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1
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31844452847
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Fossil energy fuel cell program
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July 8-9, Sandia Labs
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Wayne Surdoval, "Fossil Energy Fuel Cell Program," SECA Workshop/Meeting, July 8-9, Sandia Labs. (2003).
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(2003)
SECA Workshop/Meeting
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Surdoval, W.1
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2
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31844434641
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Sold oxide fuel cell power generation: Technology status
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July 8-9, Sandia Labs
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Prabhakar Singh, "Sold Oxide Fuel Cell Power Generation: Technology Status," SECA Workshop/Meeting, July 8-9, Sandia Labs. (2003).
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(2003)
SECA Workshop/Meeting
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Singh, P.1
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3
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0023329953
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Asymmetric polarization behavior of sodium beta"-alumina electrolyte
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R.N. Singh, "Asymmetric Polarization Behavior of Sodium Beta"-Alumina Electrolyte," J. Am. Ceram. Soc., 70[4], 221 (1987).
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(1987)
J. Am. Ceram. Soc.
, vol.70
, Issue.4
, pp. 221
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Singh, R.N.1
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4
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0020924893
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Role of electrolyte-sodium interface behavior to the degradation of a sodium-sulfur cell
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R.N. Singh and N. Lewis, "Role of Electrolyte-Sodium Interface Behavior to the Degradation of a Sodium-Sulfur Cell," Solid State Ionics, 9/10, 159 (1983).
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(1983)
Solid State Ionics
, vol.9-10
, pp. 159
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Singh, R.N.1
Lewis, N.2
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5
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0021424260
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Hot-stage for in situ operation of a battery in a scanning electron microscope
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R.N. Singh, R.H. Ettinger and N. Lewis, Rev. Sci. Inst., "Hot-Stage for In Situ Operation of a Battery in a Scanning Electron Microscope," 55[5], 773 (1984).
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(1984)
Rev. Sci. Inst.
, vol.55
, Issue.5
, pp. 773
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Singh, R.N.1
Ettinger, R.H.2
Lewis, N.3
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6
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84858547824
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"Etched Beta"-Alumina Ceramic Electrolyte," US Patent # 4381968
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R.N. Singh, "Etched Beta"-Alumina Ceramic Electrolyte," US Patent # 4381968 (1983).
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(1983)
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Singh, R.N.1
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7
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31844444867
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American Power, Private communication (2002)
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American Power, Private communication (2002).
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-
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8
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0019573137
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Fabrication and properties of porous lithium aluminate electrolyte retainer for molten carbonate fuel cells
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R.N. Singh, J.T. Dusek, and J.W. Sim, "Fabrication and Properties of Porous Lithium Aluminate Electrolyte Retainer for Molten Carbonate Fuel Cells," J. Am. Ceram. Soc., 60[6], 629 (1981).
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(1981)
J. Am. Ceram. Soc.
, vol.60
, Issue.6
, pp. 629
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Singh, R.N.1
Dusek, J.T.2
Sim, J.W.3
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9
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84858543226
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"Porous Electrolyte Retainer for Molten Carbonate Fuel Cells," US Patent # 4389467
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R.N. Singh and J.T. Dusek, "Porous Electrolyte Retainer for Molten Carbonate Fuel Cells," US Patent # 4389467 (1983).
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(1983)
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Singh, R.N.1
Dusek, J.T.2
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10
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0032472985
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Generation of multiple matrix cracking and fiber-matrix interfacial debonding in a glass composite
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Y. Sun and R.N. Singh, "Generation of Multiple Matrix Cracking and Fiber-Matrix Interfacial Debonding in a Glass Composite," Acta Mater., 46[5], 1657 (1998).
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(1998)
Acta Mater.
, vol.46
, Issue.5
, pp. 1657
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Sun, Y.1
Singh, R.N.2
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11
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0034250750
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Determination of fiber bridging stress profile by debond length measurement
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Y. Sun and R. N. Singh, "Determination of Fiber bridging Stress Profile By Debond Length Measurement," Acta Mater., 48, 3607 (2000).
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(2000)
Acta Mater.
, vol.48
, pp. 3607
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Sun, Y.1
Singh, R.N.2
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12
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0031276762
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Effects of fiber coating properties on the crack deflection and penetration in fiber-reinforced ceramic composites
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S. Kumar and R.N. Singh, "Effects of Fiber Coating properties on the Crack Deflection and Penetration in Fiber-Reinforced Ceramic Composites," Acta Materially 45[11], 4721 (1997).
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(1997)
Acta Materially
, vol.45
, Issue.11
, pp. 4721
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Kumar, S.1
Singh, R.N.2
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13
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0033728816
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Effect of fiber bridging stress on the fracture resistance of silicon-carbide-fiber/zircon composites
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Y.L. Wang, U. Anandkumar, and R.N. Singh, "Effect of Fiber Bridging Stress on the Fracture Resistance of Silicon-Carbide-Fiber/Zircon Composites," J. Am Ceramic Soc., 83[5], 1207 (2000).
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(2000)
J. Am Ceramic Soc.
, vol.83
, Issue.5
, pp. 1207
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Wang, Y.L.1
Anandkumar, U.2
Singh, R.N.3
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14
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0030285016
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Thermal shock behavior of two-dimensional woven fiber-reinforced ceramic composites
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J.E. Web and R.N. Singh, "Thermal Shock behavior of Two-Dimensional Woven Fiber-Reinforced Ceramic Composites," J. Am. Ceram. Soc., 79[11], 2857 (1996).
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(1996)
J. Am. Ceram. Soc.
, vol.79
, Issue.11
, pp. 2857
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Web, J.E.1
Singh, R.N.2
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15
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32044435558
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Fundamental study of the durability of materials for interconnct in solid oxide fuel cells
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October 1, Albany, NY
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G. Meier, "Fundamental Study of the Durability of Materials for Interconnct in Solid Oxide Fuel Cells," SECA Core Technology Program Review, October 1 (2003), Albany, NY.
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(2003)
SECA Core Technology Program Review
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Meier, G.1
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16
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22544443752
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Use of a novel ceramic-metal braze for joining in high temperature electrochemical devices
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ASM
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K. S. Weil, J.S. Hardy, and J.Y. Kim, "Use of a Novel Ceramic-Metal Braze for Joining in High Temperature Electrochemical Devices," The Joining of Advanced and Specialty Materials, V, ASM (2003).
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(2003)
The Joining of Advanced and Specialty Materials
, vol.5
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Weil, K.S.1
Hardy, J.S.2
Kim, J.Y.3
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17
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31844446787
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Novel materials for obtaining compliant, high temperature seals for solid oxide fuel cells
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October 1, Albany, NY
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C. Lewinsohn, S. Quist, and S. Elangovan, "Novel Materials for Obtaining Compliant, High Temperature Seals for Solid Oxide Fuel Cells," SECA Core Technology Program Review, October 1 (2003), Albany, NY.
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(2003)
SECA Core Technology Program Review
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Lewinsohn, C.1
Quist, S.2
Elangovan, S.3
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18
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31844436961
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Development of high performance seals for solid oxide fuel cells
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October 1, Albany, NY
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R. Loehman, "Development of High Performance Seals for Solid Oxide Fuel Cells," SECA Core Technology Program Review, October 1 (2003), Albany, NY.
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(2003)
SECA Core Technology Program Review
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Loehman, R.1
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20
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0037167977
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Ultra low leak rate of hybrid compressive mica seals for SOFC
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Y.S. Chou, J.W. Stevenson, and L. A. Chick, "Ultra Low Leak Rate of Hybrid Compressive Mica Seals for SOFC," J. Power Source, 112, 130 (2002).
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(2002)
J. Power Source
, vol.112
, pp. 130
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Chou, Y.S.1
Stevenson, J.W.2
Chick, L.A.3
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21
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0037430874
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Mid-term stability of novel mica-based compressive seals for SOFC
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Y.S. Chou and J.W. Stevenson, "Mid-Term Stability of Novel Mica-Based Compressive Seals for SOFC," J. Power Source, 115, 274 (2003).
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(2003)
J. Power Source
, vol.115
, pp. 274
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Chou, Y.S.1
Stevenson, J.W.2
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22
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0034299824
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Improvement of thermal cycle characteristics of a planar-type SOFC by using ceramic fiber as a sealing material
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S. Tanaguchi, M. Kadowaki, T. Yasuo, Y. Akiyamu, Y. Miyaki and K. Nishio, " Improvement of Thermal Cycle Characteristics of a Planar-Type SOFC by Using Ceramic Fiber as a Sealing Material," J. Power Sources, 90, 163 (2000).
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(2000)
J. Power Sources
, vol.90
, pp. 163
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Tanaguchi, S.1
Kadowaki, M.2
Yasuo, T.3
Akiyamu, Y.4
Miyaki, Y.5
Nishio, K.6
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23
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0027610866
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Review: Preparation, properties, and chemistry of glass and glass-ceramic-to metal seals and coatings
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I.W. Donald, "Review: Preparation, Properties, and Chemistry of Glass and Glass-Ceramic-to Metal Seals and Coatings," J. Mater. Sci., 28, 2841 (1993).
-
(1993)
J. Mater. Sci.
, vol.28
, pp. 2841
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Donald, I.W.1
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