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Phase Diagram and Thermodynamic Properties of the Tl – In – Te System

  • M. B. Babanly EMAIL logo and Z. A. Guseynov
Published/Copyright: January 7, 2022
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Abstract

The results of a complex investigation on the phase equilibria and thermodynamic properties of the system Tl–In–Te, obtained using differential thermal analysis, X-ray phase analysis, and electro motive force (EMF) measurement are presented. A projection of the liquidus surface, an isothermal section at 300 K, and a series of vertical sections [Tl(Tl2Te)–InTe, TlInTe2–Tl(In, Te, Tl5Te3)] of the phase diagram are obtained. The types and coordinates of the nonvariant equilibria are determined. It was established that in this system two intermediate phases of variable composition (c and e) based on the ternary compounds TlInTe2 and Tl3InTe2 are formed. Wide regions of homogeneity based on the binary compounds Tl2Te, Tl5Te3, TlTe, InTe, and In2Te3 were also detected. Based on the results obtained by EMF measurements, using concentration galvanic cells, the relative partial molar values for thallium and the standard integral thermodynamic functions of the formation for the ternary compounds and solid solutions were derived.


M. Babanly Baku State University Z. Khailov Str. 23, Baku City 370 000, Azerbaijan Fax: +994 12 97 99 00

References

1 Babanly, M.B.; Guseynov, Z.A.: Vestnik BGU, Ser. Yestestv. Nauk, Issue 2 (1999) 4–11.Search in Google Scholar

2 Hahn, H.; Wellmann, B.: Z. Naturwiss. B 54 (1967) 42.Search in Google Scholar

3 Guseynov, G.D.; Mooser, E.; et al.: Phys. Stat. Solidi. 34 (1969) 33–34.10.1002/pssb.19690340103Search in Google Scholar

4 Babanly, M.B.; Kuliyev, A.A.: Zhurnal Neorg. Khim. 21 (1976) 1658–1661; Russ. J. Inorg. Chem. 21 (1976) 907–909 [in English].Search in Google Scholar

5 Davydov, A.V.; Tamm, M.E; Zlomanov, V.P.: Zh. Neorg. Khim. 32 (7) (1987) 1779–1780.Search in Google Scholar

6 Sastry, V.B.; Murthy, K.S.; Mamedov, N.T.; Prabhavathy: Phys. Stat. Solidi (a) 110 (1988) K5–K7.10.1002/pssa.2211100134Search in Google Scholar

7 Banys, J., Wondre, F.R., Guseynov, G.: Mater. Lett. 7–8 (1990) 269–274.10.1016/0167-577X(90)90059-USearch in Google Scholar

8 Guseynov, G.D.; et al.; in: Some Questions of Experimental and Theoretical Physics, Baku, ELM (1977) 155–170 [in Russian].Search in Google Scholar

9 Rai, D.; Bhan, S.: Trans. Indian Inst. Met. 35 (1982) 327–332.Search in Google Scholar

10 Mamedov, A.N.: Dokl. Akad. Nauk Az. SSR 34 (4) (1978) 44–47.Search in Google Scholar

11 Aldzhanov, M.A.; Mamedov, K.K.: Fiz. Tverd. Tela (Leningrad) 27 (1985) 3114–3116.Search in Google Scholar

12 Plevachuc, Yu.; Didoukh, V.; Sokolovskii, B.: J. Alloys Compds. 274 (1998) 206–208.10.1016/S0925-8388(98)00554-4Search in Google Scholar

13 Plevachuc, Yu.; Didoukh, V.; Sokolovskii, B.: J. Non-Cryst. Solids 250–252 (1999) 325–328.10.1016/S0022-3093(99)00257-4Search in Google Scholar

14 Babanly, M.B.; Kuliyev, A.A.: Zhurnal Neorg. Khimii 27 (1982) 1538–1546; Russ. J. Inorg. Chem. 27 (1982) 867–872 [in English].Search in Google Scholar

15 Babanly, M.B.; Kuliyev, A.A.: Zhurnal Neorg. Khimii 27 (1982) 1538–1546; Russ. J. Inorg. Chem. 27 (1982) 867–872 [in English].Search in Google Scholar

16 Babanly, M.B.; Yusibov, Y.A.; Abishov, V.T.: EMF Method in Thermodynamics of Complex Semiconducting Substances, Baku, BGU (1992) [in Russian].Search in Google Scholar

17 Babanly, M.B.; in: Application of Mathematical Methods to Studying Physico-Chemical Equilibria, Vol. 2, Novosibirsk (1985) 3–7 [in Russian].Search in Google Scholar

18 Babanly, M.B.; Kuliyev, A.A.; in: Mathematical Problems in Chemical Thermodynamics, Novosibirsk, Nauka, Siberian Section (1985) 192–201 [in Russian].Search in Google Scholar

19 Asadov, M.M.; Babanly, M.B.; Kuliyev, A.A.: Izv. Akad. Nauk SSSR, Neorg. Mater. 13 (1977) 1407–1410.Search in Google Scholar

20 Abrikosov, N.Kh.; et al.: Semiconducting Chalcogenides and Alloys on Their Basis, Moscow, Nauka (1975) [in Russian].Search in Google Scholar

21 Shunk, F.: Constitution of Binary Alloys, Moscow, Metallurgiya (1973) [in Russian].Search in Google Scholar

22 Geyderik, V.A.; Nikolskaya, A.V.; Vasilyeva, I.A.; in: Compounds of Variable Composition, Leningrad, Khimiya (1969) 210–261 [in Russian].Search in Google Scholar

23 Babanly, M.B.; Yusibov, Y.A.; Shikhiyev, Y.M.: Vestnik BGU, Ser. Yestestv. Nauk Issue 3 (1998) 5–9.Search in Google Scholar

24 Kornilov, A.N.; Stepina, L.B.; Sokolov, V.A.: Zhurnal Fiz. Khimii 46 (1972) 2975–2979.Search in Google Scholar

25 Mustafayev, F.M.; Aliyev, I.Y.; Azizov, T.Kh.; Abbasov, A.S.: Izv. Akad. Nauk SSSR, Neorg. Mater. 11 (1975) 623–625.Search in Google Scholar

Received: 2000-02-14
Published Online: 2022-01-07

© 2001 Carl Hanser Verlag, München

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