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首页> 外文期刊>Journal of Applied Polymer Science >Electrochemical preparation of poly(o-toluidine) film and its application as a permselective membrane
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Electrochemical preparation of poly(o-toluidine) film and its application as a permselective membrane

机译:聚(邻甲苯胺)薄膜的电化学制备及其在渗透选择膜中的应用

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摘要

Poly(o-toluidine) films were electrochemically synthesized on Pt electrodes at a constant potential (0.75 V versus Ag/AgCl) from a deoxygenated aqueous solution of 0.1 M toluidine dissolved in 0.1 M KCl. To form permselective polymeric film electrodes, poly(o-toluidine) films at different thicknesses were prepared by varying the amount of charge consumed during electrochemical polymerization. Then, experimental parameters (e.g., concentrations of monomer and electrolyte and pH of the phosphate buffer salt solution) affecting the polymeric film thickness were optimized. Permeation of the various electroactive and nonelectroactive species such as ascorbic acid, oxalic acid, hydrogen peroxide, lactose, sucrose, and urea through the optimized poly(o-toluidine)-coated electrodes was investigated using a chronoamperometric technique. From experimental results, it was found that a poly(o-toluidine)-coated electrode permitted the oxidation of hydrogen peroxide and prevented the permeation of the mentioned electroactive and nonelectroactive species. In other words, it was seen that this polymeric electrode responded to only hydrogen peroxide selectively. Thus, it has been claimed that a poly(o-toluidine)-coated Pt electrode can be used as a permselective polymeric membrane to overcome interference problems occurring in the hydrogen peroxide-based biosensor applications.
机译:从溶解在0.1 M KCl中的0.1 M甲苯胺脱氧水溶液中,以恒定电势(0.75 V对Ag / AgCl)在Pt电极上电化学合成聚(邻甲苯胺)薄膜。为了形成选择性渗透的聚合物膜电极,通过改变电化学聚合过程中消耗的电荷量来制备不同厚度的聚(邻甲苯胺)膜。然后,优化影响聚合物膜厚度的实验参数(例如,单体和电解质的浓度以及磷酸盐缓冲盐溶液的pH)。使用计时安培技术研究了通过优化的聚(邻甲苯胺)涂层电极对各种电活性和非电活性物质(例如抗坏血酸,草酸,过氧化氢,乳糖,蔗糖和尿素)的渗透性。从实验结果中发现,聚(邻甲苯胺)涂覆的电极允许过氧化氢的氧化并防止所述电活性和非电活性物质的渗透。换句话说,可以看出该聚合物电极仅选择性地对过氧化氢反应。因此,已经声称聚(邻甲苯胺)涂覆的Pt电极可以用作全选择性聚合物膜,以克服在基于过氧化氢的生物传感器应用中出现的干扰问题。

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