Laboratoire MAPIEM, EA 4323, Université de Toulon, 83041 Toulon Cedex 9, France.
Laboratoire de Substances naturelles et de Synthèse organique, Université des Sciences et Techniques de Masuku, B.P. 901 Franceville, Gabon.
Biosens Bioelectron. 2018 Jul 30;112:156-161. doi: 10.1016/j.bios.2018.04.022. Epub 2018 Apr 21.
Electrochemical molecularly imprinted polymers (e-MIPs) were for the first time introduced in screen-printed carbon electrodes (SPCE) as the sensing element for the detection of an organic pollutant. To play this sensing role, a redox tracer was incorporated inside the binding cavities of a cross-linked MIP, as a functional monomer during the synthesis step. Ferrocenylmethyl methacrylate was used for this purpose. It was associated with 4-vinylpyridine as a co-functional monomer and ethylene glycol dimethacrylate as cross-linker for the recognition of the endocrine disruptor, Bisphenol A (BPA), as a target. Microbeads of e-MIP and e-NIP (corresponding non-imprinted polymer) were obtained via precipitation polymerization in acetonitrile. The presence of ferrocene inside the polymers was assessed via FTIR and elemental analysis and the polymers microstructure was characterized by SEM and nitrogen adsorption/desorption experiments. Binding isotherms and batch selectivity experiments evidenced the presence of binding cavities inside the e-MIP and its high affinity for BPA compared to carbamazepine and ketoprofen. e-MIP (and e-NIP) microbeads were then incorporated in a graphite-hydroxyethylcellulose composite paste to prepare SPCE. Electrochemical properties of e-MIP-SPCE revealed a high sensitivity in the presence of BPA in aqueous medium compared to e-NIP-SPCE with a limit of detection (LOD) of 0.06 nM. Selectivity towards carbamazepine and ketoprofen was also observed with the e-MIP-SPCE.
电化学分子印迹聚合物(e-MIPs)首次被引入到丝网印刷碳电极(SPCE)中,作为检测有机污染物的传感元件。为了发挥这种传感作用,在交联 MIP 的结合腔中引入了一种氧化还原示踪剂,作为合成步骤中的功能单体。为此目的,使用了甲基丙烯酸二茂铁。它与 4-乙烯基吡啶作为共功能单体和乙二醇二甲基丙烯酸酯作为交联剂一起使用,以识别内分泌干扰物双酚 A(BPA)作为目标。通过在乙腈中的沉淀聚合获得了 e-MIP 和 e-NIP(相应的非印迹聚合物)的微球。通过傅里叶变换红外光谱(FTIR)和元素分析评估了聚合物中存在的二茂铁,并通过扫描电子显微镜(SEM)和氮吸附/解吸实验对聚合物的微观结构进行了表征。结合等温线和批量选择性实验证明了 e-MIP 中存在结合腔及其对 BPA 的高亲和力,与卡马西平和酮洛芬相比。然后将 e-MIP(和 e-NIP)微球掺入石墨-羟乙基纤维素复合糊剂中,以制备 SPCE。与 e-NIP-SPCE 相比,在水溶液中存在 BPA 时,e-MIP-SPCE 的电化学性质显示出高灵敏度,检测限(LOD)为 0.06 nM。e-MIP-SPCE 对卡马西平和酮洛芬也表现出选择性。