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用于促进电催化硝酸盐还原为氨的一维共轭铜苯胺配位聚合物的分子工程

Molecular engineering of 1D conjugated copper anilate coordination polymers for boosting electrocatalytic nitrate reduction to ammonia.

作者信息

Liu Zhanning, Xing Chengyong, Shan Yufei, Ma Min, Wu Shaowen, Ge Ruixiang, Xue Qingzhong, Tian Jian

机构信息

School of Materials Science and Engineering, Shandong University of Science and Technology Qingdao Shandong 266590 P. R. China

College of Chemical and Biological Engineering, Shandong University of Science and Technology Qingdao Shandong 266590 P. R. China.

出版信息

Chem Sci. 2025 Mar 18;16(16):7010-7017. doi: 10.1039/d4sc08508f. eCollection 2025 Apr 16.

Abstract

The electrochemical nitrate reduction reaction (NORR) offers a "two-birds-one-stone" solution by simultaneously addressing water pollution and enabling green ammonia production. However, its multiple reaction pathways and complex intermediates pose a challenge for designing high-efficiency electrocatalysts. The highly modular nature of metal coordination polymers (MCPs), combined with molecular engineering strategies, provides a pathway for systematically exploring the structure-performance relationships of catalysts. As a proof of concept, we here synthesized a series of π-d conjugated copper anilate coordination polymers incorporating different halogen atoms (F, Cl and Br). The combined experimental and theoretical investigations reveal that introducing halogen atoms with electron-withdrawing properties can create an electron-deficient Cu center through the interchain Cu⋯halogen supramolecular interactions, which can effectively lower the energy barrier for deoxygenation of the *NO intermediate. As a result, the Cu-FA (FA = fluoranilate, COF ) achieves a superior NORR performance with the faradaic efficiency (FE) of 98.17% and yielding rate of 14.308 mg h mg at -0.9 V, nearly 7.7 times that of the pristine Cu-DABQ (DABQ = 2,5-dihydroxy-1,4-benzoquinone, COH ). This study may provide new insights into the design of high-performance NORR electrocatalysts.

摘要

电化学硝酸盐还原反应(NORR)通过同时解决水污染问题和实现绿色氨生产提供了一种“一石二鸟”的解决方案。然而,其多种反应途径和复杂的中间体对设计高效电催化剂构成了挑战。金属配位聚合物(MCPs)高度模块化的性质,结合分子工程策略,为系统探索催化剂的结构-性能关系提供了一条途径。作为概念验证,我们在此合成了一系列包含不同卤素原子(F、Cl和Br)的π-d共轭铜苯胺配位聚合物。结合实验和理论研究表明,引入具有吸电子性质的卤素原子可以通过链间Cu⋯卤素超分子相互作用产生缺电子的Cu中心,这可以有效降低*NO中间体脱氧的能垒。结果,Cu-FA(FA = 氟苯胺,COF)在-0.9 V时实现了优异的NORR性能,法拉第效率(FE)为98.17%,产率为14.308 mg h mg,几乎是原始Cu-DABQ(DABQ = 2,5-二羟基-1,4-苯醌,COH)的7.7倍。这项研究可能为高性能NORR电催化剂的设计提供新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6156/12001914/915affd2a43c/d4sc08508f-s1.jpg

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