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partially ordered systems. Particular use is made of X-ray and neutron diffraction, cryo-EM, and a wide range of other biophysical techniques. The group is located in close proximity to the MAX-IV and ESS
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Student or Postdoc (f/m/d) for the project Theory and Algorithms for Structure Determination from Single Molecule X‑Ray Scattering Images Project description Single molecule X‑ray scattering experiments
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Materials Design. This environment will facilitate the development of new skills and the demonstration of creativity and leadership. Expertise in structure solution using powder and/or single crystal X-ray
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diffraction and pair distribution function analysis, infrared spectroscopy, and µ-Raman spectroscopy. Chemical mapping and phase speciation will be evaluated by fluorescence and X-ray absorption spectroscopy
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, such as: Laser diffraction Thermogravimetric analysis (TGA) Dynamic vapour sorption (DVS) Differential scanning calorimetry (DSC) X‑ray diffractometry (XRD) Scanning and transmission electron microscopy
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characterise new phosphines and their nickel complexes, using Schlenk techniques, the glovebox, NMR spectroscopy, mass spectrometry, single-crystal X-ray diffraction and other techniques that might be deemed
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plasma-assisted CVD techniques; - Knowledge of characterization techniques: Raman spectroscopy, scanning electron microscopy, atomic force microscopy, X-ray diffraction, etc.; - Knowledge of vacuum
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: experience in neutron and X-ray single-crystal diffraction techniques (data collection, data reduction/structural refinement) and knowledge of programming languages, such as Python, would be desirable. Each
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understanding of ferroelectrics, especially in thin film form. Experience in Python and/or Matlab. Experience in materials characterization techniques such as Raman, X-ray diffraction, and scanning electron
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, mass spectrometry, X-ray diffraction, X-ray photoelectron spectroscopy, vibrational spectroscopy, and electron microscopy. Documented experience in photophysical characterization, including UV–Vis