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the activity and stability of iridium oxide-based catalysts supported on various materials within a PEM electrolysis cell. Catalyst layers and membrane-electrode assemblies will be prepared and characterized in
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, modeling, and optimization of an innovative air humidification system for proton exchange membrane fuel cells (PEMFCs) for transportation applications. The research will include the refinement
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Research Infrastructure? No Offer Description Do you want to use advanced simulation methods to understand and improve the performance of fuel cells? Join Chalmers and contribute to atomistic modelling
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Do you want to use advanced simulation methods to understand and improve the performance of fuel cells? Join Chalmers and contribute to atomistic modelling of catalytic reactions to enhance
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Warsaw Website https://iel.lukasiewicz.gov.pl/ Street M. Pożaryskiego 28 Postal Code 04-703 E-Mail [email protected] Mobile Phone +48661335190 STATUS: EXPIRED X (formerly Twitter) Facebook
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31, 2026 Doctoral student in Advanced microscopy of Zr alloys for nuclear reactors Application deadline: August 14, 2026 Doctoral student in Enhancing the stability of PEM fuel cells by multiscale
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” concentrates on the understanding of structure-performance indicators in electrocatalytic reactions. Our catalysts are the heart of sustainable energy conversion processes such as in hydrogen fuel cells