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an optimum structure on small scales from the micrometer to the nanometer scale. The investigated materials and systems play an essential role in sustainable technologies like water- and CO2-electrolyzers, as
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Your Job: Against this background, this PhD thesis aims to investigate how water availability affects the energy transition. The goal is to achieve a sustainable energy and water supply and to
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Your Job: Join AMI, the Artificial Materials Intelligence division at the IET-3 at Forschungszentrum Jülich to develop an Autonomous Multi-Agent Performance Prediction Framework for PEM water
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: Characterization of catalysts performance and degradation in PEM water electrolysis Mechanistic understanding of catalyst degradation processes, both in PEM and liquid acid environments Further optimization and
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structure on small scales from the micrometer to the nanometer scale. The investigated materials and systems play an essential role in sustainable technologies like water- and CO2-electrolyzers, as well as in
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an optimum structure on small scales from the micrometer to the nanometer scale. The investigated materials and systems play an essential role in sustainable technologies like water- and CO2-electrolyzers, as
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years, and requirements for suitable locations, such as availability of cooling water or adequate space. In this thesis, you will systematically evaluate the challenges of the energy transition and derive
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laboratory to industrial scale. Our research plays an integral role in several technological advancements of hydrogen fuel cells, water and CO2 electrolyzers. Our goal is to transfer this knowledge
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Your Job: The master thesis is integrated into a large industry-research collaboration project on water-neutral or positive methanol production, mainly in Africa: https://www.dryhy.de/en. Several
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additives) for non-aqueous aprotic sodium ion battery electrolytes with increased safety You determine the physicochemical (e.g., water content, viscosity, etc.) thermal (TGA, DSC) and safety related (SET