Journal of Modern Physics

Journal of Modern Physics

ISSN Print: 2153-1196
ISSN Online: 2153-120X
www.scirp.org/journal/jmp
E-mail: jmp@scirp.org
"Materials for Spintronics: Magnetic and Transport Properties of Ultrathin (Monolayer Graphene)/MnO(001) and MnO(001) Films"
written by Victor Ilyasov, Besarion Meshi, Anatoly Ryzhkin, Igor Ershov, Igor Nikiforov, Alexey Ilyasov,
published by Journal of Modern Physics, Vol.2 No.10, 2011
has been cited by the following article(s):
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[1] MAGNETISM OF GRAPHENE ON HYDROGENATED SURFACE MnO (111)
[2] LOCAL MAGNETIC MOMENTS ON ATOMS OF SLG/MnOx (111) INTERFACE
[3] In-situ Transmission Electron Microscopy Study of 2D Transition Metal Oxide Nanosheets Formation Inside the Liquid Sandwiched Between Graphene Layers
Yassar - Microscopy and Microanalysis, 2022
[4] Recent progress and challenges in magnetic tunnel junctions with 2D materials for spintronic applications
2021
[5] Synthesis of porous MnO@ C nanocomposite via controlled heat-treatment of malonate precursor for the potential remediation of dye-contaminated water
2020
[6] Magnetic Nanomaterials Responsive MnO2
2020
[7] Magnetic Responsive MnO2 Nanomaterials
2020
[8] ОСОБЕННОСТИ ЭЛЕКТРОННОЙ СТРУКТУРЫ И ВЗАИМОДЕЙСТВИЕ ГРАФЕНА С ПОЛЯРНОЙ ПОВЕРХНОСТЬЮ ОКСИДА МАРГАНЦА
2018
[9] Thermally Synthesized MnO Nanoparticles for Magnetic Properties and Lithium Batteries
Materials Research Express, 2018
[10] Phase modulators based on high mobility ambipolar rese 2 field-effect transistors
2018
[11] Preparation and Photocatalytic Properties of KH-550 Modified Nano-TiO 2/Graphene Composites
2017
[12] Preparation and photocatalytic properties of KH-550 modified nano-TiO2\graphene composites
Rev. Envirron Risk Assess Remediat, 2017
[13] Preparation and photocatalytic properties of KH-550 modified nano-TiO2/graphene Composites
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[14] Moving towards the magnetoelectric graphene transistor
AIP Conference Proceedings, 2017
[15] Preparation and photocatalytic properties of KH-550 modified nano-TiO2graphene composites
2017
[16] Ab initio study of magnetism and interaction of graphene with the polar MnO (111) surface
Applied Surface Science, 2017
[17] Synthesis, Characterization, and Properties of Graphene-Based Hybrids with Cobalt Oxides for Electrochemical Energy Storage and Electrocatalytic Glucose Sensing
2017
[18] Preparation and photocatalytic properties of KH-550 modified nano-TiO2/graphene Composites.
2017
[19] Адсорбция графена на поверхности (111) монооксида марганца и модуляция электронной структуры силовым и электрическим полями
2016
[20] ЭЛЕКТРОННАЯ СТРУКТУРА И ФИЗИЧЕСКИЕ СВОЙСТВА ИНТЕРФЕЙСА ГРАФЕН/MnO (111): AB INITIO МОДЕЛИРОВАНИЕ
2016
[21] Interface-induced spin polarization in graphene on chromia
2016
[22] Моделирование электронных свойств графеновых магнитных гетероструктур: ab initio изучение
2016
[23] Graphene–Inorganic Hybrids with Cobalt Oxide Polymorphs for Electrochemical Energy Systems and Electrocatalysis: Synthesis, Processing and Properties
Journal of Electronic Materials, 2015
[24] Graphene-inorganic hybrids with cobalt oxide polymorphs for electrochemical energy systems and electrocatalysis: synthesis, processing and properties
Journal of Electronic Materials, 2015
[25] AB INITIO ИЗУЧЕНИЕ СТРУКТУРНЫХ И ЭЛЕКТРОННЫХ СВОЙСТВ НАНОЛЕНТ ГРАФЕНА ТИПА ЗИГЗАГ НА ГЕКСАГОНАЛЬНОМ НИТРИДЕ БОРА
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[26] Электронная структура и магнитные свойства квазидвумерных систем MeO (Me= Mn, Fe, Co, Ni) в ферромагнитном упорядочении
2014
[27] Don State Technical University, 1 Gagarin Sq, 344000 Rostov on Don, Russia
Journal of Applied Physics, 2014
[28] Theoretical investigation of the structure and properties of the VN (111) monolayer on the MgO (111) surface
Physics of the Solid State, 2014
[29] Tuning the band structure, magnetic and transport properties of the zigzag graphene nanoribbons/hexagonal boron nitride heterostructures by transverse electric field
The Journal of chemical physics, 2014
[30] Ab initio study of structural and electronic properties of zigzag graphene nanoribbons on hexagonal boron nitride
Journal of Structural Chemistry, 2014
[31] Magnetism and transport properties of zigzag graphene nanoribbons/hexagonal boron nitride heterostructures
Journal of Applied Physics, 2014
[32] Теоретическое исследование структуры и свойств монослоя VN (111) на поверхности MgO (111)
Физика твердого …, 2014
[33] ВПЛИВ ТИСКУ ВУГЛЕЦЕВОГО ГАЗУ НА ТОПОГРАФ?Ю ПОВЕРХН? ГРАФЕНОВОГО ПОКРИТТЯ, СФОРМОВАНОГО НА ОКСИД? КРЕМН?Ю
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[34] X-ray photoelectron spectroscopy (XPS) and diffraction (XPD) study of a few layers of graphene on 6H-SiC (0001)
Surface Science, 2013
[35] Fe, Co and Ni Adatoms ad Adsorbed on Silicene: A DFT Study
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[36] Индуцированная полоса запрещённых энергий и магнитные свойства в нанолентах графена типа зигзаг на гексагональном нитриде бора: эффекты края и подложки
Вестник ДГТУ, 2013
[37] THE EFFECT OF CARBON GAS PRESSSURE ON SURFACE TOPOGRAPHY OF GRAPHENE COATING FORMED ON THE SILICON OXIDE
2013
[38] Fe, Co and Ni Adatoms Adsorbed on Silicene: A DFT Study
2013
[39] Индуцированная полоса запрещённых энергий и магнитные свойства в нанолентах графена типа зигзаг на гексагональном нитриде бора: эффекты …
2013
[40] Вплив тиску вуглецевого газу на топографію поверхні графенового покриття, сформованого на оксиді кремнію
В?сник Нац?онального техн?чного ун?верситету Укра?ни Ки?вський пол?техн?чний ?нститут. Сер.: Машинобудування, 2013
[41] Индуцированная полоса запрещённых энергий и магнитные свойства в нанолентах графена типа зигзаг на гексагональном нитриде бора: эффекты …
2013
[42] ЭЛЕКТРОННАЯ СТРУКТУРА И ФИЗИЧЕСКИЕ СВОЙСТВА ИНТЕРФЕЙСОВ ГРАФЕН/MeO (Me= Al, Mn)
Канд. дис. к. ф.-м. н., ЮФУ, Ростов н/д, 2012
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