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testing techniques (e.g., microbending, micropillar compression, and in-situ testing in a scanning electron microscope), as well as microstructural analysis using electron and scanning probe microscopy (SEM
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thickness (maximum thickness of a few nanometers). An important part of the thesis work will make use of numerous surface analysis techniques (microscopies (AFM, SEM, fluorescence), spectroscopies (EPMA, ToF
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their structure-property relationships with support of a comprehensive metallographic laboratory, including optical microscopy, SEM, and TEM capabilities. We are looking to expand our network of collaborators by
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the major equipment required to characterise the organic molecules and catalysts generated as part of this project (XPS, XRD, TEM/SEM, mass spectrometry, NMR, etc.). The E2P2L (Eco-Efficient Products and
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, including cryo-FIB/SEM lamella preparation and/or cryo-ultramicrotomy, is a strong advantage; prior exposure or clear motivation to learn these techniques is also highly valued Basic
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with tailored morphology Develop processing routes Perform advanced structural and physicochemical characterization (SEM, SAXS, DLS, DSC, TGA, DMA, rheology, adhesion testing, FTIR, Raman, XPS) Quantify
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profiles, and by electron microscopies (SEM, TEM) to observe the precipitation and the matrix (martensite, retained austenite) microstructures • Establishing prior austenite grain sizes by crystallographic
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will be characterized using structural techniques (XRD, BET), electron microscopy (TEM, SEM), UV-Vis absorption spectroscopy, and photo- and radio-luminescence. This thesis will be conducted in close
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, Physics, or related discipline. This eligibility requirement must be met no later than the time the employment decision is made. Proficiency in scanning electron microscopy (SEM); experience with FIB-SEM is
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, particularly in the synthesis of promising materials and in spectroscopic techniques such as EPR (Electron Paramagnetic Resonance). Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR7314-FRESAU-017