Wei Chao, Rao Reshma R, Peng Jiayu, Huang Botao, Stephens Ifan E L, Risch Marcel, Xu Zhichuan J, Shao-Horn Yang
School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue, 639798, Singapore.
The Cambridge Centre for Advanced Research and Education in Singapore, 1 CREATE way, Singapore, 138602, Singapore.
Adv Mater. 2019 Aug;31(31):e1806296. doi: 10.1002/adma.201806296. Epub 2019 Jan 18.
Electrochemical energy storage by making H an energy carrier from water splitting relies on four elementary reactions, i.e., the hydrogen evolution reaction (HER), hydrogen oxidation reaction (HOR), oxygen evolution reaction (OER), and oxygen reduction reaction (ORR). Herein, the central objective is to recommend systematic protocols for activity measurements of these four reactions and benchmark activities for comparison, which is critical to facilitate the research and development of catalysts with high activity and stability. Details for the electrochemical cell setup, measurements, and data analysis used to quantify the kinetics of the HER, HOR, OER, and ORR in acidic and basic solutions are provided, and examples of state-of-the-art specific and mass activity of catalysts to date are given. First, the experimental setup is discussed to provide common guidelines for these reactions, including the cell design, reference electrode selection, counter electrode concerns, and working electrode preparation. Second, experimental protocols, including data collection and processing such as ohmic- and background-correction and catalyst surface area estimation, and practice for testing and comparing different classes of catalysts are recommended. Lastly, the specific and mass activity activities of some state-of-the-art catalysts are benchmarked to facilitate the comparison of catalyst activity for these four reactions across different laboratories.
通过将氢作为水分解产生的能量载体进行电化学储能依赖于四个基本反应,即析氢反应(HER)、氢氧化反应(HOR)、析氧反应(OER)和氧还原反应(ORR)。在此,核心目标是推荐用于这四个反应活性测量的系统方案以及用于比较的基准活性,这对于促进高活性和稳定性催化剂的研发至关重要。本文提供了用于量化酸性和碱性溶液中HER、HOR、OER和ORR动力学的电化学电池设置、测量和数据分析的详细信息,并给出了迄今为止催化剂的最新比活性和质量活性的示例。首先,讨论实验设置以提供针对这些反应的通用指南,包括电池设计、参比电极选择、对电极问题和工作电极制备。其次,推荐实验方案,包括数据收集和处理,如欧姆和背景校正以及催化剂表面积估计,以及测试和比较不同类型催化剂的实践。最后,对一些最新催化剂的比活性和质量活性进行基准测试,以促进不同实验室对这四个反应的催化剂活性进行比较。