硝酸盐
催化作用
化学
产品(数学)
选择性
反应中间体
电子转移
还原(数学)
钥匙(锁)
组合化学
电催化剂
反应中间体
生化工程
纳米技术
反应机理
氢
计算机科学
化学反应
氮气
选择性还原
化学合成
反应条件
透视图(图形)
氧还原反应
作者
Yingying Zhou,Jie Wu,Weisong Li,Yuchen Yang,Qing Xia,Yile Yang,Xiao Zhang
摘要
ABSTRACT Electrocatalytic nitrate (NO 3 − ) reduction reaction (eNO 3 RR) has emerged as a promising strategy for waste NO 3 − valorization, offering opportunities for environmental remediation. However, its complex proton‐coupled electron transfer processes involve multiple competing pathways, in which the fate of key intermediates governs reaction activity and product selectivity. In this review, we provide an intermediate‐centered perspective on eNO 3 RR, covering the reaction pathways from NO 3 − activation to the selective synthesis of NH 3 , N 2 , and NH 2 OH. We then summarize current techniques for probing N‐containing intermediates and active hydrogen (*H). On this basis, we discuss how catalyst design and microenvironment engineering regulate key processes in eNO 3 RR, including intermediate adsorption, retention and desorption, N─O bond cleavage, hydrogenation, and N─N coupling. We also examine the emerging role of data‐driven approaches in optimizing eNO 3 RR systems. Drawing these discussions together, we distill principles for selective product synthesis. Finally, we discuss remaining challenges in achieving a deeper mechanistic understanding, regulating the interfacial microenvironment, and applying eNO 3 RR to real wastewater.
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