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Increasing the electrochemical system performance using a magnetic nanostructured sensor for simultaneous determination of L-tyrosine and epinephrine

机译:使用磁性纳米结构传感器同时测定L-酪氨酸和肾上腺素可提高电化学系统的性能

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A novel nanostructured sensor based on a carbon paste electrode (CPE) modified with iron oxide nanoparticles (CPE/Fe3O4) was devised for the simultaneous determination of L-tyrosine (LT) and epinephrine (EP). Various techniques such as X-ray diffraction, scanning electron microscopy and electrochemical impedance spectroscopy were used for characterization of the pure Fe3O4 nanopowders and the nanostructured modified sensor. The use of the CPE/Fe3O4 indicated that excellent electrocatalytic activity is created for the oxidation of LT and EP in 0.2 M Britton–Robinson buffer (B–R; pH = 4.0). Furthermore, the modified CPE exhibited improved electrocatalytic activity toward LT and EP in the linear range concentration of 0.4–270.0 μM, with a detection limit of 50.0 nM and 22.0 nM, respectively. The modified electrode was applied successfully for simultaneous determination of LT and EP in human blood serum using a differential pulse voltammetry technique. Good stability and repeatability were also observed in the determination of LT and EP at the surface of the nanostructured sensor.
机译:设计了一种基于碳糊电极(CPE)的新型纳米结构传感器,该电极被氧化铁纳米颗粒(CPE / Fe3O4)修饰,用于同时测定L-酪氨酸(LT)和肾上腺素(EP)。 X射线衍射,扫描电子显微镜和电化学阻抗谱等各种技术被用于表征纯Fe3O4纳米粉和纳米结构的修饰传感器。 CPE / Fe3O4的使用表明,在0.2 M Britton-Robinson缓冲液(BR; pH = 4.0)中,LT和EP的氧化具有出色的电催化活性。此外,改性的CPE在0.4-270.0μM的线性范围浓度下表现出对LT和EP的改善的电催化活性,检出限分别为50.0 nM和22.0 nM。改进的电极已成功应用差分脉冲伏安技术同时测定人血清中的LT和EP。在测定纳米结构传感器表面的LT和EP时,还观察到了良好的稳定性和可重复性。

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