Transport studies on superionic conductors

1977; Wiley; Volume: 41; Issue: 1 Linguagem: Inglês

10.1002/pssa.2210410102

ISSN

1521-396X

Autores

K. Shahi,

Tópico(s)

Advanced Battery Materials and Technologies

Resumo

physica status solidi (a)Volume 41, Issue 1 p. 11-44 Review Article Transport studies on superionic conductors K. Shahi, K. Shahi Department of Physics, University of Gorakhpur, Gorakhpur 273001, IndiaSearch for more papers by this author K. Shahi, K. Shahi Department of Physics, University of Gorakhpur, Gorakhpur 273001, IndiaSearch for more papers by this author First published: 16 May 1977 https://doi.org/10.1002/pssa.2210410102Citations: 91AboutPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShare Give accessShare full text accessShare full-text accessPlease review our Terms and Conditions of Use and check box below to share full-text version of article.I have read and accept the Wiley Online Library Terms and Conditions of UseShareable LinkUse the link below to share a full-text version of this article with your friends and colleagues. Learn more.Copy URL Share a linkShare onEmailFacebookTwitterLinkedInRedditWechat References 1 A. B. Lidiard, in: Handbuch der Physik, Vol. 20, Ed. S. Flügge, Springer, 1957 (p. 246). 2 P. Süptitz and J. Teltow, Phys. stat. sol. 23, 9 (1967). 3 R. G. Fuller, in: Point Defects in Solids, Vol. 1, Ed. J. H. Crawfordje, and L. Slifkin, Plenum Press, New York 1971. 4 R. J. Friauf, in: Physics of Electrolytes, Vol. 1, Ed. J. Hladik, Academic Press, London 1972 (p. 153.) 5 H. Wiedersich and S. Geller, in: The Chemistry of Extended Defects in Non-Metallic Solids, Ed. L. Eyring and M. O'Keeffe, North-Holland, Amsterdam 1970 (p. 629). 6 T. Takarashi, J. appl. Electrochem. 3, 79 (1973). 7 W. van Gool, Fast Ion Transport in Solids, Ed. W. van Gool, North-Holland, Amsterdam (1973). 8 B. B. Owens and G. R. Argue, Sience 157, 308 (1967). 9 R. W. Dreyfus and A. S. Nowick, Phys. Rev. 126, 1367 (1962). 10 J. N. Bradley and P. D. Greene, Trans. Faraday Soc. 63, 424 (1967). 11 K. Shahi and S. Chandra, Phys. stat. sol. (a) 28, 653 (1975). 12 K. Shahi and S. Chandra, J. Phys. C 8, 2255 (1975). 13 K. Shahi and S. Chandra, Z. Naturf. 30a, 1055 (1975). 14 C. Tubandt and E. Lorenz, Z. Phys. Chem. 87, 513 (1914). 15 J. A. A. Ketelaar, Z. Phys. Chem. B26, 327 (1934); Trans. Faraday Soc. 34, 874 (1938). 16 T. Takahashi and O. Yamamoto, Denki Kagaku 32, 610 (1964). 17 B. Reuter and K. Hardel, Naturwissenschaften 48, 161 (1961). 18 M. S. Whittingham and R. A. Huggins, J. Electrochem. Soc. 118, 1 (1971). 19 I. Ebert and J. Teltow, Ann. Phys. (Leipzig) 15, 268 (1955). 20 R. J. Friauf, Phys. Rev. 105, 843 (1957). 21 M. S. Whittingham and R. A. Huggins, Proc. 5th Materials Res. Symp., 1972, NBS Spec. Publ. 364. J. T. Kummer, in: Progress in Solid State Chemistry, Vol. 7, Ed. H. Reiss and J. O. McCaldin, Pergamon Press, Oxford 1972 (p. 141). 22 R. E. Carter and W. L. Roth, in: Electromotive Force Measurements in High Temperature Systems, Inst. of Mining and Metallurgy, London 1968 (p. 125). D. W. Strickler and W. G. Carlson, J. Amer. Ceram. Soc. 48, 286 (1965). T. H. Etsell and S. N. Flengues, J. Electrochem. Soc. 116, 771 (1969). T. Y. Tien and E. C. Subbarao, J. chem. Phys. 39, 1041 (1963). E. C. Subbarao and P. H. Sutter, J. Amer. Ceram. Soc. 48, 433 (1963); J. Phys. Chem. Solids 25, 148 (1964). 23 K. Schroeder, A. Kvist, and H. Ljungmark, Z. Naturf. 27a, 1252 (1972); Z. Naturf. 24a, 844 (1969); Z. Naturf. 25a, 1365 (1970). 24 T. Takahashi, in: Physics of Electrolytes, Vol. 2, Ed. J. Hladik, Academic Press, London 1972 (p. 989). 25 M. J. Rice and W. L. Roth, J. Solid State Chem. 4, 294 (1972). 26 S. Geller, Science 176, 1016 (1972). 27 S. Geller and B. B. Owens, J. Phys. Chem. Solids 33, 1241 (1972). 28 S. Geller and P. M. Skarstad, Phys. Rev. Letters 33, 1484 (1974). 29 S. Geller, P. M. Skarstad, and S. A. Wilber, J. Electrochem. Soc. 122, 332 (1975). 30 B. Scrosati, F. Papaleo, G. Pistola, and M. Lazzari, J. Electrochem. Soc. 122, 339 (1975). 31 T. Takahashi, O. Yamamoto, and S. Ikeda; J. Electrochem. Soc. 120, 1431 (1973). 32 T. Takahashi and O. Yamamoto, J. Electrochem. Soc. 122, 83 (1975). 33a B. Scrosati, J. Electrochem. Soc. 120, 519 (1973). 33b A. F. Sammells, J. Z. Gougoutas, and B. B. Owens, J. Electrochem. Soc. 122, 1291 (1975). 34 R. T. Foley, J. Electrochem. Soc. 116, 13C (1969). 35 R. T. Foley, See [24] (p. 960). 36 J. H. Kennedy, see [24] (p. 931). 37 H. Wiedersich and W. V. Johnston, J. Phys. Chem. Solids 30, 475 (1969). 38 S. Chandra and V. K. Mohabey, J. Phys. D 8, 576 (1975). 39 L. W. Strock, Z. Phys. Chem. B25, 441 (1934). 40 L. W. Strock, Z. Phys. Chem. B31, 132 (1936). 41 J. A. A. Ketelaar, Z. Krist. A87, 434 (1934). 42 S. Geller, Science 157, 310 (1967). 43 S. Geller and M. D. Lind, J. chem. Phys. 52, 5854 (1970). 44 S. Geller, see [7] (p. 607). 45 B. Scrosati, G. Germano, and G. Pistoia, J. Electrochem. Soc. 118, 86 (1971). 46 T. Takahashi and O. Yamamoto, J. Electrochem. Soc. 117, 1 (1970). 47 J. E. Oxley and J. R. Humphrey, Atom. Int. Report, July 22 to Oct. 22, 1968. 48 D. O. Raleigh, J. appl. Phys. 41, 1876 (1970). 49 B. B. Owens and G. R. Argue, J. Electrochem. Soc. 117, 898 (1970). 50 K. Shahi and S. Chandra, J. Phys. C 9, 3105 (1976). 51 W. Jost and K. Weiss, Z. Phys. Chem. 2, 212 (1954). 52 A. Kvist and A. M. Josefson, Z. Naturf. 23a, 625 (1968). 53 R. Weil and A. W. Lawson, J. chem. Phys. 41, 832 (1964). 54 L. Suchow and G. R. Pond, J. Amer. Chem. Soc. 75, 5242 (1953). 55 B. Reuter and K. Hardel, Z. anorg. allg. Chem. 340, 168 (1965). 56 B. Reuter and K. Hardel, Ber. Bunsenges. Phys. Chem. 70, 82 (1966). 57 T. Takahashi and O. Yamamoto, Denki Kagaku 33, 346 (1965). 58 T. Takahashi and O. Yamamoto, Electrochim. Acta (London) 11, 779, 911 (1966). 59 J. H. Kennedy, and F. Chen, J. Electrochem. Soc. 116, 207 (1969). 60 J. N. Kennedy, F. Chen, and J. Willis, J. Electrochem. Soc. 117, 263 (1970). 61 J. N. Bradley and P. D. Greene, Trans. Faraday Soc. 62, 2069 (1966). 62 B. B. Owens, Gould Ionics Inc., Canoga Park. California, Bull. No. 218P. 63 T. Takahashi, S. Ikeda, and O. Yamamoto, J. Electrochem. Soc. 120, 647 (1973). 64 D. M. Smyth, C. H. Tompkins, and S. D. Ross, Proc. 24th Ann. Conf. Power Sources, Red Bank (N.J.), 1970, PSC Publication. 65 B. B. Owens, J. Electrochem. Soc. 117, 1536 (1970). 66 G. W. Mellors, D. V. Louzos, and J. A. van Lier, J. Electrochem. Soc. 118, 850 (1971). 67 G. W. Mellors and D. V. Louzos, J. Electrochem. Soc. 118, 846 (1971). 68 M. S. Whittingham and R. A. Huggins, J. chem. Phys. 54, 414 (1971). 69 P. Rahlfs, Z. Phys. Chem. B31, 157 (1936). 70 C. Wagner, Z. Phys. Chem. B21, 25 (1933); Z. Phys. Chem. B23, 469 (1933). 71 H. Okazaki, J. Phys. Soc. Japan 23, 355 (1967). 72 S. Miyatani, J. Phys. Soc. Japan 13, 317 (1958). 73 I. Yokota and S. Miyatani, Japan. J. appl. Phys. 1, 144 (1962). 74 S. Miyatani, J. Phys. Soc. Japan 14, 996 (1959). 75 J. Krug and L. Sieg, Z. Naturf. 7a, 369 (1952). 76 C. Tubandt, E. Rindtorff, and W. Jost, Z. anorg. allg. Chem. 165, 195 (1927). 77 W. Biermann and H. J. Oel, Z. Phys. Chem. 17, 163 (1958). 78 J. B. Wagner and C. Wagner, J. chem. Phys. 26, 1597 (1957). 79 I. Yokota, J. Phys. Soc. Japan 8, 595 (1953). 80 J. B. Wagner and C. Wagner, J. chem. Phys. 26, 1602 (1957). 81 S. Hoshino, J. Phys. Soc. Japan 10, 197 (1955). 82 D. O. Raleigh, in: Electroanalytical Chemistry: A Series of Advances, Ed. Q. Bard, Springer, Berlin 1972. 83 D. O. Raleigh, in: Progress in Solid State Chemistry, Vol. 3, Ed. H. Reiss, Pergamon Press, Oxford 1966 (p. 83). 84 P. Jordan and M. Pochan, Helv. Phys. Acta 30, 33 (1957). 85 W. Biermann and W. Jost, Z. Phys. Chem. 25, 139 (1960). 86 K. E. Zimen, G. Johansson, and M. Hillert, J. Chem. Soc. Suppl. 2, S392 (1949). 87 S. Shibata, H. Hoshino, and M. Shimoji, J. Chem. Soc. (Faraday Trans. I) 70, 1409 (1974). 88 T. J. Neubert and G. M. Nichols, J. Amer. Chem. Soc. 80, 2619 (1938). 89 K. W. Browall and J. S. Kasper, J. Solid State Chem. 15, 54 (1975). 90 G. G. Bentle, J. appl. Phys. 39, 4036 (1968). 91 T. Takahashi, O. Yamamoto, and S. Ikeda, Denki Kagaku 37, 843 (1969). 92 F. P. Bundy, M. J. Moore, and J. S. Kasper, General Electric Research and Development Report 70-C-325 (1970). 93 G. Chiodelli, A. Magistris, and A. Schiealdi, Electrochim. Acta (London) 19, 655 (1974). 94 T. Takahashi, S. Ikeda, and O. Yamamoto, J. Electrochem. Soc. 119, 477 (1972). 95 Y. Y. Yao and J. T. Kummer, J. inorg. nuclear Chem. 29, 2453 (1967). 96 R. L. Allen and W. J. Moore, J. Phys. Chem. 63, 223 (1959). 97 M. M. Pavyluchenko, I. I. Pokrovskii, and A. S. Tikhonov, Dokl. Akad. Nauk Belorussk. SSR 9, 235 (1965). 98 B. Celustka and Z. Ogorelec, J. Phys. Chem. Solids 27, 957 (1966). 99 W. van Gool, J. Solid State Chem. 7, 55 (1973). 100 W. van Gool and P. H. Bottelberghs, J. Solid State Chem. 7, 59 (1973). 101 W. van Gool, see [7] ( p. 201). 102 R. D. Aemstrong, R. S. Bulmer, and T. Dickinson, J. Solid State Chem. 8, 219 (1973). 102a R. G. Fuller, C. L. Marquardt, M. H. Reilly, and J. C. Wells JR., Phys. Rev. Letters 20, 662 (1968); Phys. Rev. 176, 1036 (1968). 102b S. Chandra and J. Rolfe, Canad. J. Phys. 48, 397 (1970). 103 K. H. Lieser, Z. Phys. Chem. (N.F.) 9, 302 (1956). 104 A. N. Murin, B. G. Lure, and Yu. P. Tarlakov, Fiz. tverd. Tela 3, 3299 (1961). 105 T. Takahashi, K. Kuwabara, and O. Yamamoto, J. Electrochem. Soc. 116, 357 (1969). 106 G. Cochrane and N. H. Fletcher, J. Phys. Chem. Solids 32, 2557 (1971). 107 H. Hoshino and M. Shimoji, J. Phys. Chem. Solids 33, 2303 (1972). 108 H. Hoshino and M. Shimoji, J. Phys. Chem. Solids 35, 321 (1974). 109 E. Lakatos and K. H. Lieser, Z. Phys. Chem. 48, 228 (1966). 110 H. Hoshino, S. Makino, and M. Shimoji, J. Phys. Chem. Solids 35, 667 (1974). 111 V. I. Baranovskii, B. G. Lure, and A. N. Murin, Dokl. Akad. Nauk SSSR 105, 1188 (1955). 112 N. N. Greenwood, Ionic Crystals Lattice Defects and Nonstoichiometry, Butterworth, London 1968. 113 K. H. Liesee, Z. Phys. Chem. (N.F.) 2, 238 (1954). 114 A. W. Webb, J. Phys. Chem. Solids 34, 501 (1973). 115 J. Corish and P. W. M. Jacobs, Phys. stat. sol. (b) 67, 263 (1975). 116 P. Müller, Phys. stat. sol. 12, 775 (1965). 117 J. Teltow, Ann. Phys. 5, 63, 71 (1949). 118 R. W. Christy, J. chem. Phys. 34, 1148 (1961). 119 M. D. Weber and R. J. Friauf, J. Phys. Chem. Solids 30, 407 (1969). 120 J. Leonardi, Thèse d'Etat, Strasbourg 1969. 121 W. L. Roth, J. Solid State Chem. 4, 60 (1972). [121 a] H. Sato and R. Kikuchi, J. chem. Phys. 55, 677, 702 (1971). 122 H. Rickert, Z. Phys. Chem. 24, 418 (1960). 123 I. Yokota, J. Phys. Soc. Japan 21, 420 (1966). 124 M. S. Whittingham, Electrochim. Acta (London) 20, 575 (1975). 125 H. Rickert, Z. Phys. Chem. 23, 355 (1960). 126 R. J. Friauf, see [24] (p. 1103). 127 A. N. Murin, B. G. Lure, and Yu. P. Tarlakov, Soviet Phys. — Solid State 3, 2395 (1961); see also [126]. 128 H. Holtan, Thesis, Electric Potentials in Thermocouples and Thermocells, Schotanus and Jens, Utrecht 1953. 129 H. Holtan, P. Mazur, and S. R. de Groot, Physica 19, 1109 (1953). 130 R. E. Howard and A. B. Lidiard, Disc. Faraday Soc. 23, 113 (1957). 131 R. E. Howard and A. B. Lidiard, Phil. Mag. 2, 1462 (1957). 132 A. R. Allnatt and P. W. M. Jacobs, Proc. Roy. Soc. A260, 350 (1961). 133 A. R. Allnatt and P. W. M. Jacobs, Proc. Roy. Soc. A267, 31 (1962). 134 R. E. Howard and A. B. Lidiard, Rep. Progr. Phys. 27, 61 (1964). 135 R. E. Howard and A. B. Lidiard, J. chem. Phys. 43, 4158 (1965). 136 A. R. Allnatt and A. V. Chadwick, Chem. Rev. 67, 681 (1967). 137 M. Shimoji and H. Hoshino, J. Phys. Chem. Solids 28, 1155 (1967). 138 H. Hoshino and M. Shimoji, J. Phys. Chem. Solids 28, 1169 (1967). 139 J. Dupuy, see [24] (p. 699). 140 J. Corish and P. W. M. Jacobs, J. Phys. C 6, 57 (1973). 141 H. B. Lal, K. Shahi, and S. Chandra, Nuclear Phys. Solid State, Phys. Symp. (India) 14C, 155 (1972). 142 S. Chandra, H. B. Lal, and K. Shahi, J. Phys. D 5, 443 (1972). 143 K. Shahi Nitish, K. Sanyal, and S. Chandra, J. Phys. Chem. Solids 36, 1349 (1975). 144 A. Magistris, E. Pezzati, and C. Sinistri, Z. Naturf. 27a, 1379 (1972). 145 T. Takahashi, O. Yamamoto, and E. Nomura, Denki Kagaku 38, 360 (1970). 146 T. Takahashi, unpublished results, quoted in 0. [ 25]. 147 K. E. Johnson, S. J. Sime, and J. Dudley, J. Electrochem. Soc. 120, 703 (1973). 148 H. Reinhold, Z. anorg. allg. Chem. 171, 181 (1928). 149 B. F. Markov, Dokl. Akad. Nauk SSSR 108, 115 (1956). 150 K. Wagener, Z. Phys. Chem. (N.F.) 21, 74 (1959). 151 B. M. Mogilevskii and O. U. Usmanov, Elektrokhimiya 3, 1124 (1967). 152 A. Kvist, Z. Naturf. 19a, 1159 (1964). 153 C. Wagner, Ann. Phys. 3, 629 (1929). 154 C. Wagner, Ann. Phys. 6, 370 (1930). 155 K. S. Pitzer, J. Phys. Chem. 65, 147 (1961). 156 W. V. Johnston, H. Wiedersich, and G. W. Lindberg, J. chem. Phys. 51, 3739 (1969). 157 K. E. Johnson, S. J. Sime, and J. Dudley, J. Chem. Soc. (Faraday Trans. I), 68, 2015 (1972). 158 K. Wirtz and J. W. Hiby, Phys. Z. 44, 369 (1943). 159 A. R. Allnatt and S. A. Rice, J. chem. Phys. 33, 573 (1960). 160 A. R. Allnatt, Z. Naturf. 26a, 10 (1971). 161 C. Wagner, in: Progress in Solid State Chemistry, Ed. H. Reiss and J. O. McCaldin, Pergamon Press, Oxford 1972. 162 L. Patrick and A. W. Lawson, J. chem. Phys. 22, 1492 (1954). 163 J. Ruch and J. Dupuy, C. R. Acad. Sci. (France) 261, 957 (1965). 164 J. Dupuy and J. Ruch, C. R. Acad. Sci. (France) 262, 1512 (1966). 165 E. Haga, J. Phys. Soc. Japan 13, 1090 (1958); J. Phys. Soc. Japan 14, 992, 1176 (1959). 166 M. J. Rice, S. Strassler, and G. A. Toombs, Phys. Rev. Letters 32, 596 (1974). 167 K. Funke and A. Jost, Ber. Bunsenges. Phys. Chem. 75, 436 (1971). 168 W. Jost, K. Funke, and A. Jost, Z. Naturf. 25a, 983 (1970). G. Eckold and K. Funke, Z. Naturf. 28a, 1042 (1973). 169 K. Funke and R. Hackenberg, Ber. Bunsenges. Phys. Chem. 76, 885 (1972). 170 S. J. Allen, JR. and J. P. Remeika, Phys. Rev. Letters 33, 1478 (1974). 171 B. A. Huberman, Phys. Rev. Letters 32, 1000 (1974). Citing Literature Volume41, Issue116 May 1977Pages 11-44 ReferencesRelatedInformation

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