Skip to main content
Log in

57Fe hyperfine parameters and phase compositions in Fe-Ni-Co alloys from iron, stony-iron and stony meteorites

  • Conference Proceeding
  • Published:
Interactions Aims and scope Submit manuscript

Abstract

Basing on Mössbauer studies of various iron, stony-iron and stony meteorites, we considered a possible relationship of the ranges of magnetic hyperfine field (Heff), Fe-Ni-Co phases and the ranges of Ni concentration in these phases. We suppose that possible relationship of the ranges of Heff with Fe-Ni-Co phases and with the ranges of Ni concentration can be taken as follows: ~345 kOe ≤ Heff ≤ ~365 kOe for the α2-phase (~ 8–25 at% of Ni), ~ 327 kOe < Heff ≤ ~345 kOe for the α-phase (up to 7 at% of Ni), ~ 283 kOe ≤ Heff ≤ ~327 kOe for the γ-phase (~ 26–48 at% of Ni) with the values of ~ 283 kOe ≤ Heff ≤ ~295 kOe which may also be associated with the ordered γ-FeNi(Co) phase (~ 48–52 at% of Ni). The paramagnetic γ-Fe(Ni, Co) phase with ~ 29–33 at% of Ni has the values of isomer shift (δ) in the range of ~ − 0.200 mm/s < δ < ~0.150 mm/s.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Fig. 1
Fig. 2
Fig. 3
Fig. 4

Similar content being viewed by others

Data availability

All data can be obtained from the corresponding author under request.

References

  1. Wasson, J.T.: Meteorites, Classification and Properties, pp. 1–320. Springer, Berlin, Heidelberg (1974)

    Google Scholar 

  2. Jarosewich, E.: Chemical analysis of meteorites: A compilation of stony and iron meteorite analyses. Meteoritics. 25, 323–337 (1990)

    Article  ADS  CAS  Google Scholar 

  3. Rubin, A.E.: Mineralogy of meteorite groups. Meteorit. & Planet. Sci. 32, 231–247 (1997)

    Article  ADS  CAS  Google Scholar 

  4. Rubin, A.E., Ma, C.: Meteoritic minerals and their origins. Chem. Erde. 77, 325–385 (2017)

    Article  CAS  Google Scholar 

  5. Scorzelli, R.B., Dos Santos, E.: Meteoritic Fe-Ni alloys: A review of 57Fe Mössbauer spectroscopy studies. Geochemistry. 79, 125547. (2019)

  6. Dos Santos, E., Gattacceca, J., Rochette, P., Scorzelli, R.B., Fillion, G.: Magnetic hysteresis properties and 57Fe Mössbauer spectroscopy of iron and stony-iron meteorites: Implications for mineralogy and thermal history. Phys. Earth Planet. Inter. 242, 50–64 (2015)

    Article  ADS  CAS  Google Scholar 

  7. Maksimova, A.A., Oshtrakh, M.I.: Applications of Mössbauer spectroscopy in meteoritical and planetary science, part I: Undifferentiated meteorites. Minerals. 11, 612 (2021)

    Article  ADS  CAS  Google Scholar 

  8. Maksimova, A.A., Goryunov, M.V., Oshtrakh, M.I.: Applications of Mössbauer spectroscopy in meteoritical and planetary science, part II: Differentiated meteorites, Moon and Mars. Minerals. 11, 614 (2021)

    Article  ADS  CAS  Google Scholar 

  9. Vincze, I., Campbell, I.A., Meyer, A.J.: Hyperfine field and magnetic moments in b.c.c. Fe-Co and Fe-Ni. Solid State Commun. 15, 1495–1499 (1974)

    Article  ADS  CAS  Google Scholar 

  10. Tcherdyntsev, B.Y.V., Kaloshkin, V.V., Kochetov, S.D., Pustov Yu, G.A.: Transformations and fine magnetic structure of mechanically alloyed Fe-Ni alloys. J. Mag Mag Mat. 203, 313–315 (1999)

    Article  ADS  Google Scholar 

  11. Hamzaoui, R., Elkedim, O., Gaffet, E., Grenèche, J.M.: Structure, magnetic and Mössbauer studies of mechanically alloyed Fe-20 wt.% Ni powders. J. Alloys Comp. 417, 32–38 (2006)

    Article  CAS  Google Scholar 

  12. Valderruten, J.F., Alcazar, G.A.P., Grenèche, J.M.: Study of Fe-Ni alloys produced by mechanical alloying. Phys. B: Cond Mat. 384, 316–318 (2006)

    Article  ADS  CAS  Google Scholar 

  13. Kądziołka-Gaweł, M., Zarek, W., Popiel, E.: The effect of temperature on the structural and magnetic behaviour of Fe-Ni invar alloys. J. Phys.: Conf. Ser. 217, 012088 (2010)

    Google Scholar 

  14. Jiraskova, Y., Bursik, J., Turek, I., Hapla, M., Titov, A., Zivotsky, O.: Phase and magnetic studies of the high-energy alloyed Ni-Fe. J. Alloys Comp. 594, 133–140 (2014)

    Article  CAS  Google Scholar 

  15. Rodríguez, V.A.P., Rojas-Ayala, C., Medina, J.M., Cabrera, P.P., Quispe-Marcatoma, J., Landauro, C.V., Tapia, J.R., Baggio-Saitovitch, E.M., Passamani, E.C.: Fe50Ni50 synthesized by high energy ball milling: A systematic study using X-ray diffraction, EXAFS and Mössbauer methods. Mat. Charac. 149, 249–254 (2019)

    Article  Google Scholar 

  16. Kleinerman, N.M., Mushnikov, N.V., Protasov, A.V., Gaviko, V.S., Golovnya, O.A., Naumov, S.P.: Structural transformations of low-nickel Fe-Ni alloys probed by Mössbauer spectroscopy. J. Alloys Comp. 962, 171132 (2023)

    Article  CAS  Google Scholar 

  17. Oshtrakh, M.I., Yakovlev, G.A., Grokhovsky, V.I., Semionkin, V.A.: Re-examination of Dronino iron meteorite and its weathering products using Mössbauer spectroscopy with a high velocity resolution. Hyperfine Interact. 237, 42 (2016)

    Article  ADS  Google Scholar 

  18. Goryunov, M.V., Yakovlev, G.A., Chukin, A.V., Grokhovsky, V.I., Semionkin, V.A., Oshtrakh, M.I.: Iron meteorites and their weathering products: Mössbauer spectroscopy with a high velocity resolution of the iron-bearing minerals. Eur. J. Mineral. 28, 601–610 (2016)

    Article  ADS  CAS  Google Scholar 

  19. Goryunov, M.V., Varga, G., Dankházi, Z., Felner, I., Chukin, A.V., Kuzmann, E., Homonnay, Z., Grokhovsky, V.I., Oshtrakh, M.I.: Characterization of iron meteorites by scanning electron microscopy, X-ray diffraction, magnetization measurements and Mössbauer spectroscopy: Gibeon IVA. Meteorit. & Planet. Sci. 58, 875–884 (2023)

    Article  ADS  CAS  Google Scholar 

  20. Goryunov, M.V., Varga, G., Dankházi, Z., Chukin, A.V., Felner, I., Kuzmann, E., Grokhovsky, V.I., Homonnay, Z., Oshtrakh, M.I.: Characterization of iron meteorites by scanning electron microscopy, X-ray diffraction, magnetization measurements and Mössbauer spectroscopy: Mundrabilla IAB-ung. Meteorit. & Planet. Sci. 58, 1552–1562 (2023)

    Article  ADS  CAS  Google Scholar 

  21. Oshtrakh, M.I., Maksimova, A.A., Goryunov, M.V., Petrova, E.V., Felner, I., Chukin, A.V., Grokhovsky, V.I.: Study of metallic Fe-Ni-Co alloy and stony part isolated from Seymchan meteorite using X-ray diffraction, magnetization measurement and Mössbauer spectroscopy. J. Mol. Struct. 1174, 112–121 (2018)

    Article  ADS  CAS  Google Scholar 

  22. Kohout, T., Haloda, J., Halodová, P., Meier, M.M.M., Maden, C., Busemann, H., Laubenstein, M., Caffee, M.W., Welten, K.C., Hopp, J., Trieloff, M., Mahajan, R.R., Naik, S., Trigo-Rodriguez, J.M., Moyano-Cambero, C.E., Oshtrakh, M.I., Maksimova, A.A., Chukin, A.V., Semionkin, V.A., Karabanalov, M.S., Felner, I., Petrova, E.V., Brusnitsyna, E.V., Grokhovsky, V.I., Yakovlev, G.A., Gritsevich, M., Lyytinen, E., Moilanen, J., Kruglikov, N.A., Ishchenko, A.V.: Annama H chondrite – mineralogy, physical properties, cosmic ray exposure, and parent body history. Meteorit. & Planet. Sci. 52, 1525–1541 (2017)

    Article  ADS  CAS  Google Scholar 

  23. Maksimova, A.A., Oshtrakh, M.I., Chukin, A.V., Felner, I., Yakovlev, G.A., Semionkin, V.A.: Characterization of Northwest Africa 6286 and 7857 ordinary chondrites using X-ray diffraction, magnetization measurements and Mössbauer spectroscopy. Spectrochim. Acta, Part A: Molec. And Biomolec. Spectroscopy. 192, 275–284 (2018)

    Article  ADS  CAS  Google Scholar 

  24. Oshtrakh, M.I., Maksimova, A.A., Chukin, A.V., Petrova, E.V., Jenniskens, P., Kuzmann, E., Grokhovsky, V.I., Homonnay, Z., Semionkin, V.A.: Variability of Chelyabinsk meteoroid stones studied by Mössbauer spectroscopy and X-ray diffraction. Spectrochim. Acta, Part A: Molec. And Biomolec. Spectroscopy. 219, 206–224 (2019)

    Article  ADS  CAS  Google Scholar 

  25. Maksimova, A.A., Petrova, E.V., Chukin, A.V., Karabanalov, M.S., Felner, I., Gritsevich, M., Oshtrakh, M.I.: Characterization of the matrix and fusion crust of the recent meteorite fall Ozerki L6. Meteorit. & Planet. Sci. 55, 231–244 (2020)

    Article  ADS  CAS  Google Scholar 

  26. Maksimova, A.A., Petrova, E.V., Chukin, A.V., Karabanalov, M.S., Nogueira, B.A., Fausto, R., Yesiltas, M., Felner, I., Oshtrakh, M.I.: Characterization of Kemer L4 meteorite using Raman spectroscopy, X-ray diffraction, magnetization measurements and Mössbauer spectroscopy. Spectrochim. Acta, Part A: Molec. And Biomolec. Spectroscopy. 242, 118723 (2020)

    Article  CAS  Google Scholar 

  27. Maksimova, A.A., Petrova, E.V., Chukin, A.V., Unsalan, O., Szabó, Á., Dankházi, Z., Felner, I., Zamyatin, D.A., Kuzmann, E., Homonnay, Z., Oshtrakh, M.I.: Study of Bursa L6 ordinary chondrite by X-ray diffraction, magnetization measurements and Mössbauer spectroscopy. Meteorit. & Planet. Sci. 55, 2780–2793 (2020)

    Article  ADS  CAS  Google Scholar 

  28. Maksimova, A.A., Petrova, E.V., Chukin, A.V., Nogueira, B.A., Fausto, R., Szabó, Á., Dankházi, Z., Felner, I., Gritsevich, M., Kohout, T., Kuzmann, E., Homonnay, Z., Oshtrakh, M.I.: Bjurböle L/LL4 ordinary chondrite properties studied by Raman spectroscopy, X-ray diffraction, magnetization measurements and Mössbauer spectroscopy. Spectrochim. Acta, Part A: Molec. And Biomolec. Spectroscopy. 248, 119196 (2021)

    Article  CAS  Google Scholar 

  29. Maksimova, A.A., Oshtrakh, M.I., Petrova, E.V., Grokhovsky, V.I., Semionkin, V.A.: Comparison of iron-bearing minerals in ordinary chondrites from H, L and LL groups using Mössbauer spectroscopy with a high velocity resolution. Spectrochim. Acta, Part A: Molec. And Biomolec. Spectroscopy. 172, 65–76 (2017)

    Article  ADS  CAS  Google Scholar 

  30. Goryunov, M.V., Maksimova, A.A., Oshtrakh, M.I.: Advances in analysis of the Fe-Ni-Co alloy and iron-bearing minerals in meteorites by Mössbauer spectroscopy with a high velocity resolution. Minerals. 13, 1126 (2023)

    Article  ADS  CAS  Google Scholar 

  31. Weisberg, M.K., McCoy, T.J., Krot, A.N.: Systematics and evaluation of meteorite classification. In: Lauretta, D.S., McSween, H.Y. Jr. (eds.) Meteorites and the Early Solar System II, pp. 19–52. The University of Arizona Press: Tucson, (2006)

  32. Oshtrakh, M.I., Semionkin, V.A.: Mössbauer spectroscopy with a high velocity resolution: Advances in biomedical, pharmaceutical, cosmochemical and nanotechnological research. Spectrochim. Acta, Part A: Molec. And Biomolec. Spectroscopy. 100, 78–87 (2013)

    Article  ADS  CAS  Google Scholar 

  33. Oshtrakh, M.I., Semionkin, V.A.: Mössbauer spectroscopy with a high velocity resolution: principles and applications. In: Tuček J., Miglierini M. (eds.) Proceedings of the International Conference “Mössbauer Spectroscopy in Materials Science 2016”. AIP Conference Proceedings, vol. 1781, 020019. AIP Publishing: Melville, New York (2016)

  34. Alenkina, I.V., Ushakov, M.V., Morais, P.C., Kalai Selvan, R., Kuzmann, E., Klencsár, Z., Felner, I., Homonnay, Z., Oshtrakh M.I.: Mössbauer spectroscopy with a high velocity resolution in the studies of nanomaterials. Nanomaterials. 12, 3748 (2022)

    Article  CAS  PubMed  PubMed Central  Google Scholar 

Download references

Acknowledgements

This work was supported by the Ministry of Science and Higher Education of the Russian Federation, project № FEUZ-2023-0013. The research funding for M.V.G. and M.I.O. from the Ministry of Science and Higher Education of the Russian Federation (Ural Federal University Program of Development within the Priority-2030 Program) is gratefully acknowledged.

Author information

Authors and Affiliations

Authors

Contributions

M.V.G. and M.I.O did all measurements and spectra fittings. M.I.O. wrote the main manuscript text and prepared Figs. 1, 2, 3 and 4. All authors reviewed and approved the manuscript.

Corresponding author

Correspondence to Michael I. Oshtrakh.

Ethics declarations

Competing interests

The authors declare no competing interests.

Ethical approval

Not applicable.

Additional information

Publisher’s Note

Springer Nature remains neutral with regard to jurisdictional claims in published maps and institutional affiliations.

Rights and permissions

Springer Nature or its licensor (e.g. a society or other partner) holds exclusive rights to this article under a publishing agreement with the author(s) or other rightsholder(s); author self-archiving of the accepted manuscript version of this article is solely governed by the terms of such publishing agreement and applicable law.

Reprints and permissions

About this article

Check for updates. Verify currency and authenticity via CrossMark

Cite this article

Goryunov, M.V., Oshtrakh, M.I. 57Fe hyperfine parameters and phase compositions in Fe-Ni-Co alloys from iron, stony-iron and stony meteorites. Hyperfine Interact 245, 19 (2024). https://doi.org/10.1007/s10751-024-01860-x

Download citation

  • Accepted:

  • Published:

  • DOI: https://doi.org/10.1007/s10751-024-01860-x

Keywords

Navigation