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14, 1–9 (2024). (2) Reischig, P. & Ludwig, W. Three-dimensional reconstruction of intragranular strain and orientation in poly-crystals by near-field X-ray diffraction. Curr. Opin. Solid State Mater
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characterizations. The project will also include active participation in large-scale facility experiments (neutron diffraction, x-ray absorption). Understanding the mechanisms by which alloying affects magnetic
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laser deposition (PLD); • Implementing partial and total reduction processes of the films, with or without capping layers; • Performing structural and electronic characterization using X-ray diffraction
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of the studied assemblies by X-ray diffraction (XRD) and Raman spectroscopy. The experimental parameters obtained will serve as input data and will make it possible to calibrate the elementary electrochemical
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in one or more of the following areas will be considered an asset: intermetallic synthesis, microscopy, X-ray diffraction techniques and/or magnetic measurements. LanguagesENGLISHLevelExcellent
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various techniques such as powder and single-crystal X-ray diffraction, NMR, UV-Vis, and IR spectroscopy. Their photophysical properties will be studied in the solid state as a function of temperature
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• Experience in characterization of functional oxide thin films, including diffraction techniques (XRD, XRR, RSM), electron microscopy (SEM, EDX and TEM), Atomic Force Microscopy (AFM), X-ray photoelectron
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techniques at the nuclear microprobe (CEA IRAMIS) and neutrons/X-Ray imaging techniques at synchrotron/neutrons facilities (CEA IRIG). The postdoctoral associate will be responsible for testing
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various methods, including X-ray diffraction, IR spectroscopy, and electron microscopy. He/she may also be required to participate in their electrochemical characterization. He/she will also be expected
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-DSC, MS) will be used to understand the mechanisms and selectivity by identifying reaction intermediates. The synthesized materials will be characterized by X-ray diffraction (XRD), FTIR, Raman