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the polymer matrix at nanoscale level where the carbon/glass fibres cannot reach. Our research shows that nanoscale reinforcement of polymer matrix used in glass/carbon fibre composites significantly
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. This project aims to develop novel polymer-based nanoparticles for the non-viral delivery of mRNA vaccines directly to mucosal tissues, such as the respiratory tract. By leveraging high-throughput automated
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A 3.5-year PhD position is available in the field of experimental nanoscience at surfaces and molecular-scale imaging of conjugated polymers in the group of Prof. Giovanni Costantini
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on the reactivity of encapsulated species. In addition to their use as discrete hosts, cages can be incorporated into extended structures such as polymers, gels and crystalline framework materials. This project will
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, including biopolymer chemistry and physical chemistry of polymers. Students can focus on experimental issues such as polymer synthesis, association processes, polymer degradation, and semiconductor polymer
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coatings. Learning surface modification techniques based on known chemical coupling strategies. Incorporating of anti-fouling properties through anti-fouling polymers or cation scavengers. Where to apply
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conditions. Polymer nanocomposites have shown great promise for sensing and actuation, but current drawbacks include limited mechanical robustness, environmental stability and sensitivity. This project aims
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multidisciplinary team, open to new ideas and concepts. The experience of work with pharmacology-relevant polymers, engineering skills and the experience in assembling experimental setups will be appreciated
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composites. The successful candidate will be jointly supervised by the ETE (Elastomer Technology and Engineering) group, focusing on rubber science, and the SPC (Sustainable Polymer Chemistry) group
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separations. It uses an electrical voltage to generate fibers from a polymer solution that are collected as a fibrous mat. Preferably green solvents are used. Our research group has a worldwide unique triple