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Interfacial Stability Between Anode and Electrolyte of LSGM-Based SOFCs
Kwang-Nyeon Kim, Jooho Moon, Ji-Won Son, Joosun Kim, Hae-Weon Lee, Jong-Ho Lee, Byung-Kook Kim
J. Korean Ceram. Soc.. 2005;42(7):509    DOI: https://doi.org/10.4191/kcers.2005.42.7.509

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An investigation of the interfacial stability between the anode and electrolyte layer of LSGM-based SOFCs
Journal of Materials Science. 2007;42(6):1866-1871   Crossref logo
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Interactions of LSGM electrolyte with different anode materials
Fuel Cells Bulletin. 2001;4(35):13   Crossref logo
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Characterization of the electrode and electrolyte interfaces of LSGM-based SOFCs
Solid State Ionics. 2006;177(19-25):2155-2158   Crossref logo
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Ag Thin Film Cathode for LSGM Electrolyte LT-SOFCs
ECS Transactions. 2007;7(1):1311-1318   Crossref logo
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Anode/Electrolyte Interface Modification in LSGM Electrolyte Supported SOFC
ECS Transactions. 2019;35(1):527-532   Crossref logo
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Interactions and Compatibilities of LSGM Electrolyte and LSCM Anode
ECS Meeting Abstracts. 2006;MA2005-01(30):1097-1097   Crossref logo
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Performance of Anode Microstructure Controlled Ni-ScSZ/LSGM/LSCF-Ag SOFCs by Low Temperature Fabrication Process
ECS Transactions. 2011;35(1):615-619   Crossref logo
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Anode/Electrolyte Interface Modification in LSGM Electrolyte Supported SOFC
ECS Meeting Abstracts. 2011;MA2011-01(12):851-851   Crossref logo
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Performance of Anode Microstructure Controlled Ni-ScSZ/LSGM/LSCF-Ag SOFCs by Low Temperature Fabrication Process
ECS Meeting Abstracts. 2011;MA2011-01(12):925-925   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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