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Field
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-like electronic materials could be built from two of the most abundant elements on Earth? We are looking for a postdoctoral researcher to lead the experimental side of that effort. About the project We
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-metal bond. In addition to these electronic characteristics, the electronic nature of these assemblies results in marked reactivity with small molecules. In particular, we propose to study in detail
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crystallography, specifically in the structure solution and refinement of small molecule crystals using either electron or X-ray diffraction techniques. While candidates with experience in structure analysis based
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, electron microscopy, X-ray diffraction, etc.). Methodology: • Design and synthesize model substrates to measure the activity of enzyme mimics. • Develop analytical methods to detect and quantify chemical
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analysis) advanced X-ray scattering: Total scattering, Pair Distribution Function (PDF), and Bragg Coherent Diffraction Imaging (at Institut Néel and ESRF) - (Identical-Location) Transmission Electron
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group at C2N. - characterisation of the doping profile and structural properties of the superconducting films and devices using X-ray diffraction (XRD), transmission electron microscopy (TEM), and
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their characterization because of the high spatial resolution. Recently, the development of the so-called four-dimensional scanning-TEM (4D-STEM) has raised interest in electron diffraction (ED). We aim to explore
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. Structural, chemical, and morphological characterization (X-ray diffraction – DRX, scanning electron microscopy – SEM, transmission electron microscopy – TEM, Raman spectroscopy, Fourier transform infrared
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, with particular emphasis on battery science, catalysis, and the investigation of glasses and other disordered systems. The beamline’s core techniques are high-speed multidimensional X-ray diffraction and
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-tube synthesis, mechanical alloying, spark plasma sintering); • Crystal structure determination and microstructural characterization (X-ray diffraction, electron microscopy, spectroscopy