Kurulugama Ruwan T, Darland Ed, Kuhlmann Frank, Stafford George, Fjeldsted John
Agilent Technologies, 5301 Stevens Creek Blvd, Santa Clara, CA 95051, USA.
Analyst. 2015 Oct 21;140(20):6834-44. doi: 10.1039/c5an00991j.
A recently developed uniform-field high resolution ion mobility (IM) quadrupole time of flight (Q-TOF) mass spectrometer is used for evaluating the utility of alternate drift gases for complex sample analyses. This study provides collision cross section comparison for 275 total pesticides including structural isomers in nitrogen, helium, carbon dioxide, nitrous oxide and sulfur hexafluoride drift gases. Furthermore, a set of small molecules and Agilent tune mix compounds were used to study the trends in experimentally derived collision cross section values in argon and the alternate drift gases. Two isomeric trisaccharides, melezitose and raffinose, were used to evaluate the effect of the drift gasses for mobility separation. The hybrid ion mobility Q-TOF mass analyzer used in this study consists of a low pressure uniform field drift tube apparatus coupled to a high resolution Q-TOF mass spectrometer. Conventionally, low pressure ion mobility instruments are operated using helium drift gas to obtain optimal structural information and collision cross-section (CCS) values that compare to theoretical CCS values. The instrument employed in this study uses nitrogen as the standard drift gas but also allows the utility of alternate drift gases for improved structural analysis and selectivity under certain conditions. The use of alternate drift gases with a wide range of polarizabilities allows the evaluation of mobility separation power in terms of induced dipole interactions between the drift gas and the analyte ions.
一种最近开发的均匀场高分辨率离子迁移率(IM)四极杆飞行时间(Q-TOF)质谱仪被用于评估替代漂移气体在复杂样品分析中的效用。本研究提供了275种包括结构异构体在内的总农药在氮气、氦气、二氧化碳、一氧化二氮和六氟化硫漂移气体中的碰撞截面比较。此外,使用了一组小分子和安捷伦调谐混合化合物来研究在氩气和替代漂移气体中实验得出的碰撞截面值的趋势。使用两种异构三糖,松三糖和棉子糖,来评估漂移气体对迁移率分离的影响。本研究中使用的混合离子迁移率Q-TOF质量分析仪由一个与高分辨率Q-TOF质谱仪相连的低压均匀场漂移管装置组成。传统上,低压离子迁移率仪器使用氦气作为漂移气体来获得与理论碰撞截面(CCS)值相当的最佳结构信息和碰撞截面值。本研究中使用的仪器以氮气作为标准漂移气体,但也允许在某些条件下使用替代漂移气体来改善结构分析和选择性。使用具有广泛极化率的替代漂移气体能够根据漂移气体与分析物离子之间的诱导偶极相互作用来评估迁移率分离能力。