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for the precision synthesis of polymers, using biomimetic and/or green chemistry approaches - develop functional polymeric materials by macromolecular engineering and self-assembly, particularly in the fields
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weight of the PHUs to enable the production of stable thin-film capacitors. • These bio-based polymers will be later integrated into sustainable energy-harvesting devices by a PhD student working in close
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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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SD-26085 POSTDOCTORAL RESEARCHER IN THE OXIDATIVE CHEMICAL VAPOR DEPOSITION OF FUNCTIONAL BUILDIN...
in December 2027). Is Your profile described below? Are you our future colleague? Apply now! Education · The candidate should have a PhD degree in Chemistry, Chemical Engineering, Materials
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» Materials engineeringEducation LevelPhD or equivalent Skills/Qualifications The candidate must hold a PhD in Materials Science, process engineering or chemistry with knowledge in biosourced materials
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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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resources and Environmental protection: natural attenuation and system resiLience), which aims to analyze the spatio-temporal evolution of waste from a former mining site that has been subject to weathering
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should hold a PhD in chemistry, materials science, or a related field, with a strong background in photocatalysis and (nano)materials chemistry. Good knowledge of English and scientific communication
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CRCN), 2 teacher-researchers (1 MdC, 1 Prof), 4 post-doctoral researchers, 7 PhD students, 1 technician, 2 Engineer. The M3 team provides a highly stimulating international research environment. The team
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of the fabricated samples. Research will be conducted in collaboration with PhD students and members of the Orsay group, using the expertise and manufacturing capabilities of the LPS as well as the neighbouring C2N