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oxide electrolysis cells. In focus will be the oxygen electrode of the cell and the interconnect plates, which are used as auxiliary components when stacking individual cells. The overall aim is to
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the solid oxide cell applied is a proton conducting ceramic, controlling the potential and current allows control of the hydrogen activity at the electrode surface. It is the hypothesis behind the project
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to support development of improved solid oxide electrolysis cells. The work will focus on developing superior oxygen electrodes and methods to elucidate the losses associated with this electrode on full cells
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October 2024 or as soon possible. Job description Understanding the interaction of gas bubbles and electrode surfaces is a key to design and improve gas-evolving electrochemical systems such as water