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用于阳极溶出伏安法的全氟磺酸涂层铋膜电极和全氟磺酸涂层汞膜电极与电感耦合等离子体质谱联用在线分析

Nafion-coated bismuth film and nafion-coated mercury film electrodes for anodic stripping voltammetry combined on-line with ICP-mass spectrometry.

作者信息

Cao Grace X, Jimenez Omar, Zhou Feimeng, Xu Maotian

机构信息

Department of Chemistry and Biochemistry, California State University, 90032, Los Angeles, CA, USA.

College of Chemistry and Chemical Engineering, Central South University, Hunan, China.

出版信息

J Am Soc Mass Spectrom. 2006 Jul;17(7):945-952. doi: 10.1016/j.jasms.2006.03.001. Epub 2006 May 15.

Abstract

Nafion-coated bismuth film electrodes (NCBFEs) and Nafion-coated mercury film electrodes (NCMFEs) were used to electrochemically preconcentrate metal analytes for subsequent analysis by inductively coupled plasma-mass spectrometry (ICP-MS). Either type of electrodes is part of a thin-layer electrochemical flow cell that is positioned upstream of a microconcentric nebulizer for the ICP-MS. Performances of these electrodes were compared in terms of the analytical "figures of merit" (e.g., dynamic ranges, reproducibility, hydrodynamic stability, and elimination of matrix effects detrimental to ICP-MS). The coupled technique (ASV-ICP-MS) is found to possess a wide dynamic range (at least 4 to 5 orders of magnitude) and to be reproducible. Both electrodes are much more stable than the thin mercury film electrode (TMFE) traditionally used for ASV-ICP-MS, with the lifetime of the NCBFE exceeding 8 h. Adopting these electrodes for ASV-ICP-MS overcomes the problems associated with a TMFE, the erosion of which decreases the sample throughput, affects the analysis precision, and contaminates conventional glass nebulizers and spray chambers of the spectrometer. The medium exchange procedure inherent in ASV is successfully implemented with a two-valve flow injection system for the accumulation of trace Cd2+ into the electrode from a certified seawater sample, followed by stripping Cd into a solution that is compatible to the ICP-MS operation.

摘要

采用涂有全氟磺酸的铋膜电极(NCBFE)和涂有全氟磺酸的汞膜电极(NCMFE)对金属分析物进行电化学预富集,随后通过电感耦合等离子体质谱(ICP-MS)进行分析。这两种电极均为薄层电化学流通池的一部分,该流通池位于ICP-MS的微同心雾化器上游。根据分析“品质因数”(例如动态范围、重现性、流体动力学稳定性以及消除对ICP-MS有害的基体效应)对这些电极的性能进行了比较。发现联用技术(ASV-ICP-MS)具有较宽的动态范围(至少4至5个数量级)且具有重现性。与传统用于ASV-ICP-MS的薄汞膜电极(TMFE)相比,这两种电极都更加稳定,其中NCBFE的使用寿命超过8小时。在ASV-ICP-MS中采用这些电极克服了与TMFE相关的问题,TMFE的腐蚀会降低样品通量、影响分析精度并污染光谱仪的传统玻璃雾化器和喷雾室。通过双阀流动注射系统成功实现了ASV固有的介质交换程序,用于从经认证的海水样品中将痕量Cd2+富集到电极中,随后将Cd溶出到与ICP-MS操作兼容的溶液中。

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