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Modified electrodes type doped polypyrrole/pure titanium and their electrochemical characterization

机译:修饰电极型掺杂聚吡咯/纯钛及其电化学表征

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Polypyrrole (PPY) films were electrodeposited at pure titanium from different aqueous solutions. The electropolymerization process was carried out by galvanostatic method. Cyclic voltammetry and electrochemical impedance spectroscopy (EIS) were used to investigate the electrochemical properties of electrodes. The results indicate that the surfactant anion favors redox processes which are faster and more reversible than those associated to usual polypyrrole electrodes. In fact, while in PPY films doped by conventional, small anions (e.g., Cl-), the charge compensation is assured by uptake of the anions during oxidation and the release of the same anions during reduction, in the PPY films prepared in the presence of large-anions salts (e.g., sodium dodecylsulphate-SDS), the charge compensation appears to involve incorporation of cations since the large anions are not easily released from the polymer matrix. An equivalent circuit was proposed to successfully fit EIS data and the significant contribution of pseudocapacitance from polypyrrole was thus identified. EIS measurements on Ti/PPY film electrodes were carried out in the supporting electrolyte depending on the following parameters: PPY-film thickness, supporting electrolyte concentration c, temperature T, and polarisation potential E.
机译:将聚吡咯(PPY)膜从不同的水溶液中电沉积在纯钛上。电聚合过程通过恒电流法进行。循环伏安法和电化学阻抗谱(EIS)用于研究电极的电化学性能。结果表明,表面活性剂阴离子有利于氧化还原过程,该过程比与常规聚吡咯电极相关的那些更快,更可逆。实际上,尽管在用常规的小阴离子(例如Cl-)掺杂的PPY膜中,在存在下制备的PPY膜中,通过氧化过程中阴离子的吸收和还原过程中相同阴离子的释放来确保电荷补偿。对于大阴离子盐(例如十二烷基硫酸钠-SDS),电荷补偿似乎涉及阳离子的掺入,因为大阴离子不易从聚合物基质中释放出来。提出了等效电路以成功拟合EIS数据,从而确定了聚吡咯对假电容的重大贡献。根据以下参数在支持电解质中对Ti / PPY膜电极进行EIS测量:PPY膜厚,支持电解质浓度c,温度T和极化电势E.

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