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Solid State Ionics 1991: Vol 49 Index PDF

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Preview Solid State Ionics 1991: Vol 49 Index

Solid State lonics 49 (1991 ) 245—248 North-Holland Author Index to Volume 49 Anderson, H.U., see G.F. Carini Il 49 (1991) 233 Arita, Y., see T. Matsui 49 (1991) 195 Asano, H., Structural study of oxide superconductors by neutron diffraction 49 (1991) 17 Asano, H., see Y. Shimakawa 49 (1991) 53 Carini Il, G.F., H.U. Anderson, D.M. Sparlin and M.M. Nasrallah, Electrical conductiv- ity, Seebeck coefficient and defect chemistry of Ca-doped YCrO, 49 (1991) 233 Colson, J.C., see A. Steinbrunn 49 (1991) El Sayed Ali, M., see O.T. Sorensen 49 (1991) Eror, N.G., P. Krishnaraj and L. Muldawer, Synthesis and structure of high temperature superconducting powders 49 (1991) Fujino, T., N. Sato, T. Yamashita and H. Tagawa, Structural study on rhombohedral non- stoichiometric solid solution, Sr,O, _ ,O,,, -use of an electrostatic method for atom pa- rameter and stability calculations 49 (1991) Gonda, S., see T. Tsukahara 49 (1991) Hashimoto, T., see T. Tsukahara 49 (1991) Hong, B.-S. and T.O. Mason, High temperature electronic conduction mechanisms in YBa,Cu,O, 49 (1991) Igarashi, H., see Y. Shimakawa 49 (1991) Iguchi, Y., see S. Yamaguchi 49 (1991) 63 Ikuma, Y., see M. Yoshimura 49 (1991) 39 Inoue, S., see M. Yoshimura 49 (1991) 39 Ishigaki, T., see Y. Moriyoshi 49 (1991) 175 Ishii, M., see K. Tsukamoto 49 (1991) 23 Itoh, M., T. Sawada, R. Liang, H. Kawaji and T. Nakamura, Oxygen-deficient and ordered perovskite-type solid-solution system Ba, , ,Bi,;_,O, (0<x<0.5, 3.00>y2>2.75) 49 (1991) 57 Izumi, F., see Y. Shimakawa 49 (1991) 53 Kaneko, Y. and H. Kojima, Synthesis and electrical conductivity of vanadium bronzes by molten salt electrolysis 49 (1991) 167 Katsura, M., A thermodynamic analysis of nitrogen-rich uranium sesquinitride formation by the reaction of uranium with ammonia 49 (1991) 225 Kawaji, H., see M. Itoh 49 (1991) 57 Kawano, T., see H. Yamauchi 49 (1991) 47 Kieda, N., S. Nishiyama, K. Shinozaki and N. Mizutani, Nonstoichiometry and electrical properties of La,CuO, and La,(Cu,Ni)O, 49 (1991) 85 246 Author index Kofstad, P., see Y. Larring 49 (1991) 73 Koinuma, H., see T. Tsukahara 49 (1991) 183 Kojima, H., see Y. Kaneko 49 (1991) 167 Komatsu, S., see Y. Moriyoshi 49 (1991) 175 Krishnaraj, P., see N.G. Eror 49 (1991) 31 Kubo, Y., see-Y. Shimakawa 49 (1991) 53 Larring, Y., T. Norby and P. Kofstad, Protonic conductivity in Ca-doped yttria 49 (1991) 73 Liang, R., see M. Itoh 49 (1991) 57 Lucata, P.G., see T. Ogawa 49 (1991) 211 Manako, T., see Y. Shimakawa 49 (1991) 53 Maruyama, T., see K. Nagata 49 (1991) Mason, T.O., see B.-S. Hong 49 (1991) Matsui, T., Y. Arita and K. Naito, High temperature heat capacities and electrical con- ductivities of UO, doped with Ti, Nb and Sc 49 (1991) Matsumoto, F., see S. Yamaguchi 49 (1991) Matzke, Hj. and A. Turos, Mechanisms and kinetics of leaching of UO, in water 49 (1991) Matzke, Hj., see T. Ogawa 49 (1991) Mizusaki, J., H. Tagawa, K. Naraya and T. Sasamoto, Nonstoichiometry and thermo- chemical stability of the perovskite-type La,_.Sr,MnO;_ ; 49 (1991) Mizutani, N., see N. Kieda 49 (1991) Moriyoshi, Y., S. Komatsu, K. Okada, T. Ishigaki and N. Setaka, Structural defects of a diamond film 49 (1991) Muldawer, L., see N.G. Eror 49 (1991) Munakata, F., see H. Yamauchi 49 (1991) Nagata, H., see T. Tsukahara 49 (1991) Nagata, K., R. Nishiwaki, Y. Nakamura and T. Maruyama, Kinetic mechanisms oft he for- mations of MgCr,O, and FeCr,O, spinels from their metal oxides 49 (1991) Naito, F., see T. Tsuji 49 (1991) Naito, K., see T. Matsui 49 (1991) Nakamura, A., A chemical approach to high 7. superconductivity 49 (1991) Nakamura, T., see M. Itoh 49 (1991) Nakamura, Y., see K. Nagata 49 (1991) Naraya, K., see J. Mizusaki 49 (1991) Nasrallah, M.M., see G.F. Carini II 49 (1991) Nishiwaki, R., see K. Nagata 49 (1991) Nishiyama, S., see N. Kieda 49 (1991) Norby, T., see Y. Larring 49 (1991) Nowotny, J., Interface defect chemistry of oxide ceramic materials. Unresolved problems 49 (1991) Nowotny, J. and M. Sloma, Surface electrical properties of BaTiO; at elevated temperatures 49 (1991) Nowotny, J. and M. Rekas, Defect chemistry of BaTiO, 49 (1991) Ogawa, T., R.A. Verrall, Hj. Matzke and P.G. Lucata, Release of ion-implanted Kr from (Th,U )O, —- effect of matrix oxidation 49 (1991) 211 Okada, K., see Y. Moriyoshi 49 (1991) 175 Author index 247 Rekas, M., see J. Nowotny 49 (1991) 135 Sasamoto, T., see J. Mizusaki 49 (1991) 111 Sato, N., see T. Fujino 49 (1991) 201 Sawada, T., see M. Itoh 49 (1991) 57 Setaka, N., see Y. Moriyoshi 49 (1991) 175 Shimakawa, Y., Y. Kubo, T. Manako, H. Igarashi, F. Izumi and H. Asano, Oxygen and cation nonstoichiometry in Tl-based superconductors 49 (1991) 53 Shimojima, H., see K. Tsukamoto 49 (1991) 23 Shinozaki, K., see N. Kieda 49 (1991) 85 Sloma, M., see J. Nowotny 49 (1991) 129 Soma, T., see A. Yoshida 49 (1991) 79 Sorensen, O.T. and M. El Sayed Ali, Structural ceramics based on nonstoichiometric zir- conia — high temperature long term stability materials for oxygen sensor applications prepared by codoping 49 (1991) 155 Sparlin, D.M., see G.F. Carini Il 49 (1991) 233 Steinbrunn, A., A. Tahri and J.C. Colson, Electrical transport in polycrystalline nickel mo- lybdate NiMoO, 49 (1991) 99 Stubican, V.S., see M.F. Trubelja 49 (1991) 89 Sukigara, T., see S. Yamaguchi 49 (1991) 63 Tagawa, H., see J. Mizusaki 49 (19911)1 1 Tagawa, H., see T. Fujino 49 (1991) 201 Tahri, A., see A. Steinbrunn 49 (1991) Takahashi, T., see A. Yoshida 49 (1991) Tanaka, S., see H. Yamauchi 49 (1991) 47 Terabe, K., see S. Yamaguchi 49 (1991) 63 Trubelja, M.F. and V.S. Stubican, Ionic conductivity in the hafnia-R,O, systems 49 (1991) 89 Tsuji, T. and F. Naito, Diffusion mechanism in iron-group metal chalcogenides 49 (1991) 105 Tsukahara, T., M. Yoshimoto, H. Nagata, T. Hashimoto, S.Gonda and H. Koinuma, Preparation of SrCuO,, film in ultra-high vacuum system 49 (1991) 183 Tsukamoto, K., H. Shimojima, M. Ishii and C. Yamagishi, Influence of chemical com- position of Bi(Pb) system superconductive films on their sensitivity to weak magnetic fields 49 (1991) 23 Turos, A., see Hj. Matzke 49 (1991) 189 Verrall, R.A., see T. Ogawa 49 (1991) 211 Yamagishi, C., see K. Tsukamoto 49 (1991) 23 Yamaguchi, S., K. Yasui, F. Matsumoto, K. Terabe, T. Sukigara and Y. Iguchi, Defect chemical study of Nd,_ .Ce,CuO,_ 5 49 (1991) 63 Yamashita, T., see T. Fujino 49 (1991) 201 Yamauchi, H., T. Kawano, F. Munakata and S. Tanaka, Oxygen nonstoichiometry in su- perconducting Sr-free Bi cuprates 49 (1991) 47 Yamawaki, M., Nonstoichiometry and relevant thermochemical properties of thorium and thorium-uranium monocarbides 49 (1991) 217 Yasui, K., see S. Yamaguchi 49 (1991) 63 248 duthor index Yoshida, A., T. Takahashi and T. Soma, The effect of the concentration‘of interstitial ox- ygens on valence change of the transition metal impurities in 6” -alumina 49 (1991) 79 Yoshimoto, M., see T. Tsukahara 49 (1991) 183 Yoshimura, M., S. Inoue and Y. Ikuma, Effect of temperature and nonstoichiometry on hydration of YBa,Cu,0,_, at low H,O pressure 49 (1991) 39 Solid State lonics 49 (1991) 249-250 North-Holland Subject Index to Volume 49 Absorption, 39 lon implantation, 211 Activity, 217 Iron-group metal chalcogenides, 105 Ammonia, 225 Krypton, 211 6”-alumina, 79 Barium oxide, 57 Laser MBE, 183 Barium titanate, 119, 129, 135 Layer growth, 183 Bi-Pb-Sr—Ca-—Cu-O film, 23 Leaching, 189 Bismuth oxide, 57 Bose condensation, 9 Madelung constant, 201 Magnetic field, 23 arrier concentration, 53 Molten salts, 167 onduction mechanism, 3 Méssbauer diffusional line broadening, 105 onductivity, 167 Multivalence state, 9 oulometric titration, 47, 111 MVRC model, 9 uprate, 3 Neutron diffraction, 17 Decomposition, 111 NiAs-type structure, 105 Defect chemistry, 63 Nickel molybdate, 99 Defect structure, 73, 111, 233 Nitriding, 225 Diamond film, 175 Nitrogen activity, 295 Dielectrics, 119 Nonstoichiometric structure, 17 Diffusion, 211 Nonstoichiometry, 63, 85, 111, 119, 201, 217 Diffusion mechanism, 105, 161 Dissociation, 225 OH~ diffusion, 39 Dopants, 195 Ordered structure, 57 Oxidation, 211 Electrical conductivity, 3, 63, 73, 85, 99, 135, 161, 195, 233 Oxide superconductor, 17 Electrolysis, 167 Oxygen content, 31 Electrostatic method, 201 Oxygen nonstoichiometry, 47, 53 Equilibrium constant, 63 Oxygen sensors, 155 ERDA, 189 Oxygen vacancy, 57 ESR, 79 Partial molar quantities, | 11 Fermi energy, 129 Perovskite, 233 Fracture toughness, 155 Perovskite structure, 57 Frenkel defects, 195 Perovskite-type oxide, | 11 Polaron, 233 Grain boundary, 119, 129 Polycrystal film, 23 Grain size effect, 135 Polymorphic transition, 99 Protons, 73 Hafnia, 89 PTC effect, 129, 135 Heat capacities, 195 High-7. superconductor, 9, 183 Rare-earths, 89 Hydration, 39 RBS, 189 Resonance hybrid, 9 Interstitial oxygen ion, 79 Rf-magnetron sputtering, 23 lonic conductivity, 89 RHEED oscillation, 183 Subject index Transition metal impurity, 79 Seebeck coefficient, 3, 85 Transport number, 73 Seebeck effect, 233 Twins, 175 Small polaron, 3 Two-step annealing, 23 Sodium precipitation, 79 Spinel, 161 Uranium oxides, 189 Stacking faults, 175 Uranium sesquinitride, 225 Strontium uranium oxide, 201 Structural ceramics, 155 Valency, 47 Structural modulation, 47 Vanadium bronzes, 167 Superconductor, 31, 39, 47, 63 Vaporization, 217 Superconductor film, 23 Surface chemistry, 119 Waste disposal, 189 Synthesis, 31 Water vapour, 39 Work function, 129 Tetragonal polymorph, 31 Thermal stability, 155 Yttrium oxide, 73 Thermodynamics, 63 Thermogravimetry, 85 Zirconia, 155 Thermopower, 135 Thorium carbide, 217 Thorium-uranium carbide, 217 Tl-based superconductor, 53 Tracer method, 105

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