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to become an expert in both thin films and electrochemistry – fields that are key to numerous crucial technologies and sustainability. Depending on the task at hand, you will work independently, as a part of
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or upper second-class honours degree (or international equivalent) in Materials Science, Chemistry, Chemical Engineering, Metallurgy, Physics, Electrochemistry, or a related discipline. Experience in
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considered meritorious: More than one year of hands-on laboratory experience in electrochemistry, electrocatalysis, for water splitting, CO₂ conversion, biomass upgrading, or other small-molecule catalytic
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part of the project. Duties The work involves experimental polymer science, materials chemistry, electrochemistry and spectroscopy. Activities will include both materials development and the fabrication
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, microstructure, manufacturing processes, and electrochemical performance to develop next-generation iron anodes for rechargeable iron–air batteries. The project combines electrochemistry, materials science, and
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and the group maintains active research programmes in lithium-ion, magnesium-ion, lithium-air and lithium-sulfur batteries. Our approach spans synthetic chemistry, electrochemistry and device
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of heterogeneous catalysis and materials design, with a strong emphasis on elucidating the mechanism of (electro)catalytic reactions. The electrochemistry team's research focuses on electrocatalysis and electro
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the operando X-ray spectroscopies for resolving electrode-electrolyte interface structures. This project is a good match for you if you like: Understanding electrochemistry at the molecular level Working with
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understanding of energy-conversion systems, thermodynamics, electrical engineering, heat and mass transfer, electrochemistry, or control engineering. The ability to conduct independent, systematic, and
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Are you passionate about sustainable energy materials and thin-film technologies for batteries?Are you interested in combining materials science, atomic layer deposition and electrochemistry, in