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postdoctoral research project at the intersection of biology, polymer science, and engineering. The project focuses on the design, fabrication, and characterization of hydrogels and films for wound care and
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research on advanced nanomaterials for polymer, metal, and ceramic composite systems. The successful candidate will develop scalable processing approaches for incorporating one-dimensional (1D) and two
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the forefront of designing and utilizing molecularly imprinted polymers (MIP). The group combines fundamental materials research with the aim of bringing MIP as close as possible to commercial applications. It
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of fully biodegradable nutrient carriers and soil amendments derived from agricultural waste. This position offers a unique opportunity to work at the intersection of materials science, polymer chemistry
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scheduled to receive, a Ph.D. in an area broadly relevant to our research by the time employment starts, such as Biomedical Engineering, Material Science, Electrical Engineering, Polymer Science, Chemistry
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to join the team under the European CellPacT project. Job Duties The job duties will be the following: Develop, synthesise, and optimise organic, polymeric, and metal-organic materials for rechargeable
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, national origin and veteran or disability status. Minimum Qualifications Applicants have a PhD degree in cell biology, pharmacology, bioengineering, polymer chemistry, nanomedicines or a relevant field
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for improving the safety of LIBs Reinforced polymer composites In-depth understanding of the fire behaviors of materials for LIBs The candidate will acquire hands-on experience with flame retardancy, and polymers
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polymer characterization. Desired Qualifications Expertise in the characterization of polymeric materials. Familiarity with FTIR, NMR, and UV-vis spectroscopy, rheology, calorimetry, etc. Strong statistical
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expertise related to: Organic chemistry Polymer Science Hydrometallurgy Minerals engineering Environmental Science Job Description: Development of efficient and cost-effective additives through sustainable