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for nanometric ion implantation based on laser ionization of neutral atoms coupled to a focused ion beam (FIB). The researcher will take part in the design, implementation, and performance characterization
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of green hydrogen via solar-driven photoelectrochemical (PEC) systems. In this postdoctoral position, you will apply advanced electron microscopy techniques, including STEM and FIB, to investigate
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analysis. Main Tasks and responsibilities: • Operate and optimize advanced STEM and FIB instrumentation for the nanoscale analysis of catalytic and energy-related nanomaterials, supporting the development
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develop and apply implement cryo-FIB lamella preparation, cryo-ET and subtomogram averaging to resolve centrosomal assemblies in near-native contexts. You will also use immunohistochemistry to trace
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/ Cellular Imaging: Candidates with hands-on experience in cryo-electron microscopy–based methods, including high-resolution single-particle reconstruction and/or cryo-electron tomography with FIB-SEM
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analysis. Main Tasks and responsibilities: · Operate and optimize advanced STEM and FIB instrumentation for the nanoscale analysis of catalytic and energy-related nanomaterials, supporting the development
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electrodes using various electron microscopy techniques (e.g. FIB-SEM); (ii) Reconstruction of the 3D structure through image analysis; (iii) Analysis of images from new and aged membrane-electrode assemblies
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beam (FIB) is preferred Programming proficiency (e.g., Python) for experiment automation and/or image analysis is preferred Background in electronic, magnetic, or optical materials is preferred
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of friction, wear, tribo-corrosion, and fatigue. Your work will be experimental, and you will have access to one of Europe’s best-equipped tribology laboratories, as well as advanced analysis tools such as FIB
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access to our in-house electron microscopy suite (Titan Krios 5, Titan Krios G2, Arctis Cryo-Plasma FIB/SEM) for cryo-EM and cryo-ET studies, a triple-quad LC/MS-MS for compound ID and targeted