Главная
Авторизация
Фамилия
Пароль
 

Базы данных


Труды сотрудников ИФ СО РАН - результаты поиска

Вид поиска

Область поиска
в найденном
 Найдено в других БД:Каталог книг и брошюр библиотеки ИФ СО РАН (1)
Формат представления найденных документов:
полныйинформационный краткий
Отсортировать найденные документы по:
авторузаглавиюгоду изданиятипу документа
Поисковый запрос: (<.>A=Тарасов, Иван Анатольевич$<.>)
Общее количество найденных документов : 139
Показаны документы с 1 по 20
 1-20    21-40   41-60   61-80   81-100   101-120      
1.

Prediction of orientation relationships and interface structures between α-, β-, γ-FeSi2 and Si phases/M. A. Visotin, I. A. Tarasov, A. S. Fedorov [et al.] // Acta Crystallographica Section B: Structural Science, Crystal Engineering and Materials, 2020. т.Vol. 76.-С.469-482
2.

Synthesis and properties of Fe–Si magnetic nanoparticles for biomedical applications/I. A. Yakovlev, I. A. Tarasov, D. A. Velikanov [et al.] // Euro-asian symposium "Trends in magnetism" (EASTMAG-2019), 2019,N Vol. 2.- Ст.M.O1.-С.478
3.

Tarasov I. A. α-FeSi2 as a buffer layer for β-FeSi2 growth: analysis of orientation relationships in silicide/Silicon, silicide/silicide heterointerfaces/I. A. Tarasov, I. A. Bondarev, A. I. Romanenko // Journal of Surface Investigation, 2020. т.Vol. 14,N Is. 4.-С.851-861
4.

Tailoring the preferable orientation relationship and shape of α-FeSi2nanocrystals on Si(001): The impact of gold and the Si/Fe flux ratio, and the origin of α/Si boundaries/I. A. Tarasov, T. E. Smolyarova, I. V. Nemtsev [et al.] // CrystEngComm, 2020. т.Vol. 22,N Is. 23.-С.3943-3955
5.

Rautskii M. V. Magnetic properties of α-FeSi2 iron silicide nanocrystal with different preferred orientation/M. V. Rautskii, I. A. Tarasov, I. A. Yakovlev // Euro-asian symposium "Trends in magnetism" (EASTMAG-2019), 2019,N Vol. 1.- Ст.C.P39.-С.334
6.

Study of lateral photovoltaic effect in Mn/SlO2/n-SI hybrid structure/M. V. Rautskii [et al.] // Euro-asian symposium "Trends in magnetism" (EASTMAG-2019), 2019,N Vol. 1.- Ст.A.P16.-С.105
7.

Magneto-optical activity of Fe3Si-Au based magnetoplasmonic nanostructures/I. A. Tarasov [et al.] // Euro-asian symposium "Trends in magnetism" (EASTMAG-2019), 2019,N Vol. 1.- Ст.E.P12.-С.441
8.

Способ получения нанокристаллов силицида железа α-FeSi 2 с изменяемой преимущественной ориентацией/И. А. Тарасов [и др.] // Изобретения. Полезные модели, 2019. т.№ 8
9.

Iron disilicide lattice thermal expansion coefficients from first principle calculations/M. A. Pugachevskii, A. N. Chibisov, A. S. Fedorov // The Fifth Asian School-Conference on Physics and Technology of Nanostructured Materials. -VLadivostok:Dalnauka Publishing, 2020.- Ст.III.31.04o.-С.83
10.

Microsphere lithography for Fe3Si-Au magnetoplasmonic nanostructures/T. E. Smolyarova, I. A. Tarasov, I. A. Yakovlev [et al.] // Nanostructures: physics and technology, 2020.- Ст.NT.15.-С.98-99
11.

Modification of optical and magneto-optical response of highly textured Au3Fe1-x/Fe Janus-like nanocrystals grown on amorphous silicon dioxide surface/Ivan Tarasov, Tatyana Smolyarova, Ivan Yakovlev, Ivan Nemtsev, Sergey Varnakov and Sergey Ovchinnikov // An International Online Workshop on the properties of Functional MAX-materials (1st FunMAX Workshop 2020), 2020.-С.22
12.

Growth of α-FeSi2 nanocrystals on silicon surface: the impact of gold and the Si/Fe flux ratio, the origin and the prediction of α/Si orientation relationships and interface structures/I. A. Tarasov, M. A. Visotin, S. N. Varnakov [et al.] ; чл. орг. ком.: M. Farle [et al.] ; секр. орг. ком. T. E. Smolyarova // International workshop on functional MAX-materials (1st FunMax), 2020.-С.11
13.

Visotin M. A. Approach for prediction of orientation relationships and interface structures and its application to α-, β-, γ-FeSi2 and Si/M. A. Visotin, I. A. Tarasov // Nanostructures: physics and technology, 2020.- Ст.NC.13.-С.152-153
14.

Magnetic and transport properties of trilayered Fe3Si/Ge/Fe3Si hybrid structures synthesized on Si(111)/A. S. Tarasov, I. A. Bondarev, M. V. Rautskii [et al.] // The Fifth Asian School-Conference on Physics and Technology of Nanostructured Materials. -VLadivostok:Dalnauka Publishing, 2020.- Ст.IV.03.07o.-С.107
15.

Growth and thermoelectric properties of composite thin films based on higher iron and manganese silicides/I. A. Tarasov, I. A. Yakovlev, M. N. Volochaev [et al.] // The Fifth Asian School-Conference on Physics and Technology of Nanostructured Materials. -VLadivostok:Dalnauka Publishing, 2020.- Ст.III.30.04p.-С.90
16.

Prediction of formation of competing phases during the growth of (Mn1-xCrx)2GaC thin films on MgO(111) with the use of effective heat of formation model and near coincidence site lattice approaches/Zoya Nazarova, Alexander Nazarov, Ivan Tarasov, Maxim Visotin, Sergey Varnakov and Sergey Ovchinnikov // An International Online Workshop on the properties of Functional MAX-materials (1st FunMAX Workshop 2020), 2020.-С.19
17.

The Fe-Si-Au magnetic Janus particles for biomedical applications/S. A. Lyashchenko, I. A. Yakovlev, I. A. Tarasov [et al.] // The Fifth Asian School-Conference on Physics and Technology of Nanostructured Materials. -VLadivostok:Dalnauka Publishing, 2020.- Ст.VII.31.02p.-С.194
18.

Ultrahigh vacuum apparatus for the synthesis and in situ investigation of ferromagnetic nanostructures by the method of spectral magneto-ellipsometry in a wide temperature range/D. V. Shvetsov [et al.] // Nanostructures: physics and technology, 2018.-С.163-164
19.

Measurements of the optical and magneto-optical properties of Fe-Si layer structures at different temperatures/S. A. Lyashchenko [et al.] // Fourth Asian school-conference on physics and technology of nanostructured materials (ASCO-NANOMAT 2018), 2018.- Ст.III.24.05p.-С.139
20.

Size-controllable growth of Au3Fe(111)/Fe(110) hybrid nanocrystals by MBE/I. A. Tarasov [et al.] // Nanostructures: physics and technology, 2018.-С.211-212
 1-20    21-40   41-60   61-80   81-100   101-120      
 

Другие библиотеки

© Международная Ассоциация пользователей и разработчиков электронных библиотек и новых информационных технологий
(Ассоциация ЭБНИТ)