Chemistry Reference
In-Depth Information
[86] A. Rhandour, J.-M. R´au, S. Matar, P. Hagenmuller, Influence de l'oxyg`ne sur les propri´t´s
cristallographiques et ´lectriques des materiaux de type tysonite, J. Solid State Chem., 64,
206-216 (1986).
[87] A. Morell, B. Tanguy, J. Portier, Le syst`me Bi 2 O 3 -BiF 3 , Bull. Soc. Chim. Fr., 7, 2502-2504
(1971).
[88] B. P. Sobolev, V. B. Alexandrov, P. P. Fedorov, K. B. Seiranian, N. L. Tkashenko, Variable-
composition phases with LaF 3 -type structure in the MF 2 -(Y,Ln)F 3 system, Part IV: X-ray
characteristics, heterovalent isomorphic substitutions, Kristallografiya, 21, 96-105 (1976)
(in Russian).
[89] O. Greis, M. S. R. Cader, Polymorphism of high-purity rare earth trifluorides, Thermochim.
Acta, 87, 145-150 (1985).
[90] S. N. Achary, A. K. Tyagi, J. K ¨ hler, Stabilization of high temperature tysonite type com-
pounds in the Sr-Yb-F system-synthesis and Rietveld refinement, Mater. Res. Bul., 36,
1109-1115 (2001).
[91] A. K. Cheetham, N. Norman, The Structures of Yttrium and Bismuth Trifluorides by Neutron
Diffraction, Acta Chem. Scand., A 28, 55-60 (1974).
[92] N. A. Bendeliani, Phase transformations of trifluorides of transition metals under high
pressure, Izvestiya AN SSSR, Neorgan. Mater., 20, 1726-1729 (1984) (in Russian)
[93] J. Ravez, A. Mogus- Milankovic, The ReO 3 -related structure ferroelastic fluorides, Jpn.
J. Appl. Phys., 24, Suppl. 24-2, 687-689 (1985).
[94] B. P. Sobolev, E. G. Ippolitov, About phase composition systems CaF 2 -YF 3 , SrF 2 -YF 3 ,
BaF 2 -YF 3 , Neorg. Mater., 1, 362-368 (1965) (in Russian).
[95] L. S. Garashina, E. G. Ippolitov, B. M. Zhigarnovskii, B. P. Sobolev, Phase composition
systems CaF 2 -YF 3 , in Investigation of Natural and Artificial Processes of Mineral
Formation, Moscow, Nauka, 289-294 (1966) (in Russian).
[96] D. J. M. Bevan, O. Greis, Fluorine-deficient tysonite-type solid solutions (Ca,Ln)F 3 and
related superstructure phases Ca 3 Ln 7 F 27 , Rev. Chim. Miner., 15, 346-359 (1978).
[97] A. Roos, D. R. Franceschetti, J. Schoonman, The small-signal ac response of La 1 x Ba x F 3 x
solid solutions, Solid State Ionics, 12, 485-491 (1984).
[98] M. Izosimova, A. I. Livshits, V. M. Buznik, P. P. Fedorov, E. A. Krivandina, B. P. Sobolev,
Diffusion mechanism of F-ions in solid electrolytes with tysonite structure, Fiz. Tverd. Tela
(S.-Petersburg), 28, 2644-2647 (1986) (in Russian).
[99] F. Wang, C. P. Grey, Probing the Mechanism of Fluoride-Ion Conduction in LaF 3 and Strontium-
Doped LaF 3 with High-Resolution 19 F MAS NMR, Chem. Mater., 9, 1068-1070 (1997)
[100] A. Roos, F. C. M. van de Pol, R. Keim, J. Schoonman, Ionic conductivity in tysonite-type solid
solutions La 1 x Ba x F 3 x , Solid State Ionics, 13, 191-203 (1984).
[101] A. I. Livshits, V. M. Buznik, P. P. Fedorov, B. P. Sobolev, NMR Study of Anion Mobility in
Defect Phases of the Fluorite and Tysonite Structure in the CaF 2 -LaF 3 System, Neorg. Mater.,
18, 135-139 (1982) (in Russian).
[102] A. F. Privalov, H-M. Vieth, I. V. Murin, Nuclear magnetic resonance study of superionic
conductors with tysonite structure, J. Phys.: Condens. Matter, 6, 8237-8243 (1994).
[103] K. Lee, A. Sher, F 19 Nuclear Magnetic Resonance Line Narrowing in LaF 3 at 300 K, Phys.
Rev. Lett., 14, 1027-1029 (1965).
[104] M. Goldman, L. Shen, Spin-Spin Relaxation in LaF 3 , Phys. Rev., 144, 321-331 (1966).
[105] A. G. Lundin, S. P. Gabuda, A. I. Livshits, Nuclear Magnetic Resonance and superfine
interaction in crystals with tysonite structure, Fiz. Tverd. Tela (S.-Petersburg), 9, 707-710
(1967) (in Russian).
[106] N. I. Sorokin, M. V. Fominykh, E. A. Krivandina, Z. I. Zhmurova, B. P. Sobolev, Ion transport
in
(R ¼ La-Yb,
R 1 x Sr x F 3 x
Y)
solid
solutions
with
a
LaF 3
(Tysonite)
structure,
Crystallography Reports, 41, 292-301 (1996).
[107] A. F. Privalov, I. V. Murin, Ion-motion disorder in a tysonite superionic conductor from 19 F
NMR data, Physics of the Solid State, 41, 1482-1485 (1999).
[108] V. V. Sinitsyn, O. Lips, A. F. Privalov, F. Fujara, I. V. Murin, Transport properties of LaF 3 fast
ionic conductor studied by field gradient NMR and impedance spectroscopy, J. Phys. Chem.
Solids, 64, 1201-1205 (2003).
Search WWH ::




Custom Search