nr |
titel |
auteur |
tijdschrift |
jaar |
jaarg. |
afl. |
pagina('s) |
type |
1 |
Activity Coefficients and Solubility of Uranium in Liquid-Metal Pb–Sn Alloys
|
Novoselova, A. V. |
|
|
2025 |
2 |
p. 395-399 |
artikel |
2 |
Adsorption at the Ni and Ti Interface in a LiCl–KCl Melt: Molecular Dynamics Simulation
|
Kobelev, M. A. |
|
|
2025 |
2 |
p. 285-292 |
artikel |
3 |
Aluminizing as a Method to Reduce the Degradation of Structural Materials in Molten Lead
|
Filippov, I. D. |
|
|
2025 |
2 |
p. 307-318 |
artikel |
4 |
Bulk Crystallization of Supercooled Binary Melts with Allowance for Crystal Growth Rate Fluctuations
|
Alexandrov, D. V. |
|
|
2025 |
2 |
p. 354-363 |
artikel |
5 |
Diffusion Boriding of VT1-0 and VT16 Titanium in an Oxide–Halide Salt Melt
|
Rozhentsev, D. A. |
|
|
2025 |
2 |
p. 421-427 |
artikel |
6 |
Effect of a Co–Mo–P–O Catalyst on the Electrochemical Properties of Electrolytic Nickel Foams
|
Nikitin, V. S. |
|
|
2025 |
2 |
p. 400-408 |
artikel |
7 |
Effect of Laser Melting of Ni–B–Si Coatings on the Phase and Element Distribution in the Base Material
|
Bakhteev, I. S. |
|
|
2025 |
2 |
p. 443-450 |
artikel |
8 |
Effect of Li2O and LiOH on the Corrosion Behavior of Fe, Co, Ni, and 29NK Alloy in the FLiNaK Melt
|
Seliverstov, K. E. |
|
|
2025 |
2 |
p. 386-394 |
artikel |
9 |
Effect of Melting Conditions on the Phase and Structural Composition of an Al–Ti–Zr–V–Nb–Fe Coating
|
Kiselev, M. V. |
|
|
2025 |
2 |
p. 428-434 |
artikel |
10 |
Effect of Rare-Earth Elements (Gd, Y) on the High-Temperature Oxidation of Al–Ti–(Nb,Ta) Alloys
|
Russkih, A. S. |
|
|
2025 |
2 |
p. 451-457 |
artikel |
11 |
Effect of Temperature on the Diffusion of the Anion in a Low-Temperature Triethylamine Hydrochloride–Aluminum Chloride Melt
|
Borozdin, A. V. |
|
|
2025 |
2 |
p. 274-278 |
artikel |
12 |
Effect of the Redox Potential of a Medium on the Degradation of 12Kh18N10T Steel the FLiNaK–TiF4/TiF3 Melt
|
Seliverstov, K. E. |
|
|
2025 |
2 |
p. 348-353 |
artikel |
13 |
Electrochemical Behavior of Uranium Ions in Lithium and Beryllium Fluoride Melts
|
Arkhipov, S. P. |
|
|
2025 |
2 |
p. 293-299 |
artikel |
14 |
Emissivity of the Period V Metallic Elements of the Periodic Table during Melting: Correlation with Thermophysical Properties
|
Kosenkov, D. V. |
|
|
2025 |
2 |
p. 409-414 |
artikel |
15 |
Influence of CaF2 on the Liquidus Temperature and Density of the Molten (СаСl2–КCl)–CaF2 System
|
Laptev, M. V. |
|
|
2025 |
2 |
p. 470-477 |
artikel |
16 |
Influence of the Anionic Composition on the Electrical Conductivity of Beryllium-Containing Molten Salt Mixtures
|
Rebrin, O. I. |
|
|
2025 |
2 |
p. 332-340 |
artikel |
17 |
Interaction of 16Kh12MVSFBR Steel with Nitrogen at 650–800°C
|
Mazannikov, M. V. |
|
|
2025 |
2 |
p. 341-347 |
artikel |
18 |
Mechanism of the Joint Electroreduction of La3+ and Ni2+ Ions in a KCl–NaCl–CsCl Eutectic Melt at 823 K
|
Kushkhov, Kh. B. |
|
|
2025 |
2 |
p. 252-262 |
artikel |
19 |
On the Possibility of Synthesizing Polycrystalline Antimony-Doped Indium–Gallium–Zinc Oxide
|
Zirnik, G. M. |
|
|
2025 |
2 |
p. 415-420 |
artikel |
20 |
Phase Diagrams of the FeO–MnO–MgO–SiO2 Oxide System: Binary MnO–SiO2 and MgO–SiO2 Oxide Systems
|
Makrovets, L. A. |
|
|
2025 |
2 |
p. 263-268 |
artikel |
21 |
Phase Diagrams of the FeO–MnO–MgO–SiO2 Oxide System: Ternary FeO–MnO–SiO2, FeO–MgO–SiO2, and MgO–MnO–SiO2 Phase Diagrams
|
Makrovets, L. A. |
|
|
2025 |
2 |
p. 269-273 |
artikel |
22 |
Physicochemical Interaction in the TiAl–Nb/V Systems during Aluminothermic Synthesis
|
Osinkina, T. V. |
|
|
2025 |
2 |
p. 435-442 |
artikel |
23 |
Physicochemical Properties of Li6.6Al0.05La3Zr1.75Nb0.25O12 Films Fabricated by Tape Casting on Metal Substrates
|
Lyalin, E. D. |
|
|
2025 |
2 |
p. 364-370 |
artikel |
24 |
Physicochemical Properties of Lithium–Vanadium Li1.3V3O8 Bronze Synthesized from a Melt
|
Shchelkanova, M. S. |
|
|
2025 |
2 |
p. 279-284 |
artikel |
25 |
Possibility of High-Entropy Alloy Formation: A Brief Review
|
Ilinykh, N. I. |
|
|
2025 |
2 |
p. 464-469 |
artikel |
26 |
Radiative Contribution to Thermal Conductivity for FLiNaK–CeF3 Molten Mixtures Used as an Example
|
Kesler, K. O. |
|
|
2025 |
2 |
p. 247-251 |
artikel |
27 |
Stability of Gold Nanotubes
|
Sozykina, E. R. |
|
|
2025 |
2 |
p. 319-322 |
artikel |
28 |
Structures of Phosphate Melts Based on Lithium Metaphosphate in a Model Experiment
|
Babina, I. A. |
|
|
2025 |
2 |
p. 300-306 |
artikel |
29 |
Synthesis and Modification of the Surface of Electrolytic Nickel Foams as Catalytically Active Electrode Materials for Hydrogen Production by Electrolysis
|
Nikitin, V. S. |
|
|
2025 |
2 |
p. 323-331 |
artikel |
30 |
Synthesis of Indium–Gallium–Zinc Oxide with an Increased Indium Content by Solid-State Reaction
|
Kovalev, A. |
|
|
2025 |
2 |
p. 458-463 |
artikel |
31 |
Two-Step Nucleation and Growth of Crystals in a Supersaturated Solution with Allowance for Mass Exchange with the Environment
|
Glebova, A. E. |
|
|
2025 |
2 |
p. 371-385 |
artikel |