WANG Shaorong. J Sci Chin (in Chinese), 2011, 14: 80–81.
[3]
? ZHAN Z, BIERSCHENK D M, CRONIN J S, et al. A reduced temperature solid oxide fuel cell with nanostructured anodes [J]. Energy Environ Sci, 2011, 4: 3951–3954.
[4]
? LEAH R T, BRANDON N P, AGUIAR P. Modelling of cells, stacks and systems based around metal-supported planar IT-SOFC cells with CGO electrolytes operating at 500–600 ℃[J]. J Power Sources, 2005, 145: 336–352.
[5]
? MATUS Y B, De JONGHE L C, JACOBSON C P, et al. Metal-supported solid oxide fuel cell membranes for rapid thermal cycling [J]. Solid State Ionics, 2005, 176: 443–449.
[6]
? TUCKER M C, JACOBSON C P, De JONGHE L C, et al. A braze system for sealing metal-supported solid oxide fuel cells [J]. J Power Sources, 2006, 160: 1049–1057..
[7]
? KLEMENSO T, NIELSEN J, BLENNOW P, et al. High performance metal-supported solid oxide fuel cells with Gd-doped ceria barrier layers [J]. J Power Sources, 2011, 196: 9459–9466.
[8]
? SCHILLER G, HENNE R H, LANG M, et al. Development of vacuum plasma sprayed thin-film SOFC for reduced operating temperature [J]. Fuel Cells Bull, 2000, 3: 7–12.
[9]
? HUI S, YANG D, WANG Z, et al. Metal-supported solid oxide fuel cell operated at 400–600 ℃[J]. J Power Sources, 2007, 167: 336–339.
[10]
? XIE Y, NEAGU R, HSU C-S, et al. Thin film solid oxide fuel cells deposited by spray pyrolysis [J]. J Fuel Cell Sci Technol, 2010, 7: 021007–1–6.
[11]
? SHIN H K, SHIN H, CHO S Y, et al. Phase evolution and dielectric properties of MgTiO3–CaTiO3 based ceramic sintered with lithium borosilicate glass for application to low temperature co-fired ceramics [J]. J Am Ceram Soc, 2005, 88(9): 2461–2465.
[12]
? HUI R, BERGHAUS J O, DECES-PETIT C, et al. High performance metal-supported solid oxide fuel cells fabricated by thermal spray [J]. J Power Sources, 2009, 191: 371–376.
[13]
? JU Y-W, INAGAKI T, IDA S, et al. Sm(Sr)CoO3 cone cathode on LaGaO3 thin film electrolyte for IT-SOFC with high power density [J]. J Electrochem Soc, 2011, 158: B825–B830.
[14]
? JU Y-W, HONG J-E, HYODO J, et al. New buffer layer material La(Pr)CrO3 for intermediate temperature solid oxide fuel cell using LaGaO3-based electrolyte film [J]. J Mater Res, 2012, 27: 1906–1914.
[15]
? BRANDON N P, BLAKE A, CORCORAN D, et al. Development of metal supported solid oxide fuel cells for operation at 500–600 ℃[J]. J Fuel Cell Sci Technol, 2004, 1: 61–65.
[16]
? VILLARREAL I, JACOBSON C, LEMING A, et al. Metal-supported solid oxide fuel cells [J]. Electrochem Solid-State Lett, 2003, 6(9): A178–A179.
[17]
? BRANDNER M, BRAM M, FROITZHEIM J, et al. Electrically conductive diffusion barrier layers for metal-supported SOFC [J]. Solid State Ionics, 2008, 179: 1501–1504.
[18]
? FRANCO T, SCHIBINGER K, ILHAN Z, et al. Ceramic diffusion barrier layers for metal supported SOFCs [C]// EGUCHI K, SINGHAI SC, YOKOKAWA H, et al, ed. Solid Oxide Fuel Cells 10. Pennington: Electrochemical Society inc, 2007: 771–780.
[19]
? WALDBILLIG D, KESLER O. Characterization of metal-supported axial injection plasma sprayed solid oxide fuel cells with aqueous suspension plasma sprayed electrolyte layers [J]. J Power Sources, 2009, 191: 320–329.
[20]
? TUCKER M C, LAU G Y, JACOBSON C P, et al. Performance of metal-supported SOFCs with infiltrated electrodes [J]. J Power Sources, 2007, 171: 477–482.
[21]
? BLENNOW P, HJELM J, KLEMENS T, et al. Manufacturing and characterization of metal-supported solid oxide fuel cells [J]. J Power Sources, 2011, 196: 7117– 7125.
[22]
? LIU Z, LIU B, DING D, et al. Development of three-layer intermediate temperature solid oxide fuel cells with direct stainless steel based anodes [J]. Inter J Hydrogen Energy, 2012, 37: 4401–4405.
[23]
? TUCKER M C, LAU G Y, JACOBSON C P, et al. Stability and robustness of metal-supported SOFCs [J]. J Power Sources, 2008, 175: 447–451.
[24]
? TUCKER M C. Progress in metal-supported solid oxide fuel cells: A review [J]. J Power Sources, 2010, 195: 4570–4582.
[25]
? KIM Y-M, BAE J. Investigation of mixed conducting cathode for metal-supported SOFC [J]. ASME Conf Proc, 2009: 847–849.
[26]
? BAEK S-W, JEONG J, KIM Y-M, et al. Metal-supported solid oxide fuel cells with barium-containing in-situ cathodes [J]. Solid State Ionics, 2011, 192: 387–393.
[27]
? KIM Y-M, KIM-LOHSOONTORN P, BAE J. Effect of unsintered gadolinium-doped ceria buffer layer on performance of metal-supported solid oxide fuel cells using unsintered barium strontium cobalt ferrite cathode [J]. J Power Sources, 2010, 195: 6420–6427.
[28]
? LI J, WANG S, LIU R, et al. Electrochemical performance of (Bi2O3)(1–x)? (Er2O3)x-Ag composite material for intermediate temperature solid oxide fuel cell cathode [J]. Solid State Ionics, 2008, 179: 1597–1601.
[29]
? KONG Y, HUA B, PU J, et al. A cost-effective process for fabrication of metal-supported solid oxide fuel cells [J]. Inter J Hydrogen Energy, 2010, 35: 4592–4596.
[30]
? CHO H J, CHOI G M. Fabrication and characterization of Ni- supported solid oxide fuel cell [J]. Solid State Ionics, 2009, 180: 792–795.
[31]
? SARASKETA-ZABALA E, OTAEGI L, RODRIGUEZ-MARTINEZ L M, et al. High temperature stability of porous metal substrates under highly humidified hydrogen conditions for metal supported solid oxide fuel cells [J]. Solid State Ionics, 2012, 222: 16–22.
[32]
? LEAH R, BONE A, SELCUK A, et al. Development of highly robust, volume-manufacturable metal-supported SOFCs for operation below 600 ℃ [C]// SINGHAL S C, EGUCHI K, ed. Solid Oxide Fuel Cells 12. Pennington: Electrochemical Society inc, 2011: 351–367.
[33]
? ANSAR A, SZABO P, ARNOLD J, et al. Metal supported solid oxide fuel cells and stacks for auxiliary power units - progress, challenges and lessons learned [C]// SINGHAL S C, EGUCHI K, ed. Solid Oxide Fuel Cells 12. Pennington: Electrochemical Society inc, 2011: 147– 155.