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on coordinated campaigns combining synthesis and multi-scale spectroscopy. The materials, synthesized at IRCELYON with independent control of phase, doping, and defects, will be characterized there by XPS/UPS in
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, superlattices) and electrodes (Ru, Mo). • State-of-the-art characterization: Memcapacitors will be studied using advanced physicochemical (XRD, XRR, XPS, TEM) and electrical characterization techniques. You
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conditions, avoiding any air exposure prior to ions or plasma. A series of surface science and plasma techniques, including X-ray Photoelectron Spectroscopy (XPS), in-situ Spectroscopic Ellipsometry, gas-phase
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(XPS), identifying the crystalline structure (DRX), etc. • Determine the analytical performances of the sensors developed under controlled and representative laboratory conditions; • Compare
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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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available at UCCS in Lille such as Laser Raman Spectroscopy, X-Ray Photoelectron Spectroscopy (XPS) as well as X-Ray Absorption Spectroscopy with our newly acquired Laboratory XAS spectrometer. Some more
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. The semiconductors for the photoelectrodes will be supplied by our physicist collaborators, but the preparation and characterizations (X ray diffraction, IR, XPS, BET, TEM, TGA, etc.) of COFs and MOFs will be made by