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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增加电化学系统性能,用于同时测定L-酪氨酸和肾上腺素

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摘要

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 mu M, 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:设计了一种基于用氧化铁纳米颗粒(CPE / Fe3O4)改性的碳浆料电极(CPE)的新型纳米结构传感器,用于同时测定L-酪氨酸(LT)和肾上腺素(EP)。诸如X射线衍射,扫描电子显微镜和电化学阻抗光谱的各种技术用于纯Fe3O4纳米粉和纳米结构改性传感器的表征。 CPE / Fe3O4的使用表明为在0.2M Britton-Robinson缓冲液(B-R; pH = 4.0)中的LT和EP的氧化产生了优异的电催化活性。此外,修饰的CPE在线性范围浓度为0.4-270.0μm的线性范围浓度下提高了电催化活性,检测限为50.0nm和22.0nm。使用差分脉冲伏安法技术成功地应用修饰的电极以同时测定人血清中的LT和EP。在纳米结构传感器表面的测定中也观察到良好的稳定性和可重复性。

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