Zheng Yao, Jiao Yan, Vasileff Anthony, Qiao Shi-Zhang
School of Chemical Engineering, University of Adelaide, Adelaide, SA 5005, Australia.
School of Materials Science and Engineering, Tianjin University, Tianjin, 300072, China.
Angew Chem Int Ed Engl. 2018 Jun 25;57(26):7568-7579. doi: 10.1002/anie.201710556. Epub 2018 May 14.
The hydrogen evolution reaction (HER) is a fundamental process in electrocatalysis and plays an important role in energy conversion for the development of hydrogen-based energy sources. However, the considerably slow rate of the HER in alkaline conditions has hindered advances in water splitting techniques for high-purity hydrogen production. Differing from well documented acidic HER, the mechanistic aspects of alkaline HER are yet to be settled. A critical appraisal of alkaline HER electrocatalysis is presented, with a special emphasis on the connection between fundamental surface electrochemistry on single-crystal models and the derived molecular design principle for real-world electrocatalysts. By presenting some typical examples across theoretical calculations, surface characterization, and electrochemical experiments, we try to address some key ongoing debates to deliver a better understanding of alkaline HER at the atomic level.
析氢反应(HER)是电催化中的一个基本过程,在基于氢的能源开发的能量转换中起着重要作用。然而,在碱性条件下HER的速率相当缓慢,这阻碍了用于生产高纯度氢气的水分解技术的进展。与有充分文献记载的酸性HER不同,碱性HER的机理方面尚未得到解决。本文对碱性HER电催化进行了批判性评估,特别强调了单晶模型上的基础表面电化学与实际电催化剂的衍生分子设计原则之间的联系。通过展示理论计算、表面表征和电化学实验中的一些典型例子,我们试图解决一些关键的当前争议,以便在原子水平上更好地理解碱性HER。