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laboratories: the Institut de Chimie Moléculaire-ICMG for NMR spectroscopy, mass spectrometry (MS), X-ray diffraction, and EPR. The development of artificial photosynthesis systems for water splitting and CO
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crucial information on material quality, structure, and chemistry, in particular when coupled with X-ray diffraction studies and low-temperature transport properties. Importantly, in situ TEM measurement
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or biofabrication. You have demonstrated research and experimental skills, for example through your Master’s thesis. Experience with one or more of the following is an asset: X-ray diffraction, thermal analysis
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disentangle magnetic and structural contributions to electron diffraction data and to compare the results with measurements recorded using X-rays and neutrons. Simulation and interpretation of experimental data
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diagnostic methodology for metallic lithium plating in industry-relevant cell formats. The approach is fundamentally based on diffraction and small-angle scattering techniques using both X-rays and neutrons
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, MPMS, and X-ray diffraction Perform scattering experiments at large-scale neutron and x-ray scattering facilities Evaluation, documentation, and publication of the obtained data via reports, manuscripts
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metallurgy or additive manufacturing; characterisation using advanced electron microscopy and x-ray diffraction techniques; mechanical testing using macro/micro-mechanical methods and failure investigation
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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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collaborate with various partners in the consortium, including partners working on catalyst synthesis, complementary surface X-ray diffraction, and complementary (in situ) electron microscopy. Secondments
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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