电位铁(III)阳离子传感器

Pub Date : 2023-05-17 DOI:10.15255/kui.2022.074
Andrea Paut, Ante Prkić, Ivana Mitar, Lucija Guć
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引用次数: 0

摘要

电化学传感器具有将分析物和电极之间发生的电化学反应转化为有用信号的能力。电位传感器是电化学传感器家族中的一个重要成员,也是离子选择电极,近一个世纪以来一直是许多研究的焦点。它们的不断发展以及与其他科学技术领域的发展相结合,使它们有了广泛的应用。离子选择电极的特性,如方法简单、成本低、传感器尺寸小、响应快和可靠性,使其成为其他方法的宝贵竞争对手,可以在对样品进行最小或不进行预处理的情况下测定不同真实样品中分析物的浓度。考虑到铁(III)阳离子在人体和环境中的广泛分布和重要性,非常需要开发分析工具来快速有效地测定它们。本文介绍了不同的文献来源,涉及用于测定铁(III)阳离子的电位传感器的开发,重点是过去十年发表的科学论文。显示了传感器的活性中心、其线性动态范围、检测极限以及取决于分析物浓度变化的电势变化。已经发现,Fe3+阳离子可以在许多真实样品中成功测定,如药物制剂、生物样品、不同的水样(饮用水、废物、矿物…)、绿茶和红茶等食品。由于其线性范围广、检测限低,以及可应用的真实样品范围广,离子选择电极有望取代一些更复杂的铁(III)阳离子测定方法。
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Potenciometrijski senzori za određivanje željezovih(III) kationa
Electrochemical sensors have the ability to convert the electrochemical reaction that occurs be-tween the analyte and the electrode into a useful signal. Potentiometric sensors, ion-selective electrodes, an important member of the electrochemical sensor family, have been the focus of much research for almost a century. Their constant development and combination with the development of other scientific and technological fields have given them a wide range of applications. Properties of ion-selective electrodes, such as simplicity of method, low cost, small sensor size, fast response, and reliability, have made them valuable competitors of other methods for determining the concentration of analytes in different real samples with minimal or no pretreatment of the samples. Considering the wide distribution and great importance of iron(III) cations in the human body and environment, there is a great need to develop analytical tools for their rapid and effi - cient determination. This paper, presents different literature sources dealing with the development of potentiometric sensors for the determination of iron(III) cations, focusing on scientific papers published in the last decade. The active centre of the sensor, its linear dynamic range, the limit of detection, and the change in potential depending on the change in analyte concentration are shown. It has been found that Fe 3+ cations can be determined successfully in numerous real samples, such as pharmaceutical preparations, biological samples, different water samples (drinking, waste, mineral...), food products such as green and black tea, etc. Thanks to the wide linear range, low detection limits, and a wide range of real samples in which they can be applied, ion-selective electrodes are promising candidates for replacing some more sophisticated methods for the determination of iron(III) cations.
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