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An electrochemical MIP sensor for selective detection of salbutamol based on a graphene/PEDOT:PSS modified screen printed carbon electrode

机译:基于石墨烯/ PEDOT:PSS修饰的丝网印刷碳电极的选择性检测沙丁胺醇的电化学MIP传感器

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摘要

A sensitive electrochemical MIP sensor for salbutamol detection based on a graphene nanocomposite modified screen-printed carbon electrode was successfully demonstrated. Insertion of the graphene/PEDOT:PSS layer prior to the MIP was aimed at enhancing the sensitivity of the sensor. Selection of a functional monomer was carried out using 1H-NMR titration and a computational calculation was used to further investigate the template-monomer interactions. The MIP layer was constructed on top of the highly conductive nanocomposite by co-electropolymerization of 3-aminophenylboronic acid and o-phenylenediamine in the presence of salbutamol. Using differential pulse voltammetry under optimal conditions, a linear response in the range of 1?nM to 1.2 μM, with an exceptional detection limit of 100 pM (S/N = 3) was obtained. The established sensor exhibited good reproducibility, reusability and stability. Additionally, good selectivity in discriminating salbutamol from other structurally related compounds could also be realized. Determination of salbutamol in real swine meat and feed samples was also successfully carried out with good recovery results.
机译:成功地证明了基于石墨烯纳米复合材料修饰的丝网印刷碳电极的用于沙丁胺醇检测的灵敏电化学MIP传感器。在MIP之前插入石墨烯/ PEDOT:PSS层的目的是增强传感器的灵敏度。使用 1 H-NMR滴定法选择功能性单体,并通过计算方法进一步研究模板-单体相互作用。在沙丁胺醇存在下,通过3-氨基苯基硼酸和 o -苯二胺的共电聚合反应,在高导电性纳米复合材料的顶部构建了MIP层。在最佳条件下使用差分脉冲伏安法,可获得1?nM至1.2μM的线性响应,并具有100 pM(S / N = 3)的异常检出限。建立的传感器表现出良好的再现性,可重复使用性和稳定性。另外,还可以实现区分沙丁胺醇与其他结构相关化合物的良好选择性。猪肉和饲料样品中沙丁胺醇的测定也成功进行,回收率良好。

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