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用于痕量级电位检测的薄聚合物膜离子选择性电极。

Thin polymeric membrane ion-selective electrodes for trace-level potentiometric detection.

机构信息

CAS Key Laboratory of Coastal Environmental Processes and Ecological Remediation, Yantai Institute of Coastal Zone Research (YIC), Chinese Academy of Sciences (CAS), Shandong Key Laboratory of Coastal Environmental Processes, YICCAS, Yantai, Shandong, 264003, PR China; University of Chinese Academy of Sciences, Beijing, 100049, PR China.

CAS Key Laboratory of Coastal Environmental Processes and Ecological Remediation, Yantai Institute of Coastal Zone Research (YIC), Chinese Academy of Sciences (CAS), Shandong Key Laboratory of Coastal Environmental Processes, YICCAS, Yantai, Shandong, 264003, PR China; Center for Ocean Mega-Science, Chinese Academy of Sciences, Qingdao, Shandong 266071, PR China.

出版信息

Anal Chim Acta. 2020 Dec 1;1139:1-7. doi: 10.1016/j.aca.2020.09.024. Epub 2020 Sep 13.

Abstract

In this work, we describe a novel method to improve the detection limits of the non-classical polymeric membrane ion-selective electrodes (ISEs) which are conditioned with highly discriminated ions instead of primary ions. It is based on a thin-layer ISE membrane with a thickness of 5 μm, which is coated on ordered mesoporous carbon used as solid contact. The diffusion of the primary ion from the surface of the sensing membrane to the bulk of the membrane could be avoided by the proposed thin membrane configuration. Since the detection sensitivity of the non-classical ISEs depends on the accumulation of the primary ion in the interfacial layer of the sensing membrane, a lower detection limit can be obtained. By using the copper ion as a model, the present potentiometric sensor shows a significantly improved detection sensitivity compared to the conventional ISE with a membrane thickness of ca. 200 μm. Low detection limits of 0.29 and 0.53 nM can be obtained in 0.01 and 0.5 M NaCl, respectively. In addition, the proposed sensor exhibits an excellent reversibility by using a neutral proton-selective ionophore incorporated in the thin membrane.

摘要

在这项工作中,我们描述了一种改进非经典聚合膜离子选择性电极(ISE)检测限的新方法,该方法使用高分辨离子而非主离子对电极进行预处理。该方法基于厚度为 5μm 的薄膜 ISE 膜,该膜涂覆在用作固体接触的有序介孔碳上。通过所提出的薄膜结构,可以避免主离子从传感膜表面扩散到膜本体。由于非经典 ISE 的检测灵敏度取决于主离子在传感膜界面层中的积累,因此可以获得更低的检测限。以铜离子为例,与膜厚约为 200μm 的传统 ISE 相比,本电位传感器显示出显著提高的检测灵敏度。在 0.01 和 0.5M NaCl 中,分别可以获得 0.29 和 0.53 nM 的低检测限。此外,通过在薄膜中加入中性质子选择性离子载体,所提出的传感器表现出优异的可逆性。

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