In this study we control the surface structure of Cu thin-film catalysts to probe the relationship between active sites and catalytic activity for the electroreduction of CO_2 to fuels and chemicals. Here, we report physical vapor deposition of Cu thin films on large-format (∼6 cm^2) single-crystal substrates, and confirm epitaxial growth in the , , and orientations using X-ray pole figures. To understand the relationship between the bulk and surface structures, in situ electrochemical scanning tunneling microscopy was conducted on Cu(100), (111), and (751) thin films. The studies revealed that Cu(100) and (111) have surface adlattices that are identical to the bulk structure, and that Cu(751) has a heterogeneous kinked surface with (110) ...
Revealing the active nature of oxide derived copper (OD-Cu) is of key importance to understand its r...
Revealing the active nature of oxide-derived copper is of key importance to understand its remarkabl...
Revealing the active nature of oxide-derived copper is of key importance to understand its remarkabl...
Despite significant theoretical efforts, the identification of the active sites for the electrochemi...
Despite significant theoretical efforts, the identification of the active sites for the electrochemi...
The lack of availability of efficient, selective and stable electrocatalysts is a major hindrance fo...
A national priority is to convert CO_2 into high-value chemical products such as liquid fuels. Becau...
The catalytic activity and hydrocarbon selectivity in electrochemical carbon dioxide (CO2) reduction...
The catalytic activity and hydrocarbon selectivity in electrochemical carbon dioxide (CO2) reduction...
The catalytic activity and hydrocarbon selectivity in electrochemical carbon dioxide (CO2) reduction...
Revealing the active nature of oxide-derived copper is of key importance to understand its remarkabl...
Tuning bimetallic effects is a promising strategy to guide catalytic properties. However, the nature...
The electrocatalytic CO2 reduction reaction (CO2RR) is a promising strategy for producing multi-carb...
Electrochemical CO2 conversion into value-added chemical feedstocks, if powered with renewable elect...
Electrochemical CO2 conversion into value-added chemical feedstocks, if powered with renewable elect...
Revealing the active nature of oxide derived copper (OD-Cu) is of key importance to understand its r...
Revealing the active nature of oxide-derived copper is of key importance to understand its remarkabl...
Revealing the active nature of oxide-derived copper is of key importance to understand its remarkabl...
Despite significant theoretical efforts, the identification of the active sites for the electrochemi...
Despite significant theoretical efforts, the identification of the active sites for the electrochemi...
The lack of availability of efficient, selective and stable electrocatalysts is a major hindrance fo...
A national priority is to convert CO_2 into high-value chemical products such as liquid fuels. Becau...
The catalytic activity and hydrocarbon selectivity in electrochemical carbon dioxide (CO2) reduction...
The catalytic activity and hydrocarbon selectivity in electrochemical carbon dioxide (CO2) reduction...
The catalytic activity and hydrocarbon selectivity in electrochemical carbon dioxide (CO2) reduction...
Revealing the active nature of oxide-derived copper is of key importance to understand its remarkabl...
Tuning bimetallic effects is a promising strategy to guide catalytic properties. However, the nature...
The electrocatalytic CO2 reduction reaction (CO2RR) is a promising strategy for producing multi-carb...
Electrochemical CO2 conversion into value-added chemical feedstocks, if powered with renewable elect...
Electrochemical CO2 conversion into value-added chemical feedstocks, if powered with renewable elect...
Revealing the active nature of oxide derived copper (OD-Cu) is of key importance to understand its r...
Revealing the active nature of oxide-derived copper is of key importance to understand its remarkabl...
Revealing the active nature of oxide-derived copper is of key importance to understand its remarkabl...