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С. Є. Литвин
С. Є. Литвин
Другие именаLytvyn Stanislav Ye
Інститут електрозварювання ім. Є. О. Патона
Подтвержден адрес электронной почты в домене paton-icebt.kiev.ua
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Процитировано
Год
Структура, свойства и токсичность наночастиц оксидов серебра и меди
ИН Андрусишина, ИА Голуб, ГГ Дидикин, СЕ Литвин, ТЮ Громовой, ...
Biotechnologia Acta 4 (6), 051-059, 2011
272011
Physical synthesis of iron oxide nanoparticles and their biological activity in vivo
YA Kurapov, EM Vazhnichaya, SE Litvin, SM Romanenko, GG Didikin, ...
SN Applied Sciences 1, 1-11, 2019
182019
Structure, properties and toxicity of nanoparticles of silver and copper oxides
IN Andrusishina, IA Golub, GG Didikin, SE Litvin, TY Gromovoy, ...
Biotechnology 4 (6), 51-59, 2011
132011
Structure and thermal stability of Ti–NaCl condensates deposited from the vapour phase in vacuum
YA Kurapov, SE Litvin, SM Romanenko
Nanostructured Materials Sci 1, 55-62, 2013
92013
Synthesis of copper and silver nanoparticles by molecular beam method
Y Kurapov, S Litvin, SM Romanenko, G Didikin, N Belyavina
Micro and Nanosystems 10 (2), 148-157, 2018
82018
Controllable synthesis of iron oxide nanoparticles in porous NaCl matrix
YA Kurapov, SE Litvin, SM Romanenko, GG Didikin, EI Oranskaya
Materials Research Express 4 (3), 035031, 2017
82017
Producing of silver nanoparticles and their thermal stability in Ag− O system
YA Kurapov, LA Krushinskaya, SE Litvin
Poroshk. Metallurgiya 53, 3-4, 2014
82014
Synthesis of pure (ligandless) titanium nanoparticles by EB-PVD method
YA Kurapov, SЕ Litvin, NN Belyavina, EI Oranskaya, SM Romanenko, ...
Journal of Nanoparticle Research 23, 1-13, 2021
62021
Control of the composition and structure of Fe–O nanoparticles during Fe3O4 electron beam evaporation
BA Movchan, YA Kurapov, GG Didikin, SG Litvin, SM Romanenko
Powder Metallurgy and Metal Ceramics 50, 167-172, 2011
62011
Effect of iron concentration on the adsorptive capacity of iron oxi de nanoparticles in the porous NaCl matrixi n relation to atmospheric oxyge n
YA Kurapov, BA Movchan, SE Litvin, GG Didikin, SM Romanenko
No. 1 Volume 9 2011, 29, 2011
62011
Structure of two-phase condensates Cu–NaCl deposited from vapor phase in vacuum
YA Kurapov, SE Litvin, GG Didikin, SM Romanenko
Sovrem. Elektrometall 2, 19-22, 2011
62011
Thermodynamical and structural properties of amorphous Fe80B20 and Fe80P13C7 alloys
VM Pan, I Ya. Dekhtyar, ME Osinovskii, SE Litvin, BG Nikitin, ...
physica status solidi (a) 76 (1), 197-206, 1983
61983
Electron-Beam Physical Vapor Deposition of Iron Nanoparticles and their Thermal Stability in the Fe-O System
YA Kurapov, SY Lytvyn, GG Didikin, SM Romanenko
Powder Metallurgy and Metal Ceramics 60 (7-8), 451-463, 2022
52022
Production and thermal stability of silver nanoparticles in the Ag–O system
YA Kurapov, LA Krushinskaya, SE Litvin, SM Romanenko, YA Stelmakh, ...
Powder Metallurgy and Metal Ceramics 53, 199-204, 2014
52014
Structure of two-phase Cu–NaCl condensates, deposited in vacuum from the vapour phase
YA Kurapov, SE Litvin, GG Didikin, SM Romanenko
Advances in Electrometallurgy 9 (2), 82-86, 2011
42011
Electrical properties of lanthanum-aluminium glass
VM Pan, IV Zolotukhin, SE Litvin, BG Nikitin, AS Shpigel
Phys. Status Solidi A;(German Democratic Republic) 73 (2), 1982
41982
Influence of temperature on the physical properties and bio-activity of pure (ligand-free) EB PVD silver nanoparticles
SY Lytvyn, YA Kurapov, NM Ruban, LN Churkina, IM Andrusyshyna, ...
Applied Nanoscience 13 (7), 5171-5183, 2023
32023
Наночастицы магнетита, полученные способом конденсации молекулярных пучков в вакууме
ЮА Курапов, ГГ Дидикин, СМ Романенко, СЕ Литвин
Современная электрометаллургия, 2009
32009
Cytotoxicity of magnetite nanoparticles deposited in sodium chloride matrix and their functionalized analogues in erythrocytes
S Lytvyn, E Vazhnichaya, Y Kurapov, O Semaka, L Babijchuk, P Zubov
OpenNano 11, 100143, 2023
22023
Физико-химические свойства коллоидных растворов на основе наночастиц серебра с полимерным ядром
ВФ Горчев, АЮ Чунихин, ГГ Дидикин, СЕ Литвин, ИН Андрусишина, ...
Хімія, фізика та технологія поверхні, 397-405, 2013
22013
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