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of objects, but current techniques are limited to small particles (micrometer to millimeter scale). In optics, the slowing down of light ("slow light") in structured media significantly amplifies radiation
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substituted with vinyl units are key structural motifs in many biologically active molecules and complex natural products. Their efficient and selective construction remains a major challenge in modern organic
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spatially structured populations. The challenge is to understand how these rearrangements evolve not only in response to divergent selection, but also in response to the feedback loops generated by their own
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focus on the synthesis and self-assembly of bio-based glycopolymers with comb-like architectures for the design of colored structural materials. These copolymers exhibit interesting properties due
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of climate models. Simple parameterizations exist to represent melting beneath unresolved or partially resolved ice shelves, but they generally fail to capture the complexity of the response to changing ocean
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, nanostructuring, porosity) and their surface/interface physico-chemistry (functionalization, topography) in order to modulate or optimize their properties. The heterogeneous and complex structure of the studied
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offers a unique and stimulating scientific environment, structured around team meetings, laboratory seminars, and interdisciplinary public seminars focused on energy and transition-related topics. The PhD
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chemical processes, such as artificial photosynthesis. It relies on the combination of bulk photophysical processes and surface chemical processes within complex composite nanostructures, the interplay
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. One possible strategy is to use a polycation as a vector by complexing it with the mRNA. A key challenge is identifying a polymer capable of sufficiently complexing mRNA to protect it from enzymatic
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. The project is structured around two main components: i) Development of new tools based on eDNA and dPCR to improve the monitoring of freshwater pathogens ii) Study of the emerging pathogen Tetracapsuloides