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, structure, defect chemistry, and ionic transport behaviour. Comprehensive materials characterisation will be undertaken using structural, thermal, and electrochemical techniques, including X-ray diffraction
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transformation, impurity evolution, and microstructure development. The candidate will use advanced in situ X-ray methods, including diffraction, scattering, spectroscopy, imaging, and complementary multimodal
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possess translational symmetry, the role of structure and symmetry in glasses is not established. This research programme involves the development of new x-ray and electron diffraction-based methods
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spectroscopy, and grazing-incidence X-ray diffraction. Particular attention will be paid to identifying and characterizing secondary phases that are likely to form during weathering processes, as
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spectrometers and X-Ray Diffraction apparatus). Our laboratories are equipped with individual fume hoods allowing the secure handling of various reagents and gases, heating devices and vacuum glassware, and are
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things, combine time-resolved and multimodal X-ray absorption spectroscopy (XANES, EXAFS, and others) at synchrotron facilities such as MAXIV with theoretical molecular modeling of the corresponding
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, within a basic-research project, these radiation-induced processes at various oxide–water interfaces. The PhD student will, among other things, combine time-resolved and multimodal X-ray absorption
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the form of coatings, ablation and high-heat-flux testing rigs, and characterisation using secondary electron imaging, X-ray diffractometry, electron backscattered diffraction, transmission electron
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-resolved and multimodal X-ray absorption spectroscopy (XANES, EXAFS, and others) at synchrotron facilities such as MAXIV with theoretical molecular modeling of the corresponding systems. The work will be
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. This PhD project will focus on the design and development of UHT ceramics in the form of coatings, ablation and high-heat-flux testing rigs, and characterisation using secondary electron imaging, X-ray