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of a range of polyols derived from waste cooking oils. - Synthesis of polyurethanes from selected polyols. - Characterisation of the structures and properties of the obtained polyols and polymers (NMR
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are (i) to develop new bio-based synthons/monomers (ii), to provide pi-conjugated polymers and copolymers for (iii) organic photovoltaic devices and (iv) to achieve significant progress
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by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Determine the conditions for wrinkle formation during the drying of polymer solutions and
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Polypropylene (PP) and polyethylene (PE) are among the most widely produced polymers today. However, their ubiquity has generated an incredible amount of waste, which has motivated a worldwide transition toward a
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compositions (carbon, metal alloys, oxides, clays, polymers). The laboratory develops and characterizes these materials, seeking to understand and control their architecture (structure, organization
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organismal properties encoded in the interplay of multiple genes in a network? How does the polymer physics at the level of the DNA affect the identity of a particular cell type? Alternative questions
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engineered inorganic/hybrid solids and polymers to combine the best of both worlds (easy manufacturing, high fluxes per unit volume and high selectivity through advanced tailoring) to reach high gas mixture
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/or experience : PhD in mechanics or in polymer and composite materials science and engineerin Required technical and transversal skills : Expertise in polymer processing technologies Skills in
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key platform molecules, 5-hydroxymethylfurfural (5-HMF) offers exceptional potential for the production of bio-based polymers, fuels, and fine chemicals. However, conventional catalytic oxidation routes
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. - Chemical modification of natural macromolecules (click chemistry, grafting of photosensitive groups) - polymers shaping : pastes, sprays, and nanofibers (electrospinning) - Characterization