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Field
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compounds, with particular emphasis on developing synthetic methods for both small molecules and polymers using fluorine gas. Through these efforts, we seek to explore previously uncharted chemical space
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, conversion and storage, and organic optoelectronics intelligent and advanced polymers and materials. Job description: The successful candidate will: Conduct original and high-quality research in adsorption
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, including bioprinting Combining our expertise in Functional & Interactive Polymers and Advanced Macromolecular Materials for Medicine, we are developing functional and biological microgels that can provide
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incorporating the molecular systems for strong light–matter coupling. The successful candidate will: Develop thin-film deposition and cavity fabrication processes, including spin coating, polymer matrix blending
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Environmental Engineering focusing on different research fields such as catalysis, separation, energy generation, conversion and storage, and organic optoelectronics intelligent and advanced polymers and
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, conversion and storage, and organic optoelectronics intelligent and advanced polymers and materials. About the project: This project aims to lower energy consumption and increase the water recovery of
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Catalysts for the Chemical Utilization of Anthropogenic Carbon Dioxide Your tasks The long-term vision of MemCat is to give access to green e-Polymers by providing carbon-negative plastic precursors using
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Manufacture at Chalmers University of Technology , focused on innovative research in the design and synthesis of sustainable polymers to be used as a binder for the electrode processing of the lithium ion
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photovoltaic, organic photodetectors What you will do You will design, synthesize, and fully characterize new π-conjugated organic semiconductors (small molecules and/or polymers) tailored for organic
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through their work. Required Skills: Microfabrication on rigid and flexible polymer substrates (photolithography, metal evaporation, etching) Experience with packaging schemes such as flip-chip bonding