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[97] V.M. Latimer, Oxidation State of Elements and Their Potentials in Aqueous
Solutions, Inostrannya Literature, Moscow, 1954. p. 400
[98] V.A. Kuznetsov, The physical chemistry of the hydrothermal crystal growth and the
crystallization of some A 2 B 6 crystals, in: K. Byrappa (Ed.), Hydrothermal Growth of
Rare Crystals, 21, 1990Prog. Cryst. Growth Charact.
[99] R.A. Laudise, E.D. Kolb, I.P. Deneutoille, Am. Miner. 50 (3/4) (1965) 981.
[100] A.R. Kotel'nikov, V.A. Kuznetsov, A.L. Labachev, Stability and crystallization of
Cds and Pbs in alkaline high-temp. solutions, Izvestiya Akad. Nauk USSR Inorg.
Mater. 12 (1974) 827 829.
[101] V.A. Kuznetsov, D.V. Kostomarov, Krystallography 28 (1) (1983) 151.
[102] E.P. Efremova, V.A. Kuznetsov, Growth and Characterization of KDP and Its
Analogs, Solubility and crystallization of cinnabar under hydrothermal conditions, in:
Abstract of the First International Symposium on Hydrothermal Reactions, Ed. S.
Somiya, Tokyo, 1982, p. 317.
[103] Y. Toudic, A. Regreny, M. Passaut, R. Aumont, J.F. Bayon, Nauverau type
d'Appareillage Applique la Croissance Hydrothermale de Monocristaux de Cinabare
de Grande Dimensions, J. Cryst. Growth 13/14 (1972) 519 523.
[104] L.V. Bryatov, I.P. Kuzmina, Crystallization of Pb and Zn sulphides from aqueous
solutions of chloride salts, Cryst. Growth, 3, Nauka, Moscow, 1961, pp. 416 420
[105] N.Yu. Ikornikova, Hydrothermal Synthesis of Crystals in Chloride System, Nauka,
Moscow, 1975. p. 227
[106] Yu.M. Mininzon, L.N. Demianets, A.N. Lobachev, On the solubility of synthetic
sphalerite in aqueous H 3 PO 4 solution, Kristallografia 19 (1974) 435 437.
[107] S. Horiuch, H. Wada, T. Moori, Morphology and imperfection of hydrothermally syn-
thesized greigite (Fe 3 S 4 ), J. Cryst. Growth 24/25 (1974) 624 626.
[108]
I.P. Voronina, B.N. Litvin, Hydrothermal Synthesis of
Inorganic Compounds,
Bibliography, VINITI, Moscow, 1971. p. 188
[109] B.N. Litvin, V.I. Popolitov, Hydrothermal method of obtaining A v B vi C vii compounds,
Izvestia Akad. Nauk USSR Inorg. Mater. 6 (1970) 575 576.
[110] V.I. Popolitov, Crystallization of BiSI, Kristallografia 15 (1970) 1271 1272.
[111] V.I. Popolitov, B.N. Litvin, Synthesis of monocrystals of ternary chalcohalogenides
(AvBviCvii), Investigation of Crystallization Processes Under Hydrothermal
Conditions, Nauka, Moscow, 1970, pp. 55 68
[112] V.I. Popolitov, A.N. Lobachev, Investigation of processes crystallization in the system
Sb a Se a I a R a H 2 O(R 5 Solution) under hydrothermal conditions, Izvestia Akad.
Nauk USSR Inorg. Mater. 8 (1972) 1229 1232.
[113] A. Rabenau, H. Rau, Lead sulfide halides and Pb 4 SeBr 4 , Z. Inorg. Allg. Chem. 369
(1969) 295 305.
[114] V.A. Kuznetsov, A.N. Labochev, Hydrothermal method for the growth of crystals,
Sov. Phys. Crystallogr. 17 (1973) 775 804.
[115] B.N. Litvin, V.I. Popolitov, Hydrothermal Synthesis of Inorganic compounds, Nauka,
Moscow, 1984.
[116] H. Rau, A. Rabenau, Hydrothermal synthesis von CuS and CuSe in 48%:ger HBr,
Mater. Res. Bull. 2 (1967) 609 614.
[117] E.D. Kolb, R.A. Laudise, Hydrothermal crystallization of zinc selenide, J. Cryst.
Growth 7 (1970) 199 202.
[118] G. Neumann, On the hydrolysis of niobates in 3 M KCl medium, Acta Chem. Scand.
18 (1964) 278 280.
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