1
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Balaev D.A.
,
Poperechny I.S.
,
Krasikov A.A.
,
Semenov S.V.
,
Popkov S.I.
,
Knyazev Y.V.
,
Kirillov V.L.
,
Yakushkin S.S.
,
Martyanov O.N.
,
Raikher Y.L.
Dynamic Remagnetisation of CoFe2O4 Nanoparticles:Thermal Fluctuational Thawing of Anisotropy
Journal of Physics D: Applied Physics. 2021.
V.54. N27. 275003
:1-11. DOI: 10.1088/1361-6463/abf371
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РИНЦ
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2
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Balaev D.A.
,
Krasikov A.A.
,
Popkov S.I.
,
Semenov S.V.
,
Volochaev M.N.
,
Velikanov D.A.
,
Kirillov V.L.
,
Martyanov O.N.
Uncompensated Magnetic Moment and Surface and Size Effects in Few-Nanometer Antiferromagnetic NiO Particles
Journal of Magnetism and Magnetic Materials. 2021.
V.539. 168343
:1-9. DOI: 10.1016/j.jmmm.2021.168343
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Scopus
РИНЦ
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3
|
Balaev D.A.
,
Semenov S.V.
,
Dubrovskii A.A.
,
Krasikov A.A.
,
Popkov S.I.
,
Yakushkin S.S.
,
Kirillov V.L.
,
Mart’yanov O.N.
Synthesis and Magnetic Properties of the Core–Shell Fe3O4/CoFe2O4 Nanoparticles
Physics of the Solid State. 2020.
V.62. N2. P.285-290. DOI: 10.1134/s1063783420020043
WOS
Scopus
РИНЦ
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4
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Popkov S.I.
,
Krasikov A.A.
,
Semenov S.V.
,
Dubrovskii A.A.
,
Yakushkin S.S.
,
Kirillov V.L.
,
Mart’yanov O.N.
,
Balaev D.A.
Features of the Pulsed Magnetization Switching in a High-Coercivity Material Based on ε-Fe2O3 Nanoparticles
Physics of the Solid State. 2020.
V.62. N3. P.445-453. DOI: 10.1134/S1063783420030166
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РИНЦ
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5
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Balaev D.A.
,
Krasikov A.A.
,
Popkov S.I.
,
Dubrovskiy A.A.
,
Semenov S.V.
,
Velikanov D.A.
,
Kirillov V.L.
,
Martyanov O.N.
Features of the Quasi-Static and Dynamic Magnetization Switching in NiO Nanoparticles: Manifestation of the Interaction between Magnetic Subsystems in Antiferromagnetic Nanoparticles
Journal of Magnetism and Magnetic Materials. 2020.
V.515. 167307
:1-13. DOI: 10.1016/j.jmmm.2020.167307
WOS
Scopus
РИНЦ
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6
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Popkov S.I.
,
Krasikov A.A.
,
Semenov S.V.
,
Dubrovskii A.A.
,
Yakushkin S.S.
,
Kirillov V.L.
,
Mart’yanov O.N.
,
Balaev D.A.
General Regularities and Differences in the Behavior of the Dynamic Magnetization Switching of Ferrimagnetic (CoFe2O4) and Antiferromagnetic (NiO) Nanoparticles
Physics of the Solid State. 2020.
V.62. N9. P.1518-1524. DOI: 10.1134/S1063783420090255
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Scopus
РИНЦ
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7
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Balaev D.A.
,
Krasikov A.A.
,
Dubrovskiy A.A.
,
Balaev A.D.
,
Popkov S.I.
,
Kirillov V.L.
,
Martyanov O.N.
Dynamic Magnetization Switching in NiO Nanoparticles: Pulsed Field Magnetometry Study
Journal of Superconductivity and Novel Magnetism. 2019.
V.32. N2. P.405-411. DOI: 10.1007/s10948-018-4726-4
WOS
Scopus
РИНЦ
РИНЦ
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8
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Popkov S.I.
,
Krasikov A.A.
,
Velikanov D.A.
,
Kirillov V.L.
,
Martyanov O.N.
,
Balaev D.A.
Formation of the Magnetic Subsystems in Antiferromagnetic NiO Nanoparticles Using the Data of Magnetic Measurements in Fields up to 250 kOe
Journal of Magnetism and Magnetic Materials. 2019.
V.483. P.21-26. DOI: 10.1016/j.jmmm.2019.03.004
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Scopus
РИНЦ
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9
|
Popkov S.I.
,
Krasikov A.A.
,
Dubrovskiy A.A.
,
Volochaev M.N.
,
Kirillov V.L.
,
Martyanov O.N.
,
Balaev D.A.
Size Effects in the Formation of an Uncompensated Ferromagnetic Moment in NiO Nanoparticles
Journal of Applied Physics. 2019.
V.126. N10. 103904
:1-8. DOI: 10.1063/1.5109054
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Scopus
РИНЦ
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10
|
Dubrovskiy A.A.
,
Semenov S.V.
,
Knyazev Y.V.
,
Popkov S.I.
,
Yakushkin S.S.
,
Kirillov V.L.
,
Martyanov O.N.
,
Balaev D.A.
The Low-Temperature Magnetic State and Magnetic Ordering Temperature of ε-Fe2O3 Iron Oxide Nanoparticles
IEEE Magnetics Letters. 2019.
V.10. 6110103
:1-3. DOI: 10.1109/LMAG.2019.2956674
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РИНЦ
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11
|
Balaev D.A.
,
Dubrovskiy A.A.
,
Krasikov A.A.
,
Popkov S.I.
,
Balaev A.D.
,
Shaikhutdinov K.A.
,
Kirillov V.L.
,
Mart’yanov O.N.
Magnetic Properties of NiO Nano Particles: Contributions of the Antiferromagnetic and Ferromagnetic Subsystems
in Different Magnetic Field Ranges up to 250 kOe
Physics of the Solid State. 2017.
V.59. N8. P.1547-1552. DOI: 10.1134/S1063783417080029
WOS
Scopus
РИНЦ
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12
|
Balaev D.A.
,
Poperechny I.S.
,
Krasikov A.A.
,
Shaikhutdinov K.A.
,
Dubrovskiy A.A.
,
Popkov S.I.
,
Balaev A.D.
,
Yakushkin S.S.
,
Bukhtiyarova G.A.
,
Martyanov O.N.
,
Raikher Y.L.
Dynamic Magnetization of ε-Fe2O3 in Pulse Field: Evidence of Ssurface Effect
Journal of Applied Physics. 2015.
V.117. P.063908. DOI: 10.1063/1.4907586
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РИНЦ
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13
|
Tkachev E.N.
,
Buryakov T.I.
,
Kuznetsov V.L.
,
Moseenkov S.I.
,
Mazov I.N.
,
Popkov S.I.
,
Shaikhutdinov K.A.
Current-Conducting Properties of Paper Consisting of Multiwall Carbon Nanotubes
Journal of Experimental and Theoretical Physics. 2013.
V.116. N5. P.860-865. DOI: 10.1134/S1063776113050257
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РИНЦ
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14
|
Balaev D.A.
,
Dubrovskiy A.A.
,
Popkov S.I.
,
Shaikhutdinov K.A.
,
Mart'yanov O.N.
,
Petrov M.I.
Nonmonotonic Behavior of Magnetoresistance, R(H) Hysteresis, and Low-Temperature Heat Capacity of the BaPb0.75Bi0.25O 3 Superconductor in a Magnetic Field: Possible Manifestations of Phase Separation
Journal of Experimental and Theoretical Physics. 2010.
V.110. N4. P.584-593. DOI: 10.1134/S1063776110040059
WOS
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РИНЦ
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15
|
Petrov M.I.
,
Balaev D.A.
,
Belozerova I.L.
,
Popkov S.I.
,
Dubrovskii A.A.
,
Shaykhutdinov K.A.
,
Martʹyanov O.N.
Increase in the Diamagnetic Response from Low-Density Bi1.8Pb0.3Sr1.9Ca2Cu3Ox High-Temperature Superconductors and Bi1.8Pb0.3Sr1.9Ca2Cu3Ox + Ag Composites
Technical Physics.. 2009.
V.54. N8. P.1130-1134. DOI: 10.1134/S1063784209080064
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РИНЦ
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16
|
Petrov M.I.
,
Belozerova I.L.
,
Shaikhutdinov K.A.
,
Balaev D.A.
,
Dubrovskii A.A.
,
Popkov S.I.
,
Vasilʹev A.D.
,
Martyanov O.N.
Preparation, Microstructure, Magnetic and Transport Properties of Bulk Textured Bi1.8Pb0.3Sr1.9Ca2Cu 3Ox and Bi1.8Pb0.3Sr 1.9Ca2Cu3Ox+Ag Ceramics
Superconductor Science & Technology. 2008.
V.21. N10. P.105019. DOI: 10.1088/0953-2048/21/10/105019
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РИНЦ
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17
|
Shaykhutdinov K.A.
,
Balaev D.A.
,
Popkov S.I.
,
Vasilyev A.D.
,
Martyanov O.N.
,
Petrov M.I.
Thermally Activated Dissipation in a Novel Foamed Bi-Based Oxide superconductor in Magnetic Fields
Superconductor Science & Technology. 2007.
V.20. N6. P.491-494. DOI: 10.1088/0953-2048/20/6/001
WOS
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РИНЦ
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18
|
Petrov M.I.
,
Balaev D.A.
,
Belozerova I.L.
,
Vasilʹev A.D.
,
Gokhfelʹd D.M.
,
Martyanov O.N.
,
Popkov S.I.
,
Shaihutdinov K.A.
Highly Textured Bismuth-Containing High-Temperature Superconductor Ceramics Obtained by Uniaxial Pressing in Liquid Medium: Fabrication and Properties
Technical Physics Letters. 2007.
V.33. N9. P.740-743. DOI: 10.1134/S1063785007090088
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Scopus
РИНЦ
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