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首页> 外文期刊>Trends in Ecology & Evolution >An electrochemical sensor for dopamine detection using poly-tryptophan composited graphene on glassy carbon as the electrode
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An electrochemical sensor for dopamine detection using poly-tryptophan composited graphene on glassy carbon as the electrode

机译:使用聚 - 色氨酸复合石墨烯的多巴胺检测电化学传感器作为电极

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摘要

A sensitive electrochemical sensor for dopamine (DA) determination was developed using electrochemically polymerized L-tryptophan on graphene-coated glassy carbon ( GC) as the electrode. The composite electrode showed an excellent electrochemical catalytic activity towards DA oxidation. The peak oxidation current, recorded by differential pulse voltammetry, is logarithmically proportional to the DA concentration from 0. 2 to 100 mu M. The electrode has a high detection selectivity in the presence of a high concentration of ascorbic acid and a low detection limit of 0. 06 mu M, which has been used for DA detection in real samples. The success of the sensor in DA detection is ascribed to a combined effect of the high surface area and high conductivity of graphene and pi-pi stacking interaction between graphene and p-L-Trp.
机译:用电化学聚合的L-色氨酸在石墨烯涂覆的玻璃碳(GC)上为电极,开发了一种用于多巴胺(DA)测定的敏感电化学传感器。 复合电极显示出朝向DA氧化的优异的电化学催化活性。 差分脉冲伏安法记录的峰氧化电流与0.2至100μm的DA浓度对数成比例。电极在高浓度的抗坏血酸存在下具有高检测选择性和低检测限 0. 06 mu m,已用于真实样品中的DA检测。 在DA检测中传感器的成功归因于石墨烯和P-L-TRP之间的高表面积和石墨烯和PI-PI堆叠相互作用的高表面积和高导电性的组合效应。

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