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Showing 1 to 5 of 5 for “"Solid Oxide Cells"”.
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Electrochemomechanics in Mixed Ionic Electronic Conductors and solid oxide cells
… to simulate the transport characteristics in solid oxide cells with oxygen surface exchange and results are compared with experimental cell operation. The model is used to study the effect of oxygen surface exchange and the bulk diffusion of defects on the performance of solid oxide cell. In …
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Fabrication And Characterization Of Solid Oxide Cells for Energy Conversion and Storage
… highlighted energy and environmental concerns. Solid oxide cells (SOCs) have been considered as one of the promising technologies, since they can be operated efficiently both in electrolysis mode by generating hydrogen through steam electrolysis and fuel cell mode by electrochemically combining …
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Interactions of the Air Electrode with Electrolyte and Interconnect in Solid Oxide Cells
The interactions between different components of solid oxide cells (SOCs) are critical issues for achieving the tens of thousands of hour's goal for long-term performance stability and lifetime. The interactions between the ceramic electrolyte, porous ceramic air electrode, and metallic …
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A multiscale model for the oxide ion conducting and proton conducting solid oxide cells
Solid oxide cells (SOCs) are high-efficiency energy conversion devices under high temperature. However, the key reaction mechanisms governing the overall performance of SOCs are not well understood. Here, we develop a multiscale model combining density functional theory calculations, transition …
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Modeling and analysis of a H₂-H₂O driven reversible solid oxide cell system for electrical energy storage applications
… and wind is heavily reliant on energy storage. Solid oxide cells (SOCs) with bidirectional operation have advantages over other types of energy storage systems since they may be deployed in time-shifting, long-duration, and seasonal storage applications while having lower life cycle …