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The field of active matter is represented by systems made up of individual units that consume energy to generate motion or mechanical forces, causing the system to organize and behave collectively. The energy is continuously injected at the level of the individual particles or agents, keeping...
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You will work at the interface between electrochemistry, robotics and data-driven research. The aim is to utilise and further develop an automated laboratory environment for scientific purposes in order to optimise catalyst inks and functional coatings for future energy applications more quickly...
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This PhD project focuses on the quantitative investigation of Coulomb phases in artificial spin ice materials. The selected candidate will explore the dynamics and thermal fluctuations of magnetic monopoles in patterned artificial spin ice structures, examining their behavior across varying...
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, microstructure, manufacturing processes, and electrochemical performance to develop next-generation iron anodes for rechargeable iron–air batteries. The project combines electrochemistry, materials science, and
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High-temperature electrolysis (HTEL) offers the highest efficiency of all known water electrolysis technologies. However, compared to low-temperature electrolysis technologies, it is still at a lower level of technological maturity. Conventional cell concepts rely on ceramic support structures,...