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Potential Cycling Effects on Activities of Nickel-Mediated Benzyl Alcohol and Glycine Electrooxidation in Alkaline Solutions

机译:碱性溶液中镍介导苄醇和甘氨酸电氧化在碱性溶液中的潜在循环作用

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Nickel electrodes under continuous potential cycling were applied for the electrooxidation of benzyl alcohol and glycine in KOH solutions, and their activities were measured and compared by cyclic voltammetry. It is shown that intrinsic activities of both reactions decrease with the increasing catalyst loadings, and a more significant decreasing trend was observed in glycine electrooxidation when compared to benzyl alcohol electrooxidation. These phenomena may be explained by an increasing of mass loading induced a decrease of the catalyst surface conductivity, structure changes of Ni(OH) 2 from α-phase to β-phase, and the intercalation of glycine molecules into nickel hydroxide interlayers.
机译:镍电极在连续电位循环下应用于KOH溶液中的苄醇和甘氨酸的电氧化,并通过循环伏安法测量并比较它们的活性。结果表明,与苄醇电氧化相比,两种反应的内在活动随着催化剂载量的增加而降低,并且在甘氨酸电氧化中观察到更显着的降低。这些现象可以通过增加质量载荷诱导催化剂表面传导率的降低,从α相到β相的Ni(OH)2的结构变化,以及甘氨酸分子的插入氢氧化镍中间层。

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