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光化学蒸气发生法用于锗:钴/氯离子和气-液界面的协同效应。

Photochemical vapor generation for germanium: synergistic effect from cobalt/chloride ions and air-liquid interfaces.

机构信息

State Key Laboratory of Geohazard Prevention and Geoenvironment Protection, College of Earth Sciences, Chengdu University of Technology, Sichuan, 610059, China.

出版信息

Anal Bioanal Chem. 2022 Jul;414(18):5709-5717. doi: 10.1007/s00216-022-04126-z. Epub 2022 May 23.

Abstract

Photochemical vapor generation (PVG) of germanium (Ge) was first reported in this work. The synergistic effect from cobalt/chloride ions and air-liquid interfaces was found for the PVG of Ge. No obvious signal response was observed from the standard solution of Ge in 10% (v/v) formic acids (FAs) under UV irradiation. The addition of 300 mg L of Co and 30 mmol L of Cl resulted in enhanced photochemical reduction for Ge, and the introduction of air-liquid interfaces proceeding and succeeding the sample solution caused another 4.6 folds of enhancement in signal response of Ge. Under the selected condition, the limit of detection (LOD, 3σ, n = 11) was obtained to be 0.008 ng mL with inductively coupled plasma mass spectrometry (ICP MS) measurement. A good precision, expressed as a relative standard deviation (RSD, n = 7) of 2.0%, was found from replicated measurements of 2 ng mL of Ge. The generation efficiency was found to be no better than 9 ± 2%. The PVG mechanism of Ge was investigated in this work. The new finding is useful for understanding the principle of PVG, and further exploring the analytical and environmental application of PVG.

摘要

本文首次报道了锗的光化学蒸气发生(PVG)。发现钴/氯离子和气-液界面之间存在协同作用,有利于锗的 PVG。在紫外线照射下,标准浓度为 10%(体积比)甲酸(FA)的锗溶液中没有明显的信号响应。加入 300mg/L 的 Co 和 30mmol/L 的 Cl 后,导致锗的光化学还原增强,在样品溶液前后引入气-液界面又使锗的信号响应增强了 4.6 倍。在选定的条件下,用电感耦合等离子体质谱(ICP-MS)测量,检测限(LOD,3σ,n=11)为 0.008ng/mL。通过对 2ng/mL 的 Ge 进行 7 次重复测量,得到了良好的精密度,相对标准偏差(RSD,n=7)为 2.0%。生成效率不超过 9±2%。本文研究了锗的 PVG 机制。这一新发现有助于理解 PVG 的原理,并进一步探索 PVG 在分析和环境方面的应用。

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