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Electrocatalytic reduction of dioxygen at the surface of glassy carbon electrodes modified by some anthraquinone substituted podands

机译:蒽醌取代的配体修饰的玻碳电极表面的双氧电催化还原

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The preparation and electrochemical characterization of glassy carbon electrodes modified by some recently synthesized anthraquinone substituted podands were investigated. These compounds were found to be strongly and irreversibly adsorbed on the preanodized glassy carbon electrodes. The electrochemical behavior and stability of the modified electrodes were studied by cyclic voltammetry in acidic aqueous solutions. The influence of pH on the electrochemical behavior of the electrodes was studied and a pH of 4.5 was chosen as the optimum working pH. The ability of the modified electrodes as potential electrocatalysts for the reduction of dioxygen to hydrogen peroxide wa, tested by cyclic voltammetry, chronomperometry and rotating disk electrode voltammetry, They showed excellent electrocatalytic ability for the reduction of O-2 at pH 4.5 with overpotentials ranging from 380 to 470 mV lower than the plain glassy carbon electrode. The heterogeneous rate constants for the reduction of O-2 at the surface of these modified electrodes were determined by the use of Koutecky-Levich plots. In addition, the apparent diffusion coefficients of O-2 in buffered aqueous O-2-saturated solution was estimated. [References: 52]
机译:研究了一些最近合成的蒽醌取代的Podand修饰的玻碳电极的制备和电化学特性。发现这些化合物强烈且不可逆地吸附在预阳极氧化的玻璃碳电极上。通过循环伏安法在酸性水溶液中研究了修饰电极的电化学行为和稳定性。研究了pH对电极电化学行为的影响,选择pH 4.5作为最佳工作pH。通过循环伏安法,计时容量法和转盘电极伏安法测试了改性电极作为潜在的电催化剂将双氧还原为过氧化氢的能力,它们显示出优异的电催化能力,在pH为4.5的条件下,O-2的还原能力为比普通玻璃碳电极低380至470 mV。通过使用Koutecky-Levich图来确定这些修饰电极表面O-2还原的异质速率常数。另外,估计了O-2在缓冲的O-2-饱和水溶液中的表观扩散系数。 [参考:52]

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