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Enthalpy of formation of PtBi and PtBi2 from elements

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References

  • Y. C. Bhatt and K. Schubert, “Crystal structure of Pt4PbBi7 and PtBi2 h3,” Z. Metallkd. 71(8), 550–553 (1980a) [in German].

    Google Scholar 

  • Y. C. Bhatt and K. Schubert, “Crystal structure of PtBiW2 r,” Z. Metallkd. 71(9), 581–583 (1980b) [in German].

    Google Scholar 

  • T. Biswas and K. Schubert “Structural investigation of alloys Pt–Tl–Pb and Pt–Pb–Bi,” J. Less-Common Metals 19, 223–243 (1969) [in German].

    Article  Google Scholar 

  • L. J. Cabri and D. C. Harris, “The new mineral insizwaite (PtBi2) and new data on niggliite (PtSn),” Mineral. Mag. 38, 794–800 (1972).

    Article  Google Scholar 

  • L. L. Fleisher and T. A. Stolyarova, “Automation of measurement of electrical energy of a high-temperature calorimetric apparatus,” Izmerit. Tekhn., No. 2, 60–61 (1978).

    Google Scholar 

  • C. T. Heycock and F. H. Neville, “On the lowering of the freezing points of cadmium, bismuth, and lead when alloyed with other metals,” J. Chem. Soc. 61, 888–914 (1892).

    Article  Google Scholar 

  • Z. Johan and P. Picot, “La stumpflite, Pt(Sb,Bi), un nouveau minéral,” Bull. Soc. Française Minéral. Cristallogr. 95, 610–613 (1972) [in French].

    Google Scholar 

  • A. R. Miedema, “On the heat of formation of solid alloys. II.,” J. Less Common Metals 46 (1), 67–83 (1976).

    Article  Google Scholar 

  • V. V. Nalimov, Application of Mathematical Statistics in Matter Analysis (Nauka, Moscow, 1960) [in Russian].

    Google Scholar 

  • H. Okamoto, “The Bi–Pt (bismuth—platinum) system,” J. Phase Equil. 12 (2), 207–210 (1991).

    Article  Google Scholar 

  • P. Predel, “Bi–Pt (bismuth-platinum),” in Binary Systems. Part 5: B–Ba–C–Zr, Ed. by O. Madelung, LandoltBörnstein—Group IV Physical Chemistry, 19B5, 1–2 (1992).

    Google Scholar 

  • K. Schubert, S. Bhan, T. K. Biswas, K. Frank, and P. K. Panday, “Structural data of metallic phases,” Naturwissenschaften 55 (11), 542–543 (1968) [in German].

    Article  Google Scholar 

  • M. S. Soboleva and Ya. V. Vasil’ev, “Enthalpy of formation of nickel tellurides NiTe1.00–NiTe1.50,” Vestn. Leningrad. Univ. Ser. Fiz. Khim. 16, 153–155 (1962).

    Google Scholar 

  • H. J. Wallbaum, “The crystal structures of Bi2Pt and Sn2Pt,” Z. Metallkd. 35 (10), 200–210 (1943) [in German].

    Google Scholar 

  • N. N. Zhuravlev, G. S. Zhdanov, and E. M. Smirnova, “Study of bismuth–platinum alloys within the range of 10 to 50 at % platinum,” Fizika Metall. Metalloved. 13 (4), 536–542 (1962).

    Google Scholar 

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Correspondence to T. A. Stolyarova.

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Original Russian Text © T.A. Stolyarova, M.V. Voronin, E.G. Osadchii, E.A. Brichkina, 2015, published in Geokhimiya, 2015, No. 9, pp. 862–864.

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Stolyarova, T.A., Voronin, M.V., Osadchii, E.G. et al. Enthalpy of formation of PtBi and PtBi2 from elements. Geochem. Int. 53, 845–847 (2015). https://doi.org/10.1134/S0016702915090098

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