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Field Switching Combined with Bradbury-Nielsen Gate for Ion Mobility Spectrometry

机译:场开关结合Bradbury-Nielsen门进行离子迁移光谱分析

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Bradbury-Nielsen gate (BNG) is commonly used in ion mobility spectrometers. It, however, transmits only a small fraction of the ions into the drift region, typically 1%. In contrast, all ions in the ionization chamber could be efficiently compressed into the drift region by the field switching gate (FSG). We report in this paper on the simultaneous use of BNG and field switching (FS) to enhance ion utilization of the BNG. In this technique, the FS collects the ions existing in the region between the FS electrode and the BNG and drives them quickly, going through the BNG in the period of gate opening. The BNG acts as the retarding field in the reported FSG to stop ions from diffusing into the drift region in the period of gate closing. Using this technique, an increase of at least 10-fold in the ion peak height without any loss of resolution is achieved for acetone compared with the BNG-only approach at a gate pulse width of 150 mu s, and an even larger improvement factor of 21 is achieved for heavier DMMP dimer ions. This technique can be adapted to the current BNG-based ion mobility instruments to significantly enhance their sensitivity without any modification of the drift tube hardware.
机译:布拉德伯里-尼尔森门(BNG)通常用于离子迁移谱仪中。但是,它仅将一小部分离子传输到漂移区,通常为1%。相反,电离室中的所有离子都可以通过场切换门(FSG)有效地压缩到漂移区中。我们在本文中报道了同时使用BNG和场切换(FS)来增强BNG的离子利用率的情况。在该技术中,FS收集存在于FS电极和BNG之间区域中的离子,并快速驱动它们,并在门打开期间穿过BNG。在所报道的FSG中,BNG用作延迟场,以在门关闭期间阻止离子扩散到漂移区中。与仅使用BNG的方法相比,使用该技术在150μs的栅极脉冲宽度下,与仅使用BNG的方法相比,丙酮的离子峰高至少增加了10倍,并且改善系数更大较重的DMMP二聚体离子达到21。这项技术可以适应当前的基于BNG的离子迁移率仪器,从而在不对漂移管硬件进行任何修改的情况下,显着提高其灵敏度。

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