By Mihails Kusnezoff, Narottam P. Bansal, Kiyoshi Shimamura
This factor comprises thirteen papers from the yank Ceramic Society’s fortieth overseas convention on complicated Ceramics and Composites, held in Daytona seashore, Florida, January 24-29, 2016 awarded in Symposium three - thirteenth foreign Symposium on strong Oxide gas Cells: fabrics, technology, and know-how and Symposium 14 – unmarried Crystalline fabrics for electric, Optical, and clinical Applications.
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Extra resources for Advances in Solid Oxide Fuel Cells and Electronic Ceramics II: Ceramic Engineering and Science Proceedings Volume 37, Issue 3
Lin, R. Y. Lee, and S. H. , 25(2), 1491-1500 (2009). 19 C. K. Liu, K. F. Lin, and R. Y. , 35(1), 2519-2526 (2011). 20 C. K. Liu, R. Y. Lee, K. C. Tsai, S. H. Wu, and K. F. Lin, Characterization and performance of a high-temperature glass sealant for solid oxide fuel cell, Advances in Solid Oxide Fuel Cells X, 35(3), 65-75 (2014). 21 C. K. Liu, K. F. Lin, and R. Y. Lee, Effects of lanthanum-to-calcium ratio on the thermal and crystalline properties of BaO–Al2O3–B2O3–SiO2 based glass sealants for solid oxide fuel cells, J.
Journal of Material Science, Volume 47, 3925-3948. , & Tagawa, H. (1996). Solid State Ionics, Volume 83, 1-5. , & Tagawa, H. (1998). Sintering behaviors of ceria and gadolinia-doped ceria. Solid State Ionics, Volume 106, 263-268. , & Traversa, E. (2009). Improved Total Conductivity of Nanometric Samaria-Doped Ceria Powders Sintered with Molten LiNO3 Additive. Solid State Ionics, Volume 180, 1069-1075. , & Moriga, T. (2006). 95 Electrolyte in IntermediateTemperature Solid Oxide Fuel Cells During Fabrication.
The original particles of LDC and NiO-LDC agglomerated powders are less than 100 nm in size and the original particles of SSC agglomerated powders are between 200 nm and 400 nm in size. %) were plasma sprayed in sequence on a porous Ni-Mo substrate to complete a multilayered MSC cell. The sprayed area of SSC/SDC layers is 81 cm2. A home-made porous Ni-Mo superalloy plate with straight gas flow channels was used as the substrate for the prepared cell. The schematic diagram of INER’s novel metal substrate is shown in Figure 3.