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the activity and stability of iridium oxide-based catalysts supported on various materials within a PEM electrolysis cell. Catalyst layers and membrane-electrode assemblies will be prepared and characterized in
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enzyme mimics as green catalysts for chemical modification reactions, particularly Lytic Polysaccharide MonoOxygenases (LPMOs)—enzymes found in organisms (such as fungi) that modify or degrade cellulose
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equipped with a range of sample environments, including a Langmuir trough and a reactor for chemical vapour deposition (CVD) growth of 2D materials on liquid metal catalysts (LMCat). Current in-house
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a support for catalysts. The post-doc's objective will be to understand the mechanisms of plasmon-assisted catalysis and to follow in situ chemical reactions for surface enhanced Raman spectroscopy
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. - activities: • Synthesis of non-noble metal-based catalysts (e.g., doped metal oxide nanoparticles) • Physico-chemical and electrochemical characterization of nanocatalysts
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catalysts and immersed in an electrolyte containing the reactants. Hybrid porous organic/inorganic materials, known as Metal–Organic Frameworks (MOFs) or Covalent Organic Frameworks (COFs), are classes
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catalysts properties enabling to reach maximal performance will be identified. The Lyon Institute for Research into Catalysis and the Environment (IRCELyon) is a joint research unit under the supervision
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within the catalyst bed. Conductive materials (graphene, conductive SiC, and composites) both drive reactions and distribute heat, reducing losses, improving stability, and enabling compact, flexible