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初步同位素比测量优点:液体取样-常压辉光放电微等离子体电离源与轨道阱质量分析器联用。

Preliminary Figures of Merit for Isotope Ratio Measurements: The Liquid Sampling-Atmospheric Pressure Glow Discharge Microplasma Ionization Source Coupled to an Orbitrap Mass Analyzer.

机构信息

Department of Chemistry, Clemson University, Clemson, SC, 29634, USA.

Pacific Northwest National Laboratory, Richland, WA, 99354, USA.

出版信息

J Am Soc Mass Spectrom. 2016 Aug;27(8):1393-403. doi: 10.1007/s13361-016-1402-4. Epub 2016 Apr 14.

Abstract

In order to meet a growing need for fieldable mass spectrometer systems for precise elemental and isotopic analyses, the liquid sampling-atmospheric pressure glow discharge (LS-APGD) has a number of very promising characteristics. One key set of attributes that await validation deals with the performance characteristics relative to isotope ratio precision and accuracy. Owing to its availability and prior experience with this research team, the initial evaluation of isotope ratio (IR) performance was performed on a Thermo Scientific Exactive Orbitrap instrument. While the mass accuracy and resolution performance for Orbitrap analyzers are well-documented, no detailed evaluations of the IR performance have been published. Efforts described here involve two variables: the inherent IR precision and accuracy delivered by the LS-APGD microplasma and the inherent IR measurement qualities of Orbitrap analyzers. Important to the IR performance, the various operating parameters of the Orbitrap sampling interface, high-energy collisional dissociation (HCD) stage, and ion injection/data acquisition have been evaluated. The IR performance for a range of other elements, including natural, depleted, and enriched uranium isotopes was determined. In all cases, the precision and accuracy are degraded when measuring low abundance (<0.1% isotope fractions). In the best case, IR precision on the order of 0.1% RSD can be achieved, with values of 1%-3% RSD observed for low-abundance species. The results suggest that the LS-APGD is a promising candidate for field deployable MS analysis and that the high resolving powers of the Orbitrap may be complemented with a here-to-fore unknown capacity to deliver high-precision IRs. Graphical Abstract ᅟ.

摘要

为了满足对可现场部署的质谱系统进行精确元素和同位素分析的日益增长的需求,液体采样-常压辉光放电(LS-APGD)具有许多非常有前途的特性。一组有待验证的关键属性涉及同位素比精密度和准确度的性能特征。由于其可用性以及先前与该研究团队的经验,最初对 Thermo Scientific Exactive Orbitrap 仪器进行了同位素比(IR)性能评估。虽然轨道阱分析仪的质量精度和分辨率性能已有详细记录,但尚未公布有关 IR 性能的详细评估。此处描述的工作涉及两个变量:LS-APGD 微等离子体提供的固有 IR 精密度和准确度,以及轨道阱分析仪的固有 IR 测量质量。对于 IR 性能,评估了轨道阱采样接口、高能碰撞解离(HCD)级和离子注入/数据采集的各种操作参数。还确定了一系列其他元素(包括天然、贫化和浓缩铀同位素)的 IR 性能。在所有情况下,当测量低丰度(<0.1%同位素分数)时,精密度和准确度都会降低。在最佳情况下,可以实现 0.1%RSD 左右的 IR 精密度,对于低丰度物质,观察到 1%-3%RSD 的值。结果表明,LS-APGD 是现场可部署 MS 分析的有前途的候选者,并且轨道阱的高分辨率可能与迄今为止未知的能力互补,以提供高精度的 IRs。图摘要 ᅟ。

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