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family of ceramic matrix composite materials with discontinuous reinforcements (DF). DF-CMCs have the advantage of being able to be formed by versatile processes such as injection molding or fused
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of the interaction between the material and the electrolyte. With these insights, alternative active material compositions could be proposed to improve lithium insertion or enhance the interaction with the electrolyte
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postdoctoral research topic is part of the ANR BiBOP project, Bi-Based nanOmaterials for Photocatalysis, which aims to develop thin layers of bismuth oxyfluorides, which are interesting materials
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processes—to precisely control the composition, size, and distribution of these nanocatalysts. These materials, with their exceptional properties, are designed to accelerate CO₂ methanation, a critical
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material compositions could be proposed to improve lithium insertion or enhance the interaction with the electrolyte. Degradation mechanisms observed by ITEN (e.g., transition metal leaching) could also by
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discharges as well as plasma applications, the study of the dielectric materials (polymers, ceramics, composites in particular) and their integration into electrical systems, the study and the design of
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composition, and their effects on material and ferroelectric parameters, including recrystallization temperature and remanent polarization. The work will be done by employing a range of static and operando