Гудкова Светлана Александровна

Кандидат физико-математических наук
E-mail: 
gudkovasa[at]susu[dot]ru
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РИНЦ: SPIN-код, Author ID
Scopus ID: 24490789300
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Статьи и монографии за последние три года: 
CORRELATION BETWEEN CHEMICAL COMPOSITION AND CURIE TEMPERATURE OF A NICKEL-COBALT FERRITE / Sherstyuk, D. //Journal of Structural Chemistry.–2023.–Vol. 64 No. 9.– P.1743-1750
High entropy BaFe12-x(Ti/Mn/Ga/In)xO19 (x = 1–7) oxides: Correlation of the composition, entropy state, magnetic characteristics, and terahertz properties / Y.. Yao //Ceramics International.–2023.–Vol. 49 No. 19.– P.31549-31558
Magnetic and Terahertz–Infrared Properties of Nanodispersed Hexaferrite SrxBa(1−x)Fe12O19 Solid Solutions / Kovalev, A. //Crystals.–2023.–Vol. 13 No. 9
Synthesis and IR Spectroscopy of High-Entropy Ceramics with Magnetoplumbite Structure / Vinnik, D. //Journal of Structural Chemistry.–2023.–Vol. 64 No. 6.– P.1040-1048
SYNTHESIS OF PBFE2.4X2.4Y2.4GA2.4IN2.4O19 HIGH-ENTROPY OXIDES WITH THE MAGNETOPLUMBITE STRUCTURE / Zaitseva, O. //Nanosystems: Physics, Chemistry, Mathematics.–2023.–Vol. 14 No. 3.– P.354-362
Wake-Up Free Ultrathin Ferroelectric Hf0.5Zr0.5O2 Films / A.A. Chouprik //Nanomaterials.–2023.–Vol. 13 No. 21
Влияние добавок титана и марганца на поверхностную сегрегацию бария в его гексаферритах / Л.А. Песин //Журнал структурной химии (*англ. Journal of Structural Chemistry).–2023.–Том 64 № 12
КОРРЕЛЯЦИЯ МЕЖДУ ХИМИЧЕСКИМ СОСТАВОМ И ТЕМПЕРАТУРОЙ КЮРИ НИКЕЛЬ-КОБАЛЬТОВОГО ФЕРРИТА / Д. Шерстюк //Журнал структурной химии (*англ. Journal of Structural Chemistry).–2023.–Том 64 № 9
A-site cation size effect on structure and magnetic properties of Sm(Eu,Gd)Cr0.2Mn0.2Fe0.2CO0.2Ni0.2O3 high-entropy solid solutions / Vinnik, D. //Nanomaterials.–2022.–Vol. 12 No. 1
Impact of the A-site rare-earth ions (Ln3+ – Sm3+, Eu3+, Gd3+) on structure and electrical properties of the high entropy LnCr0.2Mn0.2Fe0.2Co0.2Ni0.2O3 perovskites / Zhivulin, V. //Ceramics International.–2022.–Vol. 48 No. 7.– P.9239-9247
Impact of the Zn–Co content on structural and magnetic characteristics of the Ni spinel ferrites / Vinnik, D. //Ceramics International.–2022.–Vol. 48 No. 13.– P.18124-18133
Effect of Co content on magnetic features and SPIN states IN Ni–Zn spinel ferrites / Sherstyuk, D. //Ceramics International.–2021.–Vol. 47 No. 9.– P.12163-12169
Effect of titanium substitution and temperature variation on structure and magnetic state of barium hexaferrites / Vinnik, D. //Journal of Alloys and Compounds.–2021.–Vol. 859
Electromagnetic properties of zinc-nickel ferrites in the frequency range of 0.05-10 GHz / Vinnik, D. //Materials Today Chemistry.–2021.–Vol. 20
Ferrite-Based Solid Solutions: Structure Types, Preparation, Properties, and Potential Applications / Vinnik, D. //Inorganic Materials.–2021.–Vol. 57 No. 11.– P.1109-1118
Impact of Al3+ ions on magnetic and microwave properties of BaM:Ti hexaferrites / Zhivulin, V. //Journal of Materials Research and Technology.–2021.–Vol. 11.– P.2235-2245
New high-entropy oxide phases with the magnetoplumbite structure / Zhivulin, V. //IOP Conference Series: Materials Science and Engineering.–2021.–Vol. 1014
New high-entropy oxide phases with the perovskite structure / Zaitseva, O. //IOP Conference Series: Materials Science and Engineering.–2021.–Vol. 1014 No. 1
Ni substitution effect on the structure, magnetization, resistivity and permeability of zinc ferrites / Vinnik, D. //Journal of Materials Chemistry C.–2021.–Vol. 9 No. 16.– P.5425-5436
Polysubstituted high-entropy [land](Cr0.2 mn0.2 fe0.2 co0.2 ni0.2)o3 perovskites: Correlation of the electrical and magnetic properties / Zhivulin, V. //Nanomaterials.–2021.–Vol. 11 No. 4
Correlation between entropy state, crystal structure, magnetic and electrical properties in M-type Ba-hexaferrites / Vinnik, D.A //Journal of the European Ceramic Society.–2020
Crystal growth, structural characteristics and electronic structure of Ba1-xPbxFe12O19 (x = 0.23–0.80) hexaferrites / Vinnik, D. //Journal of Alloys and Compounds.–2020.–Vol. 844
Early-Stage Growth Mechanism and Synthesis Conditions-Dependent Morphology of Nanocrystalline Bi Films Electrodeposited from Perchlorate Electrolyte / Tishkevich, D. //Nanomaterials.–2020.–Vol. 10 No. 6
Effect of treatment conditions on structure and magnetodielectric properties of barium hexaferrites / Vinnik, D. //Journal of Magnetism and Magnetic Materials.–2020.–Vol. 498 No. -
High entropy oxide phases with perovskite structure / Vinnik, D.A //Nanomaterials.–2020.–Vol. 10 No. 2
Influence of titanium substitution on structure, magnetic and electric properties of barium hexaferrites BaFe12−xTixO19 / Vinnik, D. //Journal of Magnetism and Magnetic Materials.–2020.–Vol. 498 No. -
Sub-lattice of Jahn-Teller centers in hexaferrite crystal / Gudkov, V.V //Scientific Reports.–2020.–Vol. 10 No. 1
Terahertz-infrared spectroscopy of Ti4+-doped M-type barium hexaferrite / L.. Alyabyeva //Journal of Alloys and Compounds.–2020.–Vol. 820 No. -
The effect of heat treatment on the microstructure and mechanical properties of 2D nanostructured Au/NiFe system / Zubar, T. //Nanomaterials.–2020.–Vol. 10 No. 6
The new extremely substituted high entropy (Ba,Sr,Ca,La)Fe6-x(Al,Ti,Cr,Ga,In,Cu,W)xO19 microcrystals with magnetoplumbite structure / Vinnik, D.A //Ceramics International.–2020.–Vol. 46 No. 7.– P.9656-9660
Твердофазный синтез многокомпонентной керамики (Mg,Ca,Ba,Sr,Pb,Al,Ti,Nb)O3 со структурой перовскита / В.Е. Живулин //Вестник Южно-Уральского государственного университета. Серия «Химия».–2020.–Том 12 № 3.– C.108-115
Extremely Polysubstituted Magnetic Material Based on Magnetoplumbite with a Hexagonal Structure: Synthesis, Structure, Properties, Prospects / Vinnik, D. //Nanomaterials.–2019.–Vol. 9 No. 4
Flux single crystal growth of M-type strontium hexaferrite SrFe12O19 by spontaneous crystallization / Vinnik, D.A //Journal of Magnetism and Magnetic Materials.–2019.–Vol. 470 No. -.– P.97-100
Gudkova, S. Powder Diffraction and Dilatometric Study of SrFe12O19 / S.. Gudkova, D.. Uchaev, D.. Vinnik //Materials Science Forum.–2019.–Vol. 946.– P.336-340
High-entropy oxide phases with magnetoplumbite structure / Vinnik, D.A //Ceramics International.–2019.–Vol. 45 No. 10.– P.12942-12948
Influence of chemical substitution on broadband dielectric response of barium-lead M-type hexaferrite / L.N. Alyabyeva //NEW JOURNAL OF PHYSICS.–2019.–Vol. 21 No. -
Preparation and investigation of the magnetoelectric properties in layered cermet structures / A.. Stognij //Ceramics International.–2019.–Vol. 45 No. 10.– P.13030-13036
Synthesis, structure and properties of barium and barium lead hexaferrite / Gudkova, S.A //Journal of Magnetism and Magnetic Materials.–2019.–Vol. 470 No. -.– P.101-104
Terahertz-infrared spectroscopy of single crystalline m-type hexaferrite BaTixFe12-xO19 / S.. Yegiyan //Journal of Physics: Conference Series.–2019.–Vol. 1389
Твердофазный синтез высокоэнтропийных кристаллов со структурой магнетоплюмбита в системе BaO-Fe2O3-TiO2-Al2O3-In2O3-Ga2O3-Cr2O3 / Д.А. Винник //Вестник Южно-Уральского государственного университета. Серия: Химия.–2019.–Том 11 № 3.– C.32-39
Anomalies in Ni-Fe nanogranular films growth / T.I. Zubar //Journal of Alloys and Compounds.–2018.–Vol. 748.– P.970-978
Bi-relaxor behavior and Fe2+fine structure in single crystalline Ba0.3Pb0.7Fe12O19M-type hexaferrite / A.. Alyabyeva //International Conference on Infrared, Millimeter, and Terahertz Waves, IRMMW-THz.–2018.–Vol. 2018-September, 25 October 2018
ELECTROMAGNETIC PROPERTIES OF BaFe12O19:Ti AT CENTIMETER WAVELENGTHS / Vinnik, D.A //Journal of Alloys and Compounds.–2018.–Vol. 755.– P.177-183
Magnetic and dipole moments in indium doped barium hexaferrites / S.V. Trukhanov //Journal of Magnetism and Magnetic Materials.–2018.–Vol. 457.– P.83-96
Magnetotransport properties and phase separation in iron substituted lanthanum-calcium manganite / Trukhanov, S.V //Materials Research Express.–2018.–Vol. 5(8)
Measurement of permittivity and permeability of barium hexaferrite / Klygach, D.S //Journal of Magnetism and Magnetic Materials.–2018.–Vol. 465.– P.290-294
Morphology and magnetic properties of pressed barium hexaferrite BaFe12O19 materials / Vinnik, D.A //Journal of Magnetism and Magnetic Materials.–2018.–Vol. 459.– P.131-135
Polar soft mode in titanium-doped single crystalline BaFe12-xTixO19 M-type hexaferrite / L.. Alyabyeva //2018 43RD INTERNATIONAL CONFERENCE ON INFRARED, MILLIMETER, AND TERAHERTZ WAVES (IRMMW-THZ).–2018.–Vol. 2018-September
Polarization origin and iron positions in indium doped barium hexaferrites / S.V. Trukhanov //Ceramics International.–2018.–Vol. 44-1.– P.290-300
Preparation and investigation of structure, magnetic and dielectric properties of (BaFe11.9Al0.1O19)1-x - (BaTiO3)x bicomponent ceramics / Trukhanov, S.V //Ceramics International.–2018.–Vol. 44 No. 17.– P.21295-21302
Temperature evolution of the structure parameters and exchange interactions in BaFe12−xInxO19 / Trukhanov, S.V //Journal of Magnetism and Magnetic Materials.–2018.–Vol. 466(15).– P.393-405
Terahertz-infrared electrodynamics of lead-doped single crystalline Bal-xPbxFel2019 M-type hexagonal ferrite / L.. Alyabyeva //International Conference on Infrared, Millimeter, and Terahertz Waves, IRMMW-THz.–2018.–Vol. 2018-September, 25 October 2018
Фазовые равновесия, реализующиеся в оксидных системах, включающих ферриты бария / Е.А. Трофимов //НОВБЫТХИМ.–2018.– C.118-118
Gudkova, S.A The thermal expansion of solid state Bafe12O19 and Flux Ba0.8Pb0.2Fe12O19 pellets / S.A. Gudkova, A.S. Chernukha, D.A. Vinnik //Solid State Phenomena.–2017.–Vol. 265.– P.906-910
Magnetic and structural properties of barium hexaferrite BaFe12O19 from various growth techniques / Vinnik, D.A //Materials.–2017.–Vol. 10(6)
Millimeter-wave characterization of aluminum substituted barium lead hexaferrite single crystals grown from PbO–B2O3 flux / Vinnik, D.A //Ceramics International.–2017.–Vol. 43.– P.15800-15804
Three Oxidation States of Manganese in the Barium Hexaferrite BaFe12-xMnxO19 / Nemrava Sandra //Inorganic Chemistry.–2017.–Vol. 56(7).– P.3861-3866
Zeyde Kirill Investigation of barium hexaferrite BaFe12O19 electro physical parameters using open-ended coaxial probe method / Zeyde Kirill, S.A. Gudkova, D.A. Vinnik //Solid State Phenomena.–2017.–Vol. 265.– P.834-838
Повышение квалификации: 
Лингвистическая подготовка «Лингва», чтение лекций на английском языке(EMI) (70 ч., 2018 г.)
Лингвистическая подготовка «Лингва». Уровень С1 (170 ч., 2018 г.)
дополнительная лингвистическая подготовка «ЛИНГВА», уровень С1 (240 ч., 2017 г.)
Нанотехнология и нанодиагностика. Особенности реализации программы в рамках новых ФГОС третьего поколения (72 ч., 2011 г.)
Проблемы подготовки кадров в области нанотехнологий и нанометрологии. Использование современной аналитической и технологической базы (72 ч., 2011 г.)
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