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PROJET-PEPR : MOF composites for the overall CO₂ reduction through panchromatic photocatalysis (M/F)
NMR, X-ray diffraction, EDX analysis, nitrogen adsorption isotherms, and ICP analyses available in the laboratory. Photocatalytic experiments under heterogeneous conditions will then be carried out in
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densified ceramics (density, particle size, X-ray diffraction, SEM and TEM microscopy, thermal analyses, etc.), the PhD student will seek to understand the physical properties of these materials, in
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diffraction and pair distribution function analysis, infrared spectroscopy, and µ-Raman spectroscopy. Chemical mapping and phase speciation will be evaluated by fluorescence and X-ray absorption spectroscopy
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plasma-assisted CVD techniques; - Knowledge of characterization techniques: Raman spectroscopy, scanning electron microscopy, atomic force microscopy, X-ray diffraction, etc.; - Knowledge of vacuum
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, pressure, composition, atmosphere) influencing these mechanisms. 2. Characterization and Analysis Characterize the compounds formed at different stages of the process using advanced techniques: - XRD (X-ray
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, including X-Ray diffraction, scanning electron microscope, atomic force microscopy Additional comments NA Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UMR137-JULGRO0-024/Default.aspx
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controlled atmosphere - master the usual characterisations of materials (X-ray diffraction, spectroscopies) - have knowledge of magnetism - fluency in English (oral and written comprehension and expression
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main contributor to the In-situ X-ray diffraction experiments performed for studying the formation of new silicides using both large volume presses such as multi-anvil and Paris-Edinburgh Presses
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(XANES, EXAFS), X-ray microtomography, and 3D X-ray diffraction (s3DXRD). Candidates should submit a detailed CV, a cover letter, and a short one-page research proposal on the proposed topic online
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one of tha main contributor to the In-situ X-ray diffraction experiments performed for studying the formation of new silicides using both large volume presses such as multi-anvil and Paris-Edinburgh