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Field
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-dimensional (2D) nanomaterials into structural and functional composites designed for next-generation energy technologies. The position combines fundamental materials synthesis, advanced characterization
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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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) to study atomic structures of optically excited small unit cell crystals. The project involves measurements, data reduction and structure refinement of large serial femtosecond X-ray (SFX) crystallography
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correlated structural disorder controls transport and other functional properties in energy materials. The position is available from the 1st of February 2027 or as soon as possible thereafter. Project
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carbons, fibers, graphite, nano-carbons, etc. 2. Carbons and graphite for energy storage 3. Polymer-derived fibers and composites & carbon/carbon composites 4. Unique high-temperature characterization
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at MAX IV Laboratory in Lund, Sweden. SINCRYS is currently under construction and will soon enter its commissioning phase. The beamline is expected to receive first light late 2026, with expert
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will include examining fiber properties such as crystallinity, pore size distribution, fiber surface content, and metal ion composition, as well as conducting laboratory-scale dye uptake trials with
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-resolution characterization of their structure and chemical composition. The project will be carried out in close collaboration with the other partners of the LIZA consortium, who are responsible for zeolite
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builds on our development of the self-doped PEDOT-S derivative A5, in which changes in synthetic methodology and polymer composition strongly influence solubility, self-aggregation, and electrical
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structures across the NE Greenland Shelf, document the glacier retreat through the fjords, investigate changes in hydrography, and evaluate the relationship between glacial and marine processes in the area