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Pharmaceutical electrochemistry: The electrochemical detection of asprin utilising screen printed graphene electrodes as sensors platforms.

机译:药物电化学:利用丝网印刷的石墨烯电极作为传感器平台对阿斯普林进行电化学检测。

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摘要

A sensitive electrochemical sensor was designed for acetyl salicylic acid detection using graphene modified Screen Printed Electrodes. The electrochemical response of the sensor with graphene was improved compared to Screen Printed Electrodes without graphene and displayed an excellent analytical performance for the detection of acetyl salicylic acid. The high acetyl salicylic acid loading capacity on the electrode surface and the outstanding electric conductivity of graphene were also discussed in this manuscript. When a range of different concentrations of acetyl salicylic acid from 0.1 to 100 uM into a pH 4 buffer solution (N defined as the sample size N = 9) were plotted against the oxidation peak a linear response was observed. The detection limit was found to be 0.09 ?M based on (3-o/slope). Screen Printed Graphene electrodes sensors methodology is shown to be useful for quantifying low levels of acetyl salicylic acid in a buffer solution as well as in biological matrixes such as human oral fluid. A linear response was obtained over a range of concentrations from 10 to 150 uM into a human oral fluid solution (N = 10) giving a detection limit of 8.7 uM.
机译:设计了一个灵敏的电化学传感器,用于使用石墨烯修饰的丝网印刷电极检测乙酰水杨酸。与没有石墨烯的丝网印刷电极相比,带有石墨烯的传感器的电化学响应得到了改善,并且在检测乙酰水杨酸方面表现出出色的分析性能。本文还讨论了电极表面的高乙酰基水杨酸负载量和石墨烯的出色电导率。当在pH 4缓冲溶液(N定义为样品量N = 9)中绘制从0.1到100 uM的一系列不同浓度的乙酰水杨酸对氧化峰的曲线时,观察到线性响应。基于(3-o /斜率),检测极限为0.09μM。已显示丝网印刷的石墨烯电极传感器方法可用于定量缓冲溶液以及生物基质(例如人类口腔液)中的低水平乙酰水杨酸。在浓度为10至150 uM的人类口腔液溶液(N = 10)中获得线性响应,检测极限为8.7 uM。

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