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基于多功能分子印迹受体的聚合物膜电位传感器用于双酚 A 的灵敏检测。

Multifunctional Molecularly Imprinted Receptor-Based Polymeric Membrane Potentiometric Sensor for Sensitive Detection of Bisphenol A.

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, People's Republic of China.

Yantai Centre for Promotion of Science and Technology Innovation, Yantai, Shandong 264003, People's Republic of China.

出版信息

Anal Chem. 2022 Jun 7;94(22):7795-7803. doi: 10.1021/acs.analchem.1c05444. Epub 2022 May 20.

Abstract

Molecularly imprinted polymer (MIP)-based polymeric membrane potentiometric sensors have become an attractive tool for detection of organic species. However, the MIP receptors in potentiometric sensors developed so far are usually prepared by only using single functional monomers. This may lead to low affinities of the MIP receptors due to the lack of diversity of the functional groups, thus resulting in low detection sensitivity of the potentiometric sensors. Additionally, these classical MIP receptors are nonconductive polymers, which are undesirable for the fabrication of an electrochemical sensor. Herein, we describe a novel multifunctional MIP receptor-based potentiometric sensor. The multifunctional MIP receptor is prepared by using two functional monomers, methacrylic acid, and 3-vinylaniline with a dual functionality of both recognition and conduction properties. The poly(aniline) groups are introduced into the methacrylic acid-based MIP by postoxidation of the aniline monomer. Such poly(aniline) groups not only serve as the additional functional groups for selective recognition, but also work as a conducting polymer. The obtained multifunctional MIP receptor shows a high binding capacity and an excellent electron-transfer ability. By using bisphenol A as a model, the proposed multifunctional MIP sensor exhibits a largely improved sensitivity and low noise levels compared to the conventional MIP sensor. We believe that the proposed MIP-based sensing strategy provides a general and facile way to fabricate sensitive and selective MIP-based electrochemical sensors.

摘要

基于分子印迹聚合物(MIP)的聚合物膜电位传感器已成为检测有机物质的一种有吸引力的工具。然而,迄今为止开发的电位传感器中的 MIP 受体通常仅使用单一功能单体制备。由于功能基团的多样性不足,这可能导致 MIP 受体的亲和力降低,从而导致电位传感器的检测灵敏度降低。此外,这些经典的 MIP 受体是非导电聚合物,这对于电化学传感器的制造是不理想的。在此,我们描述了一种基于新型多功能 MIP 受体的电位传感器。多功能 MIP 受体是通过使用两种功能单体甲基丙烯酸和 3-丙烯酰苯胺制备的,这两种单体都具有识别和传导性能的双重功能。苯胺单体的氧化后将聚(苯胺)基团引入到基于甲基丙烯酸的 MIP 中。这样的聚(苯胺)基团不仅用作选择性识别的附加功能基团,而且还用作导电聚合物。所获得的多功能 MIP 受体表现出高结合能力和优异的电子转移能力。以双酚 A 为模型,与传统的 MIP 传感器相比,所提出的多功能 MIP 传感器显示出灵敏度大大提高和噪声水平低的优点。我们相信,所提出的基于 MIP 的传感策略为制备敏感和选择性的基于 MIP 的电化学传感器提供了一种通用且简便的方法。

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