-
1
-
-
0027552523
-
Ceramic fuel cells
-
N. Q. Minh, "Ceramic Fuel Cells," J. Am. Ceram. Soc, 76 [3] 563-88 (1993).
-
(1993)
J. Am. Ceram. Soc
, vol.76
, Issue.3
, pp. 563-588
-
-
Minh, N.Q.1
-
2
-
-
0037263853
-
Solid oxide fuel cells
-
R. M. Ormerod, "Solid Oxide Fuel Cells," Chem. Soc. Rer. 32 [1] 17-28 (2003).
-
(2003)
Chem. Soc. Rer.
, vol.32
, Issue.1
, pp. 17-28
-
-
Ormerod, R.M.1
-
3
-
-
17544386518
-
Solid oxide fuel cells for stationary, mobile, and military applications
-
S. C. Singhal, "Solid Oxide Fuel Cells for Stationary, Mobile, and Military Applications," Solid State Ionics, 152-153, 405-10 (2002).
-
(2002)
Solid State Ionics
, vol.152-153
, pp. 405-410
-
-
Singhal, S.C.1
-
4
-
-
0036901402
-
Components manufacturing for solid oxide fuel cells
-
F. Tietz, H. P. Buchkremer, and D. Stover, "Components Manufacturing for Solid Oxide Fuel Cells," Solid State Ionics, 152, 373-81 (2002).
-
(2002)
Solid State Ionics
, vol.152
, pp. 373-381
-
-
Tietz, F.1
Buchkremer, H.P.2
Stover, D.3
-
5
-
-
0001086661
-
A small solid oxide fuel cell demonstrator for microelectronic applications
-
K. Kendall and M. Palin, "A Small Solid Oxide Fuel Cell Demonstrator for Microelectronic Applications," J. Power Sources, 71 [1-2] 268-70 (1998).
-
(1998)
J. Power Sources
, vol.71
, Issue.1-2
, pp. 268-270
-
-
Kendall, K.1
Palin, M.2
-
6
-
-
0037139227
-
Fuel cells for low power applications
-
A. Heinzel, C. Hebung, M. Muller, M. Zedda, and C. Muller, "Fuel Cells for Low Power Applications," J. Power Sources, 105 [2] 250-5 (2002).
-
(2002)
J. Power Sources
, vol.105
, Issue.2
, pp. 250-255
-
-
Heinzel, A.1
Hebung, C.2
Muller, M.3
Zedda, M.4
Muller, C.5
-
7
-
-
0036535101
-
Reactions of hydrocarbons in small tubular SOFCs
-
G. J. Saunders and K. Kendall, "Reactions of Hydrocarbons in Small Tubular SOFCs," J. Power Sources, 106 [1-2] 258-63 (2002).
-
(2002)
J. Power Sources
, vol.106
, Issue.1-2
, pp. 258-263
-
-
Saunders, G.J.1
Kendall, K.2
-
8
-
-
0037261310
-
Extruded tubular strontium- and magnesium-doped lanthanum gallate, gadolinium-doped ceria, and yttria-stabilized zirconia electrolytes. mechanical and thermal properties
-
Y. Du, N. M. Sammes, G. A. Tompsett, D. Zhang, J. Swan, and M. Bowden, "Extruded Tubular Strontium- and Magnesium-Doped Lanthanum Gallate, Gadolinium-Doped Ceria, and Yttria-Stabilized Zirconia Electrolytes. Mechanical and Thermal Properties," J. Electrochem. Soc., 150 [1] A74-8 (2003).
-
(2003)
J. Electrochem. Soc.
, vol.150
, Issue.1
-
-
Du, Y.1
Sammes, N.M.2
Tompsett, G.A.3
Zhang, D.4
Swan, J.5
Bowden, M.6
-
9
-
-
0030181453
-
Preparation and properties of small diameter tubular solid oxide fuel cells for rapid start-up
-
I. P. Kilbride, "Preparation and Properties of Small Diameter Tubular Solid Oxide Fuel Cells for Rapid Start-Up." J. Power Sources, 61, 167-71 (1996).
-
(1996)
J. Power Sources
, vol.61
, pp. 167-171
-
-
Kilbride, I.P.1
-
10
-
-
0034215809
-
Concept and technology of SOFC for electric vehicles
-
J. Van Herle, R. Ihringer, N. M. Sammes, G. Tompsett, K. Kendall, K. Yamada, C. Wen, T. Kawada, M. Ihara, and J. Mizusaki, "Concept and Technology of SOFC for Electric Vehicles," Solid State Ionics, 132, 333-42 (2000).
-
(2000)
Solid State Ionics
, vol.132
, pp. 333-342
-
-
Van Herle, J.1
Ihringer, R.2
Sammes, N.M.3
Tompsett, G.4
Kendall, K.5
Yamada, K.6
Wen, C.7
Kawada, T.8
Ihara, M.9
Mizusaki, J.10
-
11
-
-
4344626202
-
Fabrication and properties of anode-supported tubular solid oxide fuel cells
-
Y. H. Du and N. M. Sammes, "Fabrication and Properties of Anode-Supported Tubular Solid Oxide Fuel Cells," J. Power Sources, 136 [1] 66-71 (2004).
-
(2004)
J. Power Sources
, vol.136
, Issue.1
, pp. 66-71
-
-
Du, Y.H.1
Sammes, N.M.2
-
13
-
-
0242426657
-
Fabrication of zirconia- And ceria-based thin-wall tubes by thermoplastic extrusion
-
M. Trunec, "Fabrication Of Zirconia- and Ceria-Based Thin-Wall Tubes by Thermoplastic Extrusion," J. Eur. Ceram. Soc, 24 [4] 645-51 (2004).
-
(2004)
J. Eur. Ceram. Soc
, vol.24
, Issue.4
, pp. 645-651
-
-
Trunec, M.1
-
14
-
-
0012031564
-
Mechanical properties and electrochemical characterisation of extruded doped cerium oxide for use as an electrolyte for solid oxide fuel cells
-
O. Bellon, N. M. Sammes. and J. Staniforth, "Mechanical Properties and Electrochemical Characterisation of Extruded Doped Cerium Oxide for Use as an Electrolyte for Solid Oxide Fuel Cells," J. Power Sources, 75 [1] 116-21 (1998).
-
(1998)
J. Power Sources
, vol.75
, Issue.1
, pp. 116-121
-
-
Bellon, O.1
Sammes, N.M.2
Staniforth, J.3
-
15
-
-
0004738315
-
Co-extrusion of multilayered tubes
-
Z. Liang and S. Blackburn, "Co-Extrusion of Multilayered Tubes," Br. Ceram. Proc, 58, 113-24 (1998).
-
(1998)
Br. Ceram. Proc
, vol.58
, pp. 113-124
-
-
Liang, Z.1
Blackburn, S.2
-
16
-
-
0035399764
-
Design and characterisation of a co-extruder to produce trilayer ceramic tubes semi-continuously
-
Z. Liang and S. Blackburn, "Design and Characterisation of a Co-Extruder to Produce Trilayer Ceramic Tubes Semi-Continuously," J. Eur. Ceram. Soc, 21 [7] 883-92 (2001).
-
(2001)
J. Eur. Ceram. Soc
, vol.21
, Issue.7
, pp. 883-892
-
-
Liang, Z.1
Blackburn, S.2
-
17
-
-
3142666881
-
Preparation of anode/electrolyte ceramic composites by coextrusion of pastes
-
Z. C. Chen, T. Takeda, K. Kikuchi, S. Kikuchi, and K. Ikeda, "Preparation of Anode/Electrolyte Ceramic Composites by Coextrusion of Pastes,J. Am. Ceram. Soc, 87 [6] 983-90 (2004).
-
(2004)
J. Am. Ceram. Soc
, vol.87
, Issue.6
, pp. 983-990
-
-
Chen, Z.C.1
Takeda, T.2
Kikuchi, K.3
Kikuchi, S.4
Ikeda, K.5
-
18
-
-
0036806777
-
Fabrication of macrochannelled-hydroxyapalite bioceramic by a coextrusion process
-
Y. H. Koh, H. W. Kim, H. E. Kim, and J. W. Halloran, "Fabrication of Macrochannelled-Hydroxyapalite Bioceramic by a Coextrusion Process," J. Am. Ceram. Soc, 85 [10] 2578-80 (2002).
-
(2002)
J. Am. Ceram. Soc
, vol.85
, Issue.10
, pp. 2578-2580
-
-
Koh, Y.H.1
Kim, H.W.2
Kim, H.E.3
Halloran, J.W.4
-
19
-
-
0032049941
-
Fabrication Of Microconfigured Multi-component Ceramics
-
A. T. Crumm and J. W. Halloran, "Fabrication of Microconfigured Multi-component Ceramics," J. Am. Ceram. Soc, 81 [4] 1053-7 (1998).
-
(1998)
J. Am. Ceram. Soc
, vol.81
, Issue.4
, pp. 1053-1057
-
-
Crumm, A.T.1
Halloran, J.W.2
-
20
-
-
33646598116
-
-
Method for Preparation of Solid State Electrochemical Device, U.S. Patent No. 6749799, June 15
-
A. T. Crumm and J. W. Halloran. Method for Preparation of Solid State Electrochemical Device, U.S. Patent No. 6749799, June 15, 2004.
-
(2004)
-
-
Crumm, A.T.1
Halloran, J.W.2
-
21
-
-
0029376584
-
Surface cracking in layers under biaxial, residual compressive stress
-
S. Ho, C. Hillman, F. F. Lange, and Z. Suo, "Surface Cracking in Layers under Biaxial, Residual Compressive Stress," J. Am. Ceram. Soc. 78 [9] 2353-9 (1995).
-
(1995)
J. Am. Ceram. Soc.
, vol.78
, Issue.9
, pp. 2353-2359
-
-
Ho, S.1
Hillman, C.2
Lange, F.F.3
Suo, Z.4
-
22
-
-
0024734685
-
Flaw generation during constrained sintering of metal-ceramic and metal-glass multilayer films
-
T. Cheng and R. Raj, "Flaw Generation During Constrained Sintering of Metal-Ceramic and Metal-Glass Multilayer Films," J. Am. Ceram. Soc, 72 [9] 1649-55 (1989).
-
(1989)
J. Am. Ceram. Soc
, vol.72
, Issue.9
, pp. 1649-1655
-
-
Cheng, T.1
Raj, R.2
-
23
-
-
27644492760
-
CoFiring of spatially varying dielectric Ca-Mg-silicate and Bi-Ba-Nd-titanate composite
-
Y. H. Koh, A. Knapp, J. W. Halloran, H. W. Kim, and H. E. Kim, "CoFiring of Spatially Varying Dielectric Ca-Mg-Silicate and Bi-Ba-Nd-Titanate Composite," J. Am. Ceramc. Soc. 88 [10] 2690-5 (2005).
-
(2005)
J. Am. Ceramc. Soc.
, vol.88
, Issue.10
, pp. 2690-2695
-
-
Koh, Y.H.1
Knapp, A.2
Halloran, J.W.3
Kim, H.W.4
Kim, H.E.5
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