Some aspects of solid electrolytes
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[1] H. Wiedersich,et al. On the thermodynamic properties of the solid electrolyte RbAg4I5 , 1969 .
[2] B. Owens,et al. Stability of the Solid State Cell Ag / Ag3 SI / I 2 , 1969 .
[3] Fred Y. Chen,et al. Solid Electrolyte Coulometry; Silver Sulfide Bromide Electrolyte , 1969 .
[4] J. Felsche. The alkali problem in the crystal structure of beta alumina , 1968 .
[5] K. Hever. A Solid‐State Electrochemical Cell Based on Ion Conductive Ceramics , 1968 .
[6] G. G. Bentle. Silver Diffusion in a High‐Conductivity Solid Electrolyte , 1968 .
[7] B. Owens,et al. Thermodynamic studies in the high-conducting solid systems rubidium iodide-silver iodide, potassium iodide-silver iodide, and ammonium iodide-silver iodide , 1968 .
[8] P. Süptitz,et al. Transport of Matter in Simple Ionic Crystals (Cubic Halides) , 1967, September 1.
[9] J. T. Kummer,et al. Ion exchange properties of and rates of ionic diffusion in beta-alumina , 1967 .
[10] B. Owens,et al. High-Conductivity Solid Electrolytes: MAg4I5 , 1967, Science.
[11] S. Geller. Crystal Structure of the Solid Electrolyte, RbAg4I5 , 1967, Science.
[12] J. N. Bradley,et al. Relationship of structure and ionic mobility in solid MAg4I5 , 1967 .
[13] J. N. Bradley,et al. Solids with high ionic conductivity in group 1 halide systems , 1967 .
[14] P. Müller. Zur Berechnung der Fehlordnung in Silberhalogeniden , 1967 .
[15] Takehiko Takahashi,et al. The Ag/Ag3SI/I2 solid-electrolyte cell , 1966 .
[16] R. Rapp,et al. MIXED CONDUCTION IN THO$sub 2$ AND THO$sub 2$-Y$sub 2$O$sub 3$ SOLUTIONS , 1966 .
[17] L. A. Simpson,et al. Oxygen Exchange and Diffusion in Calcia‐Stabilized Zirconia , 1966 .
[18] H. C. Abbink,et al. Ionic conductivity of silver chloride containing cadmium chloridef , 1966 .
[19] J. E. Bauerle. Electrical Conduction in Thoria and Thoria—Yttria as a Function of Oxygen Pressure , 1966 .
[20] J. N. Bradley,et al. Potassium iodide + silver iodide phase diagram. High ionic conductivity of KAg4I5 , 1966 .
[21] B. Reuter,et al. Silbersulfidbromid Ag3SBr und Silbersulfidjodid Ag3Sj. I. Darstellung, Eigenschaften und Phasenverhältnisse von Ag3SBr und Ag3SJ , 1965 .
[22] B. Reuter,et al. Silbersulfidbromid Ag3SBr und Silbersulfidjodid Ag3SJ. II. Die Kristallstrukturen von Ag3SBr, β- und α-Ag3SJ , 1965 .
[23] E. Subbarao,et al. Defect Structure and Electrical Conductivity of ThO2‐Y2O3 Solid Solutions , 1965 .
[24] N. M. Tallan,et al. Electrical Properties and Defect Structure of Zirconia: II, Tetragonal Phase and Inversion , 1965 .
[25] C. Langereis,et al. KFe5O8, a new phase in the K2O - Fe2O3 system , 1965 .
[26] H. Schmalzried. Point defects in ternary ionic crystals , 1965 .
[27] N. M. Tallan,et al. ELECTRICAL PROPERTIES AND DEFECT STRUCTURE OF ZIRCONIA: I. MONOCLINIC PHASE , 1964 .
[28] F. Luborsky,et al. Magnetic Exchange Anisotropy in Mixtures of Barium, Strontium, or Lead Ferrite with Potassium Ferrite , 1964 .
[29] R. Howard,et al. Matter transport in solids , 1964 .
[30] E. Subbarao,et al. Order-disorder and ionic conductivity in cubic ZrO2CaO☆ , 1964 .
[31] H. Schmalzried. Ionen- und Elektronenleitung in binären Oxiden und ihre Untersuchung mittels EMK-Messungen , 1963 .
[32] R. Scholder,et al. Über Verbindungen vom Typus der sog. β‐Tonerde , 1963 .
[33] R. Ruka,et al. A Solid Electrolyte Fuel Cell , 1962 .
[34] D. C. Hill,et al. Oxygen Ion Mobility in Cubic Zr0.85Ca0.15O1.85 , 1959 .
[35] W. E. Danforth. Polarization studies with thorium oxide , 1958 .
[36] Y. Haven,et al. Correlation factors for diffusion in solids. Part 2.—Indirect interstitial mechanism , 1958 .
[37] C. Wagner,et al. Measurements on Galvanic Cells Involving Solid Electrolytes , 1957 .
[38] Y. Haven,et al. Correlation factors for diffusion in solids , 1956 .
[39] W. E. Danforth. Polarization in Thorium Oxide Crystals , 1955 .
[40] I. Ebert,et al. Zur Ionenleitung und Fehlordnung von Silberchlorid mit Zusätzen , 1955 .
[41] F. Hund. Die Fluoritphase im System ZrO2—CaO , 1952 .
[42] M. H. Hebb. Electrical Conductivity of Silver Sulfide , 1952 .
[43] Heinke Kelting,et al. Über KCl-Kristalle mit Zusätzen von Erdalkalichloriden , 1949 .
[44] J. Teltow. Zur Ionenleitung und Fehlordnung von Silberbromid mit Zusätzen zweiwertiger Kationen. II Quantitative Deutung der Leitfähigkeitsisothermen , 1949 .
[45] J. Teltow. Zur Ionenleitung und Fehlordnung von Silberbromid mit Zusätzen zweiwertiger Kationen. I Leitfähigkeitsmessungen und Zustandsdiagramme , 1949 .
[46] C. Wagner. The mechanism of the movement of ions and electrons in solids and the interpretation of reactions between solids , 1938 .
[47] W. Jost. The energies of disorder in ionic crystals , 1938 .
[48] J. Ketelaar. The relation between electrolytic conduction in solids and crystal structure , 1938 .
[49] C. Beevers,et al. The Crystal Structure of “Beta Alumina” Na2O·11Al2O3 , 1937 .
[50] W. Jost. Diffusion and Electrolytic Conduction in Crystals (Ionic Semiconductors) , 1933 .
[51] J. Frenkel. Über die Wärmebewegung in festen und flüssigen Körpern , 1926 .