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, enabling the study of thin batteries. In contrast, the development of operando cells for X-ray photoemission spectroscopy (XPS) studies is still challenging owing to the difficulty of designing a cell
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spectroscopy methods (Operando XPS/XAS, Hard XPS) to probe the interfacial reactions occurring in Li-ion batteries. Further information about the research group can be found at: https://emi.materials.ox.ac.uk
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Harwell Campus. This will involve the application of state-of-the-art X-ray spectroscopy methods (Operando XPS/XAS, Hard XPS) to probe the interfacial reactions occurring in Li-ion batteries. Further
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the stability and degradation mechanisms of catalysts under operating conditions, using in situ characterization techniques (Raman spectroscopy, etc.) and post-mortem techniques (SEM, XPS, etc
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national and international travel. As part of the team, you will be working on developing cutting edge operando XPS methodologies to understand solid-liquid interfaces in Li-ion batteries. Solid-liquid
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and iii) Raman, FTIR and X-rays photoelectron (XPS) spectroscopies with the ICMPE/ICMMO facilities. Composition will be checked by Inductively Couple Plasma measurements. Organic polymers will be
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reaction. The researcher will: - Prepare Fischer-Tropsch catalysts; - Characterize catalysts using a combination of physicochemical methods (XRD, FTIR, TPR, XPS, imaging); - Conduct Fischer-Tropsch reactions
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autonomy in material characterization techniques (e.g., SEM, EDS, XRD, XPS), Timely and high-quality contributions to project deliverables, reports, and milestones Team-oriented attitude, continuous learning
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, morphological, chemical, and magnetic property characterization of permanent magnets (Nd-Fe-B) via TEM (EDS, EELS, HR(S)TEM, electron diffraction) and XPS. In situ TEM study (under heating and irradiation
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related to staff position within a Research Infrastructure? No Offer Description Your team The HIPPIE beamline, located at the 3 GeV ring, together with SPECIES beamline on the 1.5 GeV ring form the AP-XPS