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Electropolymerization of phenol on a vitreous carbon electrode in acidic aqueous solution at different temperatures

机译:苯酚在不同温度下在酸性水溶液中在玻璃碳电极上的电聚合。

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摘要

Electrochemical oxidation of phenol in acidic aqueous solution was studied on a vitreous carbon electrode at different temperatures in the range of 25–85 °C by cyclic voltammetry and chronoamperometry. The kinetic aspect of the phenol oxidation was investigated as a function of its concentration and temperature. The electrode deactivation by formation of an adherent, compact, and insulating polymeric film was examined by monitoring the decrease in the peak current of phenol oxidation during the course of successive potential scans. Repeated potential scans in the region of water stability did not reactivate the electrode whatever the temperature used. Chronoamperometric curves recorded at different potentials in the region of water decomposition shown that the electrochemical activity of the electrode was partially restored even when performed at low temperature (25 °C). ud
机译:通过循环伏安法和计时电流法,在玻璃碳电极上在25–85°C的不同温度下研究了酸性水溶液中苯酚的电化学氧化。研究了苯酚氧化的动力学方面及其浓度和温度的函数。通过在连续的电势扫描过程中监测苯酚氧化的峰值电流的降低来检查由于形成粘附的,致密的和绝缘的聚合物膜而使电极失活。无论使用何种温度,在水稳定性区域中重复进行电位扫描都不会使电极重新活化。在水分解区域中以不同电位记录的计时安培曲线表明,即使在低温(25°C)下进行操作,电极的电化学活性也可以部分恢复。 ud

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