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首页> 外文期刊>American Journal of Analytical Chemistry >Fabrication of Poly(Aspartic Acid)-Nanogold Modified Electrode and Its Application for Simultaneous Determination of Dopamine, Ascorbic Acid, and Uric Acid
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Fabrication of Poly(Aspartic Acid)-Nanogold Modified Electrode and Its Application for Simultaneous Determination of Dopamine, Ascorbic Acid, and Uric Acid

机译:聚天冬氨酸-纳米金修饰电极的制备及其在多巴胺,抗坏血酸和尿酸同时测定中的应用

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摘要

A nanostructured polymer film incorporated gold nanoparticles modified electrode was fabricated. The fabrication process involved a previous electropolymerization of aspartic acid and followed by the eletrodeposition of gold nano-particles on the glassy carbon electrode. The resulting poly (aspartic acid)-nanogold modified electrode (PAA- nano-Au/GCE) was characterized by scanning electron microscopy (SEM) and electrochemical impedance spectros-copy (EIS). A higher catalytic activity was obtained to electrocatalytic oxidation of dopamine (DA), ascorbic acid (AA) and uric acid (UA) due to the enhanced peak current and well-defined peak separations compared with three, bare GCE, PAA/GCE and nano-Au/GCE. Simultaneous determination of DA, AA, and UA were studied by voltammetry. The linear range of 5.0 × 10-7 - 1.0 × 10-4 M for DA, 5.0 × 10-6 - 2.0 × 10-3 M for AA and 5.0 × 10-6 - 1.0 × 10-3 M for UA was obtained. The detection limit was calculated for DA, AA and UA as being 6.5 × 10-8 M, 5.6 × 10-7 M and 3.0 × 10-7 M, respectively (S/N = 3). The practical application of the present modified electrode was demonstrated by the determination of DA, AA and UA in calf serum and fetal calf serum samples.
机译:制备了掺有金纳米颗粒修饰电极的纳米结构聚合物膜。制备过程涉及先天冬氨酸的电聚合,然后在玻璃碳电极上电沉积金纳米颗粒。通过扫描电子显微镜(SEM)和电化学阻抗谱(EIS)对所得的聚(天冬氨酸)-纳米金修饰电极(PAA-纳米-Au / GCE)进行表征。与裸GCE,PAA / GCE和纳米GCE三种相比,由于增强的峰值电流和明确的峰分离,对多巴胺(DA),抗坏血酸(AA)和尿酸(UA)的电催化氧化获得了更高的催化活性。 -Au / GCE。伏安法研究了同时测定DA,AA和UA的方法。 DA的线性范围为5.0×10-7-1.0×10-4 M,AA的线性范围为5.0×10-6-2.0×10-3 M,UA的线性范围为5.0×10-6-1.0×10-3 M 。计算得出的DA,AA和UA的检出限分别为6.5×10-8 M,5.6×10-7 M和3.0×10-7 M(S / N = 3)。通过测定牛血清和胎牛血清样品中的DA,AA和UA证明了本修饰电极的实际应用。

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