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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Evaluating Separation Selectivity and Collision Cross Section Measurement Reproducibility in Helium, Nitrogen, Argon, and Carbon Dioxide Drift Gases for Drift Tube Ion Mobility-Mass Spectrometry
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Evaluating Separation Selectivity and Collision Cross Section Measurement Reproducibility in Helium, Nitrogen, Argon, and Carbon Dioxide Drift Gases for Drift Tube Ion Mobility-Mass Spectrometry

机译:评估氦,氮,氩气和二氧化碳漂移气体中分离选择性和碰撞横截面测量再现性,用于漂移管离子迁移率质谱法

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摘要

Previous ion mobility (IM) studies have demonstrated that varying the drift gas composition can be used to enhance chemical selectivity and resolution, yet there are few drift gas studies aimed at achieving quantitatively reproducible mobility measurements. Here, we critically evaluate the conditions necessary to achieve reproducible collision cross section (CCS) measurements in pure drift gases (helium, nitrogen, argon, and carbon dioxide) using a commercial uniform field drift tube instrument. Optimal experimental parameters are assessed based on the convergence of CCS measurements to reproducible values which are compared with literature values. A suite of calibration standards with diverse masses, biological classes, and charge states are examined to assess chemical selectivity and resolution achievable in each drift gas. Results indicate nitrogen and argon perform similarly and are sufficient for most applications where high resolving power and high peak capacity are desired. Carbon dioxide exhibits more selectivity for resolving structurally heterogeneous compounds, which may be preferable in specific analyte pair separations. Helium demonstrated modest separation capabilities but has utility for comparison to theoretical values and previously published work. In drift gases other than nitrogen, pressure differentials up to 230mTorr between the drift tube and upstream chamber were optimal for improving correlation to literature values, while in nitrogen, the recommended pressure differential of 150mTorr was found appropriate. We present recommended experimental parameters as well as gas-specific CCS measurements for structurally homogeneous sets of analytes which are suitable for use by other laboratories as standards for purposes of instrument calibration and overall assessment of IM separation performance.
机译:先前的离子迁移率(IM)研究表明,可以使用漂移气体组合物来增强化学选择性和分辨率,但是旨在实现定量可再现的迁移率测量的漂移气体研究很少。在这里,我们通过商业统一场漂移管仪器评估实现纯漂移气体(氦,氮,氩气和二氧化碳)中实现可重复碰撞横截面(CCS)测量所需的条件。基于CCS测量的收敛评估最佳实验参数,与文献值进行比较的可再现值。考察了一套具有各种群众,生物类和充电状态的校准标准,以评估每个漂移气体中可实现的化学选择性和分辨率。结果表明氮气和氩气类似地执行,并且对于需要高分辨率和高峰穴的大多数应用是足够的。二氧化碳表现出更多的选择性,用于拆分结构异质化合物,其在特定的分析物对分离中可能是优选的。氦展示了适度的分离能力,但有实用性,以便与理论值和以前发表的工作相比。在除氮以外的漂移气体中,漂移管和上游室之间的压差高达230mborr是最佳的,用于改善与文献值的相关性,而在氮气中,则发现150mTorr的推荐压差是合适的。我们提出了推荐的实验参数以及用于结构均匀的分析物的Gas Precess CCS测量,这适用于其他实验室作为仪器校准目的的标准和IM分离性能的总体评估。

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