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首页> 外文期刊>Journal of solid state electrochemistry >Oxygen reduction at the surface of glassy carbon electrodes modified with anthraquinone derivatives and dyes
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Oxygen reduction at the surface of glassy carbon electrodes modified with anthraquinone derivatives and dyes

机译:蒽醌衍生物和染料修饰的玻碳电极表面的氧还原

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摘要

The preparation, electrochemical and catalytic behaviour of glassy carbon electrodes modified by anthra-9,10-quinone, its amino derivatives and dyes were investigated. The stability of the modified electrodes was studied by cyclic voltammetry in acidic and neutral media. The electrocatalytic ability of the modified electrodes for the reduction of dioxygen to hydrogen peroxide was examined by cyclic voltammetry, chronoamperometry and chronocoulometry techniques. The influence of pH on the electrochemical and catalytic behaviour was studied and pH 5.0-8.0 was chosen as the optimum working pH by comparing the shift in oxygen reduction potential. The anthraquinone-adsorbed glassy carbon electrodes possess excellent electrocatalytic abilities for dioxygen reduction with overpotential ranging from 280 to 560 mV lower than that at a plain glassy carbon electrode. Hydrodynamic voltammetric studies were performed to determine the heterogeneous rate constants for the reduction of O-2 at the surface of the modified electrodes, mass specific activity of the anthraquinones used and the apparent diffusion coefficient of O-2 in buffered aqueous O-2-saturated solutions. Studies showed the involvement of two electrons in dioxygen reduction.
机译:研究了蒽9,10-醌修饰的玻碳电极的制备,电化学和催化性能,氨基衍生物和染料。通过循环伏安法在酸性和中性介质中研究了改性电极的稳定性。通过循环伏安法,计时安培法和计时库仑法检测了修饰电极对双氧还原为过氧化氢的电催化能力。研究了pH对电化学和催化行为的影响,并通过比较氧气还原电位的变化,选择pH 5.0-8.0作为最佳工作pH。蒽醌吸附的玻璃碳电极具有出色的电催化还原双氧的能力,其超电势比普通玻璃碳电极低280至560 mV。进行了流体动力学伏安法研究,以确定修饰电极表面O-2还原的异质速率常数,所用蒽醌的质量比活度以及O-2在饱和O-2-饱和水溶液中的表观扩散系数解决方案。研究表明,两个电子参与了双氧还原。

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