22 results on '"Fedorenko, N. Yu."'
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2. Effect of Xerogel and Powder Synthesis Conditions on the Properties of Ceramics Based on t-ZrO2 in the ZrO2–СeO2–Al2O3 System
3. Study on the Influence of Low Temperatures on the Physicochemical Properties of Xerogels, Powders and Ceramics Based on ZrO2
4. The Influence of High Porous Ceramic Implant Based on the ZrO2–Y2O3–Al2O3 System on Vital Indications of Experimental Animals
5. Liquid-Phase Synthesis and Study of Mesoporous Aerogels, Xerogels, and Nanopowders in the ZrO2–Y2O3–CeO2 and ZrO2–Y2O3–Al2O3 Systems
6. Effect of Liquid-Phase Synthesis Method of Nanopowders on Microstructure and Physicochemical Properties of Ceramics in CeO2–Sm2O3 System
7. Comparative Characteristics of Xerogels Based on Zirconium Dioxide Obtained by the Method of Joint Deposition of Hydroxides in a Volume and a Microreactor with Counter Swirled Flows
8. Proton-Conducting Ceramics Based on Barium Hafnate and Cerate Doped with Zirconium, Yttrium, and Ytterbium Oxides for Fuel Cell Electrolytes
9. Synthesis and Research Using Computer Simulation of Proton-Conducting Solid Electrolytes Based on Hafnate and Barium Zirconate
10. Obtaining ZrO2–3 mol % Y2O3 Ceramics with Various Degrees of Tetragonality and Studying Low Temperature Degradation
11. Comparative Study of Luminophores in the System ZrO2–Y2O3–Eu2O3 Obtained by Wet Mixing and Coprecipitation Followed by Microwave Treatment
12. Influence of Xerogel Synthesis Conditions in the ZrO2–Y2O3–CeO2 System on the Properties of Powders and Ceramics Based on Them
13. Study of the Influence of An Aluminum Oxide Additive on the Physical and Chemical Properties of ZrO2 Xerogels, Powders, and Ceramics.
14. Study on the Influence of Low Temperatures on the Physicochemical Properties of Xerogels, Powders and Ceramics Based on ZrO2.
15. Effect of Xerogel and Powder Synthesis Conditions on the Properties of Ceramics Based on t-ZrO2 in the ZrO2–СeO2–Al2O3 System.
16. The Influence of High Porous Ceramic Implant Based on the ZrO2–Y2O3–Al2O3 System on Vital Indications of Experimental Animals.
17. The Influence of High Porous Ceramic Implant Based on the ZrO2–Y2O3–Al2O3System on Vital Indications of Experimental Animals
18. Liquid-Phase Synthesis and Study of Mesoporous Aerogels, Xerogels, and Nanopowders in the ZrO2–Y2O3–CeO2 and ZrO2–Y2O3–Al2O3 Systems
19. Effect of Liquid-Phase Synthesis Method of Nanopowders on Microstructure and Physicochemical Properties of Ceramics in CeO2–Sm2O3 System.
20. Liquid-Phase Synthesis and Study of Mesoporous Aerogels, Xerogels, and Nanopowders in the ZrO2–Y2O3–CeO2and ZrO2–Y2O3–Al2O3Systems
21. Obtaining ZrO2–3 mol % Y2O3 Ceramics with Various Degrees of Tetragonality and Studying Low Temperature Degradation.
22. Study on the Influence of Low Temperatures on the Physicochemical Properties of Xerogels, Powders and Ceramics Based on ZrO2.
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