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Field
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. Continued employment is contingent on the renewal of funding. Hiring Range: $50-$65k Requirements Ph.D. or other doctoral degree in Materials Science, Mechanical Engineering, Chemical Engineering, Polymer
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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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University Work duties: The research project will focus on the development of fluorine-free electronically conductive polymer binders for silicon-based electrodes in lithium-ion batteries. The project will
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 10 hours ago
inform observable macroscopic properties as part of the activities of the UNC Superfund Research Program (SRP) (https://sph.unc.edu/superfund-pages/srp/). This work involves running, developing, and
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on the physical chemistry and materials science of organic semiconductors, polymer blends and composites, and develops new plastic materials for use in the fields of wearable electronics and energy technology. All
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on different conditions (composite electrode formulation, electrolyte formulation, pH, oxide or polymer-based negative electrode, temperature…) Optimisation of the devices. Redaction of drafts/publications and
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dissemination of results through publications and presentations. Find out more about the O’Hare research and group at: https://ohare.chem.ox.ac.uk About you Applicants must hold a PhD in Chemistry or a relevant
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of materials. The main activities will include: – adapting the generative LegoXtal code to the design of MOF coordination polymers and porous materials by assembling elementary molecular bricks in the generation
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Materials for Next Generation of Pneumatic Tires, Structure-Process-Properties Relationships. Do you want to know more about LIST? Check our website: https://www.list.lu/ How will you contribute? LIST is
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materials science of organic semiconductors, polymer blends and composites, and develops new plastic materials for use in the fields of wearable electronics and energy technology. All research is conducted in