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chemistry and flexibility in molecular crystals. You will undertake original research spanning molecular synthesis, crystal growth and advanced characterisation, while building experience in diffraction
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. About You You should demonstrate extensive experience of STEM characterisation of electron beam sensitive materials, including imaging, diffraction and spectroscopy, with experience of acquiring 4
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field assisted sintering, additive manufacturing, powder X-ray diffraction, atomic force and electron microscopy and magnetic measurement facilities. The role centres on manufacturing routes for novel
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of the ligand. In this way, we propose to identify ligands of different sizes and negative charges that can be used to synthesize and characterize metallic molecular structures, taking into account the
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Characterisation Centre (LMCC), a central facility providing advanced materials characterisation and microscopy capabilities. These include X-ray diffraction (XRD), scanning electron microscopy (SEM), electron
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using X-ray and neutron diffraction Investigation of ionic transport by impedance spectroscopy and complementary electrochemical methods Determination of electronic, vibrational and vibronic structure
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in optical lensless imaging, electron diffraction, and reconstruction algorithms, and works with industry partners to realize impact in semiconductor metrology, and electron microscopy. The project
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, within the framework of the consortium, X-SeeO2 - ‘Real-time X-ray diffraction and microstructure imaging: accelerating the transformation of cementitious materials into CO2 sinks’ . This project is
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profiles, and by electron microscopies (SEM, TEM) to observe the precipitation and the matrix (martensite, retained austenite) microstructures • Establishing prior austenite grain sizes by crystallographic
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Investigate the electronic, optical, and magnetic (including magneto-optical) properties of materials (qubits). Device fabrication Use materials as qubits in quantum computing and related fields, single photon