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Differential Electroanalysis of Dopamine in the Presence of a Large Excess of Ascorbic Acid at a Nickel Oxide Nanoparticle-Modified Glassy Carbon Electrode

机译:多巴胺在氧化镍纳米颗粒改性玻碳电极存在大过量的抗坏血酸存在下的差分电催化

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Electrochemical determination of dopamine (DA) in the presence of a large excess of ascorbic acid (AA) in their coexistence at a nickel oxide nanoparticle-modified preoxidized glassy carbon electrode (GCox/nano-NiOx) is achieved. The GCox/nano-NiOx electrode is prepared by electrodeposition of nickel nanoparticles (nano-Ni) onto an electrochemically activated glassy carbon (GC) electrode, and the thus prepared nano-Ni were subjected to electrochemical oxidation in alkaline medium for the formation of nickel oxide (NiOx). Modified electrodes were electrochemically and morphologically characterized. The effect of loading level of nickel was investigated by changing the number of potential cycles for the deposition of nano-Ni, i.e., 1, 2, 5, and 10 potential cycles, in the potential range from 0 to -1.0?V vs. SCE. Also, the experimental and instrumental parameters were optimized. Experimental results showed that the modified electrode differentiates well the oxidation peaks of DA and AA enabling the electrochemical determination of DA in the presence of a large excess of AA. Remarkably, it is found that the oxidation current of DA is 2 times larger than that of AA even the concentration of AA is about 5 times larger than that of DA. The LOD and LOQ of DA were calculated and were found to equal 0.69 and 2.3?mM, respectively. This offers the advantage of simple and selective detection of DA free of the interference of AA in real samples.
机译:实现了在氧化镍纳米粒子改性的预氧化玻璃电极(GCOX /纳米-NIOx)的抗坏血酸(AA)存在中的大量过量抗坏血酸(AA)的电化学测定。通过将镍纳米颗粒(NaNO-Ni)电沉积在电化学活化的玻璃状碳(GC)电极上,将如此制备的纳米Ni在碱性培养基中进行电化学氧化以形成镍的电化学氧化氧化物(NiOx)。改性电极是电化学和形态学表征的。通过改变纳米Ni的沉积的潜在循环的数量,即1,2,5和10个电位循环,在0到-1.0≤vs的电位范围内研究镍的效果来研究镍的效果。 SCE。此外,实验和仪器参数进行了优化。实验结果表明,改性电极在大量AA存在下,改性电极孔和AA的氧化峰实现了DA的电化学测定。值得注意的是,也发现DA的氧化电流比AA的氧化电流甚至均匀的浓度大于DA大约5倍。计算DA的LOD和LOQ,分别被发现为等于0.69和2.3Ωmm。这提供了简单且选择性地检测DA的优势,其无AA在真实样本中的干扰。

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