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to an American Chemical Society Petroleum Research Fund project focused on the data-driven discovery of intermetallic alloy catalysts with unusual electronic structures. The research will combine first-principles
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depolymerization catalysts. Polymerization catalysis will be investigated using epoxides, carbon dioxide, cyclic anhydrides and cyclic esters/carbonates. The synthesis of polymerization catalysts will require
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materials, and development of advanced drug delivery systems. The main tasks involve: 1. Design and synthesis of polymers Synthesis of organic compounds, including monomers, initiators, or catalysts. Living
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.05-0063/25 „Smart 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
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characterization. The successful candidate will contribute to an externally funded research program focused on understanding structure-performance relationships in molybdenum-based zeolite catalysts for methane
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expertise in synthesizing, fabricating, and characterizing materials (conductive metal-organic frameworks, 2D & hierarchical structures, single-atom catalysts, etc.) for electrochemical energy conversion and
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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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, 2026, or as soon as possible thereafter. Your tasks The successful candidate will conduct research on developing catalysts for bicarbonate conversion using electrochemical methods. The focus will be
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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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DFT / ML workflows for mechanistic studies of photoredox, organometallic, and radical catalytic reactions. Building predictive models that connect quantum-chemical descriptors, catalyst structure