Silver‐Modulated Copper Dynamics Under Pulsed Tandem Electrochemical CO 2 Reduction
Abstract
ABSTRACT Pulsed electrolysis and Cu‐Ag tandem catalysis are both promising strategies for electrochemical CO 2 reduction, yet their interplay remains unclear. Here, we show that pulsed operation does not preserve the as‐prepared Cu‐Ag catalyst and instead generates a dynamic bimetallic working state in situ. During prolonged electrolysis, the catalyst evolves toward a favorable selectivity profile with significantly increased CO formation, persistent ethylene production, and suppressed hydrogen, methane, and formate pathways. Correlative SEM/EDS, XPS, ToF‐SIMS, ICP‐MS, and STEM‐EELS show that this behavior arises from Ag‐modulated Cu dissolution and redeposition under pulsed conditions. The resulting catalyst develops near‐surface Ag enrichment, a topmost catalytically relevant layer containing both Cu and Ag, persistent Cu loss to the electrolyte, and subsurface cavities. Comparison with pure Cu under identical pulsed conditions further shows that Ag redirects the restructuring pathway of Cu toward a distinct Ag‐rich yet still Cu‐active catalytic state. Under pulsed CO 2 reduction, Ag therefore acts as a tandem component for CO formation and as a regulator of catalyst evolution.
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Authors: Blaž Tomc, Rajeena Uruniyengal, Matjaž Finšgar, Mitja Kostelec, Matic Plut, Piotr Dobroń, A. Dębski, Agata Baran, Paweł Jóźwik, Marjan Bele, Martin Šala, Mohammed Azeezulla Nazrulla, Małgorzata Norek, Francisco Ruiz‐Zepeda, Ana Rebeka Kamšek, Nejc Hodnik, Wojciech J. Stępniowski
Institutions: University of Nova Gorica, University of Maribor, Military University of Technology in Warsaw, Institute of Metals and Technology, National Institute of Chemistry, National Education Institute of the Republic of Slovenia, Institute of Metallurgy and Materials Science, National Institute of Biology