材料科学
电化学
氨
生化工程
桥接(联网)
催化作用
氨生产
纳米技术
稀缺
燃料电池
氧化还原
工作(物理)
铂金
计算机科学
工艺工程
电化学能量转换
反应机理
废水
有限的资源
生产成本
化学工业
作者
Yunfei Huan,Yanzheng He,Sisi Liu,Qiyang Cheng,Fengchun Zhou,Jin Wang,Mengfan Wang,Chenglin Yan,Tao Qian
标识
DOI:10.1002/aenm.202503815
摘要
Abstract Ammonia stands as a globally vital chemical compound, with the electrochemical ammonia oxidation reaction (AOR) serving as a cornerstone for advancing the ammonia economy. This reaction facilitates both energy and chemical production while contributing to environmental preservation. Recent years have witnessed significant progress in developing AOR catalysts, where platinum‐based materials remain the benchmark. Nevertheless, the scarcity and extremely high cost of platinum pose substantial barriers to widespread commercial adoption. In this context, nickel‐based materials have emerged as highly attractive alternatives, demonstrating considerable promise through notable achievements. In this review, a comprehensive overview is provided for Ni‐based AOR electrocatalysts with potential for practical applications. First, the fundamental mechanisms of the AOR and its practical implementations, including direct ammonia fuel cells and wastewater treatment are discussed. Subsequently, various types of developed Ni‐based catalysts are summarized, highlighting material innovations and performance enhancements. Finally, current technological limitations and outline promising research directions are highlighted. By bridging fundamental mechanisms with engineering requirements, this work offers valuable insights and design principles for developing next‐generation AOR catalysts tailored to specific applications, while suggesting novel implementations of ammonia electrooxidation technology.
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