Institute of Applied Electrochemistry, Beijing University of Chemical Technology, No. 15 of North Third Ring East Road, Chaoyang District, Beijing, 100029, China.
National Fundamental Research Laboratory of New Hazardous Chemicals Assessment & Accident Analysis, Institute of Electrochemical Engineering, Beijing University of Chemical Technology, No. 15 of North Third Ring East Road, Chaoyang District, Beijing, 100029, China.
Chem Commun (Camb). 2023 Jun 29;59(53):8205-8221. doi: 10.1039/d3cc00996c.
Hydrogen production through alkaline water electrolysis holds great promise as a scalable solution for renewable energy storage and conversion. The development of non-precious metal-based electrocatalysts with low-overpotential for alkaline water electrolysis is essential to decrease the cost of electrolysis devices. Although the Ni-based and Fe-based electrocatalysts have been commercially employed in the cathodic hydrogen evolution reaction (HER) and anodic oxygen evolution reaction (OER), it is imperative to persistently pursue the advancement of highly efficient electrocatalysts with enhanced current density and fast kinetics. This feature article overviews the progress of NiMo HER cathodes and NiFe OER anodes in the traditional alkaline water electrolysis process for hydrogen production, including the detailed mechanisms, preparation strategies, and structure-function relationship. Moreover, recent advances of Ni-based and Fe-based electrodes in the process of novel alkaline water electrolysis, involving small energetic molecule electro-oxidation and redox mediator decoupled water electrolysis, are also discussed for hydrogen production with low cell voltage. Finally, the perspective of these Ni-based and Fe-based electrodes in the mentioned electrolysis processes is proposed.
通过碱性水电解制氢具有很大的前景,可以作为可再生能源存储和转换的可扩展解决方案。开发具有低过电势的非贵金属基电催化剂对于降低电解装置的成本至关重要。虽然 Ni 基和 Fe 基电催化剂已经在阴极析氢反应 (HER) 和阳极析氧反应 (OER) 中得到商业应用,但必须持续追求具有更高电流密度和更快动力学的高效电催化剂的发展。本文综述了 NiMoHER 阴极和 NiFeOER 阳极在传统碱性水电解制氢过程中的进展,包括详细的机理、制备策略和结构-功能关系。此外,还讨论了 Ni 基和 Fe 基电极在新型碱性水电解过程中的最新进展,涉及小分子电氧化和氧化还原介体解耦水的电解,以实现低电池电压下的制氢。最后,提出了这些 Ni 基和 Fe 基电极在上述电解过程中的展望。