CO Intermediate‐Assisted Dynamic Cu Sintering During Electrocatalytic CO<sub>2</sub> Reduction on Cu−N−C Catalysts

Yanyang Qin, Wenshan Zhao, Chenfeng Xia, Li‐Juan Yu, Fei Song, Jianrui Zhang, Tiantian Wu, Rui Cao, Shujiang Ding, Bao Yu Xia,

Angewandte Chemie International Edition · 2024 · 50 citations · 28 references

DOIFull text

Open access

Abstract

The electrochemical CO<sub>2</sub> reduction reaction (eCO<sub>2</sub>RR) to multicarbon products has been widely recognized for Cu-based catalysts. However, the structural changes in Cu-based catalysts during the eCO<sub>2</sub>RR pose challenges to achieving an in-depth understanding of the structure-activity relationship, thereby limiting catalyst development. Herein, we employ constant-potential density functional theory calculations to investigate the sintering process of Cu single atoms of Cu-N-C single-atom catalysts into clusters under eCO<sub>2</sub>RR conditions. Systematic constant-potential ab initio molecular dynamics simulations revealed that the leaching of Cu-(CO)<sub>x</sub> moieties and subsequent agglomeration into clusters can be facilitated by synergistic adsorption of H and eCO<sub>2</sub>RR intermediates (e.g., CO). Increasing the Cu<sup>2+</sup> concentration or the applied potential can efficiently suppress Cu sintering. Both microkinetic simulations and experimental results further confirm that sintered Cu clusters play a crucial role in generating C<sub>2</sub> products. These findings provide significant insights into the dynamic evolution of Cu-based catalysts and the origin of their activity toward C<sub>2</sub> products during the eCO<sub>2</sub>RR.

References

28