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-temperature solid oxide steam electrolyser stack for efficient hydrogen production using an innovative meta-surface catalyst and cell design approach, with advanced techniques such as thermal-spray coating and screen
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both mothers and fathers) You will: Design and synthesize oxide and oxyfluoride cathode materials for rechargeable lithium batteries. Use electrochemical techniques such as cell cycling tests, cyclic
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year. Parental bonding leave (for both mothers and fathers) You will: Design and synthesize oxide and oxyfluoride cathode materials for rechargeable lithium batteries. Use electrochemical techniques
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. The Electrochemistry group is among the world-leading in solid-state electrochemistry and materials science of oxides for electrochemical energy conversion technologies especially proton ceramic fuel cells and
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research facilities. The group is among the world-leading in solid-state electrochemistry and materials science of proton-conducting oxides for electrochemical energy conversion technologies such as proton
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to the new Life Science Building by mid 2026 which offers modern research facilities. The Electrochemistry group is among the world-leading in solid-state electrochemistry and materials science of oxides
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of electrochemical cells (e.g., solid oxide fuel cells) or materials therein. Experience with analysis of electrical, kinetic or electrochemical properties, e.g., using isotope exchange techniques or electrochemical
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a Postdoctoral Fellow to provide grant-based research for project funded by DOE to develop solid oxide electrolysis cells for hydrogen. This position will perform experiments, supervise graduate and