Department of Chemistry, Faculty of Science, Chulalongkorn University, Bangkok, Thailand.
Department of Chemistry, Faculty of Science, Chulalongkorn University, Bangkok, Thailand.
Talanta. 2021 Dec 1;235:122715. doi: 10.1016/j.talanta.2021.122715. Epub 2021 Jul 13.
A total integrated electrocolorimetric sensing approach consisting of gel-based electromembrane extraction and colorimetric detection in a one-step process was developed. This system was designed using colorimetric reagents preadded to the agarose gel for the determination of the following two model analytes: iodide and hexavalent chromium [Cr(VI)]. In this system, when a voltage was applied, the analytes were extracted and transferred from the sample solution (donor phase) to the gel (acceptor phase). The analytes then simultaneously reacted with the colorimetric reagents inside the gel, yielding blue and violet colors for iodide and Cr(VI), respectively. These colors were then analyzed using a portable spectrometer and could also be distinguished with the naked eye. Parameters affecting the extraction efficiency were studied and optimized for both analytes. The gel composition for iodide detection was 4% (w/v) agarose, 5% (v/v) HO, and 1% (w/v) starch in 2 mM HCl. The gel composition for Cr(VI) detection was 2% (w/v) agarose and 1% (w/v) DPC in 0.5 mM HNO. Both analytes were extracted at an applied potential of 50 V, an extraction time of 15 min and a stirring rate of 600 rpm. Under the optimized conditions, the developed systems provided linear responses within 15 min for iodide concentrations ranging from 50 to 250 μg L with a detection limit of 18 μg L and for Cr(VI) concentrations ranging from 30 to 125 μg L with a detection limit of 5 μg L. Finally, these systems were successfully applied to the determination of iodide in iodide food supplement samples and Cr(VI) in drinking water samples, showing a negligible matrix effect. This integration could also be extended to other analytes and detection systems to develop sensitive, on-site, and environmentally friendly sensing approaches.
本文提出了一种基于凝胶的电渗析萃取与比色检测相结合的整体集成电化学生物传感方法。该系统采用预先添加到琼脂糖凝胶中的比色试剂设计,用于测定以下两种模型分析物:碘化物和六价铬[Cr(VI)]。在该系统中,当施加电压时,分析物从样品溶液(供体相)中被萃取并转移到凝胶(受体相)中。然后,分析物与凝胶内的比色试剂同时反应,分别产生碘化物和 Cr(VI)的蓝色和紫色。这些颜色随后使用便携式分光光度计进行分析,也可以用肉眼区分。研究并优化了两种分析物的萃取效率的影响参数。用于检测碘化物的凝胶组成是 4%(w/v)琼脂糖、5%(v/v)HO 和 2mM HCl 中的 1%(w/v)淀粉。用于检测 Cr(VI)的凝胶组成是 2%(w/v)琼脂糖和 0.5mM HNO 中的 1%(w/v)DPC。两种分析物均在 50V 的施加电位、15 分钟的萃取时间和 600rpm 的搅拌速率下萃取。在优化条件下,所开发的系统在 15 分钟内为碘化物浓度范围从 50 到 250μg/L 提供了线性响应,检测限为 18μg/L,为 Cr(VI)浓度范围从 30 到 125μg/L 提供了线性响应,检测限为 5μg/L。最后,这些系统成功地应用于碘化物食品补充剂样品中碘化物和饮用水样品中 Cr(VI)的测定,显示出可忽略的基质效应。这种集成还可以扩展到其他分析物和检测系统,以开发敏感、现场和环保的传感方法。