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External Second Gate Fourier Transform Ion Mobility Spectrometry: Parametric Optimization for Detection of Weapons of Mass Destruction

机译:外部第二门傅立叶变换离子迁移谱:用于检测大规模杀伤性武器的参数优化

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摘要

Ion mobility spectrometry (IMS) is recognized as one of the most sensitive and robust techniques for the detection of narcotics, explosives and chemical warfare agents. IMS is widely used in forensic, military and security applications. Increasing threat of terrorist attacks, the proliferation of narcotics, Chemical Weapons Convention (CWC) treaty verification as well as humanitarian de-mining efforts have mandated that equal importance be placed on the time required to obtain results as well as the quality of the analytical data. [] In this regard IMS is virtually unrivaled when both speed of response and sensitivity have to be considered. [] The problem with conventional (signal averaging) IMS systems is the fixed duty cycle of the entrance gate that restricts to less than 1%, the number of available ions contributing to the measured signal. Furthermore, the signal averaging process incorporates scan-to-scan variations that degrade the spectral resolution contributing to misidentifications and false positives. With external second gate, Fourier Transform ion mobility spectrometry (FT-IMS) the entrance gate frequency is variable and can be altered in conjunction with other data acquisition parameters (scan time and sampling rate) to increase the spectral resolution to reduce false alarms and improve the sensitivity for early warning and contamination avoidance. In addition, with FT-IMS the entrance gate operates with a 50% duty cycle and so affords a seven-fold increase in sensitivity. Recent data on high explosives are presented to demonstrate the parametric optimization in sensitivity and resolution of our system.
机译:离子迁移谱(IMS)被认为是检测麻醉品,爆炸物和化学战剂的最灵敏和最可靠的技术之一。 IMS广泛用于法证,军事和安全应用。越来越多的恐怖袭击威胁,麻醉药品的扩散,《化学武器公约》(CWC)的条约核查以及人道主义排雷努力,都要求对取得成果所需的时间和分析数据的质量同等重视。 。 []在这方面,当必须同时考虑响应速度和灵敏度时,IMS实际上是无与伦比的。 []传统(信号平均)IMS系统的问题是入口门的固定占空比限制为小于1%,这是有助于测量信号的可用离子数。此外,信号平均过程包含了逐次扫描变化,这会降低频谱分辨率,从而导致误识别和误报。借助外部第二门,傅立叶变换离子迁移谱(FT-IMS),入口门频率是可变的,可以与其他数据采集参数(扫描时间和采样率)一起更改,以提高光谱分辨率,从而减少误报并改善预警和避免污染的敏感性。此外,采用FT-IMS,入口门的占空比为50%,因此灵敏度提高了7倍。提出了有关高炸药的最新数据,以证明我们系统的灵敏度和分辨率方面的参数优化。

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