Investigation of scandia–yttria–zirconia system as an electrolyte material for intermediate temperature fuel cells—influence of yttria content in system (Y2O3)x(Sc2O3)(11−x)(ZrO2)89
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[1] T. Etsell,et al. Electrical properties of solid oxide electrolytes , 1970 .
[2] Mel I. Mendelson,et al. Average Grain Size in Polycrystalline Ceramics , 1969 .
[3] G. Corman,et al. Phase equilibria and ionic conductivity in the system ZrO2-Yb2O3-Y2O3 , 1985 .
[4] H. Rossell,et al. A microdomain description of defective fluorite-type phasesCaxM1−xO2−x(M =Zr, Hf; x = 0.1–0.2) , 1975 .
[5] A. Vlasov,et al. Ageing of ZrO2-based solid electrolytes , 1987 .
[6] S. Rajendran,et al. An investigation of conductivity, microstructure and stability of electrolyte compositions in the system 9 mol% (Sc2O3-Y2O3)-ZrO2(Al2O3) , 1998 .
[7] J. Irvine,et al. Influence of yttria concentration upon electrical properties and susceptibility to ageing of yttria-stabilised zirconias , 1998 .
[8] S. J. Rothman,et al. Effect of dopant size on the ionic conductivity of cubic stabilised ZrO2 , 1989 .
[9] A. Vijh,et al. From Electrocatalysis to Fuel Cells , 1973 .
[10] W. Baukal. Über die kinetik der alterung eines ZrO2-festelektrolyten in Abhängigkeit vom sauerstoff-partialdruck , 1969 .
[11] N. Minh. Ceramic Fuel Cells , 1993 .