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for Catalysis and Organic Chemistry at the Department of Chemistry. The group has extensive experience in computational modelling, reaction mechanisms, and machine learning for catalyst design and discovery. Nova
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Materials, Bioinspired Materials and Sustainable Materials. For more details, please view https://www.ntu.edu.sg/mse/research . This position supports frontier research in the electrocatalysis of hydrogen
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(OES) and laser diagnostic tools will be used to study plasma properties and reaction pathways. Catalysts materials will be analyzed using appropriate characterization techniques. Several plasma sources
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functional dark matter, offering an unprecedented view of the molecular tricks used by the microbial world. The ERC MicroMet team, led by Dr. Tristan Wagner (https://www.ibs.fr/en/research/assembly-dynamics
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contribute to the research project “ZeoCAT: Zeotype-based Catalysts to produce consumables and fuels from recycled CO2 feedstock ” funded by the Research Council of Norway. The project aims to advance
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. Major advances have been made in diverse application areas: adsorbents, graphene biocarbons, co-crystals, cooperative multifunctional catalysts, bio-based catalysts, and bioaerogels. Molecular modeling
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Your Job: Development, preparation, and characterization of state-of-the-art and novel catalysts for polymer recycling towards hydrogen carrier molecules Characterization of polymer thin films
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PROJET-PEPR : MOF composites for the overall CO₂ reduction through panchromatic photocatalysis (M/F)
porous 'host' materials of the MOF (metal-organic framework) type, and functional host species (chromophores, molecular catalysts, metal nanoparticles, polyoxometalates). Here, we propose to develop new
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Institute of Low Temperature and Structure Research Polish Academy of Sciences | Poland | about 2 months ago
the research project: "Smart multicomponent catalysts for CO₂ valorization", carried out on behalf of the National Science Center SONATA 19 (grant no. 2023/51/D/ST4/00339) in the Division of Nanomaterials
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Engineering of Catalysts for Hydrofunctionalization Reactions: From Selectivity Control to a Predictive Model” project financed from the funds of Priority 2 of the European Funds for a Modern Economy Program