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design dual-cure, on-demand, and debonding liquid polymer resins. Identify and select monomers/additives for use in thermoset and thermoplastic composites. Formulate and measure adhesive viscoelastic
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of polymers Analysis of the structure of semi-crystalline polymers Mechanical and thermal properties The work involves lab experiments, data acquisition, validating findings, publishing results, and assisting
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focused on physicochemical phenomena that take place at the interface of polymer matrix composite materials College / Directorate College of Engineering, Design & Physical Sciences Location: Cambridge
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join a dynamic and multidisciplinary team under the co-supervision of Dr. Anna Blakney and Dr. Jay Kizhakkedathu. The successful candidate will work on a project developing new lipid and polymeric
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dynamic and multidisciplinary team under the co-supervision of Dr. Anna Blakney and Dr. Jay Kizhakkedathu. The successful candidate will work on a project developing new lipid and polymeric strategies
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loading or state of hydration (as in polymer membrane swelling). In this post, you will explore the changes in structure at interfaces in MOF-based membranes using advanced electron microscopy and focused
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properties. Critically, these changes are heterogeneous, depending on the guest loading or state of hydration (as in polymer membrane swelling). In this post, you will explore the changes in structure
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English is a must. Candidate Criteria: Ph.D. in Materials Engineering, Polymer Chemistry, Chemistry, Electrochemistry, or other related fields from a recognized university. Willingness to learn how
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that some polymeric or lipid nanoparticles are excellent candidates as delivery agents. Key Responsibilities: Design and synthesize novel stimuli-responsive lipids or polymers for RNA delivery formulations
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-to-end integrated 3D polymer material manufacturing from waste resources. The successful candidate will study the sustainability of systems and combine it with AI for intelligent decision-support tools