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Highly Selective and Reproducible Electrochemical Sensing of Ascorbic Acid Through a Conductive Polymer Coated Electrode

机译:通过导电聚合物涂层电极对抗坏血酸的高度选择性和可重现的电化学传感

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The surface of an Au-disc electrode was modified through electro polymerization of aniline, in the presence of dodecyl benzene sulphonic acid (DBSA) and sulphuric acid (H 2 SO 4 ) solution. The polymerization conditions were pre-optimized so that micelle formation and solution coagulation could be minimized and surfactant doped polyaniline film could be obtained through a quick, simple and one step polymerization route. The synthesized material was characterized via Fourier transform infrared (FTIR) spectroscopy, thermogravimetric analysis (TGA), scanning electron microscopy (SEM) and cyclic voltammetry (CV). The effective surface area of the Au-disc, calculated through cyclic voltammetry, was immensely increased through a polyaniline (PANI) coating (0.04 and 0.11 cm 2 for bare and PANI coated gold respectively). The modified electrode was utilized for ascorbic acid (AA) sensing. The changing pH of electrolyte and scan rate influenced the PANI electrode response towards AA. The modified electrode was highly selective towards AA oxidation and showed a very low limit of detection i.e. 0.0267 μmol·L –1 . Moreover, the PANI coating greatly reduced the sensing potential for AA by a value of around 140 mV when compared to that on a bare gold electrode.
机译:在十二烷基苯磺酸(DBSA)和硫酸(H 2 SO 4)溶液存在下,通过苯胺的电聚合对金盘电极的表面进行改性。预先优化了聚合条件,以使胶束的形成和溶液的凝结减到最少,并且可以通过快速,简单和一步一步的聚合途径获得掺杂表面活性剂的聚苯胺膜。合成的材料通过傅里叶变换红外(FTIR)光谱,热重分析(TGA),扫描电子显微镜(SEM)和循环伏安法(CV)进行表征。通过循环伏安法计算出的Au圆盘的有效表面积通过聚苯胺(PANI)涂层大大增加了(裸金和PANI涂层金分别为0.04和0.11 cm 2)。修饰的电极用于抗坏血酸(AA)感测。电解质pH值的变化和扫描速率影响了PANI电极对AA的响应。修饰电极对AA氧化具有很高的选择性,检测限很低,为0.0267μmol·L–1。此外,与裸金电极相比,PANI涂层将AA的感测电位大大降低了约140 mV。

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