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at both ETH Zurich and Eawag. Job description The successful candidate will conduct fundamental research on WS/DP adsorption and establish (semi-)quantitative polymer structure–adsorption relationships by
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-of-the-art manufacturing techniques to enable seamless integration into industrial equipment and infrastructure. Key duties: The successful candidate is expected to: Have strong experience in polymers
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Institute (Strasbourg, France). He or she will be responsible for synthesizing functional polymers for the production of hybrid nanoparticles. He or she will work under the supervision of Dr. M. Vauthier and
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the Job related to staff position within a Research Infrastructure? No Offer Description Description of the workplace This position will be part of the research group for Polymer Technology within
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appointment in Pullman, WA, with a specialty in the in the areas of nanomedicine, targeted drug delivery, and polymer/dendrimer chemistry. The Sharma lab is developing rationally designed, smart, clinically
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. - Chemical modification of natural macromolecules (click chemistry, grafting of photosensitive groups) - polymers shaping : pastes, sprays, and nanofibers (electrospinning) - Characterization
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Their incorporation in polymers and full mechanical, rheological, thermal and chemical characterization Lead work packages in various ongoing projects Collaborating with polymer engineers and physicists for exploring
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these challenges by applying innovative coating techniques using polymer- and nanomaterial-based coatings. These advanced coatings will enhance not only the chemical and thermal stability of the LFP materials but
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SUSMAT-RC - Postdoc Position in Computer-Aided Design and Discovery of Sustainable Polymer Materials
for polymer-based materials. This project aims to leverage computational chemistry techniques and data-driven approaches to optimize the properties of novel polymer-based materials. Key duties The successful
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of the recruitment and description of the project We conduct both fundamental and applied research aimed at achieving nonlinear breakthroughs in catalysis and polymer science, with the goal of enabling the effective