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this PhD will address. This project will develop a direct ammonia solid oxide fuel cell (SOFC) technology for efficient and carbon-free heat and/or power generation. By using a novel catalyst design strategy
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-funded collaborative research project SOCool, a completely novel approach to the fabrication of metal-supported solid oxide electrolysis cells (MS-SOECs) will be developed. The proposed cell concept is
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high-performance storage systems for the energy transition. In doing so, we encompass a wide range of technologies, from oxide ceramic fuel cells to solid-state batteries, thermal barrier coatings
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university campus in Aubière. It is one of the two laboratories of the Clermont-Ferrand Observatory of Earth Physics. It has a staff of 82 permanent members (lecturers and researchers, research engineers and
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Fuel cells and water electrolysers are key technologies for the transition to a low-carbon energy system, enabling the efficient conversion between chemical and electrical energy and supporting
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, radiolysis. • Solid-state and surface chemistry: oxidation, corrosion, passivation of stainless steels. • Nuclear engineering fundamentals: operation of pressurized water reactors, thermo-hydraulic and
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motivated Postdoctoral Researchers to support solid oxide cells, catalyst design, synthesis, characterization, and performance evaluation for advanced catalytic systems. The successful candidates will develop
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on the development of advanced energy converters and high-performance storage systems for the energy transition. In doing so, we encompass a wide range of technologies, from oxide ceramic fuel cells to solid-state