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Issue | Title | |
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 | ||
"... of the starting materials. The possibility of varying the synthetic parameters to obtain a zirconia-based material ..." | ||
Vol 15, No 6 (2024) | The role of non-autonomous phases in the formation and transformation of solid-phase oxide systems | Abstract PDF (Eng) similar documents |
O. V. Almjasheva | ||
"... It is shown that the nature of processes in oxide solid-phase systems, primarily in nanosized ones ..." | ||
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 | ||
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 | ||
"... on zirconium dioxide is 21.7–22.6 mol.%. Yttrium oxide not included in the structure forms an amorphous phase ..." | ||
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 | ||
Vol 2, No 4 (2011) | Formation of nanoparticles Cr2O3 in hydrothermal conditions | Abstract similar documents |
A. N. Bugrov, O. V. Almjasheva | ||
Vol 8, No 3 (2017) | Biological effect of zirconium dioxide-based nanoparticles | Abstract PDF (Eng) similar documents |
O. V. Almjasheva, A. V. Garabadzhiu, Yu. V. Kozina, L. F Litvinchuk, V. P. Dobritsa | ||
"... of solid solution of europium oxide in europium dioxide do not exhibit an explicit biological effect ..." | ||
Vol 10, No 4 (2019) | The minimum size of oxide nanocrystals: phenomenological thermodynamic vs crystal-chemical approaches | Abstract PDF (Eng) similar documents |
O. V. Almjasheva, N. A. Lomanova, V. I. Popkov, O. V. Proskurina, E. A. Tugova, V. V. Gusarov | ||
"... hydroxides. Aluminum and iron oxides, titania and zirconia, cobalt ferrite, AFeO3 ferrites (A = Bi, RE ..." | ||
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 | ||
"... Nanopowders of La2Ni0.8Fe0.2MnO6 and La2NiMnO6 double perovskite oxides were synthesized ..." | ||
Vol 14, No 5 (2023) | Planar perovskite solar cells with La2NiMnO6 buffer layer | Abstract PDF (Eng) similar documents |
S. S. Kozlov, A. B. Nikolskaia, O. K. Karyagina, E. K. Kosareva, O V. Alexeeva, V. I. Petrova, O. V. Almjasheva, O. I. Shevaleevskiy | ||
"... Thin films of La2NiMnO6 (LNMO) double perovskite oxide were first used as buffer layers in planar ..." | ||
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