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understanding of selective precipitation in multi-metal sulfate solutions relevant to battery recycling. The PhD student will investigate how pH and redox/oxidation strategies can be used to selectively remove
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candidates for a project in materials chemistry focusing on earth-abundant cathode materials for sodium-ion batteries. The position is based within the Structural Chemistry research programme at the Department
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on developing biochar as a sustainable feedstock for hard carbon anodes in sodium-ion batteries. In collaboration with Besca AB (https://www.bescacarbon.com/ ), this project explores microwave plasma technology
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hard carbon anodes for sodium-ion batteries. The project is conducted in collaboration with RISE research Institutes of Sweden and various industrial partners. The advertised position will be based
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ambitious student to conduct theoretical studies of ion transport in solid‑state battery materials. The goal of the project is to advance the fundamental understanding of the mechanisms governing ion
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friendly electrolyzers, fuel cells and batteries based on hydrogen as a renewable energy carrier. In these electrochemical systems, ion-conducting polymers and electrolyte membranes are central materials and