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exploring multi-functional and sustainable polymers for additive manufacturing in robotics. SUME (https://www.vubtechtransfer.be/sustainable-materials-technology ), is the sustainable materials engineering
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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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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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) or polymer synthesis/characterization (e.g. size exclusion chromatography, rheology, and tensile testing) is beneficial but not required. The Huang Group provides a supportive and collaborative environment
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Associação do Instituto Superior Técnico para a Investigação e Desenvolvimento _IST-ID | Portugal | 9 days ago
Description Applications are open for one Research Studentship(s), within the framework of project POLYMERS-5B - Synthesis of Biobased and Biodegradable polymers using monomers from renewable Biowastes via
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) or polymer synthesis/characterization (e.g. size exclusion chromatography, rheology, and tensile testing) is beneficial but not required. The Huang Group provides a supportive and collaborative environment
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] 1. Organic synthesis of small molecules including monomer candidates as well as polymer synthesis 2. Characterization of polymers using circular dichroism spectroscopy and related techniques [Scope
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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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includes the synthesis of polymeric compatibilizers and the characterization of polymers. The work will be carried out at the PCL at Instituto Pedro Nunes, under the scientific supervision of Full Professor
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Research Council (ERC) Starting Grant https://www.kuleuven.be/english/research/EU/p/he/p1/erc/IonFracMem ) aims to address this challenge by developing novel membranes that combine fast throughput with