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description CENSEMAT investigates crystalline energy materials in which non-random local deviations from the average structure play a decisive role. The postdoc will develop atomistic models that connect local
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Post Doc position in transition metal catalysis and carbon capture Are you interested in combination of transition metal catalysis, and can you contribute to the development of materials for CO2
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of the produced powders and films: SEM/EDS, TEM, XRD, ICP-OES, EBSD, etc. Correlate material morphology and composition with final TE material and device performance. Develop TE devices optimized for both energy
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on identifying suitable electrode materials and optimizing reaction conditions, electrolyte composition, and solvents, using three-electrode configurations and organic carbonate-based media. Building
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engineered composite materials with various types of polymers and precious metals that are difficult to recycle. Thus, after used, cardiac catheters are usually incinerated, resulting in significant material
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to manuscript and grant preparation. The postdoc will also help develop a murine model to establish a dose-response relationship between uropathogen burden/catheter biofilm burden and UTI, and will support a
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a scaffold, we aim to guide the growth of a chitinous fungal network through the material. The result would be a new class of living composite materials that are not only structurally resilient but
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will also develop a breakthrough CNT/PP composite stronger than carbon fiber composites leading to dramatic material savings. WHAT WE ARE SEEKING Postdocs at the University of Copenhagen: Required
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(nanoparticles, conjugates, coatings, hydrogels, composites). 2. Characterization of polymeric materials Determination of chemical structure, including NMR, FTIR, and GPC. Solution properties and aggregation
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and produce the extruded products using a twin-screw extruder. They will also carry out or coordinate the compositional and nutritional analysis of the raw materials and processed products, including