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首页> 外文期刊>RSC Advances >Distinguishing between halogenated alkanes containing the same halogen based on the reaction kinetic parameter using negative ion mobility spectrometry at atmospheric pressure
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Distinguishing between halogenated alkanes containing the same halogen based on the reaction kinetic parameter using negative ion mobility spectrometry at atmospheric pressure

机译:在大气压下使用负离子迁移率光谱法在含有相同卤素的卤代烷烃之间区分卤化烷烃

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Electron adsorption ionization ion mobility spectrometry can be used to detect halogen-containing volatile organic compounds with high sensitivity. However, this traditional electron attachment detection method cannot distinguish between volatile organic compounds containing the same halogen. For different organic compounds containing the same halogen, the product ions formed by the dissociation electron attachment process are the same. In this article, we propose a novel negative corona discharge ion mobility spectrometry method to distinguish between and detect halogenated alkanes containing the same halogen according to the different electron attachment rates and reaction kinetic parameters of the different halogenated alkanes. Although these halogenated alkanes, which contain the same halogen, produce the same type of ions through the electron attachment process, their electron attachment rates are different from each other. In this work, the kinetic information is used as the fingerprint information for the tested samples to distinguish different halogenated alkanes. Five halogenated alkanes were successfully detected using this method. The results show that the method based on the electron attachment rate constant is feasible for the determination of halogenated alkanes containing the same halogen.
机译:电子吸附电离离子迁移率光谱法可用于检测具有高灵敏度的含卤素的挥发性有机化合物。然而,这种传统的电子连接检测方法不能区分含有相同卤素的挥发性有机化合物。对于含有相同卤素的不同有机化合物,由解离电子连接工艺形成的产物离子是相同的。在本文中,我们提出了一种新的负电晕放电离子迁移率光谱法,以区分和检测根据不同卤代烷烃的不同电子附接速率和反应动力学参数的含有相同卤素的卤代烷烃。虽然这些含有相同卤素的卤代烷烃通过电子连接过程产生相同类型的离子,但它们的电子连接速率彼此不同。在这项工作中,动力学信息用作测试样品的指纹信息以区分不同的卤代烷烃。使用该方法成功检测了五种卤化烷烃。结果表明,基于电子连接速率常数的方法是可行的,用于测定含有相同卤素的卤代烷烃。

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