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Nicotinamide as a Catalyst for Zn2+ Electroreduction in Acetate Buffer

机译:尼古胺酰胺作为乙酸乙酸+电氧化物的催化剂

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The paper presents the catalytic influence of nicotinamide on Zn2+ electroreduction. Changes in differential capacitance curves of the double layer Hg/acetate buffer pH = 6.0 as well as changes in zero charge potential values indicate nicotinamide adsorption with the aromatic ring on the electrode surface. This adsorption is responsible for its catalytic influence on the kinetics of Zn2+ ion electroreduction from the acetate buffer solution. The effect is stronger with increasing nicotinamide concentration. It is confirmed by the following factors: the increase in standard electrode rate constants, the reduction in the distance between anode and cathodic peaks on CV voltamperograms, and the decrease in activation resistance associated with the electrode reaction for nicotinamide solutions relative to those obtained in the case of reference solution. A very high catalytic capacity of vitamin B-3 on Zn2+ ion electroreduction kinetics from pH = 6.0 acetate buffer can be explained by the formation of an active complex on the surface of the mercury electrode: Zn2+ nicotinamide, which can be described as a bridge facilitating electron exchange.
机译:本文介绍了烟酰胺对Zn2 +电输电的催化作用。双层Hg /醋酸盐缓冲液pH = 6.0的差分电容曲线的变化以及零充电电位值的变化表示烟酰胺吸附在电极表面上的芳环吸附。该吸附负责其对紫红酸盐缓冲溶液的Zn2 +离子电荷动力学的催化作用。随着烟酰胺浓度的增加,效果更强。通过以下因素证实:标准电极速率常数的增加,CV振振峰值上的阳极和阴极峰之间的距离减小,以及与烟酰胺溶液的电极反应相关的活化抗性相对于所获得的电极反应的降低。参考解决方案的情况。来自pH = 6.0乙酸乙酯缓冲液的Zn2 +离子电氧化尿动力学上的维生素B-3的非常高的催化能力可以通过在汞电极表面的表面上形成活性络合物来解释:Zn2 +烟酰胺,可以描述为桥梁促进电子交换。

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