Nitrate‐Stabilized Cu <sup>δ+</sup> Sites Promote Selective CO <sub>2</sub> Electroreduction to Ethanol for Tandem Acetamide Electrosynthesis
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
Authors (9)
Chengying Guo
Institute of Molecular Plus, Department of Chemistry
Rong Yang
Nannan Meng
Department of Chemistry Institute of Molecular Plus School of Science Tianjin University Tianjin China
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
Minghao Guo
Institute of Molecular Plus, Department of Chemistry
Hongjiao Li
Institute of Entomology, College of Life Sciences, Nankai University
Ang Cao
Bin Zhang
Yifu Yu
Institute of Molecular Plus, Department of Chemistry