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Non-Contact, Continuous Sampling of Porous Surfaces for the Detection of Particulate and Adsorbed Organic Contaminations by Low-Temperature Plasma Coupled to Ion Mobility Spectrometer

SENSORS(2023)

Israel Inst Biol Res

Cited 0|Views5
Abstract
Chemical analysis of hazardous surface contaminations, such as hazardous substances, explosives or illicit drugs, is an essential task in security, environmental and safety applications. This task is mostly based on the collection of particles with swabs, followed by thermal desorption into a vapor analyzer, usually a detector based on ion mobility spectrometry (IMS). While this methodology is well established for several civil applications, such as border control, it is still not efficient enough for various conditions, as in sampling rough and porous surfaces. Additionally, the process of thermal desorption is energetically inefficient, requires bulky hardware and introduces device contamination memory effects. Low-temperature plasma (LTP) has been demonstrated as an ionization and desorption source for sample preparation-free analysis, mostly at the inlet of a mass spectrometer analyzer, and in rare cases in conjunction with an ion mobility spectrometer. Herein, we demonstrate, for the first time, the operation of a simple, low cost, home-built LTP apparatus for desorbing non-volatile analytes from various porous surfaces into the inlet of a handheld IMS vapor analyzer. We show ion mobility spectra that originate from operating the LTP jet on porous surfaces such as asphalt and shoes, contaminated with model amine-containing organic compounds. The spectra are in good correlation with spectra measured for thermally desorbed species. We verify through LC-MS analysis of the collected vapors that the sampled species are not fragmented, and can thus be identified by commercial IMS detectors.
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ion mobility spectrometry,on-site analysis,sampling
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要点】:本文首次展示了使用 homemade的低温度等离子体装置非接触式连续采样多孔表面,结合离子迁移率光谱仪检测颗粒和吸附有机污染物的方法,提高了采样效率和准确性。

方法】:研究采用低温度等离子体作为离子化与解吸源,无需样本预处理的步骤,直接将非挥发性分析物从多孔表面解吸到手持式离子迁移率光谱仪的入口。

实验】:通过在沥青和鞋子等不同多孔表面上操作LTP喷射,对模型胺类有机化合物污染进行检测,得到的离子迁移率光谱与热解吸物种的光谱相关性良好,并通过液相色谱-质谱(LC-MS)分析验证了收集的蒸汽中物种未发生碎片化,能够被商用IMS检测器识别。