Nitrate‐Stabilized Cu <sup>δ+</sup> Sites Promote Selective CO <sub>2</sub> Electroreduction to Ethanol for Tandem Acetamide Electrosynthesis

C Chengying Guo (Institute of Molecular Plus, Department of Chemistry) R Rong Yang N Nannan Meng (Department of Chemistry Institute of Molecular Plus School of Science Tianjin University Tianjin China) J Jiang Shao (Beijing National Laboratory for Molecular Sciences (BNLMS), State Key Laboratory of Rare Earth Materials Chemistry and Applications, PKU-HKU Joint Laboratory in Rare Earth Materials and Bio-inorganic Chemistry, College of Chemistry and Molecular Engineering) M Minghao Guo (Institute of Molecular Plus, Department of Chemistry) H Hongjiao Li (Institute of Entomology, College of Life Sciences, Nankai University) A Ang Cao B Bin Zhang Y Yifu Yu (Institute of Molecular Plus, Department of Chemistry)

Abstract

ABSTRACT Electrosynthesis of acetamide, a multicarbon nitrogenous compound containing C─C─N bonds, from abundant CO 2 and nitrate is important for low‐carbon industry. However, the simultaneous electroreduction construction of C─C and C─N bonds is challenging. Herein, we propose a strategy to construct C─C and C─N bonds in tandem at the cathode and anode, respectively. At the cathode, a nitrate‐induced dynamic Cu δ+ site is designed to promote C─C coupling activity from CO 2 reduction to ethanol, which is accompanied by the generation of ammonia from nitrate reduction, with a total Faradaic efficiency of 88.6%. The generated ethanol and ammonia serve as feedstocks for the tandem construction of C─N bonds at the anodic region via a possible nucleophilic attack pathway. We achieve the synthesis of acetamide with a Faradaic efficiency of 71.4% and a yield rate of 0.13 mmol h −1 cm −2 . The carbon footprint analysis of this tandem strategy revealed net‐zero emissions at a carbon intensity of 0.23 kg CO2e kWh −1 , indicating its sustainable nature from the viewpoint of carbon neutrality.

Article Details

Volume / Issue Vol. 65, Issue 30
Published July 20, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (9)

C

Chengying Guo

Institute of Molecular Plus, Department of Chemistry

R

Rong Yang

N

Nannan Meng

Department of Chemistry Institute of Molecular Plus School of Science Tianjin University Tianjin China

J

Jiang Shao

Beijing National Laboratory for Molecular Sciences (BNLMS), State Key Laboratory of Rare Earth Materials Chemistry and Applications, PKU-HKU Joint Laboratory in Rare Earth Materials and Bio-inorganic Chemistry, College of Chemistry and Molecular Engineering

M

Minghao Guo

Institute of Molecular Plus, Department of Chemistry

H

Hongjiao Li

Institute of Entomology, College of Life Sciences, Nankai University

A

Ang Cao

B

Bin Zhang

Y

Yifu Yu

Institute of Molecular Plus, Department of Chemistry