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Команда Sinterlab
Буравлев Игорь Юрьевич
ведущий научный сотрудник | кандидат химических наук
Область научных интересов
– электроимпульсное плазменное спекание функциональных материалов класса керамик, металлокерамических твердых сплавов, высокотемпературных материалов, материалов ядерного и биомедицинского назначения;
– высокотемпературный механохимический синтез тугоплавких соединений;
– аспекты физикохимии и материаловедения в междисциплинарных научных исследованиях в области сохранения и изучения материально-культурного наследия;
– технологии преподавания в высшей школе.
Наукометрия
- Общее количество публикаций – более 100
- Web of Science – 45
- Scopus – 50
- РИНЦ – 132
- Количество патентов - 13
- Индекс Хирша (Web of Science / Scopus / РИНЦ) – 12 / 14 / 10
Научные работы
Публикации
041001Synthetic Calcium Silicate Biocomposite Based on Sea Urchin Skeleton for 5-Fluorouracil Cancer DeliveryОткрыть ↗002CaSiO3-HAp Metal-Reinforced Biocomposite Ceramics for Bone Tissue EngineeringОткрыть ↗003Synthesis of amorphous KAlSi3O8 for cesium radionuclide immobilization into solid matrices using spark plasma sintering techniqueОткрыть ↗004Synthesis and spark plasma sintering of solid-state matrices based on calcium silicate for 60Co immobilizationОткрыть ↗005Sorption Composites Based on K-Ni and K-Zn Mixed-Metal Ferrocyanides for Extracting Cesium from SeawaterОткрыть ↗006Reaction synthesis of SrTiO3 mineral-like ceramics for strontium-90 immobilization via additional in-situ synchrotron studiesОткрыть ↗007Rabbit’s cranial defect regeneration using a fine-grained ZrO2- (15 wt%)HAp ceramic implant fabricated by SPS-RS techniqueОткрыть ↗008Hydrothermal synthesis, structure and sorption performance to cesium and strontium ions of nanostructured magnetic zeolite compositesОткрыть ↗009Hydrothermal synthesis and spark plasma sintering of NaY zeolite as solid-state matrices for cesium-137 immobilizationОткрыть ↗010Hybrid Microwave Solid-Phase Synthesis of Wollastonite Based on Natural Renewable Raw MaterialsОткрыть ↗011Comparative study of WC-based hard alloys fabrication via spark plasma sintering using Co, Fe, Ni, Cr, and Ti bindersОткрыть ↗012A Study of the Wear Mechanism of Composites Modified with Silicate FillerОткрыть ↗013A novel approach for rice straw agricultural waste utilization: Synthesis of solid aluminosilicate matrices for cesium immobilizationОткрыть ↗014UO2–Y2O3 ceramic nuclear fuel: SPS fabrication, physico-chemical investigation and neutron absorption evaluationОткрыть ↗015Synthetic nanostructured wollastonite: Composition, structure and “in vitro” biocompatibility investigationОткрыть ↗016Synthesis of porous biomimetic composites: A sea urchin skeleton used as a templateОткрыть ↗017Synthesis of Perovskite-Like SrTiO3 Ceramics for Radioactive Strontium Immobilization by Spark Plasma Sintering-Reactive SynthesisОткрыть ↗018Synthesis of Mineral-Like SrWO4 Ceramics with the Scheelite Structure and a Radioisotope Product Based on ItОткрыть ↗019SrAl2Si2O8 ceramic matrices for 90Sr immobilization obtained via spark plasma sintering-reactive synthesisОткрыть ↗020Spark Plasma Sintering-Reactive Synthesis of SiC and SiC–HfB2 Ceramics Based on Natural Renewable Raw MaterialsОткрыть ↗021UO2-Eu2O3 compound fuel fabrication via spark plasma sinteringОткрыть ↗022Synthesis and Spark Plasma Sintering of Microcrystalline Thorium Dioxide for Nuclear Fuel ProductsОткрыть ↗023Synthesis and Sorption Characteristics of Magnetic Materials Based on Cobalt Oxides and Their Reduced FormsОткрыть ↗024SPS hard metal alloy WC-8Ni-8Fe fabrication based on mechanochemical synthetic tungsten carbide powderОткрыть ↗025Spark plasma sintering-reactive synthesis of SrWO4 ceramic matrices for 90Sr immobilizationОткрыть ↗026Spark plasma sintering of UO2 fuel composite with Gd2O3 integral fuel burnable absorberОткрыть ↗027Sol-gel (template) synthesis of osteoplastic CaSiO3 HAp powder biocomposite: “in vivo” biocompatibility assessmentОткрыть ↗028Reactive Spark Plasma Synthesis of Porous Bioceramic WollastoniteОткрыть ↗029Macroporous Magnetic Iron Oxides and Their Composites for Liquid-Phase Catalytic OxidationОткрыть ↗030CaSiO3-HAp structural bioceramic by sol-gel and SPS-RS techniques: Bacteria test assessmentОткрыть ↗031Spark plasma sintering of alumosilicate ceramic matriсes for immobilization of cesium radionuclidesОткрыть ↗032Nanostructured magnetic sorbents for selective recovery of uranium(VI) from aqueous solutionsОткрыть ↗033Spark plasma sintering of special-purpose functional ceramics based on UO2, ZrO2, Fe3O4/α-Fe2O3Открыть ↗