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首页> 外文期刊>Electroanalysis >Multi-wall carbon nanotube paste electrode for adsorptive stripping determination of quercetin: A comparison with graphite paste electrode via voltammetry and chronopotentiometry
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Multi-wall carbon nanotube paste electrode for adsorptive stripping determination of quercetin: A comparison with graphite paste electrode via voltammetry and chronopotentiometry

机译:多壁碳纳米管糊状电极用于槲皮素的吸附溶出测定:伏安法和计时电位法与石墨糊电极的比较

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摘要

Adsorptive-stripping voltammetry and chronopotentiometry were used to study the adsorption and oxidation of quercetin at both graphite-nujol paste electrode (GPE) and carbon nanotubes-nujol paste electrode (CNTPE) for the potential application of carbon nanotube to flavonoids determination. As compared with GPE, CNTPE showed very great power to adsorb quercetin and resulted in a considerable signals enhancement. The adsorption isotherm of quercetin on CNTPE was of Langmuir type, and the stripping of quercetin adsorbed on CNTs showed a quasi-reversible oxidation reaction involving two-electron and two-proton. The high adsorbtive activity of CNTPE was contributed to the high specific surface area and the special surface characteristics of carbon nanotubes. The peak current response of differential pulse voltammetry depended linearly on quercetin concentration. A linear equation I-p (mu A) = 0.987c(mu mol L-1) + 0.023 with a correlation coefficient of 0.994 was obtained over the concentration range 0.1 - 1.0 mu mol L-1.
机译:利用吸附溶出伏安法和计时电位法研究了槲皮素在石墨-核糊状电极(GPE)和碳纳米管-核糊状电极(CNTPE)上的吸附和氧化作用,从而将碳纳米管潜在地用于类黄酮的测定。与GPE相比,CNTPE表现出非常强大的吸附槲皮素的能力,并导致信号增强。槲皮素在CNTPE上的吸附等温线为Langmuir型,而吸附在CNTs上的槲皮素的汽提表明准可逆的氧化反应涉及两个电子和两个质子。 CNTPE的高吸附活性有助于碳纳米管的高比表面积和特殊表面特性。差分脉冲伏安法的峰值电流响应线性依赖于槲皮素浓度。在0.1-1.0μmolL-1的浓度范围内获得线性方程式I-p(μA)= 0.987c(μmolL-1)+ 0.023,相关系数为0.994。

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