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Field
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(e.g., coherent diffraction imaging, X-ray reflectivity) or the use of scanning probe and/or optical microscopy Considerable knowledge of interfacial chemistry or materials science; experimental
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will have strong links to the experimental synthesis, diffraction and electrochemical work performed in the overall project. Previous experience in computer modelling of lithium battery cathodes and a
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synthesise novel and technologically relevant nitrogen-based materials. The PDRA will employ the newly-developed single-crystal X-ray diffraction of powder-like samples for the structural characterisation
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engineering, or a related field by the time of starting this position. Significant background in chemical synthesis and characterization techniques (e.g., NMR, IR, and X-ray Diffraction). Ability to work both
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with e.g. powder diffraction Experience with wet chemical synthesis, e.g. nanoparticles A distinct advantage would be: Experience with high-level programming languages, e.g. Python Knowledge in magnetism
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imaging methods complemented by in house X-ray imaging (axia.au.dk). Additionally, X-ray fluorescence, scattering, diffraction-based imaging will be employed. The biological and bioinspired materials group
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imaging methods complemented by in house X-ray imaging (axia.au.dk). Additionally, X-ray fluorescence, scattering, diffraction-based imaging will be employed. The biological and bioinspired materials group
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magnetism or superconductivity. Experience operating and maintaining Quantum Design instruments. Proficiency with x-ray diffraction measurements and data analysis. Familiarity with the health and safety
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coefficient modeling. Experience in integrating modeling with leaching and separation processes for scale-up. Advanced data interpretation using electron diffraction, dendritic growth modeling, and REE behavior
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, single crystal diffraction, and optical spectroscopy • Experience in femtosecond laser operation and laser pumping experiments. • Good programming skills in Python or similar languages MQ: Requires