ref [2] · 2608.08767 · notice #10044 · dispute
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Oxide Fuel Cells: Theory, Integration and Prospective, ChemElectroChem 11 (2024) e202300593. https://doi.org/10.1002/celc.202300593. [2] C. Duan, R. Kee, H. Zhu, N. Sullivan, L. Zhu, L. Bian, D. Jennings, R. O'Hayre, Highly efficient reversible protonic ceramic electrochemical cells for power generation and fuel production, Nat Energy 4 (2019) 230-240. https://doi.org/10.1038/s41560-019-0333-2. [3] A.B. Stambouli, E. Traversa, Solid oxide fuel cells (SOFCs): a review of an environmentally clean and efficient source of energy, Renewable and Sustainable Energy Reviews 6 (2002) 433-455. https://doi.org/10.1016/S1364-0321(02)00014-X. [4] S. Dey, R. Saravanan, A. Sethurajaperumal, R. Bal, G.C. Mather, G. Ganesh, E. Varrla, A. Puranik, K.
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Oxide Fuel Cells: Theory, Integration and Prospective, ChemElectroChem 11 (2024) e202300593. https://doi.org/10.1002/celc.202300593. [2] C. Duan, R. Kee, H. Zhu, N. Sullivan, L. Zhu, L. Bian, D. Jennings, R. O'Hayre, Highly efficient reversible protonic ceramic electrochemical cells for power generation and fuel production, Nat Energy 4 (2019) 230-240. https://doi.org/10.1038/s41560-019-0333-2. [3] A.B. Stambouli, E. Traversa, Solid oxide fuel cells (SOFCs): a review of an environmentally clean and efficient source of energy, Renewable and Sustainable Energy Reviews 6 (2002) 433-455. https://doi.org/10.1016/S1364-0321(02)00014-X. [4] S. Dey, R. Saravanan, A. Sethurajaperumal, R. Bal, G.C. Mather, G. Ganesh, E. Varrla, A. Puranik, K