Hasan Menna M, Allam Nageh K
Energy Materials Laboratory, School of Sciences & Engineering, The American University in Cairo, Cairo, 11835, Egypt.
Sci Rep. 2022 Jun 7;12(1):9368. doi: 10.1038/s41598-022-13385-w.
Electrochemical hydrogen evolution reaction (HER) is typically studied in three-electrode system. In this system, several counter electrodes are commonly used to ensure fast kinetics, including Pt, gold, and glassy carbon. However, the extensive application of such electrodes has raised caveats on the contribution of the redox-active species dissolving from such electrodes and redepositing on the surface of the working electrode to the measured overpotential. Consequently, this has been frequently confused with the actual electrochemical signature of the working electrode catalyst, resulting in a deceptive enhancement in the recorded overpotential. This issue becomes more critical when the electrolysis measurements involve an activation step, necessitating the need for alternative counter electrodes that are stable, especially in acidic medium, which is commonly used as the electrolyte in HER studies. Herein, while we systematically unveil such problems, an alternative counter electrode that overcomes those problems is demonstrated. Specifically, the correlation between the working electrode area to that of the counter electrode, the dissolution rate of the counter electrode, and the potential range used in the activation/cleaning of the surface on accelerating the dissolution rate is explored and discussed in detail. Finally, commercial Ti mesh is demonstrated as an alternative emerging counter electrode, which is proven to be very stable and convenient to study the HER in acidic media.
电化学析氢反应(HER)通常在三电极系统中进行研究。在该系统中,通常使用几种对电极来确保快速动力学,包括铂、金和玻碳。然而,这类电极的广泛应用引发了人们对从这些电极溶解并重新沉积在工作电极表面的氧化还原活性物质对测量过电位的贡献的担忧。因此,这经常与工作电极催化剂的实际电化学特征相混淆,导致记录的过电位出现虚假增强。当电解测量涉及活化步骤时,这个问题变得更加关键,这就需要使用稳定的替代对电极,尤其是在酸性介质中,酸性介质通常用作HER研究中的电解质。在此,我们在系统揭示此类问题的同时,展示了一种克服这些问题的替代对电极。具体而言,详细探讨并讨论了工作电极面积与对电极面积之间的相关性、对电极的溶解速率以及在表面活化/清洁过程中使用的电位范围对加速溶解速率的影响。最后,商用钛网被证明是一种新兴的替代对电极,它在酸性介质中研究HER时非常稳定且方便。