106 results on '"Bagger, Alexander"'
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2. Catalysis of C-N Coupling on High-Entropy Alloys
3. Electrochemical carbonyl reduction on single-site M–N–C catalysts
4. Steering carbon dioxide reduction toward C–C coupling using copper electrodes modified with porous molecular films
5. Near ambient N2 fixation on solid electrodes versus enzymes and homogeneous catalysts
6. Reduction reactions versus hydrogen
7. Predicting catalytic activity in hydrogen evolution reaction
8. Pt-Sn-Co nanocubes as highly active catalysts for ethanol electro-oxidation
9. Electrochemical Nitrogen Reduction: The Energetic Distance to Lithium.
10. Author Correction: Near ambient N2 fixation on solid electrodes versus enzymes and homogeneous catalysts
11. Uncovering the electrochemical interface of low-index copper surfaces in deep groundwater environments
12. Morphology and mechanism of highly selective Cu(II) oxide nanosheet catalysts for carbon dioxide electroreduction
13. Electrochemical CO2 Activation and Valorization on Metallic Copper and Carbon‐Embedded N‐Coordinated Single Metal MNC Catalysts.
14. Mechanistic reaction pathways of enhanced ethylene yields during electroreduction of CO2–CO co-feeds on Cu and Cu-tandem electrocatalysts
15. Single site porphyrine-like structures advantages over metals for selective electrochemical CO2 reduction
16. The Missing Link for Electrochemical CO2 Reduction: Classification of CO vs HCOOH Selectivity via PCA, Reaction Pathways, and Coverage Analysis.
17. Metal–organic framework electrocatalysis: More than a sum of parts?
18. Atomic metal coordinated to nitrogen-doped carbon electrocatalysts for proton exchange membrane fuel cells: a perspective on progress, pitfalls and prospectives.
19. Searching for the Rules of Electrochemical Nitrogen Fixation.
20. Reaching the Fundamental Limitation in CO2 Reduction to CO with Single Atom Catalysts.
21. Elucidating the Reaction Pathway of Glucose Electrooxidation to Its Valuable Products: The Influence of Mass Transport and Electrode Potential on the Product Distribution.
22. A Monolayer Carbon Nitride on Au(111) with a High Density of Single Co Sites.
23. 2022 roadmap on low temperature electrochemical CO2 reduction
24. FeNC Oxygen Reduction Electrocatalyst with High Utilization Penta‐Coordinated Sites.
25. Near ambient N2 fixation on solid electrodes versus enzymes and homogeneous catalysts.
26. Modeling Anion Poisoning during Oxygen Reduction on Pt Near-Surface Alloys.
27. Water Increases the Faradaic Selectivity of Li-Mediated Nitrogen Reduction.
28. Electrochemical Synthesis of Urea: Co-reduction of Nitric Oxide and Carbon Monoxide.
29. Correlations between experiments and simulations for formic acid oxidation.
30. Structure of the (Bi)carbonate Adlayer on Cu(100) Electrodes.
31. Improved Electrocatalytic Selectivity and Activity for Ammonia Synthesis on Diporphyrin Catalysts.
32. Limitations of Electrochemical Nitrogen Oxidation toward Nitrate.
33. Exploring the Composition Space of High-Entropy Alloy Nanoparticles for the Electrocatalytic H2/CO Oxidation with Bayesian Optimization.
34. Catalytic CO2/CO Reduction: Gas, Aqueous, and Aprotic Phases.
35. Correction to "Searching for the Rules of Electrochemical Nitrogen Fixation".
36. Nitrogen Reduction to Ammonia: Drawing a Path Toward Energy Efficiency.
37. Electrochemical Nitric Oxide Reduction on Metal Surfaces.
38. Role of Catalyst in Controlling N2 Reduction Selectivity: A Unified View of Nitrogenase and Solid Electrodes.
39. pH and Anion Effects on Cu–Phosphate Interfaces for CO Electroreduction.
40. Three-Dimensional Carbon Electrocatalysts for CO2 or CO Reduction.
41. High-Entropy Alloys as Catalysts for the CO2 and CO Reduction Reactions.
42. Electrochemical Interface during Corrosion of Copper in Anoxic Sulfide-Containing GroundwaterA Computational Study.
43. Ab Initio Cyclic Voltammetry on Cu(111), Cu(100) and Cu(110) in Acidic, Neutral and Alkaline Solutions.
44. Electrochemical CO2 Reduction: Classifying Cu Facets.
45. Activity–Selectivity Trends in the Electrochemical Production of Hydrogen Peroxide over Single-Site Metal–Nitrogen–Carbon Catalysts.
46. Electrochemical Reduction of CO2 on Metal-Nitrogen-Doped Carbon Catalysts.
47. Unraveling Mechanistic Reaction Pathways of the Electrochemical CO2 Reduction on Fe-N-C Single-Site Catalysts.
48. Efficient CO2 to CO electrolysis on solid Ni–N–C catalysts at industrial current densities.
49. Electrochemical CO Reduction: A Property of the Electrochemical Interface.
50. Fundamental limitation of electrocatalytic methane conversion to methanol.
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