Chalachew Mebrahtu
0000-0001-6122-0937
RWTH Aachen University
37 papers found
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Tandem catalysis for CO2 conversion to higher alcohols: A review
Non‐Oxidative Conversion of Methanol to Dimethyl Ether, Methyl Formate and Dimethoxymethane over Cu/Hβ Catalyst: Tailoring Product Selectivity
Hydrogen Loading and Release Potential of the LOHC System Benzyltoluene/Perhydro Benzyltoluene over S–Pt/TiO2 Catalyst
Ni-based hydrotalcite-derived catalysts for enhanced CO2 methanation: Thermal tuning of the metal-support interaction
Promotional effects of Ru and Fe on Ni/ZrO2 catalyst during CO2 methanation: A comparative evaluation of the mechanism
Assessing the efficiency of CO2 hydrogenation for emission reduction: Simulating ethanol synthesis process as a case study
Insights by in-situ studies on the nature of highly-active hydrotalcite-based Ni-Fe catalysts for CO2 methanation
Innovative elektrochemische Strategien für die Wasserstoffproduktion: Von der Stromspeicherung bis zur Stromerzeugung
Innovative Electrochemical Strategies for Hydrogen Production: From Electricity Input to Electricity Output
Thermodynamic Analysis of CO2 Hydrogenation to Ethanol: Solvent Effects
Hetero-site cobalt catalysts for higher alcohols synthesis by CO2 hydrogenation: A review
Influence and stability of the surface density of MoOx on TiO2 in deoxydehydration: structure–activity correlations
Stability and deactivation of OER electrocatalysts: A review
Thermodynamic Analysis of CO2 Hydrogenation to Higher Alcohols (C2–4OH): Effects of Isomers and Methane
On the Stability of Isolated Iridium Sites in N‐Rich Frameworks Against Agglomeration Under Reducing Conditions
Enhanced CO2 methanation activity over La2-xCexNiO4 perovskite-derived catalysts: Understanding the structure-performance relationships
Understanding promotional effects of trace oxygen in CO2 methanation over Ni/ZrO2 catalysts
Catalysts design for higher alcohols synthesis by CO2 hydrogenation: Trends and future perspectives
Hydrogenation of dimethyl oxalate to ethylene glycol on Cu/SiO2 catalysts prepared by a deposition-decomposition method: Optimization of the operating conditions and pre-reduction procedure
Integrated Co‐Electrolysis and Syngas Methanation for the Direct Production of Synthetic Natural Gas from CO2 and H2O
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