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首页> 外文期刊>Asian Journal of Chemistry: An International Quarterly Research Journal of Chemistry >Electrochemical Determination of Ascorbic Acid Using Modified Glassy Carbon Electrode by Multiwall Carbon Nanotube-Nafion in Chloroacetic Acid Media
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Electrochemical Determination of Ascorbic Acid Using Modified Glassy Carbon Electrode by Multiwall Carbon Nanotube-Nafion in Chloroacetic Acid Media

机译:氯乙酸介质中多壁碳纳米管修饰修饰玻碳电极电化学测定抗坏血酸

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摘要

In this study, ascorbic acid was simply determined at lower potential compared to bare glassy carbon by replacement phosphate buffer solution with chloroacetatc buffer solution at surface of modified glassy carbon electrode. A film of Nafion with multi-walled carbon nanotubcs (MWCNT) was prepared by rapidly casting solution onto the surface of a glassy carbon electrode and drying under room temperature. For MWCNT-Nafion film was not observed any peaks in the used potential range in phosphate buffer solution. However, by replacing phosphate buffer solution with chloroacetatc buffer solution, due to interaction between nafion film and component of chloroacetate buffer solution in a positive scan, an oxidation peak was obtained at about 0.442 V and at a reversal scan a reduction peak was observed at about 0.282 V. Scan rate, pH and interference effects for the determination of ascorbic acid were studied. It was found that glassy carbon eleclrodc/MWCNT-Nafion in chloroacetate buffer solution pH = 2, increase significantly the cyclic voltaramogram peak currents as well as a decreasing the oxidation overpotentials of ascorbic acid compared to bare glassy carbon. A linear range between 5.0 x 10~5 mol/L and 2.32 x 10~(-2) moi/L and a detection limit (30) 1.2 x 10~(-5) mol/L was obtained for modified electrode. Finally, the novel modified elecuode was successfully applied to the determination of ascorbic acid in pharmaceuticals and foods in acetate medium.
机译:在这项研究中,通过在改性玻璃碳电极的表面用氯乙酸缓冲溶液代替磷酸盐缓冲溶液,可以简单地测定抗坏血酸,其电位比裸玻璃碳低。通过将溶液快速浇铸在玻璃碳电极的表面上并在室温下干燥,制备了具有多壁碳纳米管(MWCNT)的Nafion膜。对于MWCNT-Nafion膜,在磷酸盐缓冲溶液中未观察到所用电位范围内的任何峰。然而,通过用氯乙酸缓冲溶液代替磷酸盐缓冲溶液,由于在正扫描中nafion膜与氯乙酸缓冲溶液的组分之间的相互作用,在约0.442V处获得了氧化峰,而在反向扫描中观察到了约0.82V处的还原峰。 0.282V。研究了测定抗坏血酸的扫描速率,pH和干扰效应。已发现与氯代裸碳相比,氯乙酸缓冲溶液pH = 2中的玻碳eleclrodc / MWCNT-Nafion显着增加了循环伏安图峰电流,并降低了抗坏血酸的氧化超电势。修饰电极的线性范围为5.0 x 10〜5 mol / L和2.32 x 10〜(-2)moi / L,检出限(30)为1.2 x 10〜(-5)mol / L。最终,该新型修饰电极成功地用于醋酸介质中药物和食品中抗坏血酸的测定。

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