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, imaging or diagnosis. This PhD project will develop stimuli-responsive nanozyme coatings for personalized medical implants. Nanozymes are nanomaterials capable of mimicking the catalytic activity of natural
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, and interdependent pathways) using time-resolved and spatially resolved spectroscopy, patterned illumination, and pH/thermal stimuli. Develop and validate logic maps for memory formation, consolidation
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heat stress and improve thermal safety, comfort, and performance in challenging environments. Your tasks Your task will be Develop, adapt, and validate experimental and computational methods
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. The performance of such batteries hinges on the solid booster formulation, morphology, and the efficiency of charge transfer between mediator and solid under continuous flow. Your tasks Your task is to develop
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. Empa is a research institution of the ETH Domain. At Empa's Laboratory for Biointerfaces and Center for X-ray Analytics , we develop and characterize advanced nanosystems for biomedical applications
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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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prolonging battery life. Your tasks Develop melt-spun liquid/gel-core fibers with polyolefin sheaths and functionalized, hydrophobic cores Explore selective scavenger systems for transition metal (TM) ions and
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, you will be encouraged to develop independent ideas, propose new concepts, and test them experimentally and/or computationally. The role is ideally suited to strengthen your pre-existing expertise and
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. Empa is a research institution of the ETH Domain. Our passion lies in materials science and technology, and at the Urban Energy Systems Laboratory (UESL), we develop strategies and methods to support the
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during conventional substrate transfer and fabrication processes. The project aims to develop a fully dry, UHV-compatible transfer pathway that preserves these fragile quantum states during device