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Polypyrrole/Poly(methylene blue) Composite Electrode Films on Stainless Steel

机译:不锈钢上的聚吡咯/聚(亚甲基蓝)复合电极薄膜

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Polymerized methylene blue films have been shown to be efficient electron mediators for biological redox compounds. Previously these films have been deposited on noble metal and carbon substrates. In this work, methylene blue has been polymerized on stainless steel by first applying a layer of an electronically conductive polymer to inhibit passivation or corrosion of the metal and to increase the active surface area. The redox activity of the resulting electrodes has been examined by electrochemical impedance spectroscopy and fit to an equivalent circuit model for conductive polymers. The film with methylene blue shows a large decrease in charge transfer resistance, from 130Ω to 15Ω, when compared to the bare polypyrrole film. The stability of the films was studied by measuring the impedance changes over time when stored in aqueous solutions. Degradation of the films was found to depend mostly on the doping ion used in the polypyrrole synthesis. NADH oxidation was also measured at different concentrations by CV.
机译:已显示聚合的亚甲基蓝膜是用于生物氧化还原化合物的有效电子介质。以前这些薄膜已经沉积在贵金属和碳基材上。在这项工作中,通过首先施加一层电子导电聚合物来抑制金属的钝化或腐蚀并增加活性表面积,通过在不锈钢上聚合在不锈钢上并增加活性表面积。通过电化学阻抗光谱检查所得电极的氧化还原活性,并符合用于导电聚合物的等效电路模型。与裸滤膜相比,具有亚甲基蓝色的薄膜显示电荷转移电阻的大幅降低至130Ω至15Ω。通过测量储存在水溶液中时的阻抗变化来研究膜的稳定性。发现薄膜的降解主要依赖于在聚吡咯合成中使用的掺杂离子上。也通过CV以不同浓度测量NADH氧化。

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