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at the forefront of the research and development of self-healing reversible polymer networks (https://www.youtube.com/watch?v=fQ4t5GcS0_g ). With REVERSAM, we will explore deeper how the unique properties
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polymer composites. This project is a direct, high-impact follow-on from our published work on Composite Fibre Additive Manufacturing (CFAM), a novel sheet lamination technique. The initial research
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campus with meal subsidies from the CNRS. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR7515-JULBER-106/Candidater.aspx Requirements Research FieldChemistryEducation LevelPhD
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Understanding the Role of Self-Poisoning in Polymer Crystallisation School of Chemical, Materials and Biological Engineering PhD Research Project Directly Funded UK Students Dr Xiangbing Zeng
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-of-life to enable direct recycling. Within this project, the focus of Structure Formation Department (SF) is on developing and characterizing the hybrid binder systems. The research integrates polymer
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faculty position in the area of polymers, with applications in health, semi-conductors, and other strategic usages. The School for Engineering of Matter, Transport and Energy (https
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developing and characterizing the hybrid binder systems. The research integrates polymer science, composite engineering, interfacial mechanics, and chemical polymer design to eastablish a new binder type that
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at the Mechanics of Composites for Energy and Mobility Lab. (MCEM, https://composites.kaust.edu.sa ). Field of study A Postdoctoral opening is available in the area of Insitu Multiphysics
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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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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