首页> 外文期刊>Journal of Solid State Electrochemistry >Preparation and characterization of Ni(II)/polyacrylonitrile and carbon nanotube composite modified electrode and application for carbohydrates electrocatalytic oxidation
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Preparation and characterization of Ni(II)/polyacrylonitrile and carbon nanotube composite modified electrode and application for carbohydrates electrocatalytic oxidation

机译:Ni(II)/聚丙烯腈和碳纳米管复合修饰电极的制备,表征及其在碳水化合物电催化氧化中的应用

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摘要

A nickel(II) into porous polyacrylonitrile–carbon nanotubes composite modified glassy carbon electrode (Ni/PAN-CNT/GCE) was fabricated by simple drop-casting and immersing technique. The unique electrochemical activity of Ni/PAN-CNT composite modified glassy carbon electrode was illustrated in 0.10 M NaOH using cyclic voltammetry. The Ni/PAN-CNT/GCE exhibits the characteristic of improved reversibility and enhanced current responses of the Ni(III)/Ni(II) couple compared with Ni/PAN/GCE and Ni/CNT/GCE. The results of electrochemical impedance spectroscopy and scanning electron microscopy indicated the successful immobilization for PAN-CNT composite film. Kinetic parameters such as the electron transfer coefficient, α, and rate constant, k s, of the electrode reaction were determined. Ni/PAN-CNT/GCE also shows good electrocatalytic activity toward the oxidation of carbohydrates (glucose, sucrose, fructose, and sorbitol). The electrocatalytic response showed a wide linear range (10–1,500, 12–3,200, 7–3,500, and 16–4,200 μM for glucose, sucrose, fructose, and sorbitol, respectively) as well as its experimental limit of detection can be achieved 6, 7, 5, and 11 μM for glucose, sucrose, fructose, and sorbitol, respectively. The modified electrode for carbohydrates determination is of the property of simple preparation, good stability, and high sensitivity.
机译:通过简单的滴铸和浸没技术制备了镍(II)到多孔聚丙烯腈-碳纳米管复合改性玻璃碳电极(Ni / PAN-CNT / GCE)中。使用循环伏安法在0.10 M NaOH中说明了Ni / PAN-CNT复合改性玻璃碳电极的独特电化学活性。与Ni / PAN / GCE和Ni / CNT / GCE相比,Ni / PAN-CNT / GCE表现出Ni(III)/ Ni(II)对提高可逆性和增强电流响应的特性。电化学阻抗谱和扫描电子显微镜的结果表明PAN-CNT复合膜的成功固定。确定了电极反应的动力学参数,如电子转移系数α和速率常数k s。 Ni / PAN-CNT / GCE对碳水化合物(葡萄糖,蔗糖,果糖和山梨糖醇)的氧化也显示出良好的电催化活性。电催化响应显示出宽的线性范围(葡萄糖,蔗糖,果糖和山梨糖醇分别为10–1,500、12–3,200、7–3,500和16–4,200μM),并且可以达到其实验检测极限6分别为葡萄糖,蔗糖,果糖和山梨醇的7、5、11μM。用于碳水化合物测定的修饰电极具有制备简单,稳定性好和灵敏度高的特性。

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