Revealing the active nature of oxide-derived copper is of key importance to understand its remarkable catalytic performance during the cathodic CO2 reduction reaction (CO2RR) to produce valuable hydrocarbons. Using advanced spectroscopy, electron microscopy, and electrochemically active surface area characterization techniques, the electronic structure and the changes in the morphology/roughness of thermally oxidized copper thin films were revealed during CO2RR. For this purpose, we developed an in situ cell for X-ray spectroscopy that could be operated accurately in the presence of gases or liquids to clarify the role of the initial thermal oxide phase and its active phase during the electrocatalytic reduction of CO2. It was found that the...
The variation in the morphology and electronic structure of copper during the electroreduction of CO...
Understanding the role of the oxidation state of the Cu surface and surface-adsorbed intermediate sp...
The variation in the morphology and electronic structure of copper during the electroreduction of CO...
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...
Revealing the active nature of oxide derived copper (OD-Cu) is of key importance to understand its r...
The variation in the morphology and electronic structure of copper during the electroreduction of CO...
The variation in the morphology and electronic structure of copper during the electroreduction of CO...
The variation in the morphology and electronic structure of copper during the electroreduction of CO...
The variation in the morphology and electronic structure of copper during the electroreduction of CO...
Redox-active copper catalysts with accurately prepared oxidation states (Cu0, Cu+ and Cu2+) and high...
Redox-active copper catalysts with accurately prepared oxidation states (Cu0, Cu+ and Cu2+) and high...
Catalyst degradation and product selectivity changes are two of the key challenges in the electroche...
Catalyst degradation and product selectivity changes are two of the key challenges in the electroche...
The variation in the morphology and electronic structure of copper during the electroreduction of CO...
The variation in the morphology and electronic structure of copper during the electroreduction of CO...
Understanding the role of the oxidation state of the Cu surface and surface-adsorbed intermediate sp...
The variation in the morphology and electronic structure of copper during the electroreduction of CO...
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...
Revealing the active nature of oxide derived copper (OD-Cu) is of key importance to understand its r...
The variation in the morphology and electronic structure of copper during the electroreduction of CO...
The variation in the morphology and electronic structure of copper during the electroreduction of CO...
The variation in the morphology and electronic structure of copper during the electroreduction of CO...
The variation in the morphology and electronic structure of copper during the electroreduction of CO...
Redox-active copper catalysts with accurately prepared oxidation states (Cu0, Cu+ and Cu2+) and high...
Redox-active copper catalysts with accurately prepared oxidation states (Cu0, Cu+ and Cu2+) and high...
Catalyst degradation and product selectivity changes are two of the key challenges in the electroche...
Catalyst degradation and product selectivity changes are two of the key challenges in the electroche...
The variation in the morphology and electronic structure of copper during the electroreduction of CO...
The variation in the morphology and electronic structure of copper during the electroreduction of CO...
Understanding the role of the oxidation state of the Cu surface and surface-adsorbed intermediate sp...
The variation in the morphology and electronic structure of copper during the electroreduction of CO...