首页> 外文期刊>Journal of Analytical Atomic Spectrometry >First inductively coupled plasma-distance-of-flight mass spectrometer: instrument performance with a microchannel plate/phosphor imaging detector
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First inductively coupled plasma-distance-of-flight mass spectrometer: instrument performance with a microchannel plate/phosphor imaging detector

机译:首台电感耦合等离子体飞行质谱仪:具有微通道板/磷光成像检测器的仪器性能

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摘要

Here we describe the first combination of a Distance-of-Flight Mass Spectrometry (DOFMS) instrument and an inductively coupled plasma (ICP) ion source. DOFMS is a velocity-based MS technique in which ions of a range of mass-to-charge (m/z) values are detected simultaneously along the length of a spatially selective detector. As a relative of time-of-flight (TOF) MS, DOFMS leverages benefits from both TOFMS and spatially dispersive MS. The simultaneous detection of groups of m/z values improves dynamic range by spreading ion signal across many detector elements and reduces correlated noise by signal ratioing. To ascertain the performance characteristics of the ICP-DOFMS instrument, we have employed a microchannel-plate/ phosphor detection assembly with a scientific CCD to capture images of the phosphor plate. With this simple (and commercially available) detection scheme, elemental detection limits from 2-30 ng L~(-1) and a linear dynamic range of 5 orders of magnitude (10-10~6 ng L~(-1)) have been demonstrated. Additionally, a competitive isotope-ratio precision of 0.1% RSD has been achieved with only a 6 s signal integration period. In addition to first figures of merit, this paper outlines technical considerations for the design of the ICP-DOFMS.
机译:在这里,我们描述飞行距离质谱(DOFMS)仪器和感应耦合等离子体(ICP)离子源的第一种组合。 DOFMS是一种基于速度的MS技术,其中沿空间选择性检测器的长度同时检测一系列质荷(m / z)值的离子。作为飞行时间(TOF)MS的相对对象,DOFMS利用了TOFMS和空间分散MS的优势。同时检测m / z值组可通过在多个检测器元件上分布离子信号来改善动态范围,并通过信号分配来降低相关噪声。为了确定ICP-DOFMS仪器的性能特征,我们采用了带有科学CCD的微通道板/荧光粉检测组件来捕获荧光板的图像。通过这种简单的(可商购的)检测方案,元素检测极限为2-30 ng L〜(-1),线性动态范围为5个数量级(10-10〜6 ng L〜(-1))。被证明。此外,仅6 s的信号积分周期即可达到0.1%RSD的竞争性同位素比精度。除了首个优点,本文还概述了ICP-DOFMS设计的技术注意事项。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2013年第9期|1385-1395|共11页
  • 作者单位

    Indiana University, Department of Chemistry, 800 E. Kirkwood Avenue, Bloomington, IN 47405, USA;

    Indiana University, Department of Chemistry, 800 E. Kirkwood Avenue, Bloomington, IN 47405, USA;

    Indiana University, Department of Chemistry, 800 E. Kirkwood Avenue, Bloomington, IN 47405, USA;

    Department of Chemistry, University of New Mexico, Albuquerque, NM 87131, USA;

    Pacific Northwest National Laboratory, Richland, WA 99352, USA;

    Pacific Northwest National Laboratory, Richland, WA 99352, USA;

    Indiana University, Department of Chemistry, 800 E. Kirkwood Avenue, Bloomington, IN 47405, USA;

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