Designing and regulating catalysts for enhanced oxygen evolution in acid electrolytes

析氧 电解水 电解 催化作用 分解水 电催化剂 贵金属 质子交换膜燃料电池 电解质 化学 纳米技术 电化学 材料科学 电极 生物化学 物理化学 光催化
作者
Cheng‐Zong Yuan,Hongrui Zhao,Siyu Huang,Jiang Li,Lunliang Zhang,Wekai Zhao,Yao Weng,Xiaomeng Zhang,Shufeng Ye,Yunfa Chen
出处
期刊: [Wiley]
卷期号:2 (4): 467-493 被引量:22
标识
DOI:10.1002/cnl2.77
摘要

Abstract The proton exchange membrane (PEM) water electrolyzer has been considered a versatile approach for practical H 2 production. However, the oxygen evolution reaction (OER) in acid media with complicated proton‐coupled electron transfer steps possesses sluggish kinetics and high reaction barriers, severely hindering the development of PEM water electrolyzers. Consequently, high‐efficient Ru‐ and Ir‐based catalysts have always been essential to accelerate the OER rate and lower the reaction barrier in PEM water electrolyzer. Therefore, it is very necessary to construct low‐cost catalysts with excellent electrocatalytic performances to replace these noble metal‐based OER electrocatalysts. In this review paper, a detailed discussion towards fundamentally comprehending the reaction mechanisms of OER was conducted. Accordingly, we proposed the principles of designing advanced OER electrocatalysts with enhanced performances and lowered costs. After that, recent developments in designing various acidic OER electrocatalysts were summarized. Meanwhile, the available regulation strategies about noble metals, nonprecious metals, and metal‐free nanomaterials were presented, which are promising for tuning the electronic structures, boosting the electrocatalytic performances, and reducing the costs of electrocatalysts. We also provided the existing challenges and perspectives of various OER electrocatalysts, hoping to promote the development of PEM water electrolyzers.
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