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Field
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, energy-efficient conversion within milliseconds. You will convert recovered silicon into battery anodes, transform polymers into carbon nanomaterials, develop industrial ceramics routes, and create
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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
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depositing ATOX-resistant coatings on polymers relevant for satellite construction, such as carbon fiber reinforced polymers, using plasma processes at low pressure and atmospheric pressure. The work will
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PostDoc positions to undertake research in the area of expertise related to : Organic chemistry Polymer Science Hydrometallurgy Minerals engineering Environmental Science 1. Job description Subject 1
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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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Applicants must hold a PhD in Chemistry or a relevant subject area, (or be very close to completion) prior to taking up the appointment. The research requires experience in polymer synthesis from both
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, and measure success. Basic Qualifications: A PhD in materials science and engineering, mechanical engineering, aerospace engineering, polymer science, or a related discipline completed within the last
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 1 day ago
. Position Summary This Postdoctoral Research Associate will be focused on developing polymer materials for applications in energy and environmental sustainability with the Guo Lab at UNC Chapel Hill
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. These materials can be ceramics or polymers. The material chosen in this study is commercial PZT ceramics. To efficiently use the available mechanical energy in tires and induce strain in