Alonso-Lomillo M Asunción, Domínguez-Renedo Olga
Analytical Chemistry Department, Faculty of Sciences, University of Burgos, Pza. Misael Bañuelos S/n, 09001, Burgos, Spain.
Analytical Chemistry Department, Faculty of Sciences, University of Burgos, Pza. Misael Bañuelos S/n, 09001, Burgos, Spain.
Talanta. 2023 Feb 1;253:123936. doi: 10.1016/j.talanta.2022.123936. Epub 2022 Sep 17.
This work describes a molecularly imprinted (MIP) sensor, based on the electropolymerization of pyrrole on a glassy carbon electrode (GCE), for the determination of ethanethiol. Ethanethiol was used as a template molecule for the formation of cavities in the imprinted polymer. The effect of molar ratios template molecules/functional monomers and time needed to remove the template were optimized. The developed MIP/GCE sensor presented a linear range from 6.1 to 32.4 mg L with capability detection and reproducibility values of 7.2 mg L and 10.4%, respectively. The sensitivity of the developed sensor was enhanced by the incorporation of gold nanoparticles (AuNPs). The AuNPs/MIP/GCE showed a capability of detection and reproducibility values of 0.4 mg L and 4.1%, respectively (calibration range from 0.3 to 3.1 mg L). The sensor was successfully applied to the determination of ethanethiol in spiked wine samples with recoveries ranging from 99% to 107%.
这项工作描述了一种基于吡咯在玻碳电极(GCE)上进行电聚合的分子印迹(MIP)传感器,用于测定乙硫醇。乙硫醇用作模板分子以在印迹聚合物中形成空腔。优化了模板分子与功能单体的摩尔比以及去除模板所需的时间的影响。所开发的MIP/GCE传感器的线性范围为6.1至32.4 mg/L,检测限和重现性值分别为7.2 mg/L和10.4%。通过掺入金纳米颗粒(AuNPs)提高了所开发传感器的灵敏度。AuNPs/MIP/GCE的检测限和重现性值分别为0.4 mg/L和4.1%(校准范围为0.3至3.1 mg/L)。该传感器已成功应用于加标葡萄酒样品中乙硫醇的测定,回收率在99%至107%之间。