Study of bulk and grain-boundary conductivity of Ln2+xHf2−xO7−δ (Ln = Sm-Gd; x = 0, 0.096) pyrochlores
暂无分享,去创建一个
A. Busch | A. Levchenko | M. Wienecke | T. Barfels | Petra Fedtke | A. Shlyakhtina | A. Knotko | L. G. Shcherbakova | S. Savvin
[1] S. Stefanovich,et al. Effect of non-stoichiometry and synthesis temperature on the structure and conductivity of Ln2+xM2−xO7−x/2 (Ln = Sm–Gd; M = Zr, Hf; x = 0–0.286) , 2007 .
[2] K. Moreno,et al. Room-temperature synthesis and conductivity of the pyrochlore type Dy2(Ti1−yZry)2O7 (0⩽y⩽1) solid solution , 2006 .
[3] K. Moreno,et al. Mechanochemical synthesis and ionic conductivity in the Gd2(Sn1–yZry)2O7 (0⩽y⩽1) solid solution , 2006 .
[4] S. Stefanovich,et al. Effects of the synthesis procedure, doping and non-stoichiometry on the order–disorder transformation in Ln2Ti2O7 (Ln = Tm–Lu) oxygen-ion conductors , 2005 .
[5] J. M. Pruneda,et al. First-principles study of structural, elastic, and bonding properties of pyrochlores , 2005, cond-mat/0504109.
[6] Jerzy Hanuza,et al. Synthesis of disordered pyrochlores, A2Ti2O7 (A = Y, Gd and Dy), by mechanical milling of constituent oxides , 2005 .
[7] K. Eberman,et al. Order–disorder transformations induced by composition and temperature change in (SczYb1−z)2Ti2O7 pyrochlores, prospective fuel cell materials , 2002 .
[8] H. Tuller,et al. Ionic conductivity of Gd2GaSbO7–Gd2Zr2O7 solid solutions with structural disorder , 2000 .
[9] V. Kharton,et al. Research on the electrochemistry of oxygen ion conductors in the former Soviet Union , 2000 .
[10] S. Haile,et al. Connection between oxygen-ion conductivity of pyrochlore fuel-cell materials and structural change with composition and temperature , 2000 .
[11] K. Kutty,et al. Effect of aliovalent ion substitution on the oxide ion conductivity in rare-earth pyrohafnates RE2−xSrxHf2O7−δ and RE2Hf2−x AlxO7−δ (RE=Gd and Nd; x=0, 0.1 and 0.2) , 1998 .
[12] Rolf E. Hummel,et al. Alloys and Compounds , 1998 .
[13] K. Koto,et al. Stability and antiphase domain structure of the pyrochlore solid solution in the ZrO2Gd2O3 system , 1987 .
[14] P. Butyagin,et al. Determination of energy yield of mechanochemical reactions , 1986 .
[15] A. Burggraaf,et al. Pyrochlore microdomain formation in fluorite oxides , 1986 .
[16] A. Burggraaf,et al. Oxygen ion and mixed conductivity in compounds with the fluorite and pyrochlore structure , 1983 .
[17] A. Burggraaf,et al. Electrical conductivity of fluorite and pyrochlore LnxZr1–xO2–x/2 (Ln = Gd, Nd) Solid Solutions , 1980 .
[18] R. Collongues,et al. Etude de la transformation ordre-desordre de la structure fluorite a la structure pyrochlore pour des phases (1−x) ZrO2 x Ln2O3 , 1974 .
[19] H. Iwahara,et al. High oxide ion conduction in sintered Bi2O3 containing SrO, CaO or La2O3 , 1972 .