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首页> 外文期刊>Analytical chemistry >Nanocalorimetry-Coupled Time-of-Flight Mass Spectrometry: Identifying Evolved Species during High-Rate Thermal Measurements
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Nanocalorimetry-Coupled Time-of-Flight Mass Spectrometry: Identifying Evolved Species during High-Rate Thermal Measurements

机译:纳米量热耦合飞行时间质谱:在高速热测量过程中识别进化物种

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We report on measurements integrating a nanocalorimeter sensor into a time-of-flight mass spectrometer (TOFMS) for simultaneous thermal and speciation measurements at high heating rates. The nanocalorimeter sensor was incorporated into the extraction region of the TOFMS system to provide sample heating and thermal information essentially simultaneously with the evolved species identification. This approach can be used to measure chemical reactions and evolved species for a variety of materials. Furthermore, since the calorimetry is conducted within the same proximal volume as ionization and ion extraction, evolved species detected are in a collision-free environment, and thus, the possibility exists to interrogate intermediate and radical species. We present measurements showing the decomposition of ammonium perchlorate, copper oxide nanoparticles, and sodium azotetrazolate. The rapid, controlled, and quantifiable heating rate capabilities of the nanocalorimeter coupled with the 0.1 ms temporal resolution of the TOFMS provides a new measurement capability and insight into high-rate reactions, such as those seen with reactive and energetic materials, and adsorptiondesorption measurements, critical for understanding surface chemistry and accelerating catalyst selection.
机译:我们报告了将纳米量热仪传感器集成到飞行时间质谱仪(TOFMS)中的测量结果,以便在高加热速率下同时进行热和形态测量。将纳米量热仪传感器整合到TOFMS系统的提取区域中,可在与进化物种识别基本同时提供样品加热和热信息。这种方法可用于测量各种材料的化学反应和进化物种。此外,由于量热法是在与电离和离子提取相同的近端体积内进行的,所以所检测到的放出物种处于无碰撞环境中,因此,有可能询问中间物种和自由基物种。我们提供的测量结果表明高氯酸铵,氧化铜纳米颗粒和偶氮四唑酸钠的分解。纳米量热仪的快速,可控和可量化的升温速率功能与TOFMS的0.1毫秒时间分辨率相结合,提供了新的测量功能,并洞悉了高速率反应,例如反应性和高能材料中的反应以及吸附/解吸测量对于了解表面化学和加快催化剂选择至关重要。

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