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使用背包式微型质谱仪进行自主原位分析和实时化学检测:概念、仪器开发及性能

Autonomous in situ analysis and real-time chemical detection using a backpack miniature mass spectrometer: concept, instrumentation development, and performance.

作者信息

Hendricks Paul I, Dalgleish Jon K, Shelley Jacob T, Kirleis Matthew A, McNicholas Matthew T, Li Linfan, Chen Tsung-Chi, Chen Chien-Hsun, Duncan Jason S, Boudreau Frank, Noll Robert J, Denton John P, Roach Timothy A, Ouyang Zheng, Cooks R Graham

机构信息

Department of Chemistry, Purdue University , West Lafayette, Indiana 47907, United States.

出版信息

Anal Chem. 2014 Mar 18;86(6):2900-8. doi: 10.1021/ac403765x. Epub 2014 Feb 24.

DOI:10.1021/ac403765x
PMID:24521448
Abstract

A major design objective of portable mass spectrometers is the ability to perform in situ chemical analysis on target samples in their native states in the undisturbed environment. The miniature instrument described here is fully contained in a wearable backpack (10 kg) with a geometry-independent low-temperature plasma (LTP) ion source integrated into a hand-held head unit (2 kg) to allow direct surface sampling and analysis. Detection of chemical warfare agent (CWA) simulants, illicit drugs, and explosives is demonstrated at nanogram levels directly from surfaces in near real time including those that have complex geometries, those that are heat-sensitive, and those bearing complex sample matrices. The instrument consumes an average of 65 W of power and can be operated autonomously under battery power for ca. 1.5 h, including the initial pump-down of the manifold. The maximum mass-to-charge ratio is 925 Th with mass resolution of 1-2 amu full width at half-maximun (fwhm) across the mass range. Multiple stages of tandem analysis can be performed to identify individual compounds in complex mixtures. Both positive and negative ion modes are available. A graphical user interface (GUI) is available for novice users to facilitate data acquisition and real-time spectral matching.

摘要

便携式质谱仪的一个主要设计目标是能够在未受干扰的环境中对处于原始状态的目标样品进行原位化学分析。此处描述的微型仪器完全集成在一个可穿戴背包(10千克)中,一个与几何形状无关的低温等离子体(LTP)离子源集成在一个手持式头部装置(2千克)中,以实现直接表面采样和分析。已证明能够近乎实时地直接从表面以纳克水平检测化学战剂(CWA)模拟物、非法药物和爆炸物,包括那些具有复杂几何形状、对热敏感以及带有复杂样品基质的表面。该仪器平均功耗为65瓦,可在电池供电下自主运行约1.5小时,包括歧管的初始抽气过程。最大质荷比为925 Th,在整个质量范围内半高宽(fwhm)的质量分辨率为1 - 2 amu。可以进行多阶段串联分析以识别复杂混合物中的单个化合物。正离子和负离子模式均可用。提供了一个图形用户界面(GUI),方便新手用户进行数据采集和实时光谱匹配。

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