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and synthesis of microporous polymers and their applications in electrochemical processes for energy storage and conversion. You will independently lead a research direction within the group, while
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position will explore innovative approaches to sequester and sense chloride by designing and synthesizing anion receptors for use in polymer materials and coatings. Critical activities involve the synthesis
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of plasma polymers that can be further directed to generate original and in situ bottom-up processing strategies. This thesis is part of the research project PHOTOPLASMA, financed by the French National
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the mechanical properties of conjugated polymers and on the development of spinning processes for the manufacture of conducting polymer fibers for wearable electronics. A summary of the research field can be found
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polymer–drug compatibility. Training and instrument access will be provided by AstraZeneca. Integration of physical and biological performance testing Eligibility and Application Process Applications
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Repurposing Polymers and Drugs for Sustainable Therapeutics: Polymer Functionalisation, High-Throughput Screening, and In Vivo Evaluation of Amorphous Solid Dispersions Research organisation
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organic methods for functional small molecules and polymers. The goal of projects in the Huang lab is to tackle critical societal challenges through precise structural control, efficient manufacturing, and
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organic methods for functional small molecules and polymers. The goal of projects in the Huang lab is to tackle critical societal challenges through precise structural control, efficient manufacturing, and
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group’s research advances polymer network design to achieve high mechanical performance for the evolving demands of modern technologies. For more details, please view https://www.ntu.edu.sg/mse/research
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Description Head of the Department of Controlled Macromolecular Synthesis The Department of Controlled Macromolecular Synthesis is focused mainly on the synthesis of new polymer materials with a defined