Structure and magnetic properties of impurity complexes [NiF4F4Fint] 6- (C4v) in the BaF2 crystal: EPR study data
- Authors: Ulanov V.А.1,2, Yatsyk I.V.1, Zaripov R.B.1, Zainullin R.R.2, Golenishchev-Kutuzov V.A.2
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Affiliations:
- Zavoisky Physical-Technical Institute, Federal Research Center “Kazan Scientific Center of the Russian Academy of Sciences”
- Kazan State Power Engineering University
- Issue: Vol 88, No 12 (2024)
- Pages: 1911-1918
- Section: Nanooptics, photonics and coherent spectroscopy
- URL: https://journals.rcsi.science/0367-6765/article/view/286506
- DOI: https://doi.org/10.31857/S0367676524120115
- EDN: https://elibrary.ru/EWJGPK
- ID: 286506
Cite item
Abstract
Impurity paramagnetic complexes [NiF4F4Fint]6-(C4v), which are a stable associate of a trivalent nickel ion with an interstitial fluorine ion F–int, have been synthesized in a fluorite structure BaF2 ionic crystals. The molecular structure of the synthesized complexes was studied by the method of electron paramagnetic resonance at frequencies of 9.39 and 34.25 GHz in the temperature range from 5 to 250 K. It is shown that in the studied complex, the Ni3+ ion (3d7, 4F, S = 3/2) replaced the lattice cation Ba2+, but, under the influence of F–int in the neighboring internode of the octahedral type, shifted towards it from the center of the coordination cube occupied by it. Under the influence of the tetragonal symmetry crystal field, the electron spin levels of the complex split into two Kramers doublets |±1/2⟩, of which the doublet turned out to be the main one. The energy interval between doublets is approximately 114 GHz. A super-superfine structure is observed in the EPR spectra due to the interactions of the electron spin moment of the nickel ion with the nuclei of nine ligand fluorine ions. The parameters of these interactions are defined.
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About the authors
V. А. Ulanov
Zavoisky Physical-Technical Institute, Federal Research Center “Kazan Scientific Center of the Russian Academy of Sciences”; Kazan State Power Engineering University
Author for correspondence.
Email: ulvlad@inbox.ru
Zavoisky Physical-Technical Institute
Russian Federation, Kazan; KazanI. V. Yatsyk
Zavoisky Physical-Technical Institute, Federal Research Center “Kazan Scientific Center of the Russian Academy of Sciences”
Email: ulvlad@inbox.ru
Zavoisky Physical-Technical Institute
Russian Federation, KazanR. B. Zaripov
Zavoisky Physical-Technical Institute, Federal Research Center “Kazan Scientific Center of the Russian Academy of Sciences”
Email: ulvlad@inbox.ru
Zavoisky Physical-Technical Institute
Russian Federation, KazanR. R. Zainullin
Kazan State Power Engineering University
Email: ulvlad@inbox.ru
Russian Federation, Kazan
V. A. Golenishchev-Kutuzov
Kazan State Power Engineering University
Email: ulvlad@inbox.ru
Russian Federation, Kazan
References
- Hayes W. Crystals with the fluorite structure: electronic, vibrational and defect properties. Oxford: Clarendon Press, 1974. 414 p.
- Gehlhoff W., Ulrici W. // Phys. Stat. Sol. B. 1980. V. 102. P. 11.
- Dorenbos P. Mechanism of ionic transport in rare earth doped alcaline earth fluorides. Druk: Krips Repro Meppel, 1988. 168 р.
- Boyce J.B., Huberman B.A. // Phys. Reports. 1979. V. 51. P. 189.
- Уланов В.А., Зарипов М.М., Фазлижанов И.И. // ФТТ. 2005. Т. 47. № 9. С. 1596, Ulanov V.A., Zaripov M.M., Fazlizhanov I.I. // Phys. Solid State. 2005. V. 47. No. 9. P. 1655.
- Зиновьев В.А., Зиновьева А.Ф., Володин В.А. и др. // Письма в ЖЭТФ. 2022. Т. 116. № 9. С. 608, Zinovyev V.A., Zinovyeva A.F., Volodin V.A. et al. // JETP Lett. 2022. V. 116. No. 9. P. 628.
- Маслов А.Ю., Прошина О.В. // Изв. РАН. Сер. физ. 2023. Т. 87. № 6. С. 896, Maslov A.Yu., Proshina O.V. // Bull. Russ. Acad. Sci. Phys. 2023. V. 87. No. 6. P. 786.
- Alonso P.J., Casas-Gonzalez J., Alcal R., den Hartog H.W. // Radiat. Eff. 1983. V. 73. P. 215.
- Alonso P.J., Casas Gonzalez J., den Hartog H.W., Alcala R.A. // Phys. Rev. B. 1983. V. 27. P. 2722.
- Alonso P.J., Casas Gonzalez J., den Hartog H.W., Alcala R.A. // J. Phys. C. Solid State Phys. 1983. V. 16. P. 3593.
- Mabbs F.E., Collison D. Electron paramagnetic resonance of d transition metal compounds. Elsevier Science Publishers, 1992. 1326 p.
- Абрагам А., Блини Б. Электронный парамагнитный резонанс переходных ионов. Т. 1. М.: Мир, 1972. 672 с.
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