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Область научных интересов
Функциональные наноматериалы, наноструктуры, неорганический синтез, физико-химические закономерности, сорбция, катализ, биотехнологии, высокотемпературные материалы, ядерные технологии, золь-гель процесс, искровое плазменное спекание
Достижения
Лауреат премии академика им. В.А. Легасова ''за исследования и идеи в области химии и технологии новых неорганических материалов'' за 2019 год. (2019, Москва)
Лучший Выпускник ДВФУ 2017 «Топ 100 лучших выпускников»
Стипендиат ''Благотворительного фонда Потанина'', 2016-2017;
Стипендиат компании British Petroleum 2016-2017;
Лауреат премии «Аякс-2016», персона года ДВФУ за научные достижения;
Стипендиат Губернатора Приморского края 2016-2017;
Стипендиат Губернатора Приморского края 2015-2016;
Стипендиат Правительства РФ 2015-2016;
Лауреат малой Премии издательства «Наука/Интерпериодика» за лучшую публикацию в издаваемых ею журналах в 2014 году (2014 г., Москва).
Наукометрические показатели
Общее количество публикаций – более 100
Web of Science – 30
Scopus – 88
РИНЦ – 193
Количество патентов - 7
Индекс Хирша (Web of Science / Scopus / РИНЦ) – 17 / 21 / 18
Профиль ученого
Контакты
E-mail: oleg_shich@mail.ru
Публикации
Ceramic materials: Manufacture and behavior under long-term exposure to dissociated air streams
Ceramic Materials: Manufacture and Behavior under Long-Term Exposure to Dissociated Air Jet Flow
Темплатный синтез пористых оксидов железа с магнитными и каталитическими свойствами
Макропористые катализаторы для жидкофазного окисления на основе оксидов вольфрама
Behavior of HfB2 -SiC (10, 15, and 20 vol %) Ceramic Materials in High-Enthalpy Air Flows
Wollastonite ceramics with bimodal porous structures prepared by sol – gel and SPS techniques
Preparation of porous SiC-ceramics by sol – gel and spark plasma sintering
Synthesis of nanostructured iron oxides and new magnetic ceramics using sol-gel and SPS techniques
Spark plasma sintering of special-purpose functional ceramics based on UO2, ZrO2, Fe3O4/α-Fe2O3
Fabrication of highly-doped Nd3+:YAG transparent ceramics by reactive SPS
UO2 fuel pellets fabrication via Spark Plasma Sintering using nonstandard molybdenum die
SPS-RS technique for solid-phase “in situ” synthesis of biocompatible ZrO2 porous ceramics
Технология SPS-RS для твердофазного «in situ» синтеза биокерамики на основе ZrO2
A complex approach to assessing porous structure of structured ceramics obtained by SPS technique
SPS technique for ionizing radiation source fabrication based on dense cesium-containing core
Spark plasma sintering of alumosilicate ceramic matriсes for immobilization of cesium radionuclides
Sol–Gel Synthesis of Functionally Graded SiC–TiC Ceramic Material
Synthesis of Hf-C-N ceramics by spark plasma sintering
Synthetic CaSiO3 sol-gel powder and SPS ceramic derivatives: “In vivo” toxicity assessment
ZrO2 -phosphates porous ceramic obtained via SPS-RS “in situ” technique: Bacteria test assessment
Reactive Spark Plasma Synthesis of Porous Bioceramic Wollastonite
Spark plasma sintering of UO2 fuel composite with Gd2O3 integral fuel burnable absorber
Иммобилизация стронция-90 в матрицу микрокристаллического цеолита Na-A
UO2-Eu2O3 compound fuel fabrication via spark plasma sintering
CaSiO3-HAp structural bioceramic by sol-gel and SPS-RS techniques: Bacteria test assessment
Synthesis and Spark Plasma Sintering of Microcrystalline Thorium Dioxide for Nuclear Fuel Products
Influence of carbon contamination on transparency of reactive SPSed Nd3+:YAG ceramics
Spark plasma sintering-reactive synthesis of SrWO4 ceramic matrices for 90Sr immobilization
Refractory HfC-HfN ceramics tested in a plasma flow
A novel IR-transparent Ho3+:Y2O3–MgO nanocomposite ceramics for potential laser applications
WC-5TiC-10Co hard metal alloy fabrication via mechanochemical and SPS techniques
Influence of sintering parameters on transparency of reactive SPSed Nd3+:YAG ceramics
Refractory HfC-HfN ceramics tested in a plasma flow
A novel IR-transparent Ho3+:Y2O3–MgO nanocomposite ceramics for potential laser applications
WC-5TiC-10Co hard metal alloy fabrication via mechanochemical and SPS techniques
Influence of sintering parameters on transparency of reactive SPSed Nd3+:YAG ceramics
Reactive SPS of Nd3+:YAG transparent ceramics with LiF sintering additivet
UO2-Eu2O3 compound fuel fabrication via spark plasma sintering
Fast (Ce,Gd)3Ga2Al3O12 Scintillators Grown by the Optical Floating Zone Method
Hybrid Microwave Solid-Phase Synthesis of Wollastonite Based on Natural Renewable Raw Materials
Study of Strontium Sorption by Amorphous Calcium Silicate
A Study of the Wear Mechanism of Composites Modified with Silicate Filler
Ce3+, Pr3+ Co-Doped Lu3Al5O12 Single Crystals and Ceramics: A Comparative Study
Fabrication and thermoelectric properties of SrTiO3–TiO2 composite ceramics
Ionizing radiation source-open type fabrication using additive technology and spark plasma sintering
Effect of nanocrystalline SiC addition on reactive SPS and oxidation resistance of Ta4HfC5 ceramics
CaSiO3-HAp Metal-Reinforced Biocomposite Ceramics for Bone Tissue Engineering
Reactive SPS of Al2O3–RE:YAG (RE = Ce; Ce+Gd) composite ceramic phosphors
Solidification of cesium containing magnetic zeolite sorbent by spark plasma sintering