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利用从分离的电子芯片获得的 Pt 修饰的金微电极阵列快速批量注射分析 H(2)O(2)。

Fast batch injection analysis of H(2)O(2) using an array of Pt-modified gold microelectrodes obtained from split electronic chips.

机构信息

Centro de Ciências e Humanidades - Universidade Presbiteriana Mackenzie, São Paulo, SP, Brazil.

出版信息

Anal Chim Acta. 2011 Jun 24;696(1-2):53-8. doi: 10.1016/j.aca.2011.04.004. Epub 2011 Apr 12.

DOI:10.1016/j.aca.2011.04.004
PMID:21621032
Abstract

A fast and robust analytical method for amperometric determination of hydrogen peroxide (H(2)O(2)) based on batch injection analysis (BIA) on an array of gold microelectrodes modified with platinum is proposed. The gold microelectrode array (n=14) was obtained from electronic chips developed for surface mounted device technology (SMD), whose size offers advantages to adapt them in batch cells. The effect of the dispensing rate, volume injected, distance between the platinum microelectrodes and the pipette tip, as well as the volume of solution in the cell on the analytical response were evaluated. The method allows the H(2)O(2) amperometric determination in the concentration range from 0.8 μmolL(-1) to 100 μmolL(-1). The analytical frequency can attain 300 determinations per hour and the detection limit was estimated in 0.34 μmolL(-1) (3σ). The anodic current peaks obtained after a series of 23 successive injections of 50 μL of 25 μmolL(-1) H(2)O(2) showed an RSD<0.9%. To ensure the good selectivity to detect H(2)O(2), its determination was performed in a differential mode, with selective destruction of the H(2)O(2) with catalase in 10 mmolL(-1) phosphate buffer solution. Practical application of the analytical procedure involved H(2)O(2) determination in rainwater of São Paulo City. A comparison of the results obtained by the proposed amperometric method with another one which combines flow injection analysis (FIA) with spectrophotometric detection showed good agreement.

摘要

提出了一种基于金微电极阵列上的铂修饰的批量进样分析(BIA)快速灵敏测定过氧化氢(H₂O₂)的分析方法。金微电极阵列(n=14)是从用于表面贴装器件技术(SMD)的电子芯片中获得的,其尺寸有利于适应批量池。评估了分配速度、注入体积、铂微电极与移液管尖端之间的距离以及池中的溶液体积对分析响应的影响。该方法允许在 0.8 μmolL(-1)至 100 μmolL(-1)的浓度范围内进行 H₂O₂的电流测定。分析频率可达 300 次/小时,检测限估计为 0.34 μmolL(-1)(3σ)。在连续 23 次注入 50 μL 25 μmolL(-1)H₂O₂后获得的阳极电流峰显示 RSD<0.9%。为确保良好的选择性以检测 H₂O₂,在 10 mmolL(-1)磷酸盐缓冲溶液中用过氧化氢酶选择性破坏 H₂O₂,以差分模式进行其测定。该分析程序的实际应用涉及到圣保罗市雨水的 H₂O₂测定。与结合流动注射分析(FIA)和分光光度检测的另一种方法相比,所提出的电流测定法的结果具有良好的一致性。

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