论文标题
用于电催化实验的模块化流动池系统的表征,并与商业RRDE系统进行比较
Characterization of a modular flow cell system for electrocatalytic experiments and comparison to a commercial RRDE system
论文作者
论文摘要
发电机 - 收集器实验通过将产品和发电机电流相关联,提供了对电化学反应机制的见解。最常见的是,这些实验是使用旋转的环形电极(RRDE)进行的。我们开发了一个具有可交换发电机和检测器电极的双电极流动池(DEFC),其中电极宽度等于通道宽度。根据分析溶液,氯化钾电解质中PT电极上的Ferri-/Ferrocyanide氧化还原对夫妇的分析溶液,数值模拟和测量,讨论了RRDE和DEFC之间的共同点和差异。分析溶液与使用5和2 mm的电极宽度相符。但是,我们发现意外的依赖性对宽度的指数,因此无法使用常规分析解决方案分析更宽的电极。相比之下,所有研究的电极均显示收集效率比最小旋转速度或流速高35.4%,其中最狭窄的电极最准确,以精确的成本和最宽的电极为基础,最不准确,但最精确。我们使用可交换电极的Defc是商业RRDE的一种有吸引力的替代品,因为灵活地优化了所需反应的电极材料和几何形状。
Generator-collector experiments offer insights into the mechanisms of electrochemical reactions by correlating the product and generator currents. Most commonly, these experiments are performed using a rotating ring-disk electrode (RRDE). We developed a double electrode flow cell (DEFC) with exchangeable generator and detector electrodes where the electrode width equals the channel width. Commonalities and differences between the RRDE and DEFC are discussed based on analytical solutions, numerical simulations and measurements of the ferri-/ferrocyanide redox couple on Pt electrodes in a potassium chloride electrolyte. The analytical solutions agree with the measurements using electrode widths of 5 and 2 mm. Yet, we find an unexpected dependence on the exponent of the width so that wider electrodes cannot be analysed using the conventional analytical solution. In contrast, all the investigated electrodes show a collection efficiency of close to 35.4% above a minimum rotation speed or flow rate, where the narrowest electrode is most accurate at the cost of precision and the widest electrode the least accurate but most precise. Our DEFC with exchangeable electrodes is an attractive alternative to commercial RRDEs due to the flexibility to optimize the electrode materials and geometry for the desired reaction.