School of Chemical Engineering, Northwest University , Xi'an 710069, P. R. China.
Key Laboratory of Coastal Environmental Processes and Ecological Remediation, Yantai Institute of Coastal Zone Research (YIC), Chinese Academy of Sciences (CAS), Shandong Provincial Key Laboratory of Coastal Environmental Processes, YICCAS , Yantai, Shandong 264003, P. R. China.
Anal Chem. 2018 Jan 2;90(1):657-662. doi: 10.1021/acs.analchem.7b03432. Epub 2017 Dec 19.
Molecularly imprinted polymer (MIP)-based polymeric membrane potentiometric sensors have been successfully developed for determination of organic compounds in their ionic and neutral forms. However, most of the MIP receptors in potentiometric sensors developed so far are insoluble and cannot be well dissolved in the polymeric membranes. The heterogeneous molecular recognitions between the analytes and MIPs in the membranes are inefficient due to the less available binding sites of the MIPs. Herein we describe a novel polymeric membrane potentiometric sensor using a soluble MIP (s-MIP) as a receptor. The s-MIP is synthesized by the swelling of the traditional MIP at a high temperature. The obtained MIP can be dissolved in the plasticized polymeric membrane for homogeneous binding of the imprinted polymer to the target molecules. By using neutral bisphenol AF as a model, the proposed method exhibits an improved sensitivity compared to the conventional MIP-based sensor with a lower detection limit of 60 nM. Moreover, the present sensor exhibits an excellent selectivity over other phenols. We believe that s-MIPs can provide an appealing substitute for the traditional insoluble MIP receptors in the development of polymeric membrane-based electrochemical and optical sensors.
基于分子印迹聚合物(MIP)的聚合膜电位传感器已成功开发用于测定离子和中性形式的有机化合物。然而,迄今为止开发的电位传感器中的大多数 MIP 受体是不溶的,不能很好地溶解在聚合膜中。由于 MIP 的可用结合位点较少,因此在膜中分析物与 MIP 之间的异质分子识别效率较低。本文介绍了一种使用可溶性 MIP(s-MIP)作为受体的新型聚合膜电位传感器。s-MIP 通过在高温下使传统 MIP 溶胀而合成。所得 MIP 可溶解在增塑聚合膜中,以实现印迹聚合物与目标分子的均相结合。以中性双酚 AF 为模型,与传统基于 MIP 的传感器相比,该方法的灵敏度得到了提高,检测限低至 60 nM。此外,该传感器对其他酚类具有优异的选择性。我们相信,s-MIP 可以为基于聚合膜的电化学和光学传感器的开发提供一种有吸引力的传统不溶性 MIP 受体替代品。