Investigation of the influence of the energy conditions of pulsed plasma-chemical synthesis on the morphological and structural properties of copper-containing silica-based nanocomposites; International Journal of Materials Research; Vol. 113, iss. 2
| Parent link: | International Journal of Materials Research Vol. 113, iss. 2.— 2022.— [P. 122-130] |
|---|---|
| Korporace: | Национальный исследовательский Томский политехнический университет Инженерная школа новых производственных технологий Научно-производственная лаборатория "Импульсно-пучковых, электроразрядных и плазменных технологий", Национальный исследовательский Томский политехнический университет Исследовательская школа физики высокоэнергетических процессов |
| Další autoři: | Ponomarev D. V. Denis Vladimirovich, Kholodnaya G. E. Galina Evgenievna, Sazonov R. V. Roman Vladimirovich, Lapteva O. P. Olga Pavlovna, Konusov F. V. Fedor Valerievich, Gadirov R. M. Ruslan Mukhamedzhanovich |
| Shrnutí: | Title screen This paper presents the results of a study of the effect of energy conditions (additional heating of the walls of the reaction chamber and subsequent action of an electron beam on the synthesized powder) of pulsed plasma-chemical synthesis on the morphology, average geometric size, phase and chemical composition of copper-containing silica-based nanocomposites. The nanocomposites were synthesized using a TEA-500 pulsed electron accelerator. It was the first time that copper-containing silica-based nanocomposites had been prepared using the pulsed plasma-chemical synthesis. The values of the band gap for the as-prepared nanocomposites were calculated. The nanocomposites were characterized by means of transmission electron microscopy and X-ray diffraction. The analysis revealed the changes in the morphology and phase composition of the nanocomposites upon energy conditions. Режим доступа: по договору с организацией-держателем ресурса |
| Jazyk: | angličtina |
| Vydáno: |
2022
|
| Témata: | |
| On-line přístup: | https://doi.org/10.1515/ijmr-2021-8352 |
| Médium: | Elektronický zdroj Kapitola |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=667829 |
Podobné jednotky
Pulsed Plasma-Chemical Modification of SiO2 Nanopowder by ZnxOy Nanoparticles; International Journal of Nanoscience; Vol. 20, iss. 1
Vydáno: (2021)
Vydáno: (2021)
Pulsed plasma chemical synthesis of TiO2@TixCyOz nanocomposite; Fullerenes, Nanotubes and Carbon Nanostructures; Vol. 29, iss. 8
Vydáno: (2021)
Vydáno: (2021)
Effect of the concentration of the starting reagents and the design of the reaction chamber on the morphology and phase composition of the CuxOy@SiO2 nanocomposite synthesized by the pulsed plasma-chemical method; Inorganic and Nano-Metal Chemistry; Vol. 53, iss. 2
Vydáno: (2021)
Vydáno: (2021)
Physicochemical, optical, and photocatalytic properties of titanium dioxide modified with zinc oxide nanoparticles synthesized by a pulsed plasma chemical method; Physica B: Condensed Matter; Vol. 619
Vydáno: (2021)
Vydáno: (2021)
Synthesis and characterization of zinc oxide nanopowder; Inorganic and Nano-Metal Chemistry; Vol. 51, iss. 6
Vydáno: (2021)
Vydáno: (2021)
Study of the Influence of Morphology, Chemical and Phase Compositions of Zinc Oxide-Containing Silicon and Titanium Oxide Nanomaterials on Cytotoxic Activity; BioNanoScience; Vol. 11, iss. 2
Vydáno: (2021)
Vydáno: (2021)
Effect of Conditions of the Pulsed Plasma-chemical Synthesis on Physicochemical Properties of the CuxOy/TiO2 Nanocomposite; Current Nanomaterials; Vol. 7, iss. 3
Vydáno: (2022)
Vydáno: (2022)
Effect of the Addition of a Buffer Gas during Pulsed Plasma-Chemical Synthesis on the Structural and Morphological Characteristics of CuxOy@SiO2 and CuxOy@TiO2 Nanocomposites; Journal of Materials Engineering and Performance; Vol. 31, iss. XX
Vydáno: (2022)
Vydáno: (2022)
Use of copper phtalocyanine adsorption layer for substraction of spirits in gasochromatographic analysis; Bulletin of the Tomsk Polytechnic University; Vol. 309, № 4
Autor: Gavrilenko М. А.
Vydáno: (2006)
Autor: Gavrilenko М. А.
Vydáno: (2006)
Pulsed plasma chemical synthesis of sixcyoz nanosized composite powder; Energy Fluxes and Radiation Effects (EFRE-2016)
Autor: Kholodnaya G. E. Galina Evgenievna
Vydáno: (2016)
Autor: Kholodnaya G. E. Galina Evgenievna
Vydáno: (2016)
Hierarchically structured carbon-carbon nanocomposites: The preparation aspects; Composites Communications; Vol. 7
Vydáno: (2018)
Vydáno: (2018)
Special Features of the Structure of Copper-containing Products of Plasma Dynamic Synthesis; Russian Physics Journal; Vol. 57, № 11
Vydáno: (2015)
Vydáno: (2015)
Modeling of microstructure and elastic properties of nc-TiN/a-Si3N4 nanocomposite; Computational Materials Science; Vol. 123
Vydáno: (2016)
Vydáno: (2016)
Separation of silicon-iron-copper-nickel concentrate by fluorammonium method into individual oxides; Bulletin of the Tomsk Polytechnic University; Vol. 311, № 3
Autor: Dyachenko A. N. Alexander Nikolaevich
Vydáno: (2007)
Autor: Dyachenko A. N. Alexander Nikolaevich
Vydáno: (2007)
Theoretical predictions on dehydrogenation of methanol over copper-silica catalyst in a membrane reactor; Catalysis Today; Vol. 331
Autor: Shelepova E. V.
Vydáno: (2019)
Autor: Shelepova E. V.
Vydáno: (2019)
Synthesis of multicomponent nanocomposites containing filamentary carbon nanostructures; Fullerenes, Nanotubes and Carbon Nanostructures; Vol. 28, iss. 6
Vydáno: (2020)
Vydáno: (2020)
Influence of the Tb3+ concentration on the luminescent properties of high silica glass; Optical Materials; Vol. 86
Vydáno: (2018)
Vydáno: (2018)
Effect of redox treatments on activation and deactivation of gold nanospecies supported on mesoporous silica in CO oxidation; Fuel; Vol. 110 : IMCCRE 2012 “International-Mexican Congress on Chemical Reaction Engineering”
Vydáno: (2013)
Vydáno: (2013)
Studies on the thermal stability of nanosized powder of WC1-x-based product prepared by plasma dynamic method, compaction feasibility of the powder and preparation of composite with aluminium; Ceramics International; Vol. 47, iss. 5
Vydáno: (2021)
Vydáno: (2021)
On the possibility of controlling the morphology of carbon-containing titanium dioxide-based nanocomposites during pulsed plasma chemical synthesis; Fullerenes, Nanotubes and Carbon Nanostructures; Vol. 27, iss. 9
Vydáno: (2019)
Vydáno: (2019)
Development of sunlight-driven eutectic phase change material nanocomposite for applications in solar water heating; Resource-Efficient Technologies; Vol. 3, iss. 3
Vydáno: (2017)
Vydáno: (2017)
Improvement of sinterability and mechanical properties of magnesia-silicate ceramics with enstatite phase from mixtures of serpentinite with silica additives; Journal of Industrial and Engineering Chemistry; Vol. 106
Vydáno: (2022)
Vydáno: (2022)
Structural Organization of Nanocomposite Crystals; Russian Physics Journal; Vol. 61, iss. 10
Autor: Borodin Yu. V. Yuri Viktorovich
Vydáno: (2019)
Autor: Borodin Yu. V. Yuri Viktorovich
Vydáno: (2019)
TiO2@C nanocomposites–from synthesis to application: A review; Fullerenes, Nanotubes and Carbon Nanostructures; Vol. 29, iss. 7
Autor: Kholodnaya G. E. Galina Evgenievna
Vydáno: (2021)
Autor: Kholodnaya G. E. Galina Evgenievna
Vydáno: (2021)
Magnetron-sputtered La0.6Sr0.4Co0.2Fe0.8O3 nanocomposite interlayer for solid oxide fuel cell; Journal of Nanoparticle Research; Vol. 19, iss. 3
Vydáno: (2017)
Vydáno: (2017)
Mechanical and thermal properties of Moringa oleifera cellulose-based epoxy nanocomposites; Journal of Composite Materials; Vol. 53, iss. 5
Vydáno: (2019)
Vydáno: (2019)
Hybrid lead-free polymer-based nanocomposites with improved piezoelectric response for biomedical energy-harvesting applications: A review; Nano Energy; Vol. 62
Vydáno: (2019)
Vydáno: (2019)
Комплексное исследование модифицированного бетона на основе активированного микрокремнезема совместно с микроармирущим волокном для повышения эксплуатационных характеристик; Известия Томского политехнического университета [Известия ТПУ]. Инжиниринг георесурсов; Т. 332, № 5
Autor: Ткач Е. В. Евгения Владимировна
Vydáno: (2021)
Autor: Ткач Е. В. Евгения Владимировна
Vydáno: (2021)
Zinc-Intercalated Halloysite Nanotubes as Potential Nanocomposite Fertilizers with Targeted Delivery of Micronutrients; Materials; Vol. 16, iss. 20
Vydáno: (2023)
Vydáno: (2023)
Silica coating of Fe3O4 magnetic nanoparticles with PMIDA assistance to increase the surface area and enhance peptide immobilization efficiency; Ceramics International; Vol. 47, iss. 16
Vydáno: (2021)
Vydáno: (2021)
Nonequilibrium plasmachemical processes - the basis of future plasma technologies; Bulletin of the Tomsk Polytechnic University; Vol. 311, № 2
Vydáno: (2007)
Vydáno: (2007)
1 – Polyethylene Terephthalate: Blends, Composites, and Nanocomposites – State of Art, New Challenges, and Opportunities: Chap. 1; Poly(Ethylene Terephthalate) Based Blends, Composites and Nanocomposites
Autor: Putkhenpurakalchira M. V. Maniyan Visakkh
Vydáno: (2015)
Autor: Putkhenpurakalchira M. V. Maniyan Visakkh
Vydáno: (2015)
Mechanical Activation of Smectite‐Based Nanocomposites for Creation of Smart Fertilizers; Applied Sciences; Vol. 12, iss. 2
Vydáno: (2022)
Vydáno: (2022)
Measuring the Changes in Copper Nanopowder Conductivity during Heating as a Method for Diagnosing its Thermal Stability; Key Engineering Materials; Vol. 769 : High Technology: Research and Applications (HTRA 2017)
Vydáno: (2018)
Vydáno: (2018)
Porous Inorganic Carriers Based on Silica, Calcium Carbonate and Calcium Phosphate for Controlled/Modulated Drug Delivery: Fresh Outlook and Future Perspectives; Pharmaceutics; Vol. 10, iss. 4
Vydáno: (2018)
Vydáno: (2018)
Moringa oleifera (Drum Stick Vegetable Fibre) Based Nanocomposites with Natural Rubber: Preparation and Characterizations; Waste and Biomass Valorization; Vol. 7, iss. 5
Autor: Sajithkumar K. J.
Vydáno: (2016)
Autor: Sajithkumar K. J.
Vydáno: (2016)
Ionization Processes in a Carbon Aerosol Upon Exposure to Long Laser Pulses. I; Russian Physics Journal; Vol. 65, iss. 2
Vydáno: (2022)
Vydáno: (2022)
Ionization Processes in a Carbon Aerosol Upon Exposure to Long Laser Pulses. II; Russian Physics Journal; Vol. 65, iss. 4
Vydáno: (2022)
Vydáno: (2022)
Conceptual rationale for the use of chemically modified nanocomposites for active influence on atherosclerosis using the greater omentum model of experimental animals; Nanomedicine: Nanotechnology, Biology and Medicine; Vol. 62
Vydáno: (2024)
Vydáno: (2024)
Graph-analytic engineering method of corrosion current calculation in multielectrode system; Bulletin of the Tomsk Polytechnic University; Vol. 310, № 2
Vydáno: (2007)
Vydáno: (2007)
Podobné jednotky
-
Pulsed Plasma-Chemical Modification of SiO2 Nanopowder by ZnxOy Nanoparticles; International Journal of Nanoscience; Vol. 20, iss. 1
Vydáno: (2021) -
Pulsed plasma chemical synthesis of TiO2@TixCyOz nanocomposite; Fullerenes, Nanotubes and Carbon Nanostructures; Vol. 29, iss. 8
Vydáno: (2021) -
Effect of the concentration of the starting reagents and the design of the reaction chamber on the morphology and phase composition of the CuxOy@SiO2 nanocomposite synthesized by the pulsed plasma-chemical method; Inorganic and Nano-Metal Chemistry; Vol. 53, iss. 2
Vydáno: (2021) -
Physicochemical, optical, and photocatalytic properties of titanium dioxide modified with zinc oxide nanoparticles synthesized by a pulsed plasma chemical method; Physica B: Condensed Matter; Vol. 619
Vydáno: (2021) -
Synthesis and characterization of zinc oxide nanopowder; Inorganic and Nano-Metal Chemistry; Vol. 51, iss. 6
Vydáno: (2021)