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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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during cycling, (iv) complex shaping of full cells, and (v) overall cost. One particularly promising family is that of hydridoborates, especially boron cluster compounds like hydrido-(closo)-(car)borates
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to the polymethine family, which absorb intensely and specifically in the NIR region,4 for the development of transparent solar cells. The research is interdisciplinary and particularly challenging: the postdoctoral
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part of a project funded by the ANR and aimed at characterizing and quantifying a dual source (neutrons and X-rays) for probing materials. The project is taking place as part of an industrial
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of transportation and homes, as well as the greater increase in the electric share of decarbonized energy production (i.e., solar, wind, nuclear). However, during the AC/DC energy conversion, some energy is