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Anode-supported Type SOFCs based on Novel Low Temperature Ceramic Coating Process
Jong-Jin Choi, Cheol-Woo Ahn, Jong-Woo Kim, Jungho Ryu, Byung-Dong Hahn, Woon-Ha Yoon, Dong-Soo Park
J. Korean Ceram. Soc.. 2015;52(5):338    DOI:

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High Performance SrFe0.2Co0.4Mo0.4O3−δ Ceramic Anode Supported Low-Temperature SOFCs
Journal of The Electrochemical Society. 2021;168(11):114503   Crossref logo
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Fabrication of Anode Supported Micro Tubular SOFCS by Dip-Coating Process on NiO/YSZ Hollow Fibers
ECS Transactions. 2019;25(2):881-888   Crossref logo
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Anode-supported tubular SOFCs based on BaZr0.1Ce0.7Y0.1Yb0.1O3−δ electrolyte fabricated by dip coating
Electrochemistry Communications. 2011;13(6):615-618   Crossref logo
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Performance of Ni-based Anode-Supported SOFCs with Doped Ceria Electrolyte at Low Temperatures Between 294 and 542°C
International Journal of Applied Ceramic Technology. 2013;12(2):358-362   Crossref logo

Performance of Anode Microstructure Controlled Ni-ScSZ/LSGM/LSCF-Ag SOFCs by Low Temperature Fabrication Process
ECS Transactions. 2019;35(1):615-619   Crossref logo
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Processing of graded anode-supported micro-tubular SOFCs based on samaria-doped ceria via gel-casting and spray-coating
Ceramics International. 2012;38(5):3713-3722   Crossref logo
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Ni-Ce0.9Gd0.1O1.95 anode for GDC electrolyte-based low-temperature SOFCs
Solid State Ionics. 2004;166(3-4):241-250   Crossref logo
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Anode-Supported SOFCs with Electrolyte Thin Films Prepared by Spray Coating
Materials Science Forum. 2009;631-632:319-324   Crossref logo

Anode-supported micro tubular SOFCs for advanced ceramic reactor system
Journal of Power Sources. 2007;171(1):92-95   Crossref logo
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Scale Up and Anode Development for La-Doped SrTiO3 Anode-Supported SOFCs
Journal of the American Ceramic Society. 2013;96(6):1718-1723   Crossref logo
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