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ceramic materials by electrospinning for application in ceramic electrochemical reactors; use of different characterization techniques, including impedance spectroscopy, thermogravimetry, dilatometry, X-ray
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such as X-ray diffraction (XRD) to characterize, at the molecular level, smectite samples from various Swedish mineral deposits. The PhD student will develop, apply, and combine theoretical molecular
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procedures. Equipment Utilized Schlenk glassware, glovebox usage and maintenance, particle size, thermal analysis, x-ray diffraction, and infrared spectroscopy instrumentation. Physical Demands and Work
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spectrometry, X-ray diffraction, X-ray photoelectron spectroscopy, vibrational spectroscopy, and electron microscopy. Documented experience in photophysical characterization, including UV–Vis absorption
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conducting synchrotron-based X-ray diffraction and spectroscopy experiments at national user facilities; analyzing experimental data, preparing scientific manuscripts, and presenting research findings
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-ray diffraction, and X-ray photoelectron spectroscopy would also helpful for this position. Basic programming skills (in Python) is another skill desired for this position. We offer DTU is a leading
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participate at all the experimental steps required for obtaining giant optical nonlinearities. This procedure includes thin film deposition, annealing, X-Ray Diffraction studies (XRD), Scanning Electron
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advanced structural characterization techniques (multidimensional NMR, X-ray diffraction, UV–Vis, IR and fluorescence spectroscopies), photoisomerization studies and pKa determination, together
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-element simulations; and experience in the development of hardware and software for the control and data acquisition of negative thermal expansion measurements (e.g., X-ray diffraction and/or strain as a
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measurements, and X-ray diffraction. In-situ techniques such as thermogravimetric analysis and dilatometry will be applied, complemented by microstructural examination using electron probe microanalysis. Master