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Graphene-loaded nanofiber-modified electrodes for the ultrasensitive determination of dopamine

机译:负载石墨烯的纳米纤维修饰电极用于多巴胺的超灵敏测定

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摘要

A novel and highly sensitive electrochemical system based on electrospun graphene/polyaniline/ polystyrene (G/PANI/PS) nanofiber-modified screen-printed carbon electrodes has been developed for dopamine (DA) determination. A dramatic increase (9 times) in the current signal for the redox reaction of a standard, ferri/ferrocyanide [Fe(CN)6]~(3-/4-) couple was found when compared to an unmodified electrode. This modified electrode also exhibited favorable electron transfer kinetics and excellent elec-trocatalytic activity toward the oxidation of DA. When used together with square wave voltammetry (SWV), DA can be selectively determined in the presence of the common interferents (i.e. ascorbic acid and uric acid). Under optimal conditions, a very low limit of detection (0.05 nM) and limit of quantification (0.30 nM) were achieved for DA. In addition, a wide dynamic range of 0.1 nM to 100 μM was found for this electrode system. Finally, the system can be successfully applied to determine DA in complex biological environment (e.g. human serum, urine) with excellent reproducibility.
机译:一种基于电纺石墨烯/聚苯胺/聚苯乙烯(G / PANI / PS)纳米纤维修饰的丝网印刷碳电极的新颖且高度灵敏的电化学系统已用于多巴胺(DA)测定。与未经修饰的电极相比,发现标准亚铁/亚铁氰化物[Fe(CN)6]〜(3- / 4-)对的氧化还原反应电流信号显着增加(9倍)。该修饰电极还表现出有利的电子转移动力学和对DA氧化的优异的电催化活性。当与方波伏安法(SWV)结合使用时,可以在常见干扰物(即抗坏血酸和尿酸)存在的情况下选择性地确定DA。在最佳条件下,DA的检出限非常低(0.05 nM),定量限(0.30 nM)。此外,该电极系统的动态范围很广,为0.1 nM至100μM。最后,该系统可以成功地用于在复杂的生物环境(例如人血清,尿液)中以优异的重现性确定DA。

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