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Indirect electrochemical determination of antioxidant capacity with hexacyanoferrate(III) reduction using a gold nanoparticle-coated o-phenylenediamine-aniline copolymer electrode

机译:使用金纳米颗粒涂覆的O-苯二胺 - 苯胺共聚物 - 苯胺共聚物电极间接电化学测定六氰基甲醛(III)的抗氧化能力的测定

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摘要

In spite of the many unstandardized literature methods for the determination of the antioxidant activity/capacity (AOA/AOC) of food extracts, there are a very limited number of documented voltammetric nanosensors, despite the fact that commercial electrochemical devices for rapid AOA estimation are on the rise. The mechanism of the developed sensor is based on the chemical reduction of hexacyanoferrate(III) to hexacyanoferrate(II) by antioxidants, followed by the decrement of the cathodic current intensity of hexacyanoferrate(III) in proportion to antioxidant concentration. During voltammetric measurements, the surface of the glassy carbon electrode was coated with an o-phenylenediamine-aniline copolymer and gold nanoparticles were accumulated on this electrode surface to increase the conductivity. It was shown that the developed electrode gave a reversible voltammogram for the hexacyanoferrate(III)/(II) redox couple, and that the cathodic peaks due to strong antioxidants having a standard redox potential less than that of this couple (E-o < 0.36 V) continuously emerged at very close peak potentials. Single antioxidants as well as binary-ternary mixtures were analyzed with this electrode using square wave voltammetry. The trolox-equivalent antioxidant capacities of selected antioxidants were evaluated with this electrode. The modified voltammetric sensor allowed precise measurement of the total antioxidant capacity of plant tea samples such as green tea, lime, and coral moss, and was not interfered by the food preservative sulfite. The results of the developed voltammetric sensor were statistically compared with those of a reference differential pulse voltammetry-cupric reducing antioxidant capacity electrochemical method established in literature.
机译:尽管确定食物提取物的抗氧化活性/容量(AOA / AOC)的许多抗氧化活性/容量(AOA / AOC),但是有一个非常有限的记录伏安纳米调传料,尽管是用于快速AOA估计的商业电化学装置崛起。发达传感器的机理基于抗氧化剂的六氰基甲甲酸酯(III)的化学还原(III)至六氰基甲甲酸酯(II),然后以与抗氧化剂浓度成比例地减少六氰基甲醛(III)的阴极电流强度。在伏安测量期间,将玻璃状碳电极的表面涂覆有O-苯二胺 - 苯胺共聚物,并且将金纳米颗粒积聚在该电极表面上以增加导电性。结果表明,开发电极为六氰基甲酸酯(III)/(II)氧化还原夫妇提供了可逆伏安图,并且阴极峰由于具有比这对夫妇的标准氧化还原潜力的强抗氧化剂(EO <0.36 V)为本在非常紧密的峰值电位下连续出现。使用方波伏安法用该电极分析单一抗氧化剂以及二进制三元混合物。用该电极评价选定抗氧化剂的滴式氧化物抗氧化能力。改性伏安传感器允许精确测量植物茶样品的总抗氧化能力,如绿茶,石灰和珊瑚苔,并没有受到食品防腐剂亚硫酸盐的干扰。与文献中建立的参考差分脉冲伏安 - 减少抗氧化能力电化学方法有统计学比较了所发育的伏安传感器的结果。

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