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the forefront of elastomeric materials development. We are looking for a highly motivated candidate with a strong background in synthetic organic and polymer chemistry, the ability to work in a
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their compatibility with different implant architectures and surface modifications. Evaluate antimicrobial activity: Investigate the ability of nanozyme-coated surfaces to inhibit bacterial growth and biofilm formation
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. Evaluate antimicrobial activity: Investigate the ability of nanozyme-coated surfaces to inhibit bacterial growth and biofilm formation while reducing reliance on conventional antibiotics. Investigate nano
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(workstations and simulation software, chemical labs, DLP and 2 Photon Lithography 3D printing, Raman spectroscopy, electron microscopy, nanoindentation, macroscopic mechanical testing, humidity control
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, electron microscopy, nanoindentation, macroscopic mechanical testing, humidity control) for design, manufacturing, and metamaterial characterization. The laboratory is situated at the main campus of Empa in
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heterostructures under ultra-high vacuum conditions. GNRs are emerging quantum materials whose electronic structure, topology, and spin states can be engineered with atomic precision, but many reactive GNRs degrade
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. The laboratory conducts, develops and optimizes processes for renewable fuels. The group “Hydrogen Spectroscopy” is further involved in hydrogen science & technology such as power-to-gas, membrane science and
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MP and NP aerosol samples of atmospheric relevance Mimic atmospheric aging processes relevant for MNPs Characterize the physiochemical properties of MNPs Test the ice formation ability of MNPs Complete