The β-aluminas
暂无分享,去创建一个
[1] G. Tennenhouse,et al. A Model for Degradation of Ceramic Electrolytes in Na‐S Batteries , 1975 .
[2] M. Bettman,et al. Structure of sodium oxide-4 magnesium oxide-15 aluminum oxide, a variant of .beta.-alumina , 1971 .
[3] M. Voïnov,et al. Na+ transport across the interface between a liquid and a solid ionic conductor , 1974 .
[4] S. Shapiro. Neutron Scattering Studies of Solid Electrolytes , 1976 .
[5] W. Roth,et al. NMR study of sodium ion motion in single crystal beta‐alumina , 1975 .
[6] J. Kummer,et al. The Hydrostatic Pressure Dependence of the Ionic Conductivity of β‐Aluminas , 1971 .
[7] C. Beevers,et al. The Crystal Structure of “Beta Alumina” Na2O·11Al2O3 , 1937 .
[8] P. Nicholson,et al. A β-alumina probe for sodium in molten metals , 1973 .
[9] R. Radzilowski. Preparation of gallium(I) .beta.-alumina , 1969 .
[10] H. Brinkhoff. Substitution of aluminium by gallium in β-alumina , 1974 .
[11] Claude Lasne,et al. Some Aspects of Sodium‐Sulfur Cell Operation , 1973 .
[12] J. P. Remeika,et al. Direct Measurement of the Attempt Frequency for Ion Diffusion in Ag and Naβ-Alumina , 1974 .
[13] J. Boilot,et al. Nuclear magnetic relaxation of 23Na in beta-alumina electrolytes , 1974 .
[14] M. Bettman,et al. Crystal structure of Na2O.MgO.5Al2O3 [sodium oxide-magnesia-alumina] with reference to Na2O.5Al2O3 and other isotypal compounds , 1969 .
[15] B. Steele,et al. Studies of potassium ferrite K1+xFe11O17. I. Electronic conductivity and defect structure , 1976 .
[16] G. Farrington. Interfacial Na+ Transport in the Beta Alumina/Propylene Carbonate System , 1976 .
[17] J. Kennedy,et al. Fabrication of Beta‐Alumina Tubes by Electrophoretic Deposition from Suspensions in Dichloromethane , 1975 .
[18] R. J. Baughman,et al. Czochraiski crystal growth of sodium beta-alumina , 1975 .
[19] N. Choudhury. Electromotive Force Measurements on Cells Involving Beta‐Alumina Solid Electrolyte , 1973 .
[20] N. Weber. Applications of Beta Alumina in the Energy Field , 1976 .
[21] R. W. Powers,et al. An Analysis of the Impedance of Polycrystalline Beta‐Alumina , 1975 .
[22] M. Whittingham,et al. Transport Properties of Silver Beta Alumina , 1971 .
[23] W. Roth. Stoichiometry and structure of the super ionic conductor silver beta-alumina , 1972 .
[24] Raymond R. Ridgway,et al. The Preparation and Properties of So‐Called “Beta Alumina” , 1936 .
[25] J. Boilot,et al. X-Ray Diffuse Scattering from β Alumina , 1976 .
[26] W. Roth,et al. Electrical Conductivity of Potassium Ferrite with the Beta‐Alumina Structure , 1969 .
[27] F. Cocks,et al. Edge‐Defined Film‐Fed Growth of β‐Alumina and Mg‐Substituted β‐Alumina , 1975 .
[28] J. Kummer. β-Alumina electrolytes , 1972 .
[29] J. P. Remeika,et al. Structural determinations of single-crystal K β-alumina and cobalt-doped K β-alumina , 1976 .
[30] R. Armstrong,et al. The breakdown of β-alumina ceramic electrolyte , 1974 .
[31] Nirmal K. Gupta,et al. Thermodynamic and Physical Properties of Molten Sodium Polysulfides from Open‐Circuit Voltage Measurements , 1972 .
[32] C. Beevers,et al. The Formula of "β Alumina“,Na2O,11AlO3 , 1936 .
[33] T. Whalen,et al. Relation of Properties to Microstructure in β″‐Alumina Ceramic , 1974 .
[34] R. W. Powers. The Electrophoretic Forming of Beta‐Alumina Ceramic , 1975 .
[35] J. Kennedy,et al. Conductivity of Beta‐Alumina and Its Dependence on Sodium and Magnesium Content , 1972 .
[36] J. Kummer,et al. Preparation of nitrosonium .beta.-alumina , 1969 .
[37] L. Jonghe. Complex faults in sodium beta alumina , 1975 .
[38] G. Mahan,et al. Raman scattering from sodium and silver in β-alumina , 1976 .
[39] R. Armstrong,et al. The impedance of the sodium β-alumina interphase , 1973 .
[40] P. Touzain,et al. Short communicationNouveaux generateurs electriques a electrodes de sodium et de brome fonctionnant a temperature ambiante , 1974 .
[41] H. Merwin,et al. THE TERNARY SYSTEM CaO-Al2O3-MgO. , 1916 .
[42] J. T. Kummer,et al. Ion exchange properties of and rates of ionic diffusion in beta-alumina , 1967 .
[43] W. Roth,et al. Nuclear Magnetic Resonance Diffusion Studies of 23Na in Beta Alumina, Effect of Water on the 23Na Quadrupole Interaction , 1972 .
[44] E. Subbarao,et al. Synthesis of sodium and ? alumina , 1975 .
[45] R. S. Gordon,et al. Hot‐Pressing of Li2O‐Stabilized β″‐Alumina , 1974 .
[46] D. Raleigh. Ionic Conductivity of Single‐Crystal and Polycrystalline RbAg4I5 , 1970 .
[47] K. Hever. A Solid‐State Electrochemical Cell Based on Ion Conductive Ceramics , 1968 .
[48] R. Armstrong,et al. The infra-red spectra of β-alumina type super ionic conductors , 1974 .
[49] R. Armstrong,et al. Contacts for Resistivity Measurements of Beta‐Alumina , 1971 .
[50] M. Whittingham,et al. Measurement of Sodium Ion Transport in Beta Alumina Using Reversible Solid Electrodes , 1971 .
[51] W. Roth,et al. Studies of Stabilization and Transport Mechanisms in Beta and Beta″ Alumina by Neutron Diffraction , 1976 .
[52] J. Kummer,et al. Dielectric Loss of Beta Alumina and of Ion‐Exchanged Beta Alumina , 1969 .
[53] L. M. Foster,et al. Flux Growth of the Gallium Analog of Beta ‐ Al2 O 3 , 1976 .
[54] W. Bragg,et al. The Structure of β Alumina , 1931 .
[55] W. Bailey,et al. NMR study of sodium ion motion and distribution in beta‐alumina , 1976 .
[56] A. Imai,et al. Ionic Conduction of Impurity-Doped β-Alumina Ceramics , 1972 .
[57] R. Kikuchi,et al. Cation Diffusion and Conductivity in Solid Electrolytes. I , 1971 .
[58] Kazutaka Suzuki,et al. On the Structures of Alkali Polyaluminates , 1968 .
[59] C. Lasne,et al. Study of a Beta‐Alumina Electrolyte for Sodium‐Sulfur Battery , 1973 .
[60] P. Longhi,et al. Use of amalgam concentration cells for determination of transference numbers in solid electrolytes—I. Electronic transference numbers of β-aluminas , 1973 .
[61] Toshiko Kodama,et al. The crystal structure of Tl-β-alumina , 1976 .
[62] 友三 西川,et al. アルカリ水溶液処理によるアルカリ置換された β-アルミナの調製 , 1974 .
[63] Y. Haven,et al. Correlation factors for diffusion in solids , 1956 .
[64] F. Will. Effect of Water on Beta Alumina Conductivity , 1976 .
[65] Neill Weber,et al. A thermoelectric device based on beta-alumina solid electrolyte , 1974 .
[66] B. Hudson,et al. Intergrowth of crystal structures in “β-alumina” , 1974 .
[67] P. Werth. SOME THOUGHTS ON NON-RESTRICTIVE RELATIVES , 1974 .
[68] J. P. Remeika,et al. Neutron-scattering studies on beta-alumina , 1975 .
[69] D. Oei. Sodium-sulfur system. I. Differential thermal analysis , 1973 .
[70] J. Thery,et al. Organisation des cations assurant la conduction dans l'alumine β , 1974 .
[71] M. Whittingham. Mechanism of fast ion transport in solids , 1975 .
[72] Path Probability Method as Applied to Problems of Superionic Conduction , 1976 .
[73] J. Kennedy,et al. Measurement of Mobility and Zeta Potential of Beta‐Alumina Suspensions in Various Solvents , 1977 .
[74] Y. Haven,et al. Correlation factors for diffusion in solids. Part 2.—Indirect interstitial mechanism , 1958 .
[75] J. S. Fordyce,et al. Conductivity of Boules of Single‐Crystal Sodium Beta‐Alumina , 1975 .
[76] L. C. Jonghe. Low-angle tilt boundaries and inhomogeneous current densities in sodium beta alumina , 1976 .
[77] R. Kikuchi,et al. Cation Diffusion and Conductivity in Solid Electrolytes. II. Mathematical , 1971 .
[78] M. Bettman,et al. Refinement of the structure of sodium β-alumina , 1971 .
[79] Sterling B. Hendricks,et al. XVIII. Die Struktureinheit und Raumgruppensymmetrie von β-Aluminiumoxyd , 1926 .