电催化剂
材料科学
法拉第效率
共价键
催化作用
阴极
氧烷
氨
同步加速器
共价有机骨架
再分配(选举)
密度泛函理论
产量(工程)
多孔性
无机化学
电化学
单独一对
化学物理
活动站点
纳米技术
量子产额
协调数
光化学
氨生产
配位复合体
配体(生物化学)
电子结构
化学工程
作者
Mingqing Shan,Guo jinhao,Zhixin Zhang,Jie Zhou,Lin Li,Longyu Cheng,Xiuyang Zou,Siyu Guo
摘要
ABSTRACT Efficient multielectron electrocatalysis in layered covalent organic frameworks (COFs) is frequently limited by weak cross‐plane charge delivery to pore‐confined active sites. Herein, we report the construction of two metal‐bridged COFs (Py1‐COF‐Cu and Py2‐COF‐Cu) by incorporating nitrogen‐containing heterocycles to facilitate interlayer Cu─N coordination. This design generates continuous linear coordination chains within the 1D channels while maintaining high intrinsic porosity. Synchrotron XANES confirms the Cu─N coordination environment, and DFT reveals realigned frontier‐orbital energetics together with pronounced redistribution of electron density along the interlayer direction. Among them, the optimized Py2‐COF‐Cu serves as a highly active cathode catalyst for the electroreduction of nitrate to ammonia in neutral media. It delivers a maximum Faradaic efficiency of 87.8% and a peak NH 3 yield rate of 4964.6 µmol h −1 mg −1 at ‐1.0 V vs. RHE, comparable to leading Cu‐based NO 3 RR catalysts. This interlayer coordination motif provides a structural lever to couple ordered porosity with effective cross‐plane charge transport for demanding multielectron reactions.
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