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gel electrolytes. Investigation of ion–polymer interactions, ionic transport, and thermoelectric properties. Selection and electrochemical characterization of redox-active materials for thermal energy
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reactions. Materials chemistry, catalyst synthesis, characterization, or surface/interface science including electrolyte–electrode interactions and interfacial solvation. Experience with transition-metal
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health, and will involve close interaction with researchers from both computational and biomedical disciplines. In addition to the core project, the successful candidate will have opportunities to develop
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functional materials, charge transport, and energy conversion. The project explores a new and challenging device concept, and therefore requires creativity, persistence, and strong problem-solving abilities
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applications in different project contexts. This may include data analysis, modelling, literature reviews, and interaction with relevant stakeholders. The results are expected to contribute increased knowledge