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Середницький Андрій (Serednytski Andrew)
Середницький Андрій (Serednytski Andrew)
Інститут прикладних проблем механіки і математики ім. Я.С.Підстригача НАН Україн
在 iapmm.lviv.ua 的电子邮件经过验证 - 首页
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年份
ZnO nanoparticles produced by reactive laser ablation
VV Gafiychuk, BK Ostafiychuk, DI Popovych, ID Popovych, AS Serednytski
Applied Surface Science 257 (20), 8396-8401, 2011
422011
Nanopowder metal oxide for photoluminescent gas sensing
VM Zhyrovetsky, DI Popovych, SS Savka, AS Serednytski
Nanoscale Research Letters 12, 1-5, 2017
412017
Molecular Dynamics Simulations of the Formation Processes of Zinc Oxide Nanoclusters in Oxygen Environment
SS Savka, DI Popovych, AS Serednytski
International Conference on Nanotechnology and Nanomaterials, 145-156, 2017
272017
Ab Initio Study of Structural and Electronic Properties of (ZnO) n “Magical” Nanoclusters n = (34, 60)
R Bovhyra, D Popovych, O Bovgyra, A Serednytski
Nanoscale Research Letters 12, 1-6, 2017
252017
Modification of structure and luminescence of ZnO nanopowder by the laser shock‐wave treatment
V Zhyrovetsky, B Kovalyuk, V Mocharskyi, Y Nikiforov, V Onisimchuk, ...
physica status solidi (c) 10 (10), 1288-1291, 2013
20*2013
Photoluminescent properties of complex metal oxide nanopowders for gas sensing
RV Bovhyra, SI Mudry, DI Popovych, SS Savka, AS Serednytski, ...
Applied Nanoscience 9, 775-780, 2019
182019
The density functional theory study of electronical properties of (ZnO) 12 clusters during gas adsorption
OV Bovgyra, RV Bovgyra, DI Popovych, AS Serednytski
Journal of Nano-and Electronic Physics 7 (4), 4090-1, 2015
18*2015
The density functional theory study of structural and electronical properties of ZnO clusters
OV Bovgyra, RV Bovgyra, MV Kovalenko, DI Popovych, AS Serednytski
Journal of Nano-and Electronic Physics 5 (1), 1027-1, 2013
18*2013
Дослідження процесів формування нанопорошкового ZnO та його властивості
БК Остафійчук, ВМ Жировецький, БК Котлярчук, МІ Мойса, ДІ Попович, ...
Фізика і хімія твердого тіла 9 (4), 728-731, 2008
16*2008
Одержання нанопорошкових окисних матеріалів та дослідження їх люмінесцентних властивостей
БК Котлярчук, ІФ Миронюк, ДІ Попович, АС Середницький
Фізика і хімія твердого тіла 7 (3), 490-494, 2006
16*2006
Pulsed laser deposition of ZrO2 thin films for application in microelectronic devices
BK Kotlyarchuk, DI Popovych, VK Savchuk, AS Serednycki
Phys Chem Solid State 4 (3), 434-439, 2003
122003
Obtaining, structure and gas sensor properties of nanopowder metal oxides
YI Venhryn, SS Savka, RV Bovhyra, VM Zhyrovetsky, AS Serednytski, ...
Materials Today: Proceedings 35, 588-594, 2021
102021
The Influence of Surface Doping on Adsorption Ability of Nanopowder Metal Oxides for Gas Sensors
YV Bobitski, RV Bovhyra, DI Popovych, SS Savka, AS Serednytski, ...
Jouranl of Nano- and Electronic Physics 9 (5), 05008(5), 2017
102017
Development and Creation of Gas-Sensor System Based on Low Dimensional Metal Oxides
RV Bovhyra, VM Zhyrovetskyy, DI Popovych, SS Savka, AS Serednytskij
Science and Innovation 12 (6), 57-62, 2016
62016
Peculiarities of photoluminescence in gas ambient of doped ZnO nanopowders
IV Lazoryk, ID Popovych, YI Venhryn, SS Savka, RV Bovhyra, ...
Applied Nanoscience 10, 5003-5008, 2020
52020
Dft study of native point defects in (ZnO)n (n = 34, 60) NANOCLUSTERS
RV Bovhyra, DI Popovych, AS Serednytsky, OV Bovgyra
Journal of Physical Studies 23 (2), 2702-2702, 2019
52019
Venhryn YuI (2019) Photoluminescent properties of complex metal oxide nanopowders for gas sensing. Appl Nanosci 9: 775–780
RV Bovhyra, SI Mudry, DI Popovych, SS Savka, AS Serednytski
5
First principle study of native point defects in (ZnO) n nanoclusters (n= 34, 60)
R Bovhyra, D Popovych, O Bovgyra, A Serednytsky
Applied Nanoscience, 1-8, 2019
42019
Ab initio study of structural and electronic properties of (ZnO) n “magical” nanoclusters n=(34, 60). Nanoscale Res Lett 12: 76
R Bovhyra, DI Popovych, OV Bovgyra, AS Serednytski
32017
Hazovyj sensor na osnovi nanoporoshkovykh metalooksydiv
DI Popovych, AS Serednytski
Naukovo-tekhnichna konferentsiia «Perspektyvy rozvytku raketnykh vijs'k i …, 2015
32015
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