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additives, through sustainable pathways, to produce bio-based hydrogels. Key duties: The successful candidate is expected to: Have hands-on experience in hydrogel formulation and (bio)polymer processing. Have
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subject area, (or be very close to completion) prior to taking up the appointment. The research requires experience in polymer synthesis from both an organometallic catalysis and an organic synthesis and
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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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, 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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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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Job related to staff position within a Research Infrastructure? No Offer Description Work group: HIPOLE: Helmholtz-Institute for Polymers in Energy Applications Jena (HI-POLE) Area of research
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SD-26085 POSTDOCTORAL RESEARCHER IN THE OXIDATIVE CHEMICAL VAPOR DEPOSITION OF FUNCTIONAL BUILDIN...
phase synthesis of advanced polymer catalyst thin films for the conversion of small and low-energy molecules into advanced chemicals and fuels. The postdoctoral researcher will work on the oxidative
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, This opportunity allows a postdoctoral researcher to work on an industrially facing project, applying artificial intelligence (AI) methods to better inform processing to obtain high-quality engineering polymers from
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engineering polymers from recycled plastic feedstock. You will utilise pre-existing modern metrological methods such as MT 2.0/VFM to obtain rich datasets from a relatively sparse set of tests on recycled
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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