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identification of exchange networks from local to extra-regional scales. The doctoral candidate is expected to conduct metallographic examinations and chemical characterizations (primarily SEM-EDS and LA-ICP-MS
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coalescence under thermomechanical loading using scanning electron microscopy (SEM) and X-ray microtomography. Ultimately, the validated virtual laboratory will provide reliable predictive indicators and
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(PIMS), from the synthesis of reactive polymer to the morphological characterisation by microscopy and scattering methods (AFM, SEM, SAXS); with the essential task of implementing the formulated resins
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emission spectroscopy and Langmuir probes, coupled with ex situ analysis (SEM, TEM), will be employed to obtain a comprehensive understanding of the physical and chemical properties of the coatings and the
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of the microstructure, possibility of one step synthesis / shaping of the SSE membrane while ensuring scalability and low cost. The produced materials will be characterized by XRD and SEM/TEM, and used to prepare Solid
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. All ÀPT samples will be shaped into tips using FIB-SEM. - Preparation of biological samples for atomic probe tomography - Develop a reproducible and well-controlled procedure for depositing a metallic
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). - Experience in metal (for exemple Cu) nanoparticle deposition methods - Strong knowledge in materials characterizations (XRD, Gaz physisorption, SEM, TEM, XPS, UV-Vis spectrometry) - Additional knowledge in gas
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species by fluorescence, SEM imaging, metal detections by ICPMS or EDX laser ablation) - Conduct field sampling to determine the link between metal speciation and accumulation in biofilms. These experiments