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通过将钴和镉离子辅助光化学蒸气发生与电感耦合等离子体质谱联用,实现对钌的超灵敏检测。

Ultrasensitive Detection of Ruthenium by Coupling Cobalt and Cadmium Ion-Assisted Photochemical Vapor Generation to Inductively Coupled Plasma Mass Spectrometry.

机构信息

Institute of Analytical Chemistry of the Czech Academy of Sciences, Veveří 97, 602 00 Brno, Czech Republic.

Faculty of Science, Department of Analytical Chemistry, Charles University, Hlavova 8, 128 43 Prague, Czech Republic.

出版信息

Anal Chem. 2021 Dec 14;93(49):16543-16551. doi: 10.1021/acs.analchem.1c03739. Epub 2021 Nov 30.

Abstract

An extremely sensitive methodology for the determination of Ru was developed by coupling photochemical vapor generation (PVG) analyte introduction with inductively coupled plasma mass spectrometry (ICPMS). PVG was undertaken with a thin-film flow-through photoreactor in a medium comprising 8 M formic acid in the presence of 10 mg L Co and 25 mg L Cd. The volatile product (presumably ruthenium pentacarbonyl) was generated in a flow injection mode, yielding an overall efficiency of 29% at a sample flow rate of 1.4 mL min. The presence of both Co and Cd sensitizers enhanced PVG efficiency by 3,200-fold, permitting a 31 s irradiation time. Although enhanced efficiency (≈40%) could be obtained with increased Co concentration, this was not suitable for routine use due to co-generation of cobalt carbonyl. Excellent repeatability (<2.5%) and reproducibility (4%) were achieved for 200 ng L Ru. Limits of detection ranged from 20 to 42 pg L (10-21 fg absolute) depending on the measured isotope and operational mode of the ICPMS reaction/collision cell. Interferences from inorganic acids and their anions, several transition metals, and metalloids were investigated. Practical application of the methodology was demonstrated by the analysis of seven water samples of various matrix complexities (well water, spring water, contaminated water, and seawater).

摘要

建立了一种用光电化学蒸汽发生(PVG)与电感耦合等离子体质谱(ICPMS)联用分析测定钌的高灵敏度方法。在一个包含 8M 甲酸、10mg/L Co 和 25mg/L Cd 的介质中,采用薄膜流动式光反应器进行 PVG。挥发性产物(可能是五羰基钌)以流动注射模式生成,在 1.4mL/min 的样品流速下,整体效率为 29%。Co 和 Cd 敏化剂的存在使 PVG 效率提高了 3200 倍,允许照射时间为 31s。尽管增加 Co 浓度可以获得更高的增强效率(约 40%),但由于同时生成了羰基钴,因此不适合常规使用。对于 200ng/L Ru,可实现 2.5%以下的良好重复性(<2.5%)和 4%的重现性。检测限范围为 20-42pg/L(10-21 fg 绝对),具体取决于所测同位素和 ICPMS 反应/碰撞池的操作模式。考察了无机酸及其阴离子、几种过渡金属和类金属的干扰。该方法在各种基体复杂性的 7 个水样(井水、泉水、污染水和海水)的分析中得到了实际应用。

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