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In this PhD position, you will help design the next generation of circular plastics systems by combining hands-on polymer processing with data-driven modelling. The PhD study is a full-time, fixed
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interconnects in multilayer devices -identify and optimise polymers and photosensitive materials for additive manufacturing -establish femtosecond or picosecond laser micro-drilling and selective metallisation
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-identify and optimise polymers and photosensitive materials for additive manufacturing -establish femtosecond or picosecond laser micro-drilling and selective metallisation for high-aspect-ratio vertical
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student, you will principally devote yourself to your research studies. Your work will include: Development and characterization of quasi-solid-state ionic thermoelectric materials, including polymer-based
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English (all research activities at LOE are conducted in English). Meritorious research experience Mixed ionic–electronic conductors, conducting polymers, carbon-based materials, or other functional
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groundwater represents a critical threat to buildings worldwide. Some building-preservation treatments (most of the times polymers) are used to reduce rising damp, that is the moisture uptake from the ground
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polymer science and materials chemistry, giving you the opportunity to explore how concepts developed at the molecular level can be translated into functional polymeric materials. You will design and
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for interdisciplinary research and enjoyment of teamwork. Experience with nucleic acids, enzymes, protein purification or quantitative microscopy is a plus. This project will be part of the CRC/SFB on Polymer Concepts in
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receptor-interacting molecules exhibiting synergistic activity and favourable safety profiles, followed by the preparation of their bioconjugates and encapsulation in naturally derived polymers. Subsequent
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will principally devote yourself to your research studies. Your work will include: Development and characterization of quasi-solid-state ionic thermoelectric materials, including polymer-based gel