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monochromator and 4D-STEM among others, allows the direct visualization of the structure, chemical composition and electronic structure of materials down to the atomic scale. Main Tasks and responsibilities
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photoelectrochemical (PEC) systems. In this position, you will apply advanced electron microscopy techniques, including STEM and FIB, to investigate the structure and behavior of catalytic nanomaterials critical
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chemical and structural manipulation, nanostructuring and interfacing materials that are identified as strategic in the roadmap for new technologies (hybrid metal-organic heterostructures, graphene-based
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heuristic optimisation to explore and improve materials candidates-especially 2D/vdW structures-for target electronic/spintronic properties. The postdoctoral researcher will lead the optimisation component
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, - Morphological and structural characterization of the nanoparticles. - Integration of the nanomaterials in coating formulations. - Deposition onto glasses. - Characterization of the optical performances
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characterisation techniques such as in situ scanning tunnelling microscopy. This combination will be used to investigate the structure-property relations of well-defined electrocatalyst materials as
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methods with in situ characterisation techniques such as in situ Raman spectroscopy (including SHINERS) and electrochemical mass spectrometry. This combination will be used to investigate the structure
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surfaces. -Structural and biophysical characterization: Exhaustive characterization of the coatings by advanced methods (FTIR, UV-Vis, electron microscopies, TGA, NMR/EPR spectroscopy for structural
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broad experience in the development of electronic structure methods and their application in order to perform atomistic simulations of molecules and materials. These include (but are not restricted
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Cryo-EM Molecular Structure Research Center (featuring China's first Krios 5 microscope) Recent breakthroughs: 18 high-impact publications in Nature , Science , and Cell on agricultural genomics and