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Paper-based microfluidic sampling and separation of analytes for potentiometric ion sensing

机译:基于纸的微流体采样和分析物分离,用于电位离子传感

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摘要

This work demonstrates a paper-based microfluidic sampling and separation platform that allows potentiometric sensing of chloride ions in presence of strongly interfering salicylate ions using a solid-contact ion-selective electrode as a detector. The device was composed of two pieces of paper with different shapes and pore sizes. A "T" shaped filter paper with a pore size of 12-25 was used as the detection zone. A filter paper with a pore size of 2.0 mu m was modified with a complexing agent (Fe3+ and served as the separation zone. The two pieces of the paper were joined together just like a jigsaw. A solid-contact Cl--selective electrode and a reference electrode were gently pressed onto the detection zone to create a direct contact between the electrodes and the solution absorbed in the paper. Utilizing the possibility to form stable complexes between Fe3+ and salicylate, the proposed platform enables the separation of salicylate and detection of chloride. This system offers a convenient platform for both sampling and separation of ions, in which sample pretreatment procedures can be simplified or avoided. 
机译:这项工作演示了基于纸的微流体采样和分离平台,该平台允许使用固体接触离子选择电极作为检测器,在强干扰水杨酸根离子的存在下对氯离子进行电位检测。该设备由两张形状和孔径不同的纸组成。孔径为12-25的“ T”形滤纸用作检测区域。用络合剂(Fe3 +)修饰孔径为2.0微米的滤纸,并用作分离区。将两张纸像竖锯一样连接在一起。将参比电极轻轻地压在检测区上,以在电极和吸收在纸中的溶液之间建立直接接触,利用Fe3 +和水杨酸盐之间形成稳定的络合物的可能性,该平台可实现水杨酸盐的分离和氯的检测该系统为离子的采样和分离提供了一个方便的平台,在该平台上可以简化或避免样品预处理程序。

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