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Electrochemical behavior and analytical detection of insulin on pretreated nanocarbon black electrode surface

机译:预处理纳米碳黑电极表面上胰岛素的电化学行为和分析检测

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摘要

This work takes advantage of electrochemically anodic pretreated carbon paste electrode modified with acetylene black nanocarbon particles (AB/CPE), a new and high-sensitive analytical method for insulin was put forward. Modern voltammetric testing techniques were used for primarily investigating the redox electrochemical characterization of Fe(CN)_6~(3-/4-) and electrochemical behavior of insulin on nanocarbon electrode surface. At the same time, a plausible mechanism was also proposed to provide insights into understanding how to facilitate the electron transfer between insulin biomolecule and electrode surface. The results have shown that the pretreated AB/CPE represented high accumulation efficiency to insulin and promoted its direct electron transfer rate owing to the presence of nanocarbon particles and anodic pretreatment. It is found that insulin exhibited a very sensitive anodic peak at 0.47 V on the pretreated AB/CPE, and its peak current was increased about six times more than that on the pretreated carbon paste electrode (CPE). A linear relationship between the anodic peak current and the concentration of insulin from 20 to 1000 nM and a limit of detection as low as 5 nM were obtained using the pretreated AB/CPE. Attracting attention, the proposed method was applied to the realistic samples successfully and showed good recovery and reproducibility.
机译:这项工作利用乙炔黑纳米碳粒子(AB / CPE)修饰的电化学阳极预处理碳糊电极的优势,提出了一种新的高灵敏的胰岛素分析方法。现代伏安测试技术主要用于研究Fe(CN)_6〜(3- / 4-)的氧化还原电化学特性以及胰岛素在纳米碳电极表面的电化学行为。同时,还提出了一种合理的机制,以提供洞见,以了解如何促进胰岛素生物分子和电极表面之间的电子转移。结果表明,由于存在纳米碳颗粒和阳极预处理,预处理的AB / CPE对胰岛素具有很高的累积效率,并提高了其直接电子传递速率。发现胰岛素在预处理的AB / CPE上在0.47 V处显示出非常敏感的阳极峰,并且其峰值电流比预处理的碳糊电极(CPE)上增加约六倍。使用预处理的AB / CPE可获得20至1000 nM的阳极峰值电流与胰岛素浓度之间的线性关系以及低至5 nM的检出限。引人注目的是,该方法成功地应用于实际样品,并显示出良好的回收率和重现性。

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