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for Sustainable Materials (SUSMAT), Düsseldorf, Germany Supervisor: Prof. Dr. Christina Scheu Focus: structural characterisation (XRD, SEM, TEM, APT) Background: physics, materials science, or a closely related
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promising technology for producing large and complex metal component. Although its potential has been widely demonstrated, significant challenges remain in optimizing the process to ensure the quality
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conversion systems, for example in fast battery chargers for electromobility, renewable energy sources (solar, wind), as well as in the defence sector. This work will focus on the optimization of fabrication
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critical mechanisms of viral persistence and replication and optimize antiviral strategies designed to interrupt these processes. Present research findings at national and international conferences Your
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drilling data, digital‑twin methodologies, and AI‑driven optimization approaches to address fundamental challenges in hard‑rock drilling. As a PhD candidate, you will benefit from close supervision, access
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real-world challenges faced by industry, governments, and society within the international STRUCTURE project? Information The PhD candidate will work within the international research project STRUCTURE
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to elaborate new p-type perovskite ABO₃ structures with optimized thermoelectric properties, targeting a figure of merit beyond the state-of-the-art. The properties will also be measured by the wide range of ex
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[3] or GaAs [4] suffer from major defects. Due to its indirect band gap, Ge has limited absorption efficiency. GaAs structures, on the other hand, have been produced on expensive III-V substrates
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for diversification and optimization of energy recovery and conversion systems to ensure a stable and secure energy supply. Among potential energy sources, solar radiation, biomass combustion or gasification
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French research laboratories working on thermophotovoltaic cells, photonic structures, and energy-conversion systems. This collaborative environment will provide the candidate with exposure to optical