Qin Rong, Chen Guanzhen, Feng Xueting, Weng Jiena, Han Yunhu
Institute of Flexible Electronics (IFE), Ningbo Institute of Northwestern Polytechnical University, Frontiers Science Center for Flexible Electronics, Northwestern Polytechnical University, Xi'an, Shaanxi, 710129, China.
Adv Sci (Weinh). 2024 Jun;11(21):e2309364. doi: 10.1002/advs.202309364. Epub 2024 Mar 19.
The generation of green hydrogen by water splitting is identified as a key strategic energy technology, and proton exchange membrane water electrolysis (PEMWE) is one of the desirable technologies for converting renewable energy sources into hydrogen. However, the harsh anode environment of PEMWE and the oxygen evolution reaction (OER) involving four-electron transfer result in a large overpotential, which limits the overall efficiency of hydrogen production, and thus efficient electrocatalysts are needed to overcome the high overpotential and slow kinetic process. In recent years, noble metal-based electrocatalysts (e.g., Ru/Ir-based metal/oxide electrocatalysts) have received much attention due to their unique catalytic properties, and have already become the dominant electrocatalysts for the acidic OER process and are applied in commercial PEMWE devices. However, these noble metal-based electrocatalysts still face the thorny problem of conflicting performance and cost. In this review, first, noble metal Ru/Ir-based OER electrocatalysts are briefly classified according to their forms of existence, and the OER catalytic mechanisms are outlined. Then, the focus is on summarizing the improvement strategies of Ru/Ir-based OER electrocatalysts with respect to their activity and stability over recent years. Finally, the challenges and development prospects of noble metal-based OER electrocatalysts are discussed.
通过水分解产生绿色氢气被视为一项关键的战略能源技术,质子交换膜水电解(PEMWE)是将可再生能源转化为氢气的理想技术之一。然而,PEMWE苛刻的阳极环境以及涉及四电子转移的析氧反应(OER)导致了较大的过电位,这限制了制氢的整体效率,因此需要高效的电催化剂来克服高过电位和缓慢的动力学过程。近年来,基于贵金属的电催化剂(如Ru/Ir基金属/氧化物电催化剂)因其独特的催化性能而备受关注,并且已经成为酸性OER过程的主导电催化剂,并应用于商业PEMWE装置中。然而,这些基于贵金属的电催化剂仍然面临性能与成本相冲突的棘手问题。在本综述中,首先,基于贵金属Ru/Ir的OER电催化剂根据其存在形式进行简要分类,并概述OER催化机制。然后,重点总结近年来Ru/Ir基OER电催化剂在活性和稳定性方面的改进策略。最后,讨论了基于贵金属的OER电催化剂面临的挑战和发展前景。