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Updated: Sep 13, 2025

Electrochemically and Bioelectrochemically Induced Ammonium Recovery
Published on: January 22, 2015
In-Situ Electrochemical Reconstruction of Copper Single-Sites to Dual-Sites for Ambient Urea Synthesis
Jiafang Liu1,2, Shengbo Zhang1,2, Zhixian Mao1,2
1Key Laboratory of Materials Physics, Centre for Environmental and Energy Nanomaterials, Anhui Key Laboratory of Nanomaterials and Nanotechnology, Institute of Solid State Physics, HFIPS, Chinese Academy of Sciences, Hefei, 230031, China.
Abstract:
Understanding and uncovering really catalytic active-sites during electrocatalysis is vital for carbon-nitrogen coupling reaction to synthesize urea. Here, we report a Copper (Cu) single-atom catalyst (Cu-N3 SAs) with a Cu-N3 coordination structure for the electrochemical coreduction of CO2 and NO3 - into urea. The in situ X-ray absorption spectroscopy (XAS) reveals that the Cu-N3 configured single-sites undergo electrochemically structural reconstruction to form N2-Cu-Cu-N2 dual-sites in Cu-N3 SAs, exhibiting efficient urea synthesis performance. The in-situ spectroscopy combined with mass spectrometry confirms that the initial C-N coupling reaction involves the formation of *CONH from *CO and *NH intermediates generated via the coreduction of CO2 and NO3 - on the N2-Cu-Cu-N2 dual-sites. The in-situ electrochemical formed Cu dual-sites not only enhance the adsorption of *CO, but also facilitates the multi-electron transfer processes with lowered energy barrier for the formation of *CONH intermediates.
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