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application process at https://www.urv.cat/es/investigacion/ . Place of Employment and planned mobility: Chemical Engineering Department - DEQ - URV (https://www.deq.urv.cat/en/ ) Materials, Membrane and
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transport, and mechanical properties for target use-cases (barrier membranes, scaffolds, adsorbents). Characterization & Performance Perform multiscale characterization: rheology, tensile testing, swelling
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of biological membranes, particularly in the context of the relationship between cell adhesion and activation, within the ERC project “Biological Membranes in Action: A Unified Approach to Complexation
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., Vilotte, A., Schmitt, C., Gunes, D., & Bodiguel, H. (2024). Spontaneous Structuration of Biohydrogels by Membrane‐Free Osmosis. Advanced Functional Materials, 34(34), 2400888. Vilotte, A., de Loubens, C
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characterization of non-lamellar lyotropic liquid crystalline nanocarriers, production of biomimetic lipid nanoparticles and in cell culture, namely cell membrane extraction techniques, permeation assays using
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, membranes and advanced electrochemical systems. Collaborate with AI and computational science teams to accelerate discovery using machine learning, large language models (LLMs), and large quantitative models
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, genetically modified, organisms. A major focus is toward studying electrical signaling in the nervous system. We developed fluorescent reporters of membrane voltage and associated instrumentation to map
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data analysis and professional skills that are necessary for bioscience research and related non-academic careers. https://www.yorkshirebiosciencedtp.ac.uk Project Description: Join a groundbreaking
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Jerzy Haber Institute of Catalysis and Surface Chemistry, Polish Academy of Sciences | Poland | about 1 month ago
employment: 01.02.2026 Keywords: nanoparticles for drug delivery, functionalization of nanoparticles, protein corona, biological membrane, oncological and neuroprotective drugs, Jerzy Haber Institute
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fluorescence microscopy tools to study the boundary between living systems and synthetic materials. The project will study mechanical effects on bacterial lipid membranes and will have an emphasis