Lu Yuxuan, Yue Feng, Liu Tianyang, Huang Yu-Cheng, Fu Feng, Jing Yu, Yang Hengquan, Yang Chunming
Engineering Research Center of Ministry of Education for Fine Chemicals, School of Chemistry and Chemical Engineering, Shanxi Key Laboratory of the Green Catalytic Synthesis of Coal-based High Value Chemicals, Shanxi University, Taiyuan, PR China.
Shaanxi Key Laboratory of Chemical Reaction Engineering, College of Chemistry & Chemical Engineering, Yan'an University, Yan'an, Shaanxi, PR China.
Nat Commun. 2025 Mar 10;16(1):2392. doi: 10.1038/s41467-025-57097-x.
The synergistic Cu-Cu sites is regarded as the active species towards NH synthesis from the nitrate electrochemical reduction reaction (NORR) process. However, the mechanistic understanding and the roles of Cu and Cu remain exclusive. The big obstacle is that it is challenging to effectively regulate the interfacial motifs of Cu-Cu sites. In this paper, we describe the tunable construction of Cu-Cu interfacial structure by modulating the size-effect of CuO nanocube electrocatalysts to NORR performance. We elucidate the formation mechanism of Cu-Cu motifs by correlating the macroscopic particle size with the microscopic coordinated structure properties, and identify the synergistic effect of Cu-Cu motifs on NORR. Based on the rational design of Cu-Cu interfacial electrocatalyst, we develop an efficient paired-electrolysis system to simultaneously achieve the efficient production of NH and 2,5-furandicarboxylic acid at an industrially relevant current densities (2 A cm), while maintaining high Faradaic efficiencies, high yield rates, and long-term operational stability in a 100 cm electrolyzers, indicating promising practical applications.
协同的铜-铜位点被认为是硝酸盐电化学还原反应(NORR)过程中合成氨的活性物种。然而,对铜和铜的机理理解及其作用仍不明确。最大的障碍是有效调控铜-铜位点的界面结构具有挑战性。在本文中,我们描述了通过调节氧化铜纳米立方体电催化剂的尺寸效应来调控铜-铜界面结构对NORR性能的影响。我们通过将宏观粒径与微观配位结构性质相关联,阐明了铜-铜结构的形成机制,并确定了铜-铜结构对NORR的协同作用。基于对铜-铜界面电催化剂的合理设计,我们开发了一种高效的双电解系统,在工业相关电流密度(2 A cm)下同时实现氨和2,5-呋喃二甲酸的高效生产,同时在100 cm的电解槽中保持高法拉第效率、高产率和长期运行稳定性,显示出良好的实际应用前景。