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and properties of these new polymer materials, as well as their application potential. The main objective is to develop new synthesis strategies and new knowledge on how these bio-based polymers should
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the project at cordis . As overall challenging objective the project targets to design materials that will be biobased, biodegradable, compostable, recyclable and suitable for food contact applications
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positions for junior researchers, priority is given to candidates with a doctoral degree that is not older than three years. A competitive track record with previous scientific output such as a first author
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to candidates with a doctoral degree that is not older than three years. A competitive track record with previous scientific output such as a first author article is greatly valued. About us The Department of
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hands-on experience in aqueous battery technologies, particularly hydronium-, ammonium-, iron-, and/or zinc- systems. Proven track record of peer-reviewed publications and effective scientific
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communications skills in English, both verbal and written. A proven track record of research productivity. Candidate should be thorough, detail-oriented, and should demonstrate an intrinsic motivation for research
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emphasis on nanostructured electrodes, advanced electrolyte systems, and strategies for stabilizing metal anodes. We have a strong track record in developing innovative methods and extending characterization
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, advanced electrolyte systems, and strategies for stabilizing metal anodes. We have a strong track record in developing innovative methods and extending characterization techniques to new applications and
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Postdoctoral position in polymer technology focused on green polymer chemistry subject (PA2025/3322)
potential. The main objective is to develop new synthesis strategies and new knowledge on how these bio-based polymers should be molecularly tailored to meet the requirements of target applications in order
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. The aim to advance the use of X-ray techniques through a project focusing on X-ray tomography, opening up for 3D characterization of materials developed in FibRe. In particular, the objective is to