Identification of Cu(100)/Cu(111) Interfaces as Superior Active Sites for CO Dimerization During CO2 Electroreduction | Journal of the American Chemical Society
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Theoretical Considerations on the Electroreduction of CO to C2 Species on Cu (100) Electrodes - Calle‐Vallejo - 2013 - Angewandte Chemie International Edition - Wiley Online Library
Identification of Cu(100)/Cu(111) Interfaces as Superior Active Sites for CO Dimerization During CO2 Electroreduction | Journal of the American Chemical Society
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Mechanism Investigations on Water Gas Shift Reaction over Cu(111), Cu(100), and Cu(211) Surfaces | ACS Omega
Identification of Cu(100)/Cu(111) Interfaces as Superior Active Sites for CO Dimerization During CO2 Electroreduction | Journal of the American Chemical Society
Lithiophilic Faceted Cu(100) Surfaces: High Utilization of Host Surface and Cavities for Lithium Metal Anodes - Gu - 2019 - Angewandte Chemie International Edition - Wiley Online Library
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Steps Control the Dissociation of CO2 on Cu(100) | Journal of the American Chemical Society
Identification of Cu(100)/Cu(111) Interfaces as Superior Active Sites for CO Dimerization During CO2 Electroreduction | Journal of the American Chemical Society
Abbildung 4. Oberflächenmorphologie von Cu(100) bei verschiedenen... | Download Scientific Diagram
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Surface characterization of copper electrocatalysts by lead underpotential deposition - ScienceDirect