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将基于离子迁移谱的爆炸物痕量探测器与三重四极杆质谱仪相连接。

Interfacing an ion mobility spectrometry based explosive trace detector to a triple quadrupole mass spectrometer.

机构信息

US Department of Homeland Security, Science & Technology Directorate, Transportation Security Laboratory, Atlantic City International Airport, New Jersey 08405, United States.

出版信息

Anal Chem. 2011 Nov 15;83(22):8596-603. doi: 10.1021/ac201999a. Epub 2011 Oct 21.

Abstract

Hardware from a commercial-off-the-shelf (COTS) ion mobility spectrometry (IMS) based explosive trace detector (ETD) has been interfaced to an AB/SCIEX API 2000 triple quadrupole mass spectrometer. To interface the COTS IMS based ETD to the API 2000, the faraday plate of the IMS instrument and the curtain plate of the mass spectrometer were removed from their respective systems and replaced by a custom faraday plate, which was fabricated with a hole for passing the ion beam to the mass spectrometer, and a custom interface flange, which was designed to attach the IMS instrument onto the mass spectrometer. Additionally, the mass spectrometer was modified to increase the electric field strength and decrease the pressure in the differentially pumped interface, causing a decrease in the effect of collisional focusing and permitting a mobility spectrum to be measured using the mass spectrometer. The utility of the COTS-ETD/API 2000 configuration for the characterization of the gas phase ion chemistry of COTS-ETD equipment was established by obtaining mass and tandem mass spectra in the continuous ion flow and selected mobility monitoring operating modes and by obtaining mass-selected ion mobility spectra for the explosive standard 2,4,6 trinitrotoluene (TNT). This analysis confirmed that the product ion for TNT is TNT - H, the predominant collision-induced dissociation pathway for TNT- H is the loss of NO and NO(2), and the reduced mobility value for TNT - H is 1.54 cm(2)V(-1) s(-1). Moreover, this analysis was attained for sample amounts of 1 ng and with a resolving power of 37. The objective of the research is to advance the operational effectiveness of COTS IMS based ETD equipment by developing a platform that can facilitate the understanding of the ion chemistry intrinsic to the equipment.

摘要

已将商用现货 (COTS) 离子淌度谱 (IMS) 基爆炸物痕量探测器 (ETD) 的硬件接口连接到 AB/SCIEX API 2000 三重四极杆质谱仪。为了将基于 COTS IMS 的 ETD 与 API 2000 接口,从各自的系统中移除 IMS 仪器的法拉第板和质谱仪的 curtain 板,并更换为定制法拉第板,该法拉第板上有一个孔,用于将离子束引导至质谱仪,以及定制接口法兰,该法兰旨在将 IMS 仪器连接到质谱仪上。此外,对质谱仪进行了修改,以增加电场强度并降低差分抽气接口中的压力,从而减少碰撞聚焦的影响,并允许使用质谱仪测量淌度谱。通过在连续离子流和选定的淌度监测操作模式下获得质量和串联质谱,以及获得爆炸物标准品 2,4,6 三硝基甲苯 (TNT) 的质量选择离子淌度谱,证明了 COTS-ETD/API 2000 配置用于 COTS-ETD 设备的气相离子化学特性表征的实用性。这一分析证实,TNT 的产物离子是 TNT - HTNT - H 的主要碰撞诱导解离途径是失去 NO 和 NO(2),TNT - H 的淌度值为 1.54 cm(2)V(-1) s(-1)。此外,这项分析是在 1ng 的样品量和 37 的分辨率下完成的。研究的目的是通过开发一个能够促进对设备固有离子化学理解的平台,提高基于 COTS IMS 的 ETD 设备的操作效率。

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