Bulletin of Alloy Phase Diagrams

, Volume 5, Issue 3, pp 273–276 | Cite as

The Si−Sn (Silicon−Tin) system

  • R. W. Olesinski
  • G. J. Abbaschian
Provisional Si−Sn

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Cited References

  1. 09Tam: C. Tamaru, “Über die Legierungen des Siliciums mit Zinn, Blei, und Thallium”,Z. Anorg. Chem., 69, 40–45 (1909) in German. (Equi Diagram; Experimental; Indicates presence of a phase diagram)CrossRefGoogle Scholar
  2. 33Jet: E. R. Jette and E. B. Gebert, “An X-Ray Study of the Binary Alloys of Silicon with Ag, Au, Pb, Sn, Zn, Cd, Sb, and Bi”,J. Chem. Phys., 1, 753–755 (1933). (Cryst Structure; Experimental)CrossRefADSGoogle Scholar
  3. 53Thu: C. D. Thurmond, “Equilibrium Thermochemistry of Solid and Liquid Alloys of Germanium and of Silicon, I”,J. Phys. Chem., 57, 827–830 (1953). (Equi Diagram, Thermo; Theory)CrossRefGoogle Scholar
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  5. Indicates key paper58Tru: F. A. Trumbore, C. R. Isenberg, and E. M. Porbansky, “On the Temperature Dependence of the Distribution Coefficient. The Solid Solubilities of Tin in Silicon and Germanium”,J. Phys. Chem. Solids, 9, 60–69 (1958). (Equi Diagram; Experimental)CrossRefGoogle Scholar
  6. Indicates key paper60Thu: C. D. Thurmond and M. Kowalchik, “Germanium and Silicon Liquidus Curves”,Bell Sys. Tech. J., 39, 169–204 (1960). (Equi Diagram, Thermo; Experimental)Google Scholar
  7. 60Tru: F. A. Trumbore, “Solid Solubilities of Impurity Elements in Germanium and Silicon”,Bell Sys. Tech. J., 39, 205–233 (1960). (Equi Diagram; Theory)Google Scholar
  8. 70Rao: M. V. Rao and W. A. Tiller, “Excess Free Energies in the Ge, Si, and Ga Binary Systems—the α-Parameter Approach”,J. Phys. Chem. Solids, 31, 191–198 (1970). (Thermo; Theory)CrossRefADSGoogle Scholar
  9. 70Str: G. B. Stringfellow and P. E. Greene, “A Quasi-Chemical Equilibrium Calculation of the Ge−Si−Sn and Ge−Si−Pb Ternary Phase Diagrams”,J. Electrochem. Soc., 117, 1075–1079 (1970). (Equi Diagram, Thermo; Theory)CrossRefGoogle Scholar
  10. 76Bla: J. L. Blattner, “The Relative Ion Current Technique for Mass-Spectrometric Measurements of the Thermodynamic Properties of Molten Alloys”, Ph.D. thesis, Colorado School of Mines (1976). (Thermo; Experimental)Google Scholar
  11. 77Bar: I. Barin, O. Knacke, and O. Kubachewski,Thermochemical Properties of Inorganic Substances, Springer-Verlag, New York (1973) and Supplement (1977). (Thermo; Compilation)Google Scholar
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  13. 77Sud: V. S. Sudavtsova and G. I. Batalin, “Raschet Aktivnostey Komponentov Zhidkikh Splavov Sistem Me−Si iz Diagramm Sostoyanya” (Calculation of the Activities of the Components of Me−Si Liquid Alloy Systems from Phase Diagrams),Ukr. Khim. Zh., 43, 235–240 (1977) in Russian. (Thermo; Theory)Google Scholar
  14. 81Kin: H. W. King, “Crystal Structures of the Elements at 25 °C”,Bull. Alloy Phase Diagrams, 2(3), 401–402 (1981). (Crys Structure; Compilation)CrossRefGoogle Scholar
  15. 81Som1: T. Soma, H. Matsuo, and S. Kagaya, “Phase Diagrams of the Si−Sn and Ge−Sn Systems”,Phys. Status Solidi (b), 105, 311–314 (1981). (Equi. Diagram, Crys Structure, Thermo; Thermory; Indicates presence of a phase diagram)CrossRefGoogle Scholar
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  17. Indicates key paper82Kob: A. N. Kobylkin, S. B. Maslenkov, A. G. Nikolaev, and B. I. Nayashkov, “Ustanovka Differentsyalnogo Termicheskogo Analiza DTA-4” (Differential Thermal Analysis Unit DTA-4),Zavod. Lab., 48, 49–51 (1982) in Russian. (Equi Diagram; Experimental; Indicates presence of a phase diagram)Google Scholar

Copyright information

© Springer 1984

Authors and Affiliations

  • R. W. Olesinski
    • 1
  • G. J. Abbaschian
    • 1
  1. 1.Department of Materials Science and EngineeringUniversity of FloridaGainesville

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