Kinetics of Formic Acid Electrooxidation on Anodically Modified Silver–Palladium Alloys

IF 1.1 4区 工程技术 Q4 ELECTROCHEMISTRY
E. V. Bedova, O. A. Kozaderov
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引用次数: 0

Abstract

The electrocatalytic activity of electrode materials synthesized by anodic selective dissolution of Ag–Pd alloys based on silver (4 and 8 at % Pd) was studied. Kinetic regularities of formic acid electrooxidation on palladium and anodically modified Ag–Pd alloys in an acidic sulfate solution have been established. The process includes the diffusion of HCOOH, its dissociative chemisorption, and irreversible ionization of atomic hydrogen. The conditions for formic acid anodic oxidation on Pd and Ag–Pd alloys were determined depending on the composition of the electrode system and the mode of preliminary electrochemical modification (selective dissolution) of the alloy using transient electrochemical measurements. The role of the surface development of an alloy in the kinetics of anodic degradation of formic acid was revealed. It was shown that the selective dissolution of Ag–Pd alloys contributes to a noticeable increase in the rate of the kinetic stage of atomic hydrogen ionization. A necessary condition for the activation of the anodically modified alloy in relation to the electrooxidation of HCOOH is the excess of both critical parameters (charge and potential) corresponding to the onset of morphological development and phase transformations in the surface layer of the Ag–Pd systems.

Abstract Image

阳极改性银钯合金上的甲酸电氧化动力学
摘要 研究了通过阳极选择性溶解银基银钯(4%和 8%钯)合金合成的电极材料的电催化活性。研究确定了钯和阳极改性银钯合金在酸性硫酸盐溶液中发生甲酸电氧化反应的动力学规律。该过程包括 HCOOH 的扩散、其离解化学吸附以及原子氢的不可逆电离。甲酸在钯和银钯合金上进行阳极氧化的条件取决于电极系统的组成以及使用瞬态电化学测量对合金进行初步电化学改性(选择性溶解)的模式。研究揭示了合金表面发展在甲酸阳极降解动力学中的作用。研究表明,Ag-Pd 合金的选择性溶解有助于显著提高原子氢离子化动力学阶段的速率。与 HCOOH 电氧化有关的阳极修饰合金活化的一个必要条件是,与 Ag-Pd 系统表层形态发展和相变开始相应的两个临界参数(电荷和电位)都过剩。
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来源期刊
Russian Journal of Electrochemistry
Russian Journal of Electrochemistry 工程技术-电化学
CiteScore
1.90
自引率
8.30%
发文量
102
审稿时长
6 months
期刊介绍: Russian Journal of Electrochemistry is a journal that covers all aspects of research in modern electrochemistry. The journal welcomes submissions in English or Russian regardless of country and nationality of authors.
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