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. The project endeavours to develop intervention procedures that can help reduce maintenance costs and increase circularity over the life cycle of a structure. The SURPASS solutions combine eco-efficient UHPFRC
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intervention procedures that can help reduce maintenance costs and increase circularity over the life cycle of a structure. The SURPASS solutions combine eco-efficient UHPFRC containing CO2-negative SCMs, bio
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terms of process-structure-mechanical property-function relationships. The candidate will be enrolled as PhD student at the Doctoral School for Materials Science and Engineering (EDMX) of EPFL (Lausanne
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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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systems developed in the SAM3 project in terms of process-structure-mechanical property-function relationships. The candidate will be enrolled as PhD student at the Doctoral School for Materials Science and
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on electrochemical and structural characterization of battery materials and cells, combined with muon-based experiments. You will design and carry out experiments to identify reaction pathways and degradation
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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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persons. Please submit these exclusively via our job portal. Applications by e-mail and by post will not be considered. Where to apply Website https://academicpositions.com/ad/empa/2026/phd-position
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behaviors. Your tasks Synthesize libraries of single-, dual-, and triple-switch polyurethanes (Stenhouse salt, DASA, and Spiropyran) via copolymerization and post-polymerization functionalization, and