首页> 外文期刊>Analytical chemistry >Dopant-Assisted Positive Photoionization Ion Mobility Spectrometry Coupled with Time-Resolved Thermal Desorption for On-Site Detection of Triacetone Triperoxide and Hexamethylene Trioxide Diamine in Complex Matrices
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Dopant-Assisted Positive Photoionization Ion Mobility Spectrometry Coupled with Time-Resolved Thermal Desorption for On-Site Detection of Triacetone Triperoxide and Hexamethylene Trioxide Diamine in Complex Matrices

机译:掺杂辅助正光电离离子迁移谱法与时间分辨热解吸结合用于现场检测复杂基质中的三丙酮三过氧化物和六亚甲基三氧化二胺

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摘要

Peroxide explosives, such as triacetone triper-oxide (TATP) and hexamethylene trioxide diamine (HMTD), were often used in the terrorist attacks, due to their easy synthesis, from readily starting materials. Therefore, an on-site detection method for TATP and HMTD is urgently needed. Herein, we developed a stand-alone dopant-assisted positive photoionization ion mobility spectrometry (DAPP-IMS) coupled with time-resolved thermal desorption introduction for rapid and sensitive detection of TATP and HMTD in complex matrices, such as white solids, soft drinks, and cosmetics. the optimal dopant for better separation between reactant ion peaks and product ion peaks as well as higher sensitivity, and the limits of detection (LODs) of TATP and HMTD standard samples were 23.3 and 0.2 ng, respectively. Explosives on the sampling swab were thermally desorbed and carried into the ionization region dynamically within 10 s, and the maximum released concentration of TATP or HMTD could be time-resolved from the matrix interference owing to the different volatility. Furthermore, with the combination of the fast response thermal desorber (within 0.8 s) and the quick data acquisition software to DAPP-IMS, two-dimensional data related to drift time (TATP: 6.98 ms, K-0 = 2.05 cm(2) V-1 s(-1); HMTD: 9.36 ms, K-0 = 1.53 cm(2) V-1 s(-1)) and desorption time was obtained for TATP and HMTD, which is beneficial for their identification in complex matrices.
机译:过氧化物炸药,例如三丙酮三氧化二铁(TATP)和六亚甲基三氧化二胺(HMTD),由于易于合成,因此经常从易起始的原料中使用。因此,迫切需要一种针对TATP和HMTD的现场检测方法。本文中,我们开发了一种独立的掺杂剂辅助正光电离离子迁移谱仪(DAPP-IMS),结合时间分辨热脱附技术,可以快速,灵敏地检测复杂基质(例如白色固体,软饮料)中的TATP和HMTD。和化妆品。为了更好地分离反应物离子峰和产物离子峰以及提高灵敏度,最佳掺杂剂的含量为TATP和HMTD标准样品的检测限(LOD)分别为23.3 ng和0.2 ng。棉签上的炸药被热解吸,并在10 s内动态地带入电离区域,由于挥发性不同,可以从基质干扰中及时分辨出TATP或HMTD的最大释放浓度。此外,结合快速响应热脱附器(在0.8 s内)和DAPP-IMS的快速数据采集软件,与漂移时间相关的二维数据(TATP:6.98 ms,K-0 = 2.05 cm(2) V-1 s(-1); HMTD:9.36 ms,K-0 = 1.53 cm(2)V-1 s(-1)),获得了TATP和HMTD的解吸时间,这对于它们在复杂化合物中的鉴定是有利的矩阵。

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