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Single Drop Solution Electrode Glow Discharge for Plasma Assisted-Chemical Vapor Generation: Sensitive Detection of Zinc and Cadmium in Limited Amounts of Samples

机译:用于等离子体辅助化学蒸气产生的单滴溶液电极辉光放电:有限数量的样品中锌和镉的灵敏检测

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摘要

A simple and sensitive approach is proposed and evaluated for determination of ultratrace Zn and Cd in limited amounts of samples or tens of cells based on a novel single drop (5-20 mu L) solution electrode glow discharge assisted-chemical vapor generation technique. Volatile species of Zn and Cd were immediately generated and separated from the liquid phase for transporting to atomic fluorescence or atomic mass spectrometric detectors for their determination only using hydrogen when the glow discharge was ignited between the surface of a liquid drop and the tip of a tungsten electrode. Limits of detection are better than 0.01 mu g L-1 (0.2 pg) for Cd and 0.1 mu g L-1 (2 pg) for Zn, respectively, and comparable or better than the previously reported results due to only a 20 mu L sampling volume required, which makes the proposed technique convenient for the determination of Zn and Cd in limited amounts of samples or even only tens of cells. The proposed method not only retains the advantages of conventional chemical vapor generation but also provides several unique advantages, including better sensitivity, lower sample and power consumption, higher chemical vapor generation efficiencies and simpler setup, as well as greener analytical chemistry. The utility of this technique was demonstrated by the determination of ultratrace Cd and Zn in several single human hair samples, Certified Reference Materials GBW07601a (human hair powder) and paramecium cells.
机译:提出了一种简单而灵敏的方法,并基于一种新颖的单滴(5-20​​μL)溶液电极辉光放电辅助化学气相生成技术,用于测定有限量的样品或数十个细胞中的痕量锌和镉。 Zn和Cd的挥发性物质立即产生并从液相中分离出来,仅当在液滴表面和钨的尖端之间点燃辉光放电时,才使用氢气将其转移到原子荧光或原子质谱检测器中进行测定。电极。镉的检出限分别优于0.01μg L-1(0.2 pg)和锌的检出限优于0.1μgL-1(2 pg),并且由于仅20μL而优于或优于先前报道的结果所需的采样量,这使得所提出的技术可方便地在有限数量的样品中甚至仅在数十个细胞中测定Zn和Cd。所提出的方法不仅保留了常规化学蒸气产生的优点,而且还提供了一些独特的优点,包括更好的灵敏度,更低的样品和功耗,更高的化学蒸气产生效率和更简单的设置以及更绿色的分析化学。该技术的实用性通过测定几种单一人发样品,认证参考材料GBW07601a(人发粉)和草履虫细胞中的痕量Cd和Zn得以证明。

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