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拭子基爆炸物和麻醉品痕量质谱检测的广谱红外热解吸。

Broad spectrum infrared thermal desorption of wipe-based explosive and narcotic samples for trace mass spectrometric detection.

机构信息

National Institute of Standards and Technology, Materials Measurement Science Division, Gaithersburg, MD, USA.

出版信息

Analyst. 2017 Aug 7;142(16):3002-3010. doi: 10.1039/c7an00721c.

Abstract

Wipe collected analytes were thermally desorbed using broad spectrum near infrared heating for mass spectrometric detection. Employing a twin tube filament-based infrared emitter, rapid and efficiently powered thermal desorption and detection of nanogram levels of explosives and narcotics was demonstrated. The infrared thermal desorption (IRTD) platform developed here used multi-mode heating (direct radiation and secondary conduction from substrate and subsequent convection from air) and a temperature ramp to efficiently desorb analytes with vapor pressures across eight orders of magnitude. The wipe substrate experienced heating rates up to (85 ± 2) °C s with a time constant of (3.9 ± 0.2) s for 100% power emission. The detection of trace analytes was also demonstrated from complex mixtures, including plastic-bonded explosives and exogenous narcotics, explosives, and metabolites from collected artificial latent fingerprints. Manipulation of the emission power and duration directly controlled the heating rate and maximum temperature, enabling differential thermal desorption and a level of upstream separation for enhanced specificity. Transitioning from 100% power and 5 s emission duration to 25% power and 30 s emission enabled an order of magnitude increase in the temporal separation (single seconds to tens of seconds) of the desorption of volatile and semi-volatile species within a collected fingerprint. This mode of operation reduced local gas-phase concentrations, reducing matrix effects experienced with high concentration mixtures. IRTD provides a unique platform for the desorption of trace analytes from wipe collections, an area of importance to the security sector, transportation agencies, and customs and border protection.

摘要

收集的分析物拭子经广谱近红外加热进行热解吸,用于质谱检测。采用双管灯丝红外发射器,实现了爆炸物和毒品纳克级别的快速、高效热解吸和检测。这里开发的红外热解吸(IRTD)平台采用多模式加热(直接辐射和来自基底的二次传导,以及随后来自空气的对流)和温度斜坡,有效地解吸具有跨越八个数量级蒸气压的分析物。拭子基底的加热速率高达(85 ± 2)°C/s,在 100%功率发射时的时间常数为(3.9 ± 0.2)s。还从复杂混合物中演示了痕量分析物的检测,包括塑料结合炸药和外源性麻醉品、爆炸物以及从收集的人工潜伏指纹中提取的代谢物。通过控制发射功率和持续时间,可以直接控制加热速率和最高温度,从而实现差热解吸和一定程度的上游分离,提高特异性。从 100%功率和 5 s 发射持续时间转换为 25%功率和 30 s 发射,可使收集指纹中挥发性和半挥发性物质的解吸时间间隔(单秒到数十秒)增加一个数量级。这种操作模式降低了局部气相浓度,减少了高浓度混合物中遇到的基质效应。IRTD 为从拭子收集物中解吸痕量分析物提供了一个独特的平台,这对安全部门、运输机构以及海关和边境保护具有重要意义。

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