Ni substitution effect on the structure, magnetization, resistivity and permeability of zinc ferrites

Author:

Vinnik D. A.123ORCID,Zhivulin V. E.12342ORCID,Sherstyuk D. P.123ORCID,Starikov A. Yu.123ORCID,Zezyulina P. A.5673ORCID,Gudkova S. A.12389ORCID,Zherebtsov D. A.123ORCID,Rozanov K. N.5673ORCID,Trukhanov S. V.123107ORCID,Astapovich K. A.11121314,Sombra A. S. B.15161718ORCID,Zhou D.1920212223ORCID,Jotania R. B.1524252627ORCID,Singh C.28293027ORCID,Trukhanov A. V.123107ORCID

Affiliation:

1. South Ural State University

2. Chelyabinsk

3. Russia

4. South Ural State Humanitarian Pedagogical University

5. Institute for Theoretical and Applied Electromagnetics

6. Russian Academy of Sciences

7. Moscow

8. Moscow Institute of Physics and Technology (State University)

9. Dolgoprudny

10. National University of Science and Technology MISiS

11. Scientific Practical Materials Research Centre

12. National Academy of Sciences of Belarus

13. Minsk 220072

14. Belarus

15. Department of Physics

16. Federal University of Ceara

17. Fortaleza

18. Brazil

19. Electronic Materials Research Laboratory

20. Key Laboratory of the Ministry of Education & International Center for Dielectric Research

21. School of Electronic Science and Engineering

22. Xi’an Jiaotong University

23. Xi'an 710049

24. Electronics and Space Science

25. Gujarat University

26. Gujarat

27. India

28. School of Electronics and Electrical Engineering

29. Lovely Professional University

30. Phagwara

Abstract

Increase in the spontaneous magnetization up to x < 0.5 is a sequence of appearance of the additional magnetic moment of 2 μB of the Ni2+ cations in tetrahedral positions. For x > 0.5, the moment decreases in octahedral positions and the spontaneous magnetization also decreases.

Funder

Russian Foundation for Basic Research

Publisher

Royal Society of Chemistry (RSC)

Subject

Materials Chemistry,General Chemistry

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