具有高质量的峰,从而产生了显著的 MS/MS 碎片。对于电离,使用电子束泵浦稀有气体准分子灯(EBEL)产生了约 8 eV(155 nm)和 12 eV(103 nm)之间的光子能量。根据所用的稀有气体,生成具有不同光子能量的光,适应感兴趣的物质。因此,即使是具有相对较低 IE 的大多数麻醉品,也可以用 8.4 eV 的光子进行非碎裂电离。对于大多数爆炸物,必须使用更高能量的光子,因为它们的 IE 更高。在这项工作中,开发并测试了一种带有商用离子阱质谱仪的移动装置。甚至成功地完成了第一次真实场景测量活动,证明了该系统的现场适用性。

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