Search Results - "Presnyakov, I. A."
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Electric Polarization in the BiMn7O12 Quadruple Manganite: A 57Fe Probe Mössbauer Investigation
Published in Journal of experimental and theoretical physics (2023)“…The electrical hyperfine interactions of the probe 57 Fe nuclides localized in the structure of the quadruple manganite BiMn 7 O 12 are studied by Mössbauer…”
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Erratum to: Electric Polarization in the BiMn7O12Quadruple Manganite: A57Fe Probe Mössbauer Investigation
Published in Journal of experimental and theoretical physics (2023)“…An Erratum to this paper has been published: https://doi.org/10.1134/S1063776123070142…”
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Synthesis, Ionic, and Phase Compositions of Ferrogarnet Y2.5Ce0.5Fe2.5Ga2.5O12
Published in Russian journal of inorganic chemistry (01-07-2023)“…X-ray powder diffraction, X-ray photoelectron, and Mössbauer spectroscopy are used to study the ionic and phase compositions of samples of powdered ferrogarnet…”
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Many-Electron Effects in Co 3s X-Ray Photoelectron Spectra of Diamagnetic ScCoO3 and Paramagnetic BiCoO3 Cobaltites
Published in JETP letters (01-04-2020)“…A new method based on the solution of the Dyson equation in the basis of atomic wavefunctions has been developed to quantitatively describe the influence of…”
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5
Magnetic Hyperfine Interactions of 57Fe Probe Atoms in the CaCuxMn7 –xO12 (0 ≤ x ≤ 1) Manganites
Published in Journal of experimental and theoretical physics (2021)“…Magnetic and Mössbauer measurements are performed on the nuclei of 57 Fe probe atoms in the structure of the substituted CaCu x Mn 6.96 – x 57 Fe 0.04 O 12 (0…”
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Mössbauer study of the modulated magnetic structure of FeVO4
Published in Journal of experimental and theoretical physics (01-06-2017)“…Mössbauer spectroscopy is used to study the FeVO 4 multiferroic, which undergoes two magnetic phase transitions at T N 1 ≈ 22 K and T N 2 ≈ 15 K. The first…”
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Synthesis and Study of (Sr,La)2FeCo0.5Mo0.5O6 − δ Oxides with Double Perovskite Structure
Published in Russian journal of inorganic chemistry (01-06-2019)“…Complex oxides Sr 2 − x La x FeCo 0.5 Mo 0.5 O 6 − δ , ( x = 0.2, 0.4; δ ≈ 0.03–0.15) have been first synthesized by the sol-gel method. Their crystal…”
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Synthesis and physicochemical properties of N-decylpyridinium salts with inorganic anions
Published in Russian journal of general chemistry (01-09-2016)“…Ionic liquids with N -decylpyridinium cation and inorganic anions SO 4 2– , NO 3 – , SCN – , NO 2 – , BF 4 – were synthesized. The structure and composition of…”
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9
X-ray photoelectron spectroscopy of FeP phosphide
Published in Journal of experimental and theoretical physics (01-02-2017)“…The structure of the outer and inner electron spectra of iron (2 p , 3 p , 3 s , and 3 d ) and phosphorus (3 s and 3 p ) atoms in FeP monophosphide is studied…”
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The synthesis of Fe3O4 spherical particles with defined size in a liquid medium
Published in Russian chemical bulletin (01-03-2016)“…A method for the preparation of nanoand submicron spherical particles of magnetite which form agglomerates was described. At varying the reaction conditions,…”
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Erratum to: Electric Polarization in the BiMn7O12 Quadruple Manganite: A 57Fe Probe Mössbauer Investigation
Published in Journal of experimental and theoretical physics (01-07-2023)Get full text
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12
Erratum to: Electric Polarization in the BiMn.sub.7O.sub.12Quadruple Manganite: A.sup.57Fe Probe Mössbauer Investigation
Published in Journal of experimental and theoretical physics (01-07-2023)“…An Erratum to this paper has been published:…”
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13
Electric Polarization in the BiMn.sub.7O.sub.12 Quadruple Manganite: A .sup.57Fe Probe Mössbauer Investigation
Published in Journal of experimental and theoretical physics (01-05-2023)“…The electrical hyperfine interactions of the probe .sup.57Fe nuclides localized in the structure of the quadruple manganite BiMn.sub.7O.sub.12 are studied by…”
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14
Heterovalent substitution of group IV and V diamagnetic ions in the ferromagnetic spinel CuCr2S4
Published in Inorganic materials (01-04-2000)“…Heterovalent substitution of As5+, Sb5+, V5+, and Sn4+ diamagnetic ions in CuCr2S4 was studied. The results show that, similar to other 3d10 diamagnetic ions,…”
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15
Electronic Structure of Cobaltites ScCo1 –xFexO3 (x = 0, 0.05) and BiCoO3: X-Ray Photoelectron Spectroscopy
Published in Journal of experimental and theoretical physics (01-06-2019)“…The electronic structure of the Co 3+ cations in perovskite cobaltites Sc 1 – y Co 1 – x Fe x O 3 – (3/2) y ( x = 0, 0.05; y = 0.1) and BiCoO 3 has been…”
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Electronic Structure of Cobaltites ScCo{sub 1 –x}Fe{sub x}O{sub 3} (x = 0, 0.05) and BiCoO{sub 3}: X-Ray Photoelectron Spectroscopy
Published in Journal of experimental and theoretical physics (15-06-2019)“…The electronic structure of the Co{sup 3+} cations in perovskite cobaltites Sc{sub 1 –y}Co{sub 1 –x}Fe{sub x}O{sub 3 – (3/2)y} (x = 0, 0.05; y = 0.1) and…”
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17
Electronic Structure of Cobaltites ScCo1 – x Fe x O3 (x = 0, 0.05) and BiCoO3: X-Ray Photoelectron Spectroscopy
Published in Journal of experimental and theoretical physics (01-01-2019)“…The electronic structure of the Co3+ cations in perovskite cobaltites Sc1 –yCo1 –xFexO3 – (3/2)y (x = 0, 0.05; y = 0.1) and BiCoO3 has been studied by X-ray…”
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18
Synthesis of zinc sulfide nanoparticles in an ionic liquid, N-decylpyridinium tetrafluoroborate
Published in Russian journal of applied chemistry (01-06-2015)“…Method for obtaining zinc sulfide nanoparticles, “quantum dots,” in an ionic liquid, N -decylpyridinium tetrafluoroborate, is suggested. The average size and…”
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19
Mössbauer study of the modulated magnetic structure of FeVO{sub 4}
Published in Journal of experimental and theoretical physics (15-06-2017)“…Mössbauer spectroscopy is used to study the FeVO{sub 4} multiferroic, which undergoes two magnetic phase transitions at T{sub N1} ≈ 22 K and T{sub N2} ≈ 15 K…”
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20
The structural state of iron in multicomponent aluminum iron borosilicate glass depending on their composition and synthesis conditions
Published in Glass physics and chemistry (01-07-2015)“…The oxidation states and coordination environment of iron ions in borosilicate glass used for the immobilization of iron-containing radioactive waste are…”
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