Adding colour to ion-selective membranes.

IF 5.6 1区 化学 Q1 CHEMISTRY, ANALYTICAL Talanta Pub Date : 2025-05-01 Epub Date: 2025-01-02 DOI:10.1016/j.talanta.2024.127497
Dorota Buczyńska, Emilia Stelmach, Maria Jankowska, Anna Ruszczyńska, Piotr Piątek, Krzysztof Maksymiuk, Agata Michalska
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Abstract

An idea of using ion-exchanger salt containing optically active cations to prepare ion-selective membranes is proposed. Although the presence of an ion-exchanger in the composition of neutral ionophore based sensors is necessary, the choice of available salts for cation-selective sensors preparation, is usually limited to sodium or potassium compounds. In this work we propose application of an alternative salt, using a cation optically active both in absorption and emission mode as a mobile one. Thus, coloured ion-selective membranes can be obtained. This in turn opens new possibilities of monitoring the state of the receptor layer as well as allows direct analytical application of ion-selective membranes in simple optical mode with all benefits related to eliminating the necessity of using reference electrodes. As a model system Nile blue derivative of tetrakis[3,5-bis(trifluoromethyl)phenyl]borate ion-exchanger was prepared and used to obtain potassium or calcium selective sensors. Selective exchange of ions between the membrane and solution, leading to an increase in optical signal of the solution, can be used to quantify the presence of analyte ions. Thus the sensor pretreatment process is becoming a source of analytical information. The applicability of this approach was verified in determining the presence of potassium ions in the vast majority of interfering ions, e.g. present as impurities in the reagent grade calcium chloride. The resulting potassium ions contents was well comparable with values obtained in course of ICP-MS approach.

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给离子选择膜增加颜色。
提出了用含光活性阳离子的离子交换盐制备离子选择膜的思路。虽然在中性离子载体传感器的组成中离子交换剂的存在是必要的,但用于阳离子选择性传感器制备的可用盐的选择通常仅限于钠或钾化合物。在这项工作中,我们提出了一种替代盐的应用,使用在吸收和发射模式中都具有光学活性的阳离子作为移动盐。因此,彩色离子选择膜可以得到。这反过来又开辟了监测受体层状态的新可能性,并允许在简单光学模式下直接分析离子选择膜的应用,其所有好处都与消除使用参考电极的必要性有关。制备了四[3,5-双(三氟甲基)苯基]硼酸盐离子交换剂的尼罗蓝衍生物作为模型体系,并用于制备钾或钙选择性传感器。膜和溶液之间离子的选择性交换,导致溶液光信号的增加,可以用来量化分析物离子的存在。因此,传感器预处理过程正在成为分析信息的来源。在确定绝大多数干扰离子中钾离子的存在时,例如在试剂级氯化钙中作为杂质存在时,验证了该方法的适用性。所得钾离子含量与ICP-MS法测定的值具有良好的可比性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Talanta
Talanta 化学-分析化学
CiteScore
12.30
自引率
4.90%
发文量
861
审稿时长
29 days
期刊介绍: Talanta provides a forum for the publication of original research papers, short communications, and critical reviews in all branches of pure and applied analytical chemistry. Papers are evaluated based on established guidelines, including the fundamental nature of the study, scientific novelty, substantial improvement or advantage over existing technology or methods, and demonstrated analytical applicability. Original research papers on fundamental studies, and on novel sensor and instrumentation developments, are encouraged. Novel or improved applications in areas such as clinical and biological chemistry, environmental analysis, geochemistry, materials science and engineering, and analytical platforms for omics development are welcome. Analytical performance of methods should be determined, including interference and matrix effects, and methods should be validated by comparison with a standard method, or analysis of a certified reference material. Simple spiking recoveries may not be sufficient. The developed method should especially comprise information on selectivity, sensitivity, detection limits, accuracy, and reliability. However, applying official validation or robustness studies to a routine method or technique does not necessarily constitute novelty. Proper statistical treatment of the data should be provided. Relevant literature should be cited, including related publications by the authors, and authors should discuss how their proposed methodology compares with previously reported methods.
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