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首页> 外文期刊>Electroanalysis >Simultaneous Detection of Ascorbic Acid and Hydrogen Peroxide by Flow-Injection Analysis with a Thin Layer Dual-Electrode Detector
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Simultaneous Detection of Ascorbic Acid and Hydrogen Peroxide by Flow-Injection Analysis with a Thin Layer Dual-Electrode Detector

机译:通过薄层双电极检测器的流动注射分析同时检测抗坏血酸和过氧化氢

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摘要

Based on preliminary voltammetric investigations at unmodified and modified electrodes in aqueous solutions buffered at different pHs, a profitable thin layer dual-electrode detector was developed for the selective and simultaneous determination of ascorbic acid (AA) and hydrogen peroxide present in the same samples. It consists of a small thickness (0.1?mm) cell, used as a detector for a flow injection system, in which a glassy carbon (GC) and a polyeugenol coated Pt electrode are encased. The GC electrode is selective for AA, thanks to the potential applied (0.3?V vs. Ag/AgCl, Cl~?_(sat)), while H2O2 alone can be oxidized at the Pt electrode (0.75?V), thanks to the size selectivity and electrostatic screen properties displayed by the polyeugenol coating layer which prevents oxidation of ascorbate anions. Repeatable sharp peaks (±4.5?%) were detected for both analytes over wide linear ranges (0.005-1.000?mM) and detection limits of about 10~(?6)?M (176?ppb) and 5×10~(?7)?M (16?ppb) were inferred for AA and H_2O_2 respectively. This flow injection approach was applied to the analysis of some orange-taste soft drinks, used as prototype real samples, spiked with controlled amounts of both analytes, thus inferring good recoveries which pointed out that deviations never exceeding 5?% affected the relevant accuracy.
机译:基于在不同pH值缓冲的水溶液中未修饰电极和修饰电极的初步伏安研究,开发了一种有利的薄层双电极检测器,用于选择性和同时测定相同样品中存在的抗坏血酸(AA)和过氧化氢。它由一个小厚度(0.1?mm)的电池组成,用作流动注射系统的检测器,其中装有玻璃碳(GC)和聚丁香酚涂层的Pt电极。由于施加的电势(0.3?V vs. Ag / AgCl,Cl〜?_(sat)),GC电极对AA是选择性的,而由于Pt电极上的H2O2可以被氧化(0.75?V),因此聚丁香酚涂层显示的尺寸选择性和静电屏蔽性能可防止抗坏血酸阴离子的氧化。在宽线性范围(0.005-1.000?mM)以及检出限分别为10〜(?6)?M(176?ppb)和5×10〜(??)的情况下,两种分析物均检测到可重复的尖峰(±4.5?%)。 7)分别推断出AA和H_2O_2的ΔM(16Δppb)。这种流动注射方法被用于分析一些橙味软饮料,这些橙汁软饮料用作原型真实样品,掺入了受控量的两种分析物,因此推断出良好的回收率,指出偏差从未超过5%会影响相关的准确性。

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