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AbstractAbstract
[en] Inertial Confinement Fusion (ICF) is a technique widely studied by the French atomic commission (CEA). Experiments will be performed within the Laser Megajoule (LMJ). They require innovative materials like organic aerogels that constitute laser targets. Such polymeric material must provide both a high porosity and a significant titanium percentage (1 atom %). Moreover, the monomers developed must be compatible with the synthesis procedure already in use. According to these specifications, a new polymerizable titanium complex was synthesized and fully characterized. This air and moisture-stable monomer provides a high metal percentage. Its free-radical cross-linked copolymerization affords several titanium-containing polymers. These gels were dried under supercritical conditions and organic aerogels were obtained. The chemical compositions of these materials were investigated by NMR, IR and elemental analysis while their structure was characterized by MEB-EDS, MET, N2 adsorption/desorption isotherms measurements and SAXS. The data collected fit the specification requirements. Moreover, the mechanisms responsible of the foam nano-structure formation were discussed. (author)
[fr]
L'etude de la fusion par confinement inertiel du melange deuterium + tritium (DT) est une problematique depuis longtemps abordee par le CEA. Les experimentations liees a cette thematique, effectuees prochainement au sein du laser megajoule (LMJ), necessitent l'utilisation de materiaux aux proprietes particulieres. Cela concerne entre autres les mousses de polymeres (aerogels organiques) composant les cibles de pre-ignition. De tels materiaux doivent notamment associer une importante porosite a une forte teneur metallique (1% atomique de Ti), tout en etant compatible avec les procedes de preparation utilises. Dans ce contexte, un nouveau complexe polymerisable de titane a ete prepare et caracterise par plusieurs techniques d'analyses. Ce monomere dispose d'une forte teneur metallique tout en presentant une bonne stabilite vis-a-vis de l'air et de l'humidite. Sa copolymerisation radicalaire selon differentes conditions suivie d'un sechage en condition supercritique a permis l'obtention d'une serie d'aerogels organiques. Les caracterisations chimiques (RMN, infrarouge et analyses elementaires) ainsi que les caracterisations structurales (MEB-EDS, MET, mesure des isothermes d'adsorption/desorption de l'azote et SAXS) de ces polymeres ont permis de valider les criteres mentionnes dans notre cahier des charges. En outre, ces donnees ont permis de determiner les mecanismes de formation de la nano-structure des moussesOriginal Title
Realisation et caracterisation d'aerogels organiques a fortes teneurs metalliques obtenus a partir d'un complexe de titane polymerisable
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16 Dec 2010; 180 p; 126 refs.; Available from the INIS Liaison Officer for France, see the 'INIS contacts' section of the INIS-NKM website for current contact and E-mail addresses: http://www.iaea.org/inis/contacts/; Chimie des Materiaux
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Report
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Thesis/Dissertation
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