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首页> 外文期刊>Analytical chemistry >Space Charge Effects on Resolution in a Miniature Ion Mobility Spectrometer
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Space Charge Effects on Resolution in a Miniature Ion Mobility Spectrometer

机译:微型离子迁移谱仪中空间电荷对分辨率的影响

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Miniaturization of ion mobility spectrometry (IMS) is expected to have many advantages, as well as difficulties, in the separation of chemical species at atmospheric pressure. We report the results of studies of a miniature ion mobility spectrometer that has a drift channel 1.7 mm in diameter, the smallest cross section reported to date. The miniature cell contains a homogeneous drift field and is operated at atmospheric pressure. The miniature IMS has been characterized by measuring both negative and positive ion spectra using a frequency-quadrupled Nd: YAG laser on samples of NO, O_(2), and methyl iodide; a useful resolution (>10) was achieved with an operating voltage of 500 V. Peak broadening due to Coulomb repulsion was determined to have a major effect on the resolution of the miniature device.
机译:期望在大气压力下化学物质的分离中,离子迁移谱(IMS)的小型化具有许多优点和困难。我们报告了微型离子迁移谱仪的研究结果,该谱仪具有直径为1.7 mm的漂移通道,是迄今为止报道的最小横截面。微型电池包含均匀的漂移场,并在大气压下运行。微型IMS的特征在于,使用四倍频Nd:YAG激光对NO,O_(2)和甲基碘样品进行负离子和正离子光谱测量;在500 V的工作电压下可获得有用的分辨率(> 10)。确定了由于库仑排斥而导致的峰展宽对微型设备的分辨率有重大影响。

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