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Issue | Title | |
Vol 3, No 2 (2012) | Features of nanocomposites with quantum dots | Abstract similar documents |
N. A. Shurpo, D. N. Timonin, N. V. Kamanina | ||
Vol 10, No 6 (2019) | Facile combustion synthesis of TbFeO3 nanocrystals with hexagonal and orthorhombic structure | Abstract PDF (Eng) similar documents |
K. D. Martinson, V. A. Ivanov, M. I. Chebanenko, V. V. Panchuk, V. G. Semenov, V. I. Popkov | ||
"... In this research, the formation process of nanocrystalline terbium orthoferrite (TbFeO3) obtained ..." | ||
Vol 5, No 6 (2014) | Nanocrystalline perovskite-like oxides formation in Ln2O3 – Fe2O3 – H2O (Ln = La, Gd) systems | Abstract PDF (Eng) similar documents |
E. A. Tugova, O. N. Karpov | ||
"... followed by heat treatment in air. The formation mechanisms for LaFeO3 and GdFeO3 in Ln2O3 – Fe2O3 – H2O ..." | ||
Vol 6, No 5 (2015) | Heat-stimulated transformation of zirconium dioxide nanocrystals produced under hydrothermal conditions | Abstract PDF (Eng) similar documents |
O. V. Almjasheva | ||
Vol 4, No 6 (2013) | Formation mechanism of GdFeO3 nanoparticles under the hydrothermal conditions | Abstract PDF (Eng) similar documents |
E. A. Tugova, I. A. Zvereva | ||
"... The formation mechanism of GdFeO3 nanoparticles by varying of the hydrothermal conditions has been ..." | ||
Vol 5, No 5 (2014) | Formation mechanism of YFeO3 nanoparticles under the hydrothermal conditions | Abstract PDF (Eng) similar documents |
V. I. Popkov, O. V. Almjasheva | ||
"... on the structure and crystallite size has been investigated. Mechanism of the YFeO3 formation under ..." | ||
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 | ||
"... phase (hereinafter BFWO) formation in the Bi2O3–Fe2O3–WO3–(H2O) system under the hydrothermal syn thesis ..." | ||
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 | ||
Vol 2, No 3 (2011) | The modeling of SiC phases on basis of nanostructures | Abstract similar documents |
E. A. Belenkov, E. N. Agalyamova, V. A. Greshnyakov | ||
"... The classification scheme and modeling method of formation of silicon carbide phases on basis ..." | ||
Vol 16, No 4 (2025) | Phase formation in the BiPO4–YPO4–(H2O) system | Abstract PDF (Eng) similar documents |
A. A. Osminina, D. P. Elovikov, O. V. Proskurina | ||
Vol 8, No 5 (2017) | Peculiarities of LaFeO3 nanocrystals formation via glycinenitrate combustion | Abstract PDF (Eng) similar documents |
A. Bachina, V. A. Ivanov, V. I. Popkov | ||
Vol 9, No 1 (2018) | Hemisorption of hydrogen on the diamond surface containing a “boron + vacancy” defect | Abstract PDF (Eng) similar documents |
O. Yu. Ananina, O. V. Ponomarev, A. I. Ryazanova, N. A. Lvova | ||
"... on the C(100)–(2 × 1) diamond surface containing a “boron + monovacancy” complex defect. We also provide ..." | ||
Vol 5, No 3 (2014) | Poly-thermal solubility and complex thermal analysis of water-soluble tris-malonate of light fullerene – C60[=C(COOH)2]3 | Abstract PDF (Eng) similar documents |
K. N. Semenov, N. A. Charykov, A. S. Kritchenkov, I. A. Cherepkova, O. S. Manyakina, D. P. Tyurin, A. A. Shestopalova, V. A. Keskinov, K. V. Ivanova, N. M. Ivanova, D. G. Letenko, V. A. Nikitin, E. L. Fokina, I. A. Pestov, A. O. Netrusov | ||
"... . Complex thermal analysis of C60[=C(COOH)2]3 crystal hydrates, in equilibrium with a saturated aqueous ..." | ||
Vol 14, No 6 (2023) | Surface topology, electrophysical properties and formation mechanism of tin(ii) sulfide thin films | Abstract PDF (Eng) similar documents |
N. S. Kozhevnikova, L. N. Maskaeva, A. N. Enyashin, A. P. Tyutyunnik, O. A. Lipina, I. O. Selyanin, V. F. Markov | ||
"... film formation. The characteristics of the fabricated SnS films are potentially useful for design ..." | ||
Vol 14, No 1 (2023) | Plasma-chemical synthesis of nanocrystalline “core-shell” structures TiN–Mo–Co | Abstract PDF (Eng) similar documents |
Yu. A. Avdeeva, I. V. Luzhkova, A. M. Murzakaev, A. N. Ermakov | ||
"... In this work, the possibilities of formation of nanocrystalline powders based on titanium nitride ..." | ||
Vol 9, No 5 (2018) | Formation mechanism, thermal and magnetic properties of (Bi1−xSrx)m+1Fem−3Ti3O3(m+1)−δ (m = 4 – 7) ceramics | Abstract PDF (Eng) similar documents |
N. A. Lomanova, M. V. Tomkovich, V. L. Ugolkov, M. P. Volkov, I. V. Pleshakov, V. V. Panchuk, V. G. Semenov | ||
"... Specific features of the formation of Aurivillius phases (Bi1−xSrx)m+1Fem−3Ti3O3(m+1)−δ (m = 4−7 ..." | ||
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 | ||
"... Here, we propose a formation mechanism for core-shell nanoparticles by self-organization ..." | ||
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 | ||
Vol 14, No 2 (2023) | Colloidal-chemical mechanism of Zn(OH)2–ZnO layer formation at the glass– ammonia solution– Zn(II) interface | Abstract PDF (Eng) similar documents |
E. V. Polyakov, M. A. Maksimova, J. V. Kuznetsova, L. Yu. Buldakova | ||
"... Thermodynamic and experimental studies of Zn(OH)2/ZnO particle formation conditions in the model ..." | ||
Vol 15, No 4 (2024) | Composite sorbent based on Fe3O4 with Fe(N2H4)xCly for the removal of Chromium(VI) from wastewater. | Abstract PDF (Eng) similar documents |
D. P. Ordinartsev, N. V. Pechishcheva, S. Kh. Estemirova, A. V. Kim, E. V. Sterkhov, S. A. Petrova, G. A. Shilenko | ||
"... The paper presents a methodology for the synthesis of iron complex with hydrazine hydrate Fe(N2H4 ..." | ||
Vol 15, No 4 (2024) | Kinetic of colloidal-chemical transformations during the decomposition of ammonia complexes of Zn(II) in alkaline solutions. | Abstract PDF (Eng) similar documents |
M. A. Maksimova, E. V. Polyakov, I. V. Volkov, A. P. Tyutyunnik, A. A. Ioshin | ||
"... in the concentration of in the composition of the ammonia complex Zn(NH3)2+ 4 in solution, colloidal particles Zn(OH)2 ..." | ||
Vol 16, No 4 (2025) | Effects of mechanically activated clinoptilolite zeolite on growth of perennial leguminous grasses | Abstract PDF (Eng) similar documents |
O. N. Dabizha, T. P. Soloboeva, A. G. Batukhtin | ||
"... in grey forest soil are presented. It was found that as a result of filling the interpolymer complex ..." | ||
Vol 9, No 4 (2018) | Promising directions of increasing the properties of steel | Abstract PDF (Eng) similar documents |
A. I. Zaitsev, A. V. Koldaev, N. A. Arutyunyan | ||
"... The study of regularities of the formation and evolution of nonmetallic inclusions and phase ..." | ||
Vol 14, No 5 (2023) | Synthesis of lanthanum manganite powders via combustion reactions: some aspects of the influence of magnetic field and charge generation in precursors on the formation of properties | Abstract PDF (Eng) similar documents |
A. A. Ostroushko, I D. Gagarin, E. V. Kudyukov, T. Yu. Zhulanova, A. E. Permyakova, O. V. Russkikh | ||
"... formation process of extended ensembles of nanoparticles and the functional properties of complex oxide ..." | ||
Vol 13, No 3 (2022) | Influence of dissipative tunneling on the photodielectric effect associated with the excitation of impurity complexes A+ + e in a quasi-zero-dimensional structure | Abstract PDF (Eng) similar documents |
V. D. Krevchik, A. V. Razumov, M. B. Semenov, A. V. Levashov, A. V. Shorokhov | ||
"... Effect of tunneling decay for the quasi-stationary A+-state, in an impurity complex A+ + e (a hole ..." | ||
Vol 9, No 3 (2018) | Possibility of drug delivery due to hydrogen bonds formation in nanodiamonds and doxorubicin: molecular modeling | Abstract PDF (Eng) similar documents |
A. N. Bokarev, I. L. Plastun | ||
"... The possibility of drug delivery and retention in cells due to hydrogen bond formation between ..." | ||
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