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首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >T-Jump/time-of-flight mass spectrometry for time-resolved analysis of energetic materials
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T-Jump/time-of-flight mass spectrometry for time-resolved analysis of energetic materials

机译:T跳跃/飞行时间质谱用于高分辨材料的时间分辨分析

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We describe a new T-Jump/time-of-flight (TOF) mass spectrometer for the time-resolved analysis of rapid pyrolysis chemistry of solids and liquids, with a focus on energetic materials. The instrument employs a thin wire substrate which can be coated with the material of interest, and can be rapidly heated (10(5) K/s). The T-jump probe is inserted within the extraction region of a linear TOF mass spectrometer, which enables multiple spectra to be obtained during a single reaction event. By monitoring the electrical characteristics of the heated wire, the temperature could also be obtained and correlated to the mass spectra. As examples, we present time-resolved spectra for the ignition of nitrocellulose and RDX. The fidelity of the instrument is demonstrated in the spectra presented which show the temporal formation and decay of several species in both systems. The simultaneous measurement of temperature enables us to extract the ignition temperature and the characteristic reaction time. The time-resolved mass spectra obtained show that these solid energetic material reactions, under a rapid heating rate, can occur on a time scale of milliseconds or less. While the data sampling rate of 10000 Hz was used in the present experiments, the instrument is capable of a maximum scanning rate of up to similar to 30 kHz. The capability of high-speed time-resolved measurements offers an additional analytical tool for the characterization of the decomposition, ignition, and combustion of energetic materials. Copyright (C) 2008 John Wiley & Sons, Ltd.
机译:我们描述了一种新的T跃迁/飞行时间(TOF)质谱仪,用于固体和液体快速热解化学的时间分辨分析,重点是高能材料。该仪器使用细金属丝基材,该基材可以涂有感兴趣的材料,并且可以快速加热(10(5)K / s)。将T跃迁探针插入线性TOF质谱仪的提取区域内,从而可以在单个反应事件中获得多个光谱。通过监视加热电线的电特性,也可以获得温度并将其与质谱图关联。作为示例,我们介绍了硝酸纤维素和RDX点火的时间分辨光谱。仪器的保真度在给出的光谱中得到了证明,该光谱显示了两种系统中几种物质的时间形成和衰减。同时测量温度使我们能够提取点火温度和特征反应时间。所获得的时间分辨质谱表明,在快速加热速率下,这些固体高能材料反应可以在毫秒或更短的时间范围内发生。尽管在本实验中使用的数据采样率为10000 Hz,但该仪器的最大扫描速率高达30 kHz。高速时间分辨测量的功能为表征高能材料的分解,着火和燃烧提供了额外的分析工具。版权所有(C)2008 John Wiley&Sons,Ltd.

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