Karimi Vahid, Sharma Raghunandan, Morgen Per, Andersen Shuang Ma
Department of Green Technology, University of Southern Denmark, Campusvej 55, Odense M 5230, Denmark.
ACS Appl Mater Interfaces. 2023 Oct 25;15(42):49233-49245. doi: 10.1021/acsami.3c11290. Epub 2023 Oct 17.
Bubble coverage of catalytically active sites is one of the well-known bottlenecks to the kinetics of the oxygen evolution reaction (OER). Herein, various bubble removal approaches (electrode orientation, rotating, and sonication) were considered for the OER performance evaluation of a state-of-the-art Ir-based electrocatalyst. Key parameters, such as catalyst mass loss, activity, overpotential, and charge- and mass-transfer mechanisms, were analyzed. First, it was suggested that a suitable orientation of the working electrode facilitates coalescence and sliding bubble effects on the catalyst surface, leading to better electrochemical performance than those of the traditional rotating disk electrode (RDE) configuration. Then, the convection and secondary Bjerknes force were explained as the responsible phenomena in improving the OER activity in the RDE and sonication methods. Finally, simultaneous implementation of the methods enhanced the catalyst mass activity up to 164% and provided fast charge-transfer kinetics and low double-layer capacitance, which eventually led to a 22% reduction in overpotential, while the catalyst loss slightly increased from 1.93 to 3.88%.
催化活性位点的气泡覆盖率是析氧反应(OER)动力学中众所周知的瓶颈之一。在此,考虑了各种气泡去除方法(电极取向、旋转和超声处理)来评估一种先进的Ir基电催化剂的OER性能。分析了关键参数,如催化剂质量损失、活性、过电位以及电荷和传质机制。首先,研究表明工作电极的合适取向有利于催化剂表面上气泡的聚并和滑动效应,从而产生比传统旋转圆盘电极(RDE)配置更好的电化学性能。然后,对流和二次 Bjerknes 力被解释为在RDE和超声处理方法中提高OER活性的相关现象。最后,同时实施这些方法可将催化剂质量活性提高至164%,并提供快速的电荷转移动力学和低双层电容,最终使过电位降低22%,而催化剂损失从1.93%略微增加至3.88%。