Research output

Near Unity Electrochemical CO2 to CO Conversion over Sn-doped Copper Oxide Nanoparticles

Yang, S.; Liu, Z.; An, H,; Arnouts, S.; de Ruiter, J.; Rollier, F.; Bals, S.; Atlantzis, T.; Costa Figueiredo, M.; Filot, I.A.W., Hensen, E.J.M.; Weckhuysen, B.M.; van der Stam, W.

Journal article 2022 Open access
59 Citations Scopus
References Not reported by Scopus
Yes Open access Hybrid OA

Abstract

converted into a catalytically active bimetallic Sn-doped Cu phase. Our work sheds light on the intimate relationship between the bimetallic structure and catalytic behavior, resulting in stable and selective oxide-derived Sn-doped Cu electrocatalysts.

Abstract from OpenAlex , checked 2026-06-29.

Citation

Yang, S.; Liu, Z.; An, H,; Arnouts, S.; de Ruiter, J.; Rollier, F.; Bals, S.; Atlantzis, T.; Costa Figueiredo, M.; Filot, I.A.W., Hensen, E.J.M.; Weckhuysen, B.M.; van der Stam, W. Near Unity Electrochemical CO2 to CO Conversion over Sn-doped Copper Oxide Nanoparticles. ACS Catal. 2022, 12 (24), 15146-15156. 10.1021/acscatal.2c04279

Download citation

Metric Source

Citation markers are read from Scopus when configured, with public DOI metadata as fallback, and cached locally. They can differ from Pure counts shown on institutional portals. Checked 2026-07-09 via Scopus.