Institute of Chemistry, Faculty of Natural Sciences and Mathematics, Ss Cyril and Methodius University, P.O. Box 162, 1000 Skopje, Republic of Macedonia.
Anal Chem. 2013 Jun 4;85(11):5586-94. doi: 10.1021/ac4008573. Epub 2013 May 23.
The influence of the potential pulse height of square-wave voltammetry (SWV) (i.e., the SW amplitude) is studied for a variety of quasireversible electrode mechanisms, including a simple solution-phase electrode reaction at a planar or spherical electrode, a solution phase electrode reaction coupled with a reversible follow-up chemical reaction, and a diffusionless surface confined electrode reaction. The electrode kinetics of all the electrode mechanisms depends critically on the SW amplitude, and the quasireversible kinetic region is a function of both frequency-related electrode kinetic parameters and the SW amplitude. Thus, a novel methodology for electrode kinetics measurements is proposed by altering the SW amplitude only, at a fixed frequency of the SW potential modulation, that is, at a constant scan rate of the voltammetric experiment. Electrode kinetic measurements at a constant SW frequency are of exceptional importance especially when complex electrode mechanisms are studied, which depend on several frequency-related kinetic parameters. The electrode kinetic measurements are based on a novel feature termed the "amplitude-based quasireversible maximum", manifested as a parabolic dependence of the amplitude-normalized net SW peak current versus the SW amplitude. The position of the amplitude-based quasireversible maximum depends on the standard rate constant of the electrode reaction, enabling estimation of this important kinetic parameter in a simple and fast procedure. The novel quasireversible maximum is attributed to all studied electrode mechanisms, implying that it is a general feature of most electrode mechanisms under conditions of SWV.
方波伏安法(SWV)的潜在脉冲高度(即 SW 幅度)的影响对于各种准可逆电极机制进行了研究,包括平面或球形电极上的简单溶液相电极反应、与可逆后续化学反应偶联的溶液相电极反应以及无扩散表面受限电极反应。所有电极机制的电极动力学都严重依赖于 SW 幅度,准可逆动力学区域是频率相关电极动力学参数和 SW 幅度的函数。因此,通过仅改变 SW 幅度(在 SW 电位调制的固定频率下)提出了一种新的电极动力学测量方法,即在伏安实验中保持恒定的扫描速率。在恒定 SW 频率下进行电极动力学测量特别重要,特别是当研究依赖于几个频率相关动力学参数的复杂电极机制时。电极动力学测量基于一个新的特征,称为“基于幅度的准可逆最大值”,表现为幅度归一化净 SW 峰值电流与 SW 幅度的抛物线关系。基于幅度的准可逆最大值的位置取决于电极反应的标准速率常数,能够以简单快速的方式估算这个重要的动力学参数。新的准可逆最大值归因于所有研究的电极机制,这意味着它是 SWV 条件下大多数电极机制的一般特征。