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Materials science and technology are our passion. With our cutting-edge research, Empa's around 1,100 employees make essential contributions to the well-being of society for a future worth living. Empa is a research institution of the ETH Domain. Our passion lies in materials science and...
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work will involve: Design and synthesis of injectable hydrogel systems Encapsulation and controlled delivery of probiotics and bacteriophages Engineering and characterization of phage-based antimicrobial
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ferroelectric memory, photonic integrated circuits and next-generation telecommunications. You'll work at the exciting intersection of experimental materials science and materials informatics, collaborating in
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. Empa is a research institution of the ETH Domain. You will work on a research project in the field of novel dielectric elastic materials. The emphasis will be on synthesizing specially designed polymers
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creation of decarbonized, resilient, and equitable energy systems. This PostDoc position is offered in collaboration with the Intelligent Maintenance and Operations Systems (IMOS) Laboratory at EPFL ( Prof
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to excellent research infrastructure and a wide net-work spanning academia and industry. A strong, demonstrated commitment to equal opportunities: Empa holds the HR Excellence in Research label and received
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enhancement of near-infrared (NIR)-emitting organic light-emitting devices (OLEDs) and to advance the understanding and performance of next-generation NIR optoelectronic devices.You will become part of a strong
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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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. Combining expertise in nanomaterials, colloid and analytical science, cellular biology and bioengineering, we investigate how nanoparticle structure and composition influence biological function. A particular
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. Empa is a research institution of the ETH Domain. Empa’s Laboratory for High Performance Ceramics addresses fundamental questions in electrochemical energy conversion and storage by combining advanced