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Issue | Title | |
Vol 13, No 6 (2022) | Multi-order and structural mechanism of atom nanocluster formation in rhombohedral Cu-Zr-thiospinels | Abstract PDF (Eng) similar documents |
V. M. Talanov, M. V. Talanov | ||
"... A structural mechanism for the formation of nanoclusters and the rhombohedral modification of CuZr ..." | ||
Vol 12, No 2 (2021) | A quantum chemical study on the magnetic nanocarrier-tirapazamine drug delivery system | Abstract PDF (Eng) similar documents |
S. Avarand, A. Morsali, M. M. Heravi, S. А. Beyramabadi | ||
"... the temperature, TPZ can bond to MNP through NH2 (NH2 mechanism), NO (NO mechanisms) and intraring N-atom (N ..." | ||
Vol 2, No 2 (2011) | Simulation of structural transformations in copper nanoparticles under collision | Abstract PDF (Eng) similar documents |
A. Yu. Smolin, N. V. Roman, K. P. Zolnikov, S. G. Psakhie, V. K. Kedrinskii | ||
"... was not symmetric one. The changes in potential energy of the particles, structural transformation from one type ..." | ||
Vol 6, No 5 (2015) | Prediction of glass forming ability in CuxZr1−x alloys using molecular dynamics | Abstract PDF (Eng) similar documents |
M. M. Khandpekar, A. Shrivastava, D. S. Gowtam, M. Mohape, V. P. Deshmukh | ||
Vol 4, No 5 (2013) | Low-temperature thermopower in disordered carbon nanotubes | Abstract PDF (Eng) similar documents |
V. E. Egorushkin, N. V. Melnikova, N. G. Bobenko, A. N. Ponomarev | ||
"... multiple elastic electron scattering on impurities and shortrange structural inhomogeneities. A possible ..." | ||
Vol 7, No 3 (2016) | Photoluminescence characteristics of nanocrystalline Ba0.97Ca0.03SO4:EU by combustion method | Abstract PDF (Eng) similar documents |
P. Rubalajyothi, L. C. Nehru | ||
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 | ||
"... Structural transformations of nanocrystals in the LaPO4–YPO4–(H2O) oxide system were investigated ..." | ||
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 | ||
"... Structural transformations of nanocrystals in the LaPO4–GdPO4–(H2O) system under hydrothermal ..." | ||
Vol 16, No 3 (2025) | Investigation of morphological features and thermal stability of regenerated wood cellulose from solutions in [BMIm]Cl | Abstract PDF (Eng) similar documents |
M. G. Mikhaleva, S. V. Usachev, A. S. Vedenkin, M. I. Ikim, G. G. Politenkova, S. M. Lomakin | ||
"... . The impact of [BMIm]Cl on the structural characteristics of regenerated cellulose was investigated through IR ..." | ||
Vol 7, No 6 (2016) | Synthesis and studies on structural and optical properties of zinc oxide and manganese-doped zinc oxide nanoparticles | Abstract PDF (Eng) similar documents |
S. Ajin Sundar, N. Joseph John | ||
Vol 7, No 6 (2016) | Formation and structural transformations of nanoparticles in the TiO2–H2O system | Abstract PDF (Eng) similar documents |
O. V. Almjasheva | ||
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 | ||
"... as creating a hierarchical system of micro-mesopores. The mechanism of the ZrO2 · nH2O formation during ..." | ||
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 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 13, No 4 (2022) | Near-IR photoluminescence and structural properties of TiO2 powders with nanocrystalline anatase/brookite matrix | Abstract PDF (Eng) similar documents |
E. S. Ulyanova, E. V. Shalaeva, Yu. S. Ponosov, O. A. Lipina, A. A. Markov | ||
"... ) and below band-gap green (Eex < Eb) excitation. A mechanism underlying NIR-PL in brookite with green ..." | ||
Vol 2, No 2 (2011) | Stability of 2D triangular lattice under finite biaxial strain | Abstract PDF (Eng) similar documents |
E. A. Podolskaya, A. yu. Panchenko, A. M. Krivtsov | ||
"... and vertical orientations of the lattice are obtained. It means that a structural transition, which is equal ..." | ||
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 | ||
"... precipitates in modern structural steels has been carried out. It has been shown that the formation of several ..." | ||
Vol 3, No 5 (2012) | Аbout mechanism of initial stage of formation of nanostructures in the conditions of super-low temperatures | Abstract similar documents |
A. P. Belyaev, V. P. Rubets, V. V. Antipov, N. S. Bordei | ||
Vol 7, No 4 (2016) | Structural and magnetic properties of BaCo2−xNixFe16O27 hexagonal ferrite prepared by a simple heat treatment method | Abstract PDF (Eng) similar documents |
Chetna C. Chauhan, Rajshree B. Jotania | ||
"... (VSM) techniques in order to study the effect of nickel substitution on structural and magnetic ..." | ||
Vol 2, No 3 (2011) | Influence of shear strain on stability of 2D triangular lattice | Abstract PDF (Eng) similar documents |
E. A. Podolskaya, A. Yu. Panchenko, K. S. Bukovskaya | ||
"... . It means that a structural transition, which is equal to the change of lattice orientation, is possible. ..." | ||
Vol 3, No 3 (2012) | Structural transformations in the ZrO2-Al2O3 nanocomposite by heating | Abstract similar documents |
I. Kuchuk, O. Almjasheva | ||
Vol 9, No 4 (2018) | Effect of high pressures and high temperatures on the structure of nanostructured titanium monoxide | Abstract PDF (Eng) similar documents |
А. А. Valeeva, М. G. Kostenko, A. Pfitzner, А. А. Rempel | ||
"... The structure of nanostructured titanium monoxide TiO0.98 containing structural vacancies in two ..." | ||
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 | ||
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 | ||
"... mechanism is replaced by a faster diffusion-controlled attachment of Zn (II) ammonia complex to the end ..." | ||
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 | ||
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 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 7, No 6 (2016) | Minimum energy path calculations with Gaussian process regression | Abstract PDF (Eng) similar documents |
O-P. Koistinen, E. Maras, H. Jonsson | ||
"... is an important task in many contexts and can often be used to determine the mechanism and rate of transitions ..." | ||
Vol 6, No 6 (2015) | Degradation of perovskites and Dexter-Varley paradox | Abstract PDF (Eng) similar documents |
B. L. Oksengendler, S. E. Maksimov, M. B. Marasulov | ||
"... This work presents a model for the degradation mechanism of organic{inorganic hybrid photovoltaic ..." | ||
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 | ||
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