Recent advances in non‐noble metal‐based electrocatalysts for hybrid water electrolysis systems

贵金属 电解 电解水 材料科学 纳米技术 环境科学 金属 冶金 化学 电极 电解质 物理化学
作者
Xiaoyu Zhang,Jiayi Wang,Kai Zong,Zhen Chen,Zhen Chen,Xin Yang,Lin Yang,Xin Wang,Zhongwei Chen,Zhongwei Chen
出处
期刊:Carbon energy [Wiley]
卷期号:7 (3) 被引量:47
标识
DOI:10.1002/cey2.679
摘要

Abstract The electrocatalytic water‐splitting process is widely acknowledged as the most sustainable and environmentally friendly technology for hydrogen (H 2 ) production. However, its energy efficiency is significantly constrained by the kinetically slow oxygen evolution reaction (OER) at the anode, which accounts for about 90% of the electrical energy consumption in the water‐splitting process. A new strategy is urgently needed to reduce its energy consumption. In recent years, electrochemical oxidation of small molecules has been considered for replacement of OER for efficient H 2 production, due to its benign operational conditions, low theoretical thermodynamic potential, high conversion efficiency and selectivity, and environmental sustainability. Hybrid electrolysis systems, by integrating cathodic hydrogen evolution reaction with anodic oxidation of small molecules, have been introduced, which can generate high‐purity H 2 and produce value‐added products or pollutant degradation. In this review, we highlight the recent advancements and significant milestones achieved in hybrid water electrolysis systems. The focus is on non‐noble metal electrocatalysts, reaction mechanisms, and the construction of electrolyzers. Additionally, we present the prevailing challenges and future perspectives pertinent to the evolution of this burgeoning technology.
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