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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Kinetic energy discrimination in collision/reaction cell ICP-MS: Theoretical review of principles and limitations
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Kinetic energy discrimination in collision/reaction cell ICP-MS: Theoretical review of principles and limitations

机译:碰撞/反应池ICP-MS中的动能鉴别:原理和局限性的理论综述

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摘要

Kinetic energy discrimination (KED) is one of the means to control cell-formed interferences in collision/reaction cell ICP-MS, and also a technique to reduce polyatomic ion interferences derived from the plasma or vacuum interface in collision cell ICP-MS. The operation of KED is accurately described to explain how spectral interferences from polyatomic ions are reduced by this technique. The cell is operated under non-thermal conditions to implement KED, where the hard sphere collision model is aptly employed to portray the transmission of ions colliding with the cell gas that they don't chemically react with. It is theoretically explained that the analyte atomic ions surmount the energy barrier placed downstream of the cell and the interfering polyatomic ions do not due to their lower kinetic energy than the atomic ions, resulting in polyatomic interference reduction. The intrinsic limitations of this technique are shown to lie in the statistical nature of collision processes, which causes the broadening of ion kinetic energy distribution that hinders efficient MED. The reaction cell operation with KED, where plasma-derived interferences are reduced by the reactive cell gas while cell-formed interferences are suppressed by the energy barrier, is also described in a quantitative manner. This review paper provides an in-depth understanding of ICED in cell-based ICP-MS for analysts to make better use of it. (C) 2015 Elsevier B.V. All rights reserved.
机译:动能鉴别(KED)是控制碰撞/反应池ICP-MS中细胞形成的干扰的手段之一,也是减少源自碰撞池ICP-MS中的等离子体或真空界面的多原子离子干扰的技术。准确描述了KED的操作,以解释该技术如何减少来自多原子离子的光谱干扰。该电池在非热条件下运行以实施KED,在该模型中,硬球碰撞模型被恰当地用来描述与未与它们发生化学反应的电池气体碰撞的离子的传输。从理论上讲,分析物原子离子超越了位于细胞下游的能垒,而干扰多原子离子的动能并非由于其比原子离子低,而是导致多原子干扰的减少。已表明该技术的固有局限性在于碰撞过程的统计性质,这导致离子动能分布变宽,从而阻碍了有效的MED。还定量描述了使用KED的反应池操作,其中反应性池气体减少了血浆来源的干扰,而能量垒抑制了细胞形成的干扰。这篇综述文章提供了对基于细胞的ICP-MS中ICED的深入了解,以帮助分析人员更好地利用它。 (C)2015 Elsevier B.V.保留所有权利。

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