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Field
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, conversion and storage, and organic optoelectronics intelligent and advanced polymers and materials. About the project: This project aims to lower energy consumption and increase the water recovery of
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(for 12 months) will be to study new methods for the synthesis and post-synthetic treatments of coordination polymers using supercritical fluids such as CO2 and NH3. The unexplored frontier between
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. Core Responsibilities: Conduct independent and collaborative research aligned with the themes above Mentor PhD and MS students Lead and co-author publications Optionally participate in workshop
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of advanced polymer-based particles and their integration into cementitious and construction-related environments. The postdoctoral researcher will closely collaborate with a PhD student recruited within
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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
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, and public relations Your qualifications: At least a very good PhD in polymer research Completed university degree (M.Sc./M.Eng.) in polymer science or related field Professional experience and
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include surfactants, polymers and biomolecules. The current project focusses on Soft Matter, in particular on the study of the flow properties of compressible colloids, microgels, combining scattering
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plastics. Perform routine analytical procedures to characterize polymer modification and degradation. 20% Study community dynamics of various microbial strains that have been found to degrade plastics and
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rigor in research studies. Support if required, the development of proposals for research funding. Candidate PROFILE: PhD in Organic Chemistry, Polymer Science, Materials Science, or related subject
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biological, chemical, and catalytic research . The center has strong thrusts in polymer design and upcycling, separations, synthetic biology and bioconversion, analytical sciences, computational modeling, and