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Electrocatalytic oxidation of methanol on a nickel electrode modified by nickel dimethylglyoxime complex in alkaline medium

机译:碱性介质中二甲基乙二肟镍配合物修饰的镍电极上甲醇的电催化氧化

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摘要

Electrocatalytic oxidation of methanol on a nickel disc electrode coated with nickel dimethyglyoxime complex (NiDMG), conditioned by potential recycling in a potential range of 100-700 mV (versus SCE) is studied by cyclic voltammetry in alkaline medium (0.10 M NaOH). The results show that the NiODMG layer formed at the surface of electrode behaves as an efficient electrocatalyst for the oxidation of methanol in alkaline medium via Ni(III) species with the cross exchange reaction occurring through out the layer at a low concentration of methanol. A plausible mechanism was proposed for catalytic oxidation of methanol at this modified electrode. Moreover, the effects of various parameters such as oven temperature, ligand concentration, potential scan rates, methanol concentration and media temperature on the electro-oxidation of methanol were investigated.
机译:通过循环伏安法在碱性介质(0.10 M NaOH)中研究了在100-700 mV(相对于SCE)电势范围内进行电势循环调节的条件下,甲醇在涂有二甲基乙二肟肟配合物(NiDMG)的镍圆盘电极上的电催化氧化。结果表明,在电极表面形成的NiODMG层是通过Ni(III)物种在碱性介质中氧化甲醇的有效电催化剂,并且在低浓度甲醇下贯穿该层发生了交叉交换反应。提出了在该修饰电极上催化氧化甲醇的合理机理。此外,研究了诸如烘箱温度,配体浓度,电势扫描速率,甲醇浓度和介质温度等各种参数对甲醇电氧化的影响。

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