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and elastomers with improved dielectric and mechanical properties. Additionally, their dielectric, optical, mechanical, and electromechanical properties will be evaluated. You will join a strong team at
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. Empa is a research institution of the ETH Domain. In our research group, we design mechanically robust, multi-responsive polyurethane elastomer with backbone-integrated molecular switches. Our aim is to
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, and governmental partners Your profile We expect the following competences Completed MSc degree in human physiology, mechanical, environmental, biomedical engineering or similar discipline Experience in
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and synthesize via light-based 3D-printing architecture (meta)materials for medical soft robotics applications. Furthermore, the morphology, microstructure, and mechanical behaviour of the metamaterials
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30 Jul 2026 Job Information Organisation/Company Empa Research Field Engineering » Materials engineering Engineering » Mechanical engineering Engineering » Other Researcher Profile First Stage
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surface science. The aim of the project is to develop ultra-thin transition metal membranes on porous graphene. The gas transport mechanisms, including energy barriers related to H2 diffusion and resistance
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concentration gradients during charge and discharge, the evolution of interphases, and degradation mechanisms including ageing, material dissolution (leaching), and transition-metal migration. Muon-based methods
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-thin transition metal membranes on porous graphene. The gas transport mechanisms, including energy barriers related to H2 diffusion and resistance contributed by the chemisorption of H2 in the membranes