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A Promising Electrochemical Platform for Dopamine and Uric Acid Detection Based on a Polyaniline/Iron Oxide-Tin Oxide/Reduced Graphene Oxide Ternary Composite

机译:基于聚苯胺/氧化铁 - 氧化锡/氧化石墨烯三元复合材料的多巴胺和尿酸检测有前途的电化学平台

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摘要

A ternary polyaniline/Fe2O3-SnO2/reduced graphene oxide (PFSG) nanocomposite was prepared using a simple two-step hydrothermal treatment. The composite was applied as a glassy carbon electrode modifier (GCE) to enhance dopamine (DA) and uric acid (UA) detection. The ternary PFSG composite was compared with its binary precursor Fe2O3-SnO2/reduced graphene oxide (FSG). The influence of the modified GCE electrodes on their performance as a sensing platform was determined. GCE/PFSG showed better sensing parameters than GCE/FSG due to the introduction of polyaniline (PANI), increasing the electrocatalytic properties of the electrode towards the detected analytes. GCE/PFSG enabled the detection of low concentrations of DA (0.076 µM) and UA (1.6 µM). The peak potential separation between DA and UA was very good (180 mV). Moreover, the DA oxidation peak was unaffected even if the concentration of UA was ten times higher. The fabricated sensor showed excellent performance in the simultaneous detection with DA and UA limits of detection: LODDA = 0.15 µM and LODUA = 6.4 µM, and outstanding long-term stability towards DA and UA, holding 100% and 90% of their initial signals respectively, after one month of use.
机译:使用简单的两步水热处理制备三元聚苯胺/ Fe2O3-SnO 2 /缩减的石墨烯(PFSG)纳米复合材料。将复合材料用作玻璃状碳电极改性剂(GCE),以增强多巴胺(DA)和尿酸(UA)检测。将三元PFSG复合材料与其二元前体Fe 2 O 3-SnO 2 /缩小的氧化石墨烯(FSG)进行比较。确定了改进的GCE电极对作为传感平台的性能的影响。由于引入聚苯胺(PANI),GCE / PFSG显示比GCE / FSG更好的感测参数,从而增加电极的电催化性能朝向检测到的分析物。 GCE / PFSG能够检测低浓度的DA(0.076μm)和UA(1.6μm)。 DA和UA之间的峰值电位分离非常好(180 mV)。此外,即使UA的浓度越高,DA氧化峰也不会受到影响。制造的传感器在具有DA和UA检测的同时检测方面表现出优异的性能:Lodda =0.15μm和Lodua =6.4μm,以及朝向DA和UA的出色的长期稳定性,分别保持100%和90%的初始信号,在一个月之后使用。

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