Issue | Title | |
Vol 2, No 2 (2011) | Formation under hydrothermal conditions and structural features of nanoparticles based on the system ZrO2 – Gd2O3 | Abstract similar documents |
M. V. Tomkovich, E. R. Andrievskaya, V. V. Gusarov | ||
"... нанокристаллы твердых растворов ZrO2 (GdO1.5) с флюоритоподобной структурой. Параметры элементарной ячейки ZrO2 ..." | ||
Vol 2, No 3 (2011) | Synthesis of aqueous sols of nanocrystalline ceria doped with gadolinia | Abstract similar documents |
G. A. Gasymova, O. S. Ivanova, A. Ye. Baranchikov, A. B. Shcherbakov, V. K. Ivanov, Yu. D. Tretyakov | ||
"... ячейки образцов Ce1−𝑥Gd𝑥O2−𝛿 линейным образом зависит от содержания допанта в соответствии с законом ..." | ||
Vol 3, No 4 (2012) | Features of phase formation in the ZrO2-TiO2 system under hydrothermal conditions | Abstract similar documents |
A. K. Vasilevskaya, O. V. Almjasheva | ||
"... системе ZrO2—TiO2 в гидротермальных условиях. Показано, что формирование фазы (Zr,Ti)2O4 с ..." | ||
Vol 3, No 3 (2012) | Structural transformations in the ZrO2-Al2O3 nanocomposite by heating | Abstract similar documents |
I. Kuchuk, O. Almjasheva | ||
"... The transformations of structures in the nanocomposite ZrO2 - amorphous Al2O3 in the process ..." | ||
Vol 14, No 1 (2023) | Synthesis and thermal behavior of KCe2(PO4)3, a new full-member in the AIMIV2 (PO4)3 family | Abstract PDF (Eng) similar documents |
T. O. Kozlova, D. N. Vasilyeva, D. A. Kozlov, M. A. Teplonogova, A. E. Baranchikov, N. P. Simonenko, V. K. Ivanov | ||
"... Гидротермальной обработкой наноразмерного аморфного церийфосфатного геля в водном растворе KOH ..." | ||
Vol 15, No 6 (2024) | Intermetallic compounds obtained from Me3Ge2O5(OH)4 (Me = Mg, Ni, Fe, Co) phyllogermanates: synthesis of single-phase precursors | Abstract PDF (Eng) similar documents |
E. K. Khrapova, A. A. Ivanova, D. A. Kirilenko, A. A. Krasilin | ||
"... . Окисление Co2+ и Fe2+ в гидротермальных условиях представляет собой дополнительную экспериментальную задачу ..." | ||
Vol 1, No 1 (2010) | Size, morphology and structure of the particles of zirconia nanopowder obtained under hydrothermal conditions | Abstract similar documents |
O. V. Almjasheva, B. A. Fedorov, A. V. Smirnov, V. V. Gusarov | ||
"... определены морфологические и размерные параметры частиц нанопорошка ZrO2, синтезированного в гидротермальных ..." | ||
Vol 15, No 2 (2024) | Pyrochlore phase in the Bi2O3‒Fe2O3‒WO3‒(H2O) system: its stability field in the low-temperature region of the phase diagram and thermal stability | Abstract PDF (Eng) similar documents |
M. S. Lomakin, O. V. Proskurina, A. A. Levin, V. N. Nevedomskiy | ||
"... структурой пирохлора, формирующихся в системе Bi2O3-Fe2O3-WO3 в гидротермальных условиях при температуре T ..." | ||
Vol 3, No 4 (2012) | Differences in physical and chemical properties of vanadium oxide nanomaterials synthesized by hydrothermal and microwave-hydrothermal meth | Abstract similar documents |
S. V. Balakhonov, V. K. Ivanov, A. E. Barantchikov, B. R. Churagulov | ||
"... морфологию продуктов в процессе гидротермального и гидротермально-микроволнового синтеза наноматериалов на ..." | ||
Vol 13, No 1 (2022) | Synthesis and characterization of zirconia nanorods as a photo catalyst for the degradation of methylene blue dye | Abstract PDF (Eng) similar documents |
R. Jeba, S. Radhika, C. M. Padma, X. Ascar Davix | ||
"... t-ZrO2 nano crystalline photocatalyst have been synthesized by a simple co-precipitation method ..." | ||
Vol 15, No 6 (2024) | Phase formation and thermal analysis in the LaPO4–GdPO4–H2O system | Abstract PDF (Eng) similar documents |
M. O. Enikeeva, K. A. Zhidomorova, D. P. Danilovich, V. N. Nevedomskiy, O. V. Proskurina, V. V. Gusarov | ||
"... гидротермальных условиях при 230°C в зависимости от продолжительности изотермической выдержки (2 часа, 3 суток и 5 ..." | ||
Vol 15, No 6 (2024) | Synthesis of gadolinium titanate based nanocrystalline multicomponent rare earth oxides | Abstract PDF (Eng) similar documents |
A. V. Guskov, P. G. Gagarin, V. N. Guskov, K. S. Gavrichev | ||
"... оксидов на основе титаната гадолиния структурного типа пирохлора. Определены параметры кубических решеток ..." | ||
Vol 6, No 5 (2015) | Heat-stimulated transformation of zirconium dioxide nanocrystals produced under hydrothermal conditions | Abstract PDF (Eng) similar documents |
O. V. Almjasheva | ||
"... . Changes in the dimensions and structure of ZrO2 that occur depend upon the calcination conditions used. ..." | ||
Vol 14, No 2 (2023) | Formation of a 10 ˚A phase with halloysite structure under hydrothermal conditions with varying initial chemical composition | Abstract PDF (Eng) similar documents |
N. A. Leonov, D. A. Kozlov, D. A. Kirilenko, N. A. Bert, A. O. Pelageikina, A. A. Nechitailov, M. B. Alikin, A. A. Krasilin | ||
"... гидротермальных условиях (220°C, 2 МПа, 96 ч). Были получены частицы пластинчатой морфологии со средней длиной 100 ..." | ||
Vol 2, No 4 (2011) | Formation of nanoparticles Cr2O3 in hydrothermal conditions | Abstract similar documents |
A. N. Bugrov, O. V. Almjasheva | ||
"... в системе Cr2O3-H2O в условиях термо- и гидротермальной обработки. Определены условия ..." | ||
Vol 15, No 5 (2024) | Proton beam-induced radiosensitizing effect of Ce0.8Gd0.2O2−x nanoparticles against melanoma cells in vitro | Abstract PDF (Eng) similar documents |
Danil D. Kolmanovich, Mikhail V. Romanov, Sergey A. Khaustov, Vladimir K. Ivanov, Alexander E. Shemyakov, Nikita N. Chukavin, Anton L. Popov | ||
Vol 4, No 6 (2013) | Effect of hydrothermal synthesis conditions on the morphology of ZrO2 nanoparticles | Abstract PDF (Eng) similar documents |
A. N. Bugrov, O. V. Almjasheva | ||
"... Nanoparticles based on ZrO2 in the form of spheres, cylinders and agglomerates in the form ..." | ||
Vol 11, No 6 (2020) | Perovskite solar cells: recent progress and future prospects | Abstract PDF (Eng) similar documents |
O. I. Shevaleevskiy | ||
Vol 10, No 1 (2019) | Very wide-bandgap nanostructured metal oxide materials for perovskite solar cells | Abstract PDF (Eng) similar documents |
L. L. Larina, O. V. Alexeeva, O. V. Almjasheva, V. V. Gusarov, S. S. Kozlov, A. B. Nikolskaia, M. F. Vildanova, O. I. Shevaleevskiy | ||
"... Very wide-bandgap undoped and Y2O3-doped ZrO2 nanoparticles were synthesized and their structural ..." | ||
Vol 9, No 2 (2018) | Experimental studies of impact on a critical heat flux the parameters of nanoparticle layer formed at nanofluid boiling | Abstract PDF (Eng) similar documents |
V. B. Khabensky, A. L. Sirotkina, V. I. Almjashev, E. D. Fedorovich, V. V. Sergeev, V. V. Gusarov | ||
"... on the magnitude of critical heat flux. The examined nanofluid is distilled water (distillate) with dispersed ZrO2 ..." | ||
Vol 9, No 4 (2018) | High-temperature synthesis of finely dispersed oxide materials and C12A7:e electrides in carbon nanoreactor conditions | Abstract PDF (Eng) similar documents |
A. M. Volodin, A. F. Bedilo, V. O. Stoyanovskii, V. I. Zaikovskii | ||
"... place. For ZrO2@C and Al2O3@C it is demonstrated that it is the preservation of the small particle size ..." | ||
Vol 14, No 1 (2023) | A comparative study of photocatalytic degradation of Xylenol Orange dye under natural sunlight over ZnO nanoparticles synthesized via mechanochemical and hydrothermal assistance routes | Abstract PDF (Eng) similar documents |
Y. D. Kaldante, M. G. Chaskar | ||
"... Работа посвящена механохимическому и гидротермальному синтезу ZnO, определению его характеристик и ..." | ||
Vol 14, No 2 (2023) | Pyrochlore phase in the Bi2O3–Fe2O3–WO3–(H2O) system: its formation by hydrothermal synthesis in the low-temperature region of the phase diagram | Abstract PDF (Eng) similar documents |
M. S. Lomakin, O. V. Proskurina, V. V. Gusarov | ||
"... , ¨)2(Fe, W)2O6O¢δ (далее ‒ BFWO) в системе Bi2O3‒Fe2O3‒WO3‒(H2O) в условиях гидротермального синтеза ..." | ||
Vol 14, No 3 (2023) | Influence of the composition of the BiPO4–BiVO4 system on the phase formation, morphology, and properties of nanocrystalline composites obtained under hydrothermal conditions | Abstract PDF (Eng) similar documents |
O. V. Proskurina, I. D. Chetinel, A. S. Seroglazova, V. V. Gusarov | ||
"... Нанокристаллические композиты BiPO4/BiVO4 синтезированы в гидротермальных условиях. Определено ..." | ||
Vol 3, No 5 (2012) | Ceramic and composite nanomaterials based on calcium orthophosphates | Abstract similar documents |
A. A. Afonko, S. A. Kirillova, V. I. Almjashev | ||
"... . Исследовано влияние параметров ультразвуковой, гидротермальной и термообработки на свойства продуктов синтеза ..." | ||
Vol 12, No 4 (2021) | The effect of hydrolysis duration on the phase composition, texture, aggregation and agglomeration of ZrO2 nanoparticles | Abstract PDF (Eng) similar documents |
Sh. O. Omarov | ||
"... In this work, a number of ZrO2 · nH2O and ZrO2 samples were synthesized by direct precipitation ..." | ||
Vol 9, No 6 (2018) | Solid-phase interaction in ZrO2–Fe2O3 nanocrystalline system | Abstract PDF (Eng) similar documents |
S. A. Kirillova, O. V. Almjasheva, V. V. Panchuk, V. G. Semenov | ||
"... that in the ZrO¨ 2–Fe2O3 system, represented by the mechanical mixture of m–ZrO2 (14±2 nm) and α-Fe2O3 (43±2 nm ..." | ||
Vol 15, No 2 (2024) | Ultrasonic-assisted hydrothermal synthesis of nanoscale double ceric phosphates | Abstract PDF (Eng) similar documents |
T. O. Kozlova, E. D. Sheichenko, D. N. Vasilyeva, D. A. Kozlov, I. V. Kolesnik, I. V. Tronev, M. A. Teplonogova, A. E. Baranchikov, V. K. Ivanov | ||
"... Сочетание ультразвукового воздействия на церийфосфатные гели с их последующей гидротермально ..." | ||
Vol 14, No 1 (2023) | Electric field effect on the light penetration depth and switching times in liquid crystal cells with nonuniform director orientation | Abstract PDF (Eng) similar documents |
E. V. Aksenova, A. A. Karetnikov, N. A. Karetnikov, A. P. Kovshik, A. V. Svanidze, S. V. Ul’yanov | ||
"... Исследованы особенности преломления света в жидкокристаллических ячейках с непрерывно меняющимся ..." | ||
Vol 11, No 6 (2020) | Structure of nanoparticles in the ZrO2–Y2O3 system, as obtained under hydrothermal conditions | Abstract PDF (Eng) similar documents |
A. I. Shuklina, A. V. Smirnov, B. A. Fedorov, S. A. Kirillova, O. V. Almjasheva | ||
"... It is shown that monocrystalline nanoparticles with fluorite structure are formed in the ZrO2–Y2O3 ..." | ||
Vol 12, No 6 (2021) | Phase equilibria and materials in the TiO2–SiO2–ZrO2 system: a review | Abstract PDF (Eng) similar documents |
S. A. Kirillova, V. I. Almjashev, V. L. Stolyarova | ||
"... This paper analyzes the available data on phase equilibria in the TiO2–SiO2–ZrO2 system ..." | ||
Vol 10, No 6 (2019) | Phosphors with different morphology, formed under hydrothermal conditions on the basis of ZrO2:Eu3+ nanocrystallites | Abstract PDF (Eng) similar documents |
A. N. Bugrov, R. Yu. Smyslov, T. V. Khamova, D. A. Kirilenko, I. A. Rodionov | ||
"... Eu3+-doped ZrO2 nanostructures in the form of rods, stars, and hollow spheres were prepared ..." | ||
Vol 9, No 3 (2018) | Phase composition and photoluminescence correlations in nanocrystalline ZrO2:Eu3+ phosphors synthesized under hydrothermal conditions | Abstract PDF (Eng) similar documents |
A. N. Bugrov, R. Yu. Smyslov, A. Yu. Zavialova, D. A. Kirilenko, D. V. Pankin | ||
"... hydrothermal conditions. Annealing of ZrO2: 1 mol. Eu3+ nanoparticles made it possible to obtain a sample ..." | ||
Vol 16, No 2 (2025) | Phase formation in the Na2O-Bi2O3-Fe2O3-MoO3-(H2O) system | Abstract PDF (Eng) similar documents |
M. S. Lomakin | ||
"... Исследовано влияние pH гидротермального флюида на химический и фазовый состав, а также размерные ..." | ||
Vol 15, No 3 (2024) | Formation of chrysotile nanotubes with titania in the internal channel | Abstract PDF (Eng) similar documents |
E. N. Gatina, T. P. Maslennikova | ||
"... гидротермальных условиях. Проанализирована возможность вхождения ионов титана в кристаллическую структуру и ..." | ||
Vol 15, No 6 (2024) | Effect of synthesis method on the structural, conductive and sensor properties of NiO–In2O3 nanocomposites | Abstract PDF (Eng) similar documents |
M. I. Ikim, V. F. Gromov, G. N. Gerasimov, V. G. Bekeshev, L. I. Trakhtenberg | ||
"... , синтезированных гидротермальным способом и методом импрегнирования. Рассмотренный смешанный оксид состоит из ..." | ||
Vol 2, No 3 (2011) | Synthesis and physical and chemical properties of lithiated nanowhiskers based on vanadium oxides | Abstract similar documents |
S. V. Balakhonov, D. S. Luchinkin, M. V. Efremova, B. Churagulov, Yu. D. Tretyakov | ||
"... В настоящей работе гидротермальным методом получены «чистые» и литированные нановискеры на основе ..." | ||
Vol 14, No 6 (2023) | Optical glass-ceramics based on Fe2+: MgAl2O2 nanocrystals and nucleated by TiO2 and ZrO2 | Abstract PDF (Eng) similar documents |
V. S. Bukina, O. S. Dymshits, I. P. Alekseeva, A. A. Volokitina, S. S. Zapalova, A. A. Zhilin | ||
"... nanocrystals nucleated by a mixture of TiO2 and ZrO2 and doped with 0.6 mol% FeO were developed. The glass ..." | ||
Vol 15, No 3 (2024) | The role of pH of the reaction medium in the formation of nanocrystalline phases in the Bi2O3-P2O5-H2O system | Abstract PDF (Eng) similar documents |
D. P. Elovikov, A. A. Osminina | ||
"... , тогда как при pH = 8 и 12 образуются рентгеноаморфные вещества. Показано, что после гидротермальной ..." | ||
Vol 13, No 3 (2022) | Double perovskite oxides La2NiMnO6 and La2Ni0.8Fe0.2MnO6 for inorganic perovskite solar cells | Abstract PDF (Eng) similar documents |
S. S. Kozlov, O. V. Alexeeva, A. B. Nikolskaia, O. I. Shevaleevskiy, D. D. Averkiev, P. V. Kozhuhovskaya, O. V. Almjasheva, L. L. Larina | ||
"... ). Electron transport layers for the PSCs were prepared using TiO2 and ZrO2 nanostructured layers. The best ..." | ||
Vol 12, No 2 (2021) | High performance tandem perovskite-silicon solar cells with very large bandgap photoelectrodes | Abstract PDF (Eng) similar documents |
A. B. Nikolskaia, M. F. Vildanova, S. S. Kozlov, O. V. Almjasheva, V. V. Gusarov, O. I. Shevaleevskiy | ||
"... Nanostructured layers of metal oxides with very large bandgaps (Eg > 5 eV), such as ZrO2 and HfO2 ..." | ||
Vol 9, No 4 (2018) | Formation mechanism of core-shell nanocrystals obtained via dehydration of coprecipitated hydroxides at hydrothermal conditions | Abstract PDF (Eng) similar documents |
O. V. Almjasheva, A. A. Krasilin, V. V. Gusarov | ||
"... . As a particular example of such type of behavior, we investigate core-shell nanoparticle formation in the ZrO2–Y2O ..." | ||
Vol 14, No 6 (2023) | Synthesis under hydrothermal conditions and structural transformations of nanocrystals in the LaPO4–YPO4–(H2O) system | Abstract PDF (Eng) similar documents |
M. O. Enikeeva, O. V. Proskurina, E. Yu. Gerasimov, V. N. Nevedomskiy, V. V. Gusarov | ||
"... гидротермальных условиях при 230°C в зависимости от продолжительности изотермической выдержки (2 часа, 7 суток и ..." | ||
Vol 10, No 2 (2019) | The influence of chemical prehistory on the structure, photoluminescent properties, surface and biological characteristics of Zr0:98Eu0:02O1:99 nanophosphors | Abstract PDF (Eng) similar documents |
A. N. Bugrov, R. Yu. Smyslov, A. Yu. Zavialova, G. P. Kopitsa | ||
"... ZrO2 nanoparticles doped with 2 mol.% of EuO1:5 were obtained from solutions of inorganic salts ..." | ||
Vol 15, No 3 (2024) | Cellular uptake of FITC-labeled Ce0/8Gd0/2O2-x nanoparticles in 2D and 3D mesenchymal stem cell systems | Abstract PDF (Eng) similar documents |
D. D. Kolmanovich, N. N. Chukavin, N. A. Pivovarov, S. A. Khaustov, V. K. Ivanov, A. L. Popov | ||
"... ионов гадолиния и или ФИТС-метки позволяет контролировать их накопление в органах и тканях с помощью ..." | ||
Vol 15, No 1 (2024) | Sorption of polar and non-polar liquids by GO powders according to DSC experiments | Abstract PDF (Eng) similar documents |
A. V. Kaplin, E. A. Eremina, M. V. Korobov | ||
"... ) был получен методом гидротермального синтеза. Эффективное восстановление материала было подтверждено ..." | ||
Vol 13, No 6 (2022) | Formation of nanocrystalline particles on the basis of La2(Ni,Mn,Fe)2O6 variable composition phases having a structure of double perovskite under conditions of solution combustion | Abstract PDF (Eng) similar documents |
D. D. Averkiev, L. L. Larina, O. I. Shevaleevskiy, O. V. Almjasheva | ||
"... зависимость объёма элементарной ячейки двойного перовскита от концентрации ионов железа хорошо описывается ..." | ||
Vol 14, No 6 (2023) | Study of the electrical and electronic properties of crystalline molybdenum disulfide (MoS2-3R) semiconductor nano using alternating current (AC) measurements | Abstract PDF (Eng) similar documents |
H. Alhussein, J. Q AlSharr, S. Othman, H. AlKhamisy | ||
"... Гидротермальным методом получены наноструктуры MoS2 путем взаимодействия тетрагидрата ..." | ||
Vol 13, No 6 (2022) | Thermal stability of the waylandite-structured nanocrystalline BiAl3(PO4)2(OH)6 | Abstract PDF (Eng) similar documents |
D. P. Elovikov, O. V. Proskurina, M. V. Tomkovich, V. L. Ugolkov, V. V. Gusarov | ||
"... В гидротермальных условиях при температуре 200 °С, давлении 7 МПа и величине pH 7 получен ..." | ||
Vol 15, No 5 (2024) | Ionic channel structure in perfluorinated membranes studied by small angle X-ray scattering, optical and Mossbauer spectroscopy | Abstract PDF (Eng) similar documents |
Vasily T. Lebedev, Valery S. Kozlov, Mikhail V. Remizov, Yury V. Kulvelis, Oleg N. Primachenko, Elena A. Marinenko, Georgy S. Peters | ||
"... мембранах, обеспечивающих их функциональные свойства в водородных топливных ячейках. ..." | ||
Vol 15, No 4 (2024) | Phase formation of nanosized InGaZnO4 obtained by the sol-gel method with different chelating agents. | Abstract PDF (Eng) similar documents |
G. M. Zirnik, A. S. Chernukha, D. A. Uchaev, I. A. Solizoda, S. A. Gudkova, N. S. Nekorysnova, D. A. Vinnik | ||
"... рассчитаны параметры элементарной ячейки, также по методу Гальдера-Вагнера оценён размер области когерентного ..." | ||
Vol 2, No 4 (2011) | Effect of electric field on the structure of the ferroelectric chevron smectics C* | Abstract similar documents |
V. P. Romanov, S. V. Ulyanov, K. G. Chernyak | ||
"... сегнетоэлектрического смектика 𝐶∗ в ограниченной ячейке во внешнем электрическом поле. В подобных системах, обладающих ..." | ||
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