硝酸盐
催化作用
绿色化学
生化工程
化学
纳米技术
电催化剂
合理设计
氨
氨生产
组合化学
废水
环境科学
氢气储存
多相催化
设计要素和原则
氧还原反应
选择性催化还原
还原(数学)
作者
Xichen Feng,Jinghuan Peng,Jianjun Chen,Guisheng Li,Hui Xu
出处
期刊:Chemsuschem
[Wiley]
日期:2026-07-12
卷期号:19 (14): e70865-e70865
摘要
) offers a green and sustainable approach for treating nitrogen-containing wastewater and is regarded as a promising alternative to the energy-intensive Haber-Bosch process. However, this reaction entails multielectron transfer and complex reaction pathways, and its efficiency is often hampered by competing side reactions such as the hydrogen evolution reaction, as well as challenges related to the safe storage and transport of products. These limitations underscore the urgent need to develop electrocatalysts that exhibit high activity, stability, and selectivity. Since their emergence, single-atom catalysts (SACs) have attracted extensive interest due to their exceptional atomic utilization efficiency and relatively low cost. To elucidate the structure-performance relationships and underlying catalytic mechanisms of SACs in nitrate electroreduction, this review summarizes recent advances in SAC-based electrocatalysts, highlighting various categories of single-atom materials and their corresponding design strategies. Finally, we outline future research directions for SACs in this field, with the aim of providing valuable insights and guidance for the rational design of efficient, low-energy, and environmentally benign electrocatalytic nitrate reduction systems toward practical industrial applications.
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