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将基于增塑聚氯乙烯的阳离子选择性光导系统集成到基于纸张的分析装置中,用于比色法钠离子检测。

Implementation of a plasticized PVC-based cation-selective optode system into a paper-based analytical device for colorimetric sodium detection.

机构信息

Department of Applied Chemistry, Keio University, 3-14-1 Hiyoshi, Kohoku-ku, Yokohama 223-8522, Japan.

出版信息

Analyst. 2018 Feb 7;143(3):678-686. doi: 10.1039/c7an01952a. Epub 2018 Jan 4.

Abstract

On the example of a colorimetric sodium assay, this work demonstrates the implementation of a classical cation-exchange optode relying on an ionophore-doped plasticized PVC membrane into a paper-based analytical device (PAD). An ion-selective optode (ISO) system has been arranged into a vertically-assembled PAD (vPAD) integrating a pH-buffering function. Capillary force-driven sample liquid transportation through the paper matrix enabled pH-adjustment prior to the optical detection of the analyte cation. Functionalized paper layers with inkjet-deposited ISO membranes were combined with whole device lamination to attain a stable ion-exchange equilibrium required for the theoretical behavior of ISOs. Whole device lamination limited rapid evaporation of sample liquid on vPADs to avoid an increase of target concentration. Sigmoidal response curves between 10 and 1 M of Na at pH 5.0-7.0 have been confirmed on vPADs, following the theory defined by the cation-exchange equilibrium reaction. Finally, the influence of the cellulosic paper substrate matrix acting as a cation-exchanger on the optode response behavior has been evaluated and compared with conventional plastic film optodes.

摘要

以比色法钠离子分析为例,本工作展示了将基于离子载体掺杂的增塑 PVC 膜的经典阳离子交换光学位点转化为基于纸的分析器件 (PAD) 的过程。已将离子选择性光学位点 (ISO) 系统布置成垂直组装的 PAD (vPAD),其中集成了 pH 缓冲功能。通过纸基质的毛细作用力驱动样品液传输,可在光学检测分析物阳离子之前进行 pH 调节。通过喷墨沉积 ISO 膜的功能化纸层与整个器件层压相结合,以获得 ISO 理论行为所需的稳定离子交换平衡。整个器件层压限制了 vPAD 上样品液的快速蒸发,以避免目标浓度的增加。在 pH 5.0-7.0 范围内,10 至 1 M 的 Na 呈现出与阳离子交换平衡反应定义的理论相符的阶跃响应曲线。最后,评估了作为阳离子交换剂的纤维素纸基质对光学位点响应行为的影响,并与传统的塑料膜光学位点进行了比较。

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