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Дата публикацииНазваниеАвторы
2023Advances in Analysis of the Fe-Ni-Co Alloy and Iron-Bearing Minerals in Meteorites by Mössbauer Spectroscopy with a High Velocity ResolutionGoryunov, M. V.; Maksimova, A. A.; Oshtrakh, M. I.
2002An analysis of quadrupole splitting of the Mössbauer spectra of ferritin and iron-dextran complexes in relation to the iron core microstructural variationsOshtrakh, M. I.; Milder, O. B.; Semionkin, V. A.; Prokopenko, P. G.; Livshits, A. B.; Kozlov, A. A.; Pikulev, A. I.
2017Annama H chondrite—Mineralogy, physical properties, cosmic ray exposure, and parent body historyKohout, 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.
2021Applications of mössbauer spectroscopy in meteoritical and planetary science, part i: Undifferentiated meteoritesMaksimova, A. A.; Oshtrakh, M. I.
2021Applications of mössbauer spectroscopy in meteoritical and planetary science, part ii: Differentiated meteorites, moon, and marsMaksimova, A. A.; Goryunov, M. V.; Oshtrakh, M. I.
2010Biomedical application of Mössbauer spectroscopy with a high velocity resolution: Revealing of small variationsOshtrakh, M. I.; Semionkin, V. A.; Milder, O. B.; Alenkina, I. V.; Novikov, E. G.
2021Bjurböle L/LL4 ordinary chondrite properties studied by Raman spectroscopy, X-ray diffraction, magnetization measurements and Mössbauer spectroscopyMaksimova, 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.
2022Change in Magnetic Anisotropy at the Surface and in the Bulk of FINEMET Induced by Swift Heavy Ion IrradiationKuzmann, E.; Stichleutner, S.; Machala, L.; Pechoušek, J.; Vondrášek, R.; Smrčka, D.; Kouřil, L.; Homonnay, Z.; Oshtrakh, M. I.; Mozzolai, A.; Skuratov, V. A.; Kudor, M.; Herczeg, B.; Varga, L. K.
2020Characterization of Kemer L4 meteorite using Raman spectroscopy, X-ray diffraction, magnetization measurements and Mössbauer spectroscopyMaksimova, A. A.; Petrova, E. V.; Chukin, A. V.; Karabanalov, M. S.; Nogueira, B. A.; Fausto, R.; Yesiltas, M.; Felner, I.; Oshtrakh, M. I.
2020Characterization of the matrix and fusion crust of the recent meteorite fall Ozerki L6Maksimova, A. A.; Petrova, E. V.; Chukin, A. V.; Karabanalov, M. S.; Felner, I.; Gritsevich, M.; Oshtrakh, M. I.
2013Comparative study of iron oxide nanoparticles as-prepared and dispersed in Copaiba oil using Mössbauer spectroscopy with low and high velocity resolutionOshtrakh, M. I.; Šepelák, V.; Rodriguez, A. F. R.; Semionkin, V. A.; Ushakov, M. V.; Santos, J. G.; Silveira, L. B.; Marmolejo, E. M.; Parise, M. D. S.; Morais, P. C.
2013Comparative study of nanosized iron cores in human liver ferritin and its pharmaceutically important models Maltofer® and Ferrum Lek using Mössbauer spectroscopyAlenkina, I. V.; Oshtrakh, M. I.; Semionkin, V. A.; Kuzmann, E.
2013Comparative study of the iron cores in human liver ferritin, its pharmaceutical models and ferritin in chicken liver and spleen tissues using Mössbauer spectroscopy with a high velocity resolutionAlenkina, I. V.; Oshtrakh, M. I.; Klepova, Y. V.; Dubiel, S. M.; Sadovnikov, N. V.; Semionkin, V. A.
2013Differences of the 57Fe hyperfine parameters in both oxyhemoglobin and spleen from normal human and patient with primary myelofibrosisOshtrakh, M. I.; Alenkina, I. V.; Vinogradov, A. V.; Konstantinova, T. S.; Semionkin, V. A.
2014Evaluation of the Debye temperature for iron cores in human liver ferritin and its pharmaceutical analogue, Ferrum Lek, using Mössbauer spectroscopyDubiel, S. M.; Cieślak, J.; Alenkina, I. V.; Oshtrakh, M. I.; Semionkin, V. A.
2012EVALUATION OF THE TEMPERATURE OF CATION EQUILIBRIUM DISTRIBUTION IN METEORITIC OLIVINES USING MOSSBAUER SPECTROSCOPY WITH A HIGH VELOCITY RESOLUTION: THE EFFECT OF TEMPERATURE OF SPECTRA MEASUREMENTOshtrakh, M. I.; Petrova, E. V.; Grokhovsky, V. I.; Semionkin, V. A.
2012Iron environment non-equivalence in both octahedral and tetrahedral sites in NiFe2O4 nanoparticles: study using Mössbauer spectroscopy with a high velocity resolutionOshtrakh, M. I.; Ushakov, M. V.; Senthilkumar, B.; Selvan, R. Kalai; Sanjeeviraja, C.; Semionkin, V. A.
2010Magnetic fluid: Comparative study of nanosized Fe3O4 and Fe3O4 suspended in Copaiba oil using Mossbauer spectroscopy with a high velocity resolutionOshtrakh, M. I.; Rodriguez, A. F. R.; Semionkin, V. A.; Santos, J. G.; Milder, O. B.; Silveira, L. B.; Marmolejo, E. M.; Ushakov, M. V.; de Souza-Parise, M.; Morais, P. C.
2013Magnetite nanoparticles as-prepared and dispersed in Copaiba oil: Study using magnetic measurements and Mössbauer spectroscopyOshtrakh, M. I.; Ushakov, M. V.; Semenova, A. S.; Kellerman, D. G.; Šepelák, V.; Rodriguez, A. F. R.; Semionkin, V. A.; Morais, P. C.
1986MOSSBAUER-SPECTROSCOPY OF HEMOGLOBINS - STUDY OF THE RELATIONSHIP OF FE-2+ ELECTRONIC AND MOLECULAR-STRUCTURE OF THE ACTIVE-SITEOshtrakh, M. I.; Semionkin, V. A.