Area of research
Mechanical Engineering · Biomedical Engineering
Research interest
Research interests include Catalysis, Chemistry, Hydrogenolysis, Inorganic chemistry, Bimetallic strip, and Molybdenum.
High-Pressure Catalytic Hydrogenation of Renewable Succinic Acid to 1,4-Butanediol for the Synthesis of Fully Bio-Based Poly(butylene succinate)
Evaluation of Ni/TiO <sub>2</sub> catalysts in the semi-hydrogenation of alkynols under mild conditions in water
Ultradispersed Mo/TiO<sub>2</sub>catalysts for CO<sub>2</sub>hydrogenation to methanol
Supported Molybdenum Carbide and Nitride Catalysts for Carbon Dioxide Hydrogenation
Importance of the decoration in shaped cobalt nanoparticles in the acceptor-less secondary alcohol dehydrogenation
Activity of heterogeneous supported Cu and Ru catalysts in acceptor-less alcohol dehydrogenation
Influence of Reduction–Carburization Parameters on the Performance of Supported Molybdenum Carbide Catalysts in Succinic Acid Hydrogenation
Unravelling Platinum–Zirconia Interfacial Sites Using CO Adsorption
Effect of carbon chain length on catalytic C O bond cleavage of polyols over Rh-ReOx/ZrO2 in aqueous phase
Solvent Effect in Hydrogenolysis of Xylitol over Bifunctional Ru/MnO/C Catalysts under Alkaline-Free Conditions
TiO2-supported molybdenum carbide: An active catalyst for the aqueous phase hydrogenation of succinic acid
Aerobic Oxidation of Glucose to Glucaric Acid under Alkaline-Free Conditions: Au-Based Bimetallic Catalysts and the Effect of Residues in a Hemicellulose Hydrolysate
Selective C−O Hydrogenolysis of Erythritol over Supported Rh‐ReO<sub><i>x</i></sub> Catalysts in the Aqueous Phase
Xylitol Hydrogenolysis over Ruthenium‐Based Catalysts: Effect of Alkaline Promoters and Basic Oxide‐Modified Catalysts
Base free oxidation of 1,6-hexanediol to adipic acid over supported noble metal mono- and bimetallic catalysts