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Issue | Title | |
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 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 8, No 6 (2017) | Stable Ti9O10 nanophase grown from nonstoichiometric titanium monoxide TiOy nanopowder | Abstract PDF (Eng) similar documents |
A. A. Valeeva, M. G. Kostenko | ||
Vol 11, No 5 (2020) | Influence effect of an external electric field and dissipative tunneling on intracenter optical transitions in quantum molecules with D2− states | Abstract PDF (Eng) similar documents |
V. D. Krevchik, A. V. Razumov, P. V. Krevchik, M. B. Semenov, A. V. Shorokhov, А. P. Shkurinov, I. A. Ozheredov, Y. H. Wang, A. K. Malik | ||
"... of the electron radiative transition from a quasistationary u-state to a quasi-stationary g-state of the-center ..." | ||
Vol 8, No 4 (2017) | Phase transitions in nanostructured K(1-X)(NH4)(X)H2PO4 (X = 0 – 0.15) solid solutions | Abstract PDF (Eng) similar documents |
P. Yu. Vanina, A. A. Naberezhnov, O. A. Alekseeva, A. A. Sysoeva, D. P. Danilovich, V. I. Nizhankovskii | ||
"... Effect of ammonium dihydrogen phosphate admixture on phase transitions in nanostructured solid ..." | ||
Vol 8, No 4 (2017) | Calculations of the onset temperature for tunneling in multispin systems | Abstract PDF (Eng) similar documents |
S. M. Vlasov, P. F. Bessarab, V. M. Uzdin, H. J´onsson | ||
"... the dominant transition mechanism. A method is presented for estimating the onset temperature for tunneling ..." | ||
Vol 8, No 6 (2017) | Instantons describing tunneling between magnetic states at finite temperature | Abstract PDF (Eng) similar documents |
S. M. Vlasov, P. F. Bessarab, V. M. Uzdin, H. Jónsson | ||
"... -order and second-order crossovers from over-the-barrier mechanism to tunneling are found depending ..." | ||
Vol 13, No 3 (2022) | The Gaussian impurity effect on the electronic and magnetic properties of an electron con ned in a lateral quantum dot | Abstract PDF (Eng) similar documents |
A. Shaer, M. K. Elsaid | ||
"... curves, resulting in an exciting diamagnetic-paramagnetic phase transition. ..." | ||
Vol 14, No 2 (2023) | Nucleation and collapse of magnetic topological solitons in external magnetic field | Abstract PDF (Eng) similar documents |
M. N. Potkina, I. S. Lobanov, V. M. Uzdin | ||
"... tons on the external magnetic field is calculated within the framework of the harmonic transition state ..." | ||
Vol 15, No 2 (2024) | Nucleation of magnetic skyrmions at a notch | Abstract PDF (Eng) similar documents |
M. N. Potkina, I. S. Lobanov | ||
Vol 11, No 6 (2020) | Nonmagnetic impurities in skyrmion racetrack memory | Abstract PDF (Eng) similar documents |
M. N. Potkina, I. S. Lobanov, V. M. Uzdin | ||
Vol 11, No 6 (2020) | Machine learning method for computation of optimal transitions in magnetic nanosystems | Abstract PDF (Eng) similar documents |
K. R. Bushuev, I. S. Lobanov | ||
"... and transition rates for magnetic systems. Recently, new methods for numeric computation of MEP were proposed ..." | ||
Vol 10, No 4 (2019) | Thermodynamics of H–T phase transition in MoS2 single layer | Abstract PDF (Eng) similar documents |
I. S. Popov, A. N. Enyashin | ||
"... and T(T0)→H transitions are found to be in fair agreement with previous studies which employed ..." | ||
Vol 16, No 3 (2025) | Optimality of linear vacancy defect for skyrmion nucleation | Abstract PDF (Eng) similar documents |
M. N. Potkina, I. S. Lobanov | ||
Vol 10, No 2 (2019) | Thermal expansion coefficients of NaNO2 embedded into the nanoporous glasses | Abstract PDF (Eng) similar documents |
O. A. Alekseeva, A. A. Naberezhnov, D. Yu. Chernyshov, A. V. Fokin, A. A. Sysoeva, E. Rysiakiewicz-Pasek | ||
"... that in these nanocomposites the phase transition from the ferroelectric to paraelectric phase remains the first-order phase ..." | ||
Vol 16, No 1 (2025) | Phase transformations in perovskites La0:6Ca0:4Mn1-yCoyO3±δ under the action of hydrogen | Abstract PDF (Eng) similar documents |
A. V. Kapishnikov, E. Yu. Gerasimov | ||
"... phase transition of the Rudlesden–Popper phase into the perovskite phase occurs. ..." | ||
Vol 15, No 6 (2024) | (CdO)1-x(Mn3O4)x (x = 0.0/0.25/0.50/0.75/1.0) nanocrystals: preparation by a facile method, physicochemical properties and applications | Abstract PDF (Eng) similar documents |
S. Jebisha, G. Deepa, J. Johnson, C.K. Mahadevan | ||
Vol 15, No 3 (2024) | Stability and transformations of domain walls in cylindrical wires | Abstract PDF (Eng) similar documents |
K. A. Chichay, I. S. Lobanov, V. M. Uzdin | ||
"... states and the activation energies of transitions between such states. The mechanisms of nucleation ..." | ||
Vol 15, No 5 (2024) | Magnesium based tin-silicon alloys under pressure: first-principles evolution search results | Abstract PDF (Eng) similar documents |
Yuri V. Luniakov | ||
Vol 13, No 5 (2022) | Phase transitions for the "uncle-nephew" model | Abstract PDF (Eng) similar documents |
N. N. Ganikhodjaev, M. M. Rahmatullaev, M. R. Abdusalomova | ||
"... We investigate a problem of phase transition for all possible phases of "uncle-nephew" model ..." | ||
Vol 11, No 6 (2020) | Formation of nanocrystals based on equimolar mixture of lanthanum and yttrium orthophosphates under microwave-assisted hydrothermal synthesis | Abstract PDF (Eng) similar documents |
M. O. Enikeeva, O. V. Proskurina, D. P. Danilovich, V. V. Gusarov | ||
"... orthophosphates in the system 0.53LaPO4–0.47YPO4–(nH2O) has been determined. It has been proposed the mechanism ..." | ||
Vol 8, No 1 (2017) | Equilibrium properties of 3-arm star-shaped polyions: an entropic sampling Monte Carlo study | Abstract PDF (Eng) similar documents |
I. A. Silanteva, A. A. Yurchenko, P. N. Vorontsov-Velyaminov, A. P. Lyubartsev | ||
"... permittivity. The coil-globule transition is observed in most of the considered cases, and for the polyions ..." | ||
Vol 10, No 3 (2019) | Orientational order parameter of liquid crystalline nanocomposites by Newton’s rings and image analysis methods | Abstract PDF (Eng) similar documents |
H. M. Munavar, B. H. Doreswamy, N. C. Shobha, V. N. Vijayakumar, K. Fakruddin | ||
"... transition temperatures are measured by both polarizing optical microscope (POM) and differential scanning ..." | ||
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 | ||
"... structure and the energy redistribution of Eu3+ optical transitions at 614 – 626 nm and 606 –633 nm ..." | ||
Vol 8, No 3 (2017) | Distribution of supercritical nucleation centers during the crystallization process in the presence of a flow as illustrated by the example of boron carbide-reinforced aluminum | Abstract PDF (Eng) similar documents |
M. A. Durnev, E. D. Eidelman | ||
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 | ||
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 | ||
"... and pressure 6 GPa revealed that a transition from the cubic B1 (sp. gr. Fm¯3m) phase to the trigonal Ti2O3 (sp ..." | ||
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 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 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 14, No 2 (2023) | Features of Ca1-xYxF2+x solid solution heat capacity behavior: diffuse phase transition | Abstract PDF (Eng) similar documents |
A. A. Alexandrov, A. D. Rezaeva, V. A. Konyushkin, A. N. Nakladov, S. V. Kuznetsov, P. P. Fedorov | ||
"... C. Adiffuse phase transition in the solid state for concentrations x =0.01–0.03 is fixed ..." | ||
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 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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