化学
海水
碳酸氢盐
无机化学
格式化
缓冲溶液
电子转移
伏安法
电化学
库仑法
催化作用
光化学
物理化学
有机化学
电极
地质学
海洋学
作者
Rachel L. Pindar,Christopher Batchelor‐McAuley,Minjun Yang,Richard G. Compton
标识
DOI:10.1021/acs.jpcc.1c09142
摘要
The study of electrochemical reactions in seawater requires understanding of the associated coupled chemistry with the components of seawater, especially the role of the carbonate–bicarbonate buffer system in the case of proton-coupled electron transfer reactions. We report the comparative paradigmatic voltammetric response of the reversible hydrogen oxidation reaction in the absence or presence of dibasic phosphate, formate, or bicarbonate. Electrochemically and chemically reversible voltammetry is seen in aqueous 0.7 M NaCl at platinum macroelectrodes in the absence of a buffer, while the presence of chemically stable buffer systems, such as phosphate or formate, leads either to a cathodic shift in the oxidation potential for high buffer concentrations or to a split wave for concentrations approximately a factor of 2 less than the dissolved H2. In the case of bicarbonate buffer, the dehydration of carbonic acid on the voltammetric timescale leads to chemically irreversible voltammetric behavior, with a similar response measured in authentic seawater. Numerical simulations based on a simple Nernstian model with literature values for kinetic and thermodynamic parameters are reported, which display excellent agreement with the experiment.
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