Wang Yan, Xia Shuai, Chen Kui, Zhang Jianfang, Yu Cuiping, Wu Jingjie, Wang Peng, Zhang Wenjun, Wu Yucheng
School of Materials Science and Engineering, Hefei University of Technology, Hefei, 230009, China.
Institute of Energy, Hefei Comprehensive National Science Center (Anhui Energy Laboratory), Hefei University of Technology, Hefei, 230009, China.
Angew Chem Int Ed Engl. 2025 May 26;64(22):e202503011. doi: 10.1002/anie.202503011. Epub 2025 Apr 10.
The electrochemical C─N coupling of CO and nitrogenous species provides a promising approach for synthesizing valuable chemicals such as urea, amides, and other C─N compounds. However, the unbalanced formation of C- and N-intermediates results in slow C─N coupling kinetics. Herein, we report an atomically Pd-bridged Cu/CuO (Pd-Cu/CuO) catalyst, synthesized through the in situ electrochemical reconstruction of Pd-CuTe nanosheets. This catalyst features Pd-Cu dual sites that significantly enhance C─N coupling both thermodynamically and kinetically. The reconstructed Pd-Cu/CuO achieves a urea yield rate of 31.8 mmol h g and a Faradaic efficiency (FE) of 42.2%, along with excellent stability over 100 h. In situ spectroscopic examinations and theoretical calculations disclose that the Pd-Cu dual sites on Pd-Cu/CuO modulate the reduction kinetics of CO and NO , balance the formation of crucial *CO and *NH intermediates, and lower the energy barrier for C─N coupling, thereby facilitating urea synthesis. Furthermore, the Pd-Cu/CuO enables the unprecedented C─N coupling of aniline with CO, resulting in a remarkable acetanilide yield rate of 1021.2 mmol h g with an FE of 23.7%. This heteroatom bridging strategy offers a new pathway for designing efficient electrocatalyst for the synthesis of C─N coupled compounds.
一氧化碳与含氮物种的电化学C─N偶联为合成尿素、酰胺和其他C─N化合物等有价值的化学品提供了一种很有前景的方法。然而,C-和N-中间体的不平衡生成导致C─N偶联动力学缓慢。在此,我们报道了一种通过Pd-CuTe纳米片的原位电化学重构合成的原子级Pd桥连Cu/CuO(Pd-Cu/CuO)催化剂。该催化剂具有Pd-Cu双位点,在热力学和动力学上均显著增强了C─N偶联。重构后的Pd-Cu/CuO实现了31.8 mmol h g的尿素产率和42.2%的法拉第效率(FE),并在100 h以上具有出色的稳定性。原位光谱研究和理论计算表明,Pd-Cu/CuO上的Pd-Cu双位点调节了CO和NO的还原动力学,平衡了关键CO和NH中间体的形成,并降低了C─N偶联反应的能垒,从而促进了尿素的合成。此外,Pd-Cu/CuO实现了苯胺与CO前所未有的C─N偶联,得到了1021.2 mmol h g的显著乙酰苯胺产率和23.7%的FE。这种杂原子桥连策略为设计用于合成C─N偶联化合物的高效电催化剂提供了一条新途径。