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Interest in lab-automation and working with agentic AI (e.g. Claude Code, Codex) Excellent communication skills in English Strong academic track-record and publication history The ability to collaborate in a
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and working with agentic AI (e.g. Claude Code, Codex) Excellent communication skills in English Strong academic track-record and publication history The ability to collaborate in a multidisciplinary
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polyurethane elastomers containing backbone-integrated photo-, halo-, and thermochromic molecular switches, and investigate how their interactions can be engineered to produce quantifiable memory and learning
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while reducing reliance on conventional antibiotics. Investigate nano–bio interactions: Study cellular responses to nanozyme-coated implants, including cytocompatibility, macrophage activation, cytokine
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–bio interactions: Study cellular responses to nanozyme-coated implants, including cytocompatibility, macrophage activation, cytokine production and parameters related to osteointe-gration. Study
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closely related field such as polymer science or materials science) Experience with polymer–ion interactions, chelation chemistry, or battery materials is an advantage You enjoy interdisciplinary teamwork
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(three years, with the possibility of extension for one additional year) at Empa St. Gallen in two research groups (Bio–Nano Assembly and Cell-/Tissue Materials Interactions), which are part of
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. The Nanomaterials in Health department at Empa St. Gallen is a highly motivated team of biologists, chemists and bioinformaticians. Our aim is understanding and controlling the interactions between (nano)materials
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-matter interactions, development of automated AI/ML systems for novel materials processing and quality insurance. The lab combines additive manufacturing, large scale laser micro-processing, multiscale
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-matter interactions, development of automated AI/ML systems for novel materials processing and quality insurance. The lab combines additive manufacturing, large scale laser micro-processing, multiscale