脱氢
腈
催化作用
组合化学
电解
胺气处理
化学
合理设计
机制(生物学)
纳米技术
生化工程
电催化剂
材料科学
电解质
双功能
计算机科学
有机合成
有机化学
作者
Li‐Qun Chen,Wen‐Ping Zhang,Hao Tan,Yuping Zhang,Shuo Sun,Yancheng Zhu,Zhao‐Hua Yin,Hong Liu,Jianjun Wang
摘要
Electrocatalytic amine dehydrogenation to nitriles has emerged as a green and sustainable synthetic route, providing a promising alternative to traditional energy-intensive and polluting nitrile production processes. However, this field still faces significant challenges, such as limited catalytic activity and selectivity, insufficient mechanistic understanding, and a lack of systematic integration of catalyst and system design. To address these issues, this review comprehensively summarizes recent advances in electrocatalytic nitrile synthesis from amines. Beginning with the fundamental electrocatalytic mechanisms, we focus on rational design strategies for high-performance catalysts, highlighting how catalyst structures and electrolyte components regulate interfacial properties and reaction pathways. By integrating in situ characterization, theoretical calculations, and performance evaluation, we further identify key future research directions, including multi-scale optimization of catalytic systems, electrolyzer design, and techno-economic analysis. This review aims to offer theoretical insights and practical guidance for the development of efficient, stable, and scalable electrocatalytic systems for green nitrile synthesis.
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