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on designing dynamic polymeric synthetic cells. This research project aims to advance synthetic cell technology by developing synthetic constructs that mimic the structural and functional
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Trust to investigate Alkane Activation with Heterometallic Complexes. Alkanes are a common building block in chemical manufacturing processes. They are used widely in the synthesis of polymers
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research in experimental design, RNA stabilisation and nanocarrier formulations for new vaccine manufacturing systems based on lipids, polymers and ionic liquids. You will be responsible for project
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doing: You will carry out research in experimental design, RNA stabilisation and nanocarrier formulations for new vaccine manufacturing systems based on lipids, polymers and ionic liquids. You will be
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to polymer composites. For candidates wishing to pursue a PhD, a part-time funded PhD will be offered subject to conditions including meeting of the Department’s minimum entry requirements for doctoral study
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using Schlenk line and glovebox techniques. Some experience in synthetic polymer chemistry is desired, but not essential. Excellent communication skills and experience of writing up research results
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. Ability to develop and apply new concepts. Creative approach to problem-solving. Lipid and polymer synthesis. Excellent verbal communication skills and the ability to deal with a wide range of people
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to control the folding of single polymer chains through use of polymer sequence building on previous research within the Serpell group on the folding and self-assembly of sequence-defined polyphosphoesters
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of Biological sciences at the Royal Holloway University of London. The focus of the project, funded by the US Department of Defense, is the generation of new polymer-coated adeno-associated viral vectors for gene
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green and sustainable chemistry, including but not limited to polymer chemistry; (bio)electrochemistry; next generation biocatalysis. Creative development and implementations of computational chemistry