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Preparation in-situ of carbon nanotubes/polyaniline modified electrode and application for ascorbic acid detection

机译:碳纳米管/聚苯胺修饰电极的原位制备及其在抗坏血酸检测中的应用

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摘要

A novel grown in-situ carbon nanotube/polyaniline chemically modified electrode (GSCNT/PANI-CME) was synthesized for the electrochemical detection of ascorbic acid (AA). First, nickel catalyst was obtained by direct current electrochemical deposition on a graphite electrode (GE) surface. Second, CNTs were grown in-situ to obtain CNTs chemically modified electrode (GSCNTs-CME) by catalytic chemical vapor deposition. Third, the grown CNTs were acid treated to carboxylate and remove nickel particles. Finally, PANI was prepared in-situ by electrochemical polymerization on the GSCNTs-CME to obtain GSCNTs/PANI-CME. The obtained electrodes were characterized by scanning electron microscopy and cyclic voltammetry. The results showed that CNTs grew uniformly on the GE surface and the original tubular structure was remained. PANI was uniformly coated on the surface of CNTs in the obtained composite, which was a typical three-dimensional network structure. The GSCNTs/PANI-CME exhibited an excellent electrocatalytic activity to AA. The oxidation peak current was increased linearly with the concentration of AA in the range from 1.0 x 10(-6) mol L-1 to 4.5 x 10(-4) mol L-1, with a detection limit of 1.0 x 10(-7) mol L-1 (S/N = 3). The experimental data showed that the obtained electrode was selective, stable and reproducible. The recoveries were between 97.4% and 102.1%. (C) 2015 Elsevier B.V. All rights reserved.
机译:合成了一种新颖的原位生长的碳纳米管/聚苯胺化学修饰电极(GSCNT / PANI-CME),用于抗坏血酸(AA)的电化学检测。首先,通过在石墨电极(GE)表面上进行直流电化学沉积获得镍催化剂。其次,就地生长碳纳米管,通过催化化学气相沉积获得碳纳米管化学修饰电极(GSCNTs-CME)。第三,对生长的CNT进行酸处理以羧化并去除镍颗粒。最后,通过在GSCNTs-CME上电化学聚合原位制备PANI,得到GSCNTs / PANI-CME。通过扫描电子显微镜和循环伏安法表征获得的电极。结果表明,CNT在GE表面上均匀地生长并且保留了原始的管状结构。将PANI均匀地涂覆在所得复合物中的CNT表面上,这是典型的三维网络结构。 GSCNTs / PANI-CME对AA具有优异的电催化活性。氧化峰电流随AA浓度在1.0 x 10(-6)mol L-1至4.5 x 10(-4)mol L-1范围内线性增加,检出限为1.0 x 10(- 7)mol L-1(S / N = 3)。实验数据表明,所得电极具有选择性,稳定性和可重复性。回收率在97.4%至102.1%之间。 (C)2015 Elsevier B.V.保留所有权利。

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