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-anchoring amine sites will be explored to further increase the local concentration of CO2 at the surface of the electrode. This novel architecture is expected to achieve selective CO2RR towards C2+ products
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focused on exploring the molecular architecture of the cell wall of several microorganisms. These cell wall structures are made of proteins, lipids and polysaccharides and are crucial components of the cell
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of this project is to develop a new Exechon-type parallel robot architecture that can be moved for machining and drilling tasks on large parts in the aerospace and naval sectors. This architecture has to meet both
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design, and innovative computer architectures. Our research interests range from the study of fundamental phenomena to the design of new devices with potential for technological applications in information
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through porous structures. The candidate will use 3D printing tools to reproduce natural porous architectures (rocks, fractures, vessels, membranes) and image scalar transport using novel tomography
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manipulat giant lipid vesicles with diverse architectures for motility, reconfiguration and signaling under external stimuli. We will develop signaling mechanisms through the integration and actuation
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collaboration with another research team in the Institute (structuralists from Function and architecture of macromolecular assemblies team) and other collaborators at national (Université de Strasbourg and
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spraying (GIS) allowing the design of hierarchical helical architectures made of anisotropic nano-objects and (bio-)polymers and possessing tunable structural features (helix pitch and handedness
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into seven scientific departments, the laboratory constitutes a research center of excellence with scientific priorities such as: bioinformatics, system security, new software architectures, virtual reality
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catalysis, leading to a wide and successful use as ligands in many metal-catalysed transformations.[2] The design of complementary architectures, displaying various steric and electronic properties, easy to