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利用均匀场漂移管-离子迁移谱-质谱法测定碰撞截面的不确定度估计。

Uncertainty Estimations for Collision Cross Section Determination via Uniform Field Drift Tube-Ion Mobility-Mass Spectrometry.

机构信息

Institute of Analytical Chemistry, Department of Chemistry, University of Natural Resources and Life Sciences, Vienna, Muthgasse 18, Vienna 1190, Austria.

出版信息

J Am Soc Mass Spectrom. 2020 Oct 7;31(10):2102-2110. doi: 10.1021/jasms.0c00233. Epub 2020 Sep 1.

Abstract

Uniform field drift tube ion mobility-mass spectrometry (DTIM-MS) has emerged as a valuable tool for a range of analytical applications. In focus here are standardized collisional cross section values from DTIM-MS (CCS) as a candidate identification point for various analytical workflows. Of critical importance in establishing this parameter as a valid identification point is a rugged estimation of uncertainties according to the procedures used for their derivation. Relying on the assumption of the zero-field limit, the primary method of measurement for CCS values involves experimental determination of arrival times of an ion measured at several different field strengths transiting a drift tube filled with high purity drift gas, while a method using measurements of external calibrants at a single field strength is employed to allow for online measurements of transient signals (e.g., chromatographic peaks). Both approaches are here considered with respect to the uncertainty of input experimental variables (temperature, pressure, voltages, physical constants) and the steps of the calibration function employed. Estimations of uncertainty were performed according to EURACHEM with Monte Carlo simulations and reveal that existing consensus calibration standards from experimental stepped-field IM-MS determinations have estimated expanded uncertainties in the range of 2.7 to 4.6% ( = 2). Application of these standards for calibration considering these input uncertainties reveals uncertainty estimates of 4.7-9.1% ( = 2) for measured values using an established single-field calibration approach. Finally, directions for improving this situation via new experimental efforts toward standard reference and calibration materials are presented.

摘要

均匀场漂移管离子淌度-质谐联用仪(DTIM-MS)已经成为多种分析应用的重要工具。本研究的重点是 DTIM-MS(CCS)的标准化碰撞截面值,作为各种分析工作流程的候选鉴定点。为了使该参数成为有效的鉴定点,根据其推导所使用的程序,稳健估计不确定度至关重要。基于零场极限的假设,CCS 值的主要测量方法包括在填充高纯度漂移气体的漂移管中,以几种不同的场强测量离子的到达时间,同时使用单一场强下的外部校准标准进行测量,以允许对瞬态信号(例如色谱峰)进行在线测量。这里考虑了这两种方法的输入实验变量(温度、压力、电压、物理常数)和校准函数步骤的不确定性。根据 EURACHEM 进行的蒙特卡罗模拟估计了不确定性,结果表明,实验步进场 IM-MS 测定的现有共识校准标准的扩展不确定度在 2.7%至 4.6%( = 2)范围内。考虑到这些输入不确定性,应用这些标准进行校准会导致使用既定单场校准方法测量值的不确定度估计值为 4.7-9.1%( = 2)。最后,提出了通过新的实验努力改善这种情况的方向,以获得标准参考和校准材料。

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