Advanced Electrocatalysis for Energy and Environmental Sustainability via Water and Nitrogen Reactions

氨生产 电合成 析氧 电催化剂 质子交换膜燃料电池 分解水 材料科学 电化学能量转换 催化作用 电化学 化学工程 化学 电极 有机化学 光催化 工程类 物理化学
作者
Yi Li,Huanhuan Wang,Cameron Priest,Siwei Li,Ping Xu,Gang Wu
出处
期刊:Advanced Materials [Wiley]
卷期号:33 (6) 被引量:365
标识
DOI:10.1002/adma.202000381
摘要

Clean and efficient energy storage and conversion via sustainable water and nitrogen reactions have attracted substantial attention to address the energy and environmental issues due to the overwhelming use of fossil fuels. These electrochemical reactions are crucial for desirable clean energy technologies, including advanced water electrolyzers, hydrogen fuel cells, and ammonia electrosynthesis and utilization. Their sluggish reaction kinetics lead to inefficient energy conversion. Innovative electrocatalysis, i.e., catalysis at the interface between the electrode and electrolyte to facilitate charge transfer and mass transport, plays a vital role in boosting energy conversion efficiency and providing sufficient performance and durability for these energy technologies. Herein, a comprehensive review on recent progress, achievements, and remaining challenges for these electrocatalysis processes related to water (i.e., oxygen evolution reaction, OER, and oxygen reduction reaction, ORR) and nitrogen (i.e., nitrogen reduction reaction, NRR, for ammonia synthesis and ammonia oxidation reaction, AOR, for energy utilization) is provided. Catalysts, electrolytes, and interfaces between the two within electrodes for these electrocatalysis processes are discussed. The primary emphasis is device performance of OER-related proton exchange membrane (PEM) electrolyzers, ORR-related PEM fuel cells, NRR-driven ammonia electrosynthesis from water and nitrogen, and AOR-related direct ammonia fuel cells.
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