Preliminary data on subsolidus phase equilibria in the La2O3-(Al2O3/Fe2O3)-Y2O3 and La2O3-(AI2O3/Fe2O3)-ZrO2 systems
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[1] M. Hrovat,et al. Interactions between a thick film LaMnO3 cathode and YSZ SOFC electrolyte during high temperature ageing , 1995 .
[2] M. Hrovat,et al. Preliminary data on subsolidus phase equilibria in the La2O3-Mn2O3-Y2O3 system , 1995 .
[3] M. Hrovat,et al. Preliminary data on subsolidus phase equilibria in the La2O3-Cr2O3-Y2O3 and La2O3-Cr2O3-ZrO2 systems , 1995 .
[4] Sivan Kartha,et al. Fuel Cells: Energy Conversion for the Next Century , 1994 .
[5] J. Labrincha,et al. Cathode materials for SOFCs , 1994 .
[6] N. Minh. Ceramic Fuel Cells , 1993 .
[7] N. Christiansen,et al. Fuel Cells: Familiar Principles for Electricity Generation , 1993 .
[8] Subhash C. Singhal,et al. Proceedings of the Third International Symposium on Solid Oxide Fuel Cells , 1993 .
[9] J. Labrincha,et al. La2Zr2O7 formed at ceramic electrode/YSZ contacts , 1993, Journal of Materials Science.
[10] T. Mah,et al. Eutectic Composition in the Pseudobinary of Y4Al2O9 and Y2O3 , 1992 .
[11] J. V. Roosmalen. Chemical reactivity and interdiffusion of (La, Sr)MnO3 and (Zr, Y)O2, solid oxide fuel cell cathode and electrolyte materials , 1992 .
[12] H. Yamamura,et al. Mechanism of Reaction between Lanthanum Manganite and Yttria‐Stabilized Zirconia , 1992 .
[13] H. Anderson,et al. Electrical conductivity and Seebeck coefficient of (La, Ca) (Cr, Co)O3 , 1992, Journal of Materials Science.
[14] N. Imanishi,et al. Phase relation in the system (La1−xAx)1−yMnO3+z (A=Sr and Ca) , 1991 .
[15] H. Beck,et al. On the solubility of Fe, Cr and Nb in ZrO2 and its effect on thermal dilatation and polymorphic transition , 1990 .
[16] J. H. Kuo,et al. Oxidation-reduction behavior of undoped and Sr-doped LaMnO3: Defect structure, electrical conductivity, and thermoelectric power , 1990 .
[17] A. J. Appleby,et al. From Sir William Grove to today: fuel cells and the future , 1990 .
[18] A. Hammouche,et al. Crystallographic, thermal and electrochemical properties of the system La1−xSrxMnO3 for high temperature solid electrolyte fuel cells , 1989 .
[19] T. Tien,et al. Subsolidus Phase Equilibria in the System ZrO2‐Y2O3‐Al2O3 , 1980 .
[20] G. Libowitz,et al. The Nature of the Alumina‐Rich Phase in the System La2O3‐Al2O3 , 1978 .
[21] J. Coutures,et al. Etude à haute température du diagramme d'equilibre du Système formé par le sesquioxyde de lanthane avec le sesquioxyde d'Yttrium , 1974 .
[22] A. Muan,et al. Phase Equilibria in the System MnO‐“FeO”‐ZrO2‐SiO2 , 1971 .
[23] Shigeyuki Kimura,et al. Phase Relations in the System FeO‐Fe2O3‐ZrO2‐SiO2 , 1967 .
[24] Howard F. McMurdie,et al. Phase diagrams for ceramists , 1964 .
[25] G. H. Stewart. Science of ceramics , 1963 .
[26] V. Moruzzi,et al. Phase Equilibria in the System La2O3—Iron Oxide in Air , 1960 .
[27] W. R. Grove Esq.,et al. XXIV. On voltaic series and the combination of gases by platinum , 1839 .