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of these materials, including: - Synthesis of MIL-100 and SBA-15 via hydrothermal and sol-gel routes, respectively. Surface modification. Structural characterization (N₂ sorption, SAXS, XRD, SEM with EDX, X-ray
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complex physiological environments (pH, ions, proteins, simulated body fluids). - Perform advanced multi-scale characterization (SEM, XRD, electrochemical analysis). - Develop predictive models integrating
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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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the stability and degradation mechanisms of catalysts under operating conditions, using in situ characterization techniques (Raman spectroscopy, etc.) and post-mortem techniques (SEM, XPS, etc
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Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description => Lien du sujet avec Figure : https://groupes.renater.fr/sympa/attach
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inorganic nanomaterials (XRD, UV-Vis, XPS, TEM/SEM, BET, TGA, FTIR, Raman) • Practical skills: inorganic synthesis and/or catalytic evaluation • Basic knowledge of quantum physics, fluid mechanics and
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techniques (SEM/EDS, chemical analyses) is an asset. · Skills in digital tools and scientific programming (Python, MATLAB, or equivalent) are desirable; experience with AI methods is a plus but not mandatory
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PhD position: Nanoengineering refractory compositionally complex alloys for extreme conditions (M/F)
microscopy (SEM) experiments will be used to identify deformation mechanisms and establish structure–property relationships. At the University of Arizona (U of A), state-of-the-art nanoscale characterization
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Université Paris-Saclay GS Sciences de l'ingénierie et des systèmes | Saint Aubin Routot, Haute Normandie | France | about 7 hours ago
based on Finite Element Method (FEM) to study the mechanical properties of bone. The models were fed with real morphology data based on imaging methods such as CFLM, SEM and TEM, X-ray CT. Adding
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Sorbonne Universite - Laboratoire de Chimie de la Matière Condensée de Paris (LCMCP) | Paris La Defense, le de France | France | 15 days ago
characterized using rheology, scanning electron microscopy (SEM), and differential scanning calorimetry (DSC). Cell viability will be assessed using live/dead assays, and cell morphology will be analyzed by