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, is a materials science beamline specialising in X-ray diffraction and full-field imaging techniques. The beamline serves a very wide user community, spanning physics and chemistry to medical science. A
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, where people with different backgrounds collaborate, each with their own expertise, to support IIT research activity. The Electron Spectroscopy and Nanoscopy Research unit is coordinated by Giorgio
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conversion. Energy conversion within nanoscale chemical systems is a highly dynamic cascade of events at very different time scales. A reaction begins with ultrafast charge transfer (picoseconds), evolves
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of inorganic and coordination compounds, including discrete complexes and related systems, using methods such as X-ray diffraction (XRD), thermogravimetric analysis (TGA), scanning electron microscopy (SEM) and
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backscatter diffraction (EBSD), energy dispersive spectroscopy (EDS), and synchrotron-based X-ray diffraction (XRD) to explore the structure-property relationships of materials across different length scales
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, such as ptychography, in which we reconstruct object images from measured diffraction data. We produce coherent EUV radiation using a process called high-harmonic generation (HHG), which is an extremely
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characterize novel inorganic compounds and molecule-based materials, combining advanced synthetic methodologies with state-of-the-art characterization techniques (e.g., X-ray diffraction, NMR spectroscopy
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, including beam propagation, divergence, coherence, footprint, transmission, and resolution Develop innovative optical solutions enabling variable beam size, focus position, and illumination conditions for
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plan: The research activity aims at the preparation of protonic anodes for energy conversion devices; using high-energy milling and different synthesis and characterization techniques, including
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programs to advance our capabilities to model more complex materials systems. Together, this will help us to understand what physics emerges at the intersection between these different orders, and how