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— Liquid Biopsies and Therapeutic Optimization), Université de Lorraine, Nancy, France. Drawing on a solid background in cell biology, the doctoral candidate will lead the phenotypic screening 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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PhD student position on development of innovative bifunctional oxygen electrodes for SOC technology.
announces a researcher position (R1.4) in the field of energy devices based on solid oxide cells technology. The candidate will work on developing new materials and processing very focused on the development
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PhD student at ILL: studying In situ neutron diffraction for green steel and functional metal oxides
investigations on solids, their phase transitions and chemical reactions. You will develop gas-flow cells for the study of solid-gas reactions with in situ neutron diffraction and implement these on D1B and D20
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metal-oxide model systems with the potential use in modern technological areas such as heterogeneous catalysis, gas sensors and also as catalysts for fuel cells. The surface structure and morphology
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of stacks with solid oxide cells (SOC) in electrolysis mode Electrochemical characterisation of cells during stack operation using direct and alternating current-based techniques (e.g. characteristic curves