Key Laboratory of Separation Science for Analytical Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Sciences , Dalian 116023, People's Republic of China.
University of Chinese Academy of Sciences , Beijing 100039, People's Republic of China.
Anal Chem. 2017 Dec 19;89(24):13398-13404. doi: 10.1021/acs.analchem.7b03629. Epub 2017 Nov 30.
Ion gate is a key buildup for drift tube ion mobility spectrometry (IMS) and its combination with mass spectrometry. Bradbury-Nielsen gate, as the most commonly used ion gate in IMS, possesses a distinct ion mobility discrimination effect due to its depletion features. This impedes the scaling of the ion gate opening time to improve the separation capability of IMS while keeping its sensitivity for multiple ion species. In this work, a Tyndall-Powell gate (TPG) simply composed of two identical wire grids was used to develop an ion gate with nearly no ion mobility discrimination for IMS. Experimental results showed that the TPG features a gate region where the electric field for opening the gate could be enhanced to effectively solve the ion mobility discrimination problem related to it. Meanwhile, enhancing that electric field enabled the TPG-IMS to keep a resolving power over 106 at 100 °C for ion peak with a signal-to-noise ratio up to 800. With that TPG-IMS, baseline separation of two ion peaks, the hydronium and the acetone monomer peaks with a reduced mobility difference of only 0.04 cm V s, was achieved with no sensitivity loss for the least mobile acetone dimer ions.
离子门是漂移管离子迁移谱(IMS)及其与质谱联用的关键构建部分。布拉德伯里-尼尔森门(Bradbury-Nielsen gate)作为 IMS 中最常用的离子门,由于其耗尽特性而具有独特的离子迁移率分辨效应。这阻碍了离子门开启时间的扩展,以提高 IMS 的分离能力,同时保持其对多种离子物种的灵敏度。在这项工作中,使用由两个相同的金属丝栅极简单组成的 Tyndall-Powell 门(TPG)来开发一种 IMS 离子门,该离子门几乎没有离子迁移率分辨。实验结果表明,TPG 具有一个门区,在该门区中可以增强打开门的电场,从而有效地解决与门相关的离子迁移率分辨问题。同时,增强该电场使 TPG-IMS 能够在 100°C 时保持超过 106 的分辨率,对于信噪比高达 800 的离子峰。使用该 TPG-IMS,实现了两个离子峰,即质子和丙酮单体峰的基线分离,其迁移率差仅为 0.04cmV s,而对最不移动的丙酮二聚体离子没有灵敏度损失。