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holds several world records for power conversion efficiency of flexible CIGS and all-perovskite tandem solar cells. We are looking for a motivated postdoc to develop high-efficiency and stable all
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center. The Translational Musculoskeletal Biodynamics initiative aims to uncover key biomechanical markers and profiles specific to degenerative musculoskeletal diseases. This ambitious project combines in
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implementations of mechanical metamaterials for wave manipulation. Standard metamaterial modelling considers an infinite, defect-free periodic structure, consisting of a single unit cell. In this work we will
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material-related research and focuses on understanding, characterizing and steering interactions of biomolecules, bacteria and human cells at surfaces for materials-based healthcare solutions. Postdoc
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an infinite, defect-free periodic structure, consisting of a single unit cell. In this work we will explore the effect of domain interfaces and defects in such a setting. Practical applications require
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of biomolecules, bacteria and human cells at surfaces for materials-based healthcare solutions. Your tasks The scope of the position is to investigate bacteria-materials interactions, with the final goal
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characterizing, understanding and steering the interaction of particulate materials with human cells or tissues and provide expertise in the interdisciplinary field of particulate materials safety and applications
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photovoltaic and battery technologies. The Laboratory holds the world record for energy conversion efficiency of CIGS solar cells on flexible substrates and is one of the leading centers for CIGS/perovskite
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of biomolecules, bacteria and human cells at surfaces for materials-based healthcare solutions. Your tasks The potential toxicity of new chemicals and materials, particularly nanoparticles, is a major health and
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record for energy conversion efficiency of CIGS solar cells on flexible substrates and is one of the leading centers for CIGS/perovskite tandem devices. The lab is a contributor to the Coating Competence