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for developing and optimizing plasma-based functionalization processes for ferrimagnetic nanoparticles. The successful candidate will be responsible for investigating the relationships between plasma parameters
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biomedical applications. The “Polymers and Peptide-Based Materials” group develops bottom-up approaches to incorporate functional peptides into polymers, hydrogels, nanoparticles, and hybrid materials
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control over the structure of the nanoparticles. For that purpose, temperature is a decisive external parameter driving the structure both during synthesis and during many practical uses, including cancer
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research topics include Langmuir films mimicking cell membranes, the assembly of nanoparticles at liquid interfaces, and catalysis (CVD growth of 2D materials on LMCat, and Fischer–Tropsch synthesis
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-reinforced polymer composites and multifunctional composite materials. Incorporation of fillers, fibres, nanoparticles or other functional phases to tailor material properties. Investigation of polymer–filler
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, PhD students, postdoctoral researchers, and contract staff. Their research focuses on materials and their mechanisms of action for energy applications, with expertise in materials chemistry and physico
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). - Develop mitigation strategies or transform embrittlement into a green synthesis route for advanced nanocatalysts. Missions and activities: - Synthesize model metal micro/nanoparticles (Pt, Ag, Au, Cu, Ni
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immunotherapy interventions targeting CD4+ T cells based on recombinant monoclonal antibodies or mRNA-containing lipid nanoparticles. The project will be primarily developed in a pre-clinical murine model of lung