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the most promising technologies for the degradation of these recalcitrant pollutants. They enable the in-situ generation of highly reactive oxidizing species without the addition of chemical reagents and can
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, cell biology, and tissue engineering. The project builds upon the complementary expertise of LAAS-CNRS and the RESTORE research center. LAAS-CNRS will provide expertise in microfabrication, microfluidic
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, that appear in solid-state systems of reduced dimensionality or nanometric size, as well as in materials with strong electronic correlations. The goal is to provide innovative solutions to major challenges in
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competencies: solid knowledge in wood chemistry and biorefinery processes good experience in analytical chemistry of saccharides ability in enzymatic processes is highly appreciated strong aptitude