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Constraint of Reaction Intermediates in Ag@Cu2O Porous Core-Shell Nanospheres Toward Boosted CO2 Electroreduction to
Cong Liu1, Qing-Shan Wang1,2, Heng-Fei Cui1
1College of Energy and Mechanical Engineering, Shanghai University of Electric Power, Shanghai, 200090, P. R. China.
None:
At present, Cu-based catalysts have problems such as low current density and low selectivity of products during the electrochemical reduction of CO2. Herein, a porous core-shell structure Ag@Cu2O catalyst is constructed by an in situ growth method, where a layer of Cu2O is encapsulated outside Ag. The catalyst is promoted to generate CO by Ag with a lower energy barrier, and the porous Cu2O shell accelerates the diffusion of CO2 molecules and electrolyte through its continuous pores, while the physical confinement effect prolongs the residence time of CO intermediates on the surface of Cu2O, promoting CC coupling. Ag@2Cu2O demonstrates a 63% C2H4 Faradaic efficiency at an electrode potential of -1 V vs reversible hydrogen electrode. Moreover, the mechanical flexibility and stress buffering capacity of the porous structure enable the catalyst to maintain structural integrity during continuous operation for up to 12 h.
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