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advances in additive manufacturing, functional polymer materials, and nanomaterials now offer a unique opportunity to develop smart, flexible sensors that can be integrated into technical textiles
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. The research combines polymer chemistry, electrochemistry, microscopy, and composite mechanics to design new electrolyte systems and evaluate their performance in structural battery composites. Who we
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as part of this postdoctoral position. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR5253-CAMBAK-004/Candidater.aspx Requirements Research FieldChemistryEducation LevelPhD
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RAP opportunity at National Institute of Standards and Technology NIST Hydration of polymer dielectrics Location Material Measurement Laboratory, Materials Science and Engineering Division
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Sorbonne Université SIS (Sciences, Ingénierie, Santé) | Paris 15, le de France | France | 12 days ago
to the formation of a solid polymer network. Building on previous work carried out in the laboratory, this PhD project aims to evaluate the influence of metal cations (lead, copper) on drying kinetics, the formation
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carbon polymers. This project will study rice plants that have been genetically engineered to enhance CO2 uptake and fixation in the leaves and to produce stable carbon polymers in the roots. The study
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of the developed materials are controlled in order to achieve precise properties adjusted to the needs of various application fields. Since polymers are the main building blocks of the developed structures, natural
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Ph.D. Position in Organic Chemistry, Polymer Chemistry, and/or Sol–Gel Chemistry & Materials Science
scientific objectives include: Elucidating how monomer structure, solvent choice, and oligomer formation govern polymerization pathways, phase behavior, and network evolution Understanding polymer–solvent
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contribute to exciting research in a collaborative and dynamic environment. This position offers an opportunity to take part in advanced research on the design and synthesis of porous polymers. You will work
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glucose and fructose into energy-rich intermediates like levulinic acid, a key building block for fuels, fine chemicals, and polymers. Zeolites are nanostructured aluminosilicate materials featuring