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采用氢化物发生耦合新型溶液阴极辉光放电原子发射光谱法对锡、锗和硒进行超痕量测定。

Ultratrace Determination of Tin, Germanium, and Selenium by Hydride Generation Coupled with a Novel Solution-Cathode Glow Discharge-Atomic Emission Spectrometry Method.

机构信息

Shanghai Institute of Ceramics, Chinese Academy of Sciences , Shanghai 200050, China.

出版信息

Anal Chem. 2016 Dec 6;88(23):11559-11567. doi: 10.1021/acs.analchem.6b02807. Epub 2016 Nov 9.

Abstract

We herein describe a novel method of hydride generation (HG) coupled to a newly designed atmospheric pressure solution-cathode glow discharge (SCGD) spectrometric technique for the ultratrace determination of tin, germanium, and selenium. In this novel SCGD process, gas introduction was permitted using a hollow titanium tube as both the anode and sampling port. In these experiments, the analytes were converted into volatile hydrides upon passing through the hydride generator, and were introduced into the near-anode region of the SCGD system, where they were detected directly by atomic emission spectrometry (AES). A significant improvement in both selectivity and sensitivity was achieved, which was reflected in an improvement in the detection limits (DLs) by 3 orders of magnitude, in addition to successful valence analysis of Se without the requirement for chromatographic separation. In the absence of a strict sample pretreatment process and with a reduction in electrolyte consumption, the detection limits of Sn, Ge, and Se were determined to be 0.8, 0.5, and 0.2 μg·L. Moreover, our HG-SCGD-AES system demonstrated excellent repeatability (<3% peak height relative standard deviation) and more than 2 orders of linear dynamic range. The optimal operating conditions are outlined herein, and the analytical performance of the system is evaluated as described. Furthermore, our method was applied for the analysis of Sn, Ge, and Se in both environmental and biological samples, and the obtained results were in good agreement with reference values.

摘要

我们在此描述了一种新的氢化物发生(HG)方法,该方法与新设计的大气压溶液阴极辉光放电(SCGD)光谱技术相结合,用于痕量锡、锗和硒的测定。在这种新的 SCGD 过程中,允许使用空心钛管作为阳极和进样口同时进行气体引入。在这些实验中,通过氢化物发生器将分析物转化为挥发性氢化物,并将其引入 SCGD 系统的近阳极区域,在那里通过原子发射光谱法(AES)直接检测。选择性和灵敏度都得到了显著提高,这反映在检测限(DL)提高了 3 个数量级,此外,无需色谱分离即可成功进行硒的价态分析。在没有严格的样品预处理过程和减少电解质消耗的情况下,确定了 Sn、Ge 和 Se 的检测限分别为 0.8、0.5 和 0.2μg·L。此外,我们的 HG-SCGD-AES 系统具有出色的重复性(<3%峰高相对标准偏差)和超过 2 个数量级的线性动态范围。在此概述了最佳操作条件,并对系统的分析性能进行了评估。此外,我们的方法还用于环境和生物样品中 Sn、Ge 和 Se 的分析,所得结果与参考值吻合良好。

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