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首页> 外文期刊>Electrochimica Acta >Anion-exchange membrane-separated electrochemical cells enable the use of sacrificial anodes for hydrogen peroxide detection with enhanced dynamic ranges
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Anion-exchange membrane-separated electrochemical cells enable the use of sacrificial anodes for hydrogen peroxide detection with enhanced dynamic ranges

机译:阴离子交换膜分离的电化学电池使得能够使用具有增强的动态范围的过氧化氢检测的牺牲阳极

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摘要

Conventionally, both a working and counter electrode are housed in a single cell to form an electrochemical device for quantification of various analytes. For reductive sensing of hydrogen peroxide, however, analyte losses due to oxidation and catalytic decomposition on the counter electrode are significant, rendering such devices unsuitable for continuous monitoring of analyte concentration changes over time. Further, only chemically inert materials such as platinum can be used to construct the counter electrode, where their high cost limits potential applications. To circumvent such issues, an anion-exchange membrane was employed to fabricate a two-chamber device housing each electrode in each individual chamber, to physically prevent the counter electrode from interfering with working electrode analysis. Such a design enables the use of sacrificial anodes as the counter electrodes, thereby significantly expanding the linear range of detection, improving sensitivity, and reducing device cost. (C) 2017 Elsevier Ltd. All rights reserved.
机译:通常,工作和对电极都容纳在单个电池中以形成用于定量各种分析物的电化学装置。然而,对于过氧化氢的还原检测,对电极上的氧化和催化分解引起的分析物损失是显着的,使这种装置不适合在连续监测分析物浓度随时间的变化。此外,只能使用诸如铂的化学惰性材料来构造对电极,其高成本限制潜在的应用。为了规避这些问题,采用阴离子交换膜来制造在每个单独室中的两个腔室装置,以物理地防止对电极干扰工作电极分析。这种设计使得能够使用牺牲阳极作为反电极,从而显着地扩展了线性检测的线性范围,提高了灵敏度和降低设备成本。 (c)2017 Elsevier Ltd.保留所有权利。

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