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证明自动台式电化学工作站可用于开发多巴胺和扑热息痛传感器。

Proving the automatic benchtop electrochemical station for the development of dopamine and paracetamol sensors.

机构信息

Institute of Analytical Chemistry, Faculty of Chemical and Food Technology, Slovak University of Technology in Bratislava, Radlinského 9, Bratislava, 812 37, Slovakia.

Department of Chemistry and Biochemistry, Mendel University in Brno, Zemedelska 1, Brno, 613 00, Czech Republic.

出版信息

Mikrochim Acta. 2024 Jun 20;191(7):408. doi: 10.1007/s00604-024-06454-6.

DOI:10.1007/s00604-024-06454-6
PMID:38898321
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11186920/
Abstract

The introduced work represents an implementation of the automatic benchtop electrochemical station (BES) as an effective tool for the possibilities of high-throughput preparation of modified sensor/biosensors, speeding up the development of the analytical method, and automation of the analytical procedure for the determination of paracetamol (PAR) and dopamine (DOP) as target analytes. Within the preparation of gold nanoparticles modified screen-printed carbon electrode (AuNPs-SPCE) by electrodeposition, the deposition potential E, the deposition time t, and the concentration of HAuCl were optimized and their influence was monitored on 1 mM [Ru(NH)] redox probe and 50 μM DOP. The morphology of the AuNPs-SPCE prepared at various modification conditions was observed by SEM. The analytical performance of the AuNPs-SPCE prepared at different modification conditions was evaluated by a construction of the calibration curves of DOP and PAR. SPCE and AuNPs-SPCE at modification condition providing the best sensitivity to PAR and DOP, were successfully used to determine PAR and DOP in tap water by "spike-recovery" approach. The BES yields better reproducibility of the preparation of AuNPs-SPCE (RSD = 3.0%) in comparison with the case when AuNPs-SPCE was prepared manually by highly skilled laboratory operator (RSD = 7.0%).

摘要

引入的工作代表了自动台式电化学工作站(BES)的实现,作为一种有效工具,用于高通量制备修饰传感器/生物传感器的可能性,加快分析方法的开发,并实现用于测定扑热息痛(PAR)和多巴胺(DOP)的分析程序自动化,作为目标分析物。在通过电沉积制备金纳米粒子修饰的丝网印刷碳电极(AuNPs-SPCE)的过程中,优化了沉积电位 E、沉积时间 t 和 HAuCl 的浓度,并监测了它们对 1mM [Ru(NH)] 氧化还原探针和 50μM DOP 的影响。通过 SEM 观察了在各种修饰条件下制备的 AuNPs-SPCE 的形貌。通过构建 DOP 和 PAR 的校准曲线,评估了在不同修饰条件下制备的 AuNPs-SPCE 的分析性能。在提供对 PAR 和 DOP 最佳灵敏度的不同修饰条件下制备的 SPCE 和 AuNPs-SPCE,通过“加标回收”方法成功用于测定自来水中的 PAR 和 DOP。与由高度熟练的实验室操作员手动制备 AuNPs-SPCE 的情况相比,BES 产生了更好的 AuNPs-SPCE 制备重现性(RSD=3.0%)。

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