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Olga Ananina
Olga Ananina
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Подтвержден адрес электронной почты в домене znu.edu.ua
Название
Процитировано
Процитировано
Год
Theoretical study of the adsorption properties of porous boron nitride nanosheets
NA Lvova, OY Ananina
Computational Materials Science 115, 11-17, 2016
282016
Fluorine and carbon fluoride interaction with a diamond surface: Quantum-chemical modeling
NA Lvova, OY Ananina, AI Ryazanova
Computational Materials Science 124, 30-36, 2016
202016
Theoretical study of graphene functionalization by F and FHF ions from associates with water molecules
NA Lvova, OY Ananina
Computational Materials Science 101, 287-292, 2015
182015
Quantum chemical simulations of water adsorption on a diamond (100) surface with vacancy defects
NA Lvova, OY Ananina
Russian Journal of Physical Chemistry A 87, 1515-1519, 2013
152013
Quantum-chemical simulation of interaction of hydrogen with diamond nanoclusters
YA Filicheva, NA Lvova, OY Ananina
Fullerenes, Nanotubes and Carbon Nanostructures 20 (4-7), 616-621, 2012
92012
Modeling of fluorine atoms interaction with the fluorinated diamond С (100)-(2× 1) surface
N Lvova, A Ryazanova, O Ananina, A Yemelianova
Diamond and Related Materials 75, 110-115, 2017
82017
Boron atoms in the subsurface layers of diamond: Quantum chemical modeling
NA Lvova, OV Ponomarev, OY Ananina, AI Ryazanova
Russian Journal of Physical Chemistry A 91, 1451-1456, 2017
62017
Quantum-chemical study of interaction of hydrogen atoms with graphene
PA Butrimov, OY Anan’ina, AS Yanovskii
Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques …, 2010
52010
Hemisorption of hydrogen on the diamond surface containing a “boron+ vacancy” defect
OY Ananina, OV Ponomarev, AI Ryazanova, NA Lvova
Наносистемы: физика, химия, математика 9 (1), 61-63, 2018
42018
Quantum-chemical simulation of graphite nanoclusters stability
O Yanovsky, O Ananina, P Butrimov
Computational materials science 58, 214-217, 2012
42012
NV centers in diamond: Quantum-chemical modeling
OY Ananyina, EV Severina
Bulletin of the Russian Academy of Sciences: Physics 76 (5), 595-599, 2012
42012
The adsorption properties of polycrystalline graphene: quantum-chemical simulation
AOY Lvova, NA
Наносистемы: физика, химия, математика 5 (1), 2014
22014
Quantum-chemical simulation of adsorption of B+ ions on a SiO2/Si(100) interface
OY Anan’yina, AS Yanovs’ ky
Bulletin of the Russian Academy of Sciences: Physics 72 (5), 592-595, 2008
22008
Simulation of phosphorus ions interaction with Ge (100)-2x1 surfaces
OY Ol’ga Anan’yina
Vacuum 78 (2-4), 509-513, 2005
2*2005
Hydrogen adsorption on the diamond C (111) surface: quantum-chemical simulation
O Ananina, E Severina
Вісник Київського національного університету імені Тараса Шевченка …, 2014
12014
Quantum-chemical Simulation of Divacancy Defects on C (100)-(2× 1) Diamond Surface
O Ananina, O Yanovsky
Journal of nano-and electronic physics, 03001-1-03001-6, 2019
2019
Simulation of a vacancy defect at the C (111)–2× 1 surface
OY Ananina, EV Severina
Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques …, 2016
2016
PV Centers Behavior in Diamond C (111) Subsurface Layers
O Ananina, E Severina
Physics and Chemistry of Solid State 17 (1), 48-52, 2016
2016
PV центри в приповерхневих шарах алмазу С (111)
ОЮ Ананьїна, ОВ Северина
ДНВЗ" Прикарпатський національний університет імені Василя Стефаника", 2016
2016
The divacancy V2 and v-c= c-v configurations on the diamond surface: quantum-chemical simulation
OY Ananina, NA Lvova, EV Severina
Наносистемы: физика, химия, математика 7 (1), 87-92, 2016
2016
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Статьи 1–20