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A brief review of the bilayer electrolyte strategy to achieve high performance solid oxide fuel cells
Jeong Hwa Park, Doyeub Kim, Kyeong Joon Kim, Kyung Taek Bae, Kang Taek Lee
Ceramist. 2020;23(2):184-199.   Published online June 30, 2020
DOI: https://doi.org/10.31613/ceramist.2020.23.2.02

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A brief review of the bilayer electrolyte strategy to achieve high performance solid oxide fuel cells
Ceramist. 2020;23(2):184-199   Crossref logo
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A simple bilayer electrolyte model for solid oxide fuel cells
Solid State Ionics. 2003;158(1-2):29-43   Crossref logo
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Charge Transfer in Oxide Solid Fuel Cells
Solid Oxide Fuel Cells. 2020;239-273   Crossref logo
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Anodes for Solid Oxide Fuel Cell
Solid Oxide Fuel Cells. 2020;113-144   Crossref logo
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00/03381 High performance electrodes for reduced temperature solid oxide fuel cells with doped lanthanum gallate electrolyte I. NiSDC cermet an
Fuel and Energy Abstracts. 2000;41(6):380   Crossref logo
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00/03382 High-performance electrodes for reduced temperature solid oxide fuel cells with doped lanthanum gallate electrolyte II. La(Sr)CoO3 cathode
Fuel and Energy Abstracts. 2000;41(6):380   Crossref logo
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Cathodes for Solid Oxide Fuel Cell
Solid Oxide Fuel Cells. 2020;79-112   Crossref logo
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Electrode layer on a solid oxide electrolyte
Fuel Cells Bulletin. 1998;1(2):14   Crossref logo
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Front Matter
Solid Oxide Fuel Cells. 2020;   Crossref logo
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Characteristics of electrolyte supported micro-tubular solid oxide fuel cells with GDC-ScSZ bilayer electrolyte
International Journal of Hydrogen Energy. 2014;39(30):17267-17274   Crossref logo
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