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the catalytic performance of these materials for the cycloaddition of CO₂ to epoxides, assessing both catalytic activity and enantioselectivity. She/he will also complete the characterization of the catalytic
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synthesis, complementary physicochemical characterization, and catalytic performance evaluation. The postdoctoral researcher will therefore contribute to a multidisciplinary effort aimed at establishing
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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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. - development of supported catalysts; - ink formulation and preparation of catalyst layers; - fabrication of optimized membrane-electrode assemblies and their testing in an electrolysis cell (performance and
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) - Characterization of deposited films (morphology, homogeneity, optical response, adhesion, stability, etc.) - Correlation between formulation parameters, process conditions, and final device performance
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atmosphere (a mixture of O2, H2O, and CO2), and to conduct experimental work on the gasification unit. The candidate will also be responsible for performing the analyses necessary to characterize the products
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over a very large area, using sputtering deposition techniques. The overall objective of the project is to define the parameters of this technology (integration of high-performance phase-change materials
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procedures; Perform experiments; Analyze and communicate data; Supervise students and technical staff The techniques used may cover all areas of genetics, cellular and molecular biology and biochemistry
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sites, and potential storage performance. The recruited researcher will develop and test rapid screening strategies for nanoporous carbons, based on structures numerically generated within the team
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and fabricating transparent and flexible microelectrode arrays (MEAs) based on conductive polymers for recording the electrical activity of enteric neuronal networks, as well as for performing cellular