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synthesised in situ using a state-of-the-art pulsed laser deposition system. Key characterisations include X-ray diffraction for structural properties and temperature-dependent magneto-optical properties
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techniques, including X-ray diffraction, XPS, SEM-EDX, and in situ Raman and IR during electrocatalytic experiments. The performance of the selected materials will be investigated in the lab and in a pilot
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impedance spectroscopy, thermogravimetry, dilatometry, X-ray diffraction, and scanning electron microscopy—to be used in an electrochemical device for the production of synthetic liquid fuels. 7. Applicable
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. · Physical-chemical characterisation of said materials (elemental composition, gas adsorption, IR and UV spectroscopy, X-ray diffraction, TEM, XPS, etc.). · Catalytic evaluation of the prepared materials
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for oxidation and reduction reactions. The research will focus on: Developing synthetic routes to robust new chelating and bifunctional ligands. Employing advanced spectroscopic, electrochemical and X-ray
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issues) Proficiency in operating and supporting materials science laboratory equipment, such as: X-ray diffraction (XRD) Scanning electron microscopy (SEM) and sample preparation tools Thermal and
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. Discipline Specific Required Qualifications Expertise in one or more fields of structural chemistry, such as, X-ray crystallography, nuclear magnetic resonance (NMR) spectroscopy, optical rotatory dispersion
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-correction, electron energy loss spectroscopy, energy dispersive X-ray spectroscopy, selected area electron diffraction, convergent beam electron diffraction, 4D-STEM, and energy filtered imaging. Experience
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polycrystalline diamond (PCD) Prior working experience in material characterization, such as Scanning Electron Microscopy, Raman spectroscopy, Atomic Force Microscopy, and X-Ray Diffraction Prior experience with
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