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Field
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) – with the goal to elucidate the effects of dopants on their antiferromagnetic structure and electron small polaron hopping. In particular, they will apply advanced neutron and X-ray scattering techniques
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to experimentally derived disorder models and data from methods such as total scattering/pair distribution function analysis, diffuse scattering, diffraction, solid-state NMR and electron microscopy. Work closely
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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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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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, we particularly study the activation of small molecules (such as H₂O, CO₂, N₂O) as well as proton-coupled electron transfer processes. The EMPRe team has all the necessary equipment
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. The postdoc will analyze the phase and composition of their reaction products using techniques spanning X-ray diffraction, energy dispersive X-ray spectroscopy, electron microscopy, and calorimetry. The postdoc
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vapour-processing approaches. These films will be characterised through a variety of high-resolution electron microscopy techniques to determine both structure and composition at the nanoscale. This will
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magnetometry, diffraction, electron microscopy, scaled manufacturing process technology, powder processing, and; Strong interest in basic and applied research. Effective verbal and written communication skills
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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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recognition principles to support critical materials supply chains essential to semiconductors, electronics, and other high-technology industries. Responsibilities Supramolecular Host Design: Design and