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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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-based self-healing, hybrid fiber architecture, Fe-SMA-based self-prestressing, and integrated structural health monitoring into one coherent system for thin, durable structural interventions. It can be
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containing CO2-negative SCMs, bio-based self-healing, hybrid fiber architecture, Fe-SMA-based self-prestressing, and integrated structural health monitoring into one coherent system for thin, durable
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nanozymes, and optimize their physicochemical and catalytic properties. Develop functional implant coatings: Establish reproducible strategies for integrating nanozymes onto implant surfaces and investigate
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functional implant coatings: Establish reproducible strategies for integrating nanozymes onto implant surfaces and investigate their compatibility with different implant architectures and surface modifications
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nanoparticle uptake, transfection, and biological performance in 2D cell culture and relevant in vitro 3D tissue models. Integrate physicochemical and biological data to identify design principles governing
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. Empa is a research institution of the ETH Domain. The nanotech@surfaces Laboratory is offering a PhD position focused on integrating atomically precise graphene nanoribbons (GNRs) into van der Waals
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an independent, target- and solution-driven work attitude, inter- and multidisciplinary thinking & strong motivation and interest to join an ambitious interdisciplinary research team with integrative and