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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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segregation, interface-related energy losses, and insufficient process reproducibility. Addressing these challenges requires a workflow that connects rapid materials and process exploration with rigorous device
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protective or hydrogen atmospheres Characterization of the microstructure, phase composition and surface quality of the coated layers Your Profile Successfully completed Master's degree in Materials Science
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on understanding and engineering materials at the atomic scale. Using state-of-the-art electron microscopy and spectroscopy, the institute develops new experimental methods to reveal how nanoscale structures
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evaluation strategies. In close collaboration with chemists, engineers and data scientists, a platform is being developed that combines materials development, process optimisation and machine learning
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for evaluating long-term transformation paths Your Profile Excellent master`s degree in engineering, materials science, industrial engineering, energy systems, or a comparable field of study Strong interest in
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support structures are perforated metal sheets or porous sintered metals. In both cases, corrosion of the support material is a key factor limiting the cell lifetime. Within the framework of the BMFTR
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qualifications of the applicant as bullet points here (max. 3-5) A successfully completed Master’s degree in Physics, Physical Chemistry or Materials Analysis Very good knowledge of solid-state analysis or related
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Strong confinement in highly disordered and intricate environments is essential for understanding the behavior of a broad class of systems with intrinsic motility. Porous materials -- such as cell
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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