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负载于离子交换膜上的多孔电极作为超临界流体色谱的电化学检测器。

Porous electrodes supported on ion-exchange membranes as electrochemical detectors for supercritical fluid chromatography.

作者信息

Toniolo Rosanna, Comisso Nicola, Schiavon Gilberto, Bontempelli Gino

机构信息

Department of Chemical Sciences and Technology, University of Udine, Via Cotonificio 108, I-33100 Udine, Italy.

出版信息

Anal Chem. 2004 Apr 1;76(7):2133-7. doi: 10.1021/ac0351421.

Abstract

A conveniently assembled electrochemical cell, exploiting a porous electrode supported on a moist perfluorinated ion-exchange polymer, is proposed for profitable electrochemical detection in supercritical fluid chromatography. It consists of a porous Pt working electrode, contacted by the mobile phase from the chromatographic column, which is chemically deposited onto one side of a Nafion membrane. The rear uncoated side of this membrane, acting as a solid polymer electrolyte, is contacted by an electrolyte solution (1 M NaCl) contained in an internal compartment equipped with a Pt counter electrode and a Ag/AgCl, Cl(-) 1 M reference electrode. Ferrocene, eluted with supercritical carbon dioxide through a Spherisorb column installed in a supercritical fluid chromatographic system, was used as electroactive prototype analyte to test the performance of this detector, which turned out to be quite better than that provided by a conventional on-line UV absorbance detector. The recorded peaks were characterized by both a good reproducibility (4.5%) and a linear dependence of their height and area, which extended over a wide concentration range ( approximately 3 orders of magnitude). Moreover, they were not interfered by possible solvent front, unlike peaks recorded by the UV detector. The detection limit, estimated for a signal-to-noise ratio of 3 (4.2 x 10(-11) mol), was lower by approximately 1 order of magnitude than that found for the UV detector. Finally, the long-term stability of this detector was satisfactory in that only a approximately 6% decrease in the current responses was observed after a rather long period (2 months) of continuous use.

摘要

本文提出了一种组装简便的电化学池,该电池利用支撑在潮湿全氟离子交换聚合物上的多孔电极,用于超临界流体色谱中的高效电化学检测。它由一个多孔铂工作电极组成,该电极与来自色谱柱的流动相接触,流动相通过化学沉积作用于Nafion膜的一侧。该膜未涂覆的背面用作固体聚合物电解质,与内部隔室中包含的电解质溶液(1 M NaCl)接触,该隔室配备有铂对电极和Ag/AgCl、1 M Cl⁻参比电极。以二茂铁作为电活性原型分析物,通过安装在超临界流体色谱系统中的Spherisorb柱,用超临界二氧化碳进行洗脱,以测试该检测器的性能,结果表明该检测器的性能比传统的在线紫外吸收检测器要好得多。记录的峰具有良好的重现性(4.5%),其高度和面积呈线性关系,且在较宽的浓度范围内(约3个数量级)均成立。此外,与紫外检测器记录的峰不同,它们不受可能的溶剂前沿的干扰。估计信噪比为3时的检测限为4.2×10⁻¹¹ mol,比紫外检测器的检测限低约1个数量级。最后,该检测器的长期稳定性令人满意,在连续使用相当长一段时间(2个月)后,仅观察到电流响应下降约6%。

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