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首页> 外文期刊>Analytical chemistry >High-Speed, Integrated Ablation Cell and Dual Concentric Injector Plasma Torch for Laser Ablation-Inductively Coupled Plasma Mass Spectrometry
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High-Speed, Integrated Ablation Cell and Dual Concentric Injector Plasma Torch for Laser Ablation-Inductively Coupled Plasma Mass Spectrometry

机译:用于激光烧蚀-电感耦合等离子体质谱的高速集成烧蚀池和双同心注射器等离子炬

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摘要

In recent years, laser ablation-inductively coupled plasma mass spectrometry (LA-ICPMS) has gained increasing importance for biological analysis, where ultratrace imaging at micrometer resolution is required. However, while undoubtedly a valuable research tool, the washout times and sensitivity of current technology have restricted its routine and clinical application. Long periods between sampling points are required to maintain adequate spatial resolution. Additionally, temporal signal dispersion reduces the signal-to-noise ratio, which is a particular concern when analyzing discrete samples, such as individual particles or cells. This paper describes a novel, two-volume laser ablation cell and integrated ICP torch designed to minimize aerosol dispersion for fast, efficient sample transport. The holistic design utilizes a short, continuous diameter fused silica conduit, which extends from the point of ablation, through the ICP torch, and into the base of the plasma. This arrangement removes the requirement for a dispersive component for argon addition, and helps to keep the sample on axis with the ICP cone orifice. Hence, deposition of sample on the cones is theoretically reduced with a resulting improvement in the absolute sensitivity (counts per unit mole). The system described here achieved washouts of 1.5, 3.2, and 4.9 ms for NIST 612 glass, at full width half, 10%, and 1% maximum, respectively, with an 8-14-fold improvement in absolute sensitivity, compared to a single volume ablation cell. To illustrate the benefits of this performance, the system was applied to a contemporary bioanalytical challenge, specifically the analysis of individual biological cells, demonstrating similar improvements in performance.
机译:近年来,激光烧蚀-电感耦合等离子体质谱(LA-ICPMS)在生物学分析中变得越来越重要,在生物学分析中,需要以微米级分辨率进行超痕量成像。然而,尽管无疑是一种有价值的研究工具,但当前技术的洗脱时间和敏感性限制了其常规和临床应用。采样点之间需要很长时间才能保持足够的空间分辨率。此外,时间信号分散会降低信噪比,这在分析离散样本(例如单个粒子或细胞)时尤其要考虑。本文介绍了一种新颖的两体积激光烧蚀池和集成ICP炬管,该炬管旨在最大程度地减少气溶胶扩散,从而实现快速,高效的样品传输。整体设计利用了短而连续直径的熔融石英导管,该导管从烧蚀点开始,穿过ICP炬,一直进入等离子体的底部。这种布置消除了添加用于氩气的分散成分的要求,并有助于将样品保持在与ICP锥孔对准的轴线上。因此,理论上减少了样品在锥体上的沉积,从而提高了绝对灵敏度(每单位摩尔数)。与单个仪器相比,此处描述的系统对NIST 612玻璃的冲洗时间分别为1.5、3.2和4.9毫秒,最大全宽分别为一半,最大10%和1%,绝对灵敏度提高了8-14倍。消融池。为了说明这种性能的好处,该系统被应用到当代生物分析挑战中,特别是对单个生物细胞的分析,证明了性能方面的类似改进。

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