Pulsed plasma chemical synthesis of TiO2@TixCyOz nanocomposite

In this work, the TiO2@TixCyOz nanocomposite was obtained by adding a buffer gas to the initial mixture of reagents by the pulsed plasma-chemical method. Argon was used as a buffer gas. Pulsed plasma-chemical synthesis was realized using a TEA-500 electron accelerator. The physicochemical properties...

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Published in:Fullerenes, nanotubes, and carbon nanostructures Vol. 29, № 8. P. 567-575
Other Authors: Sazonov, Roman V., Kholodnaya, Galina, Ponomarev, Denis, Lapteva, Olga, Konusov, Fedor V., Gadirov, Ruslan M., Zhirkov, Igor
Format: Article
Language:English
Subjects:
Online Access:http://vital.lib.tsu.ru/vital/access/manager/Repository/koha:000895286
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337 |a электронный 
520 3 |a In this work, the TiO2@TixCyOz nanocomposite was obtained by adding a buffer gas to the initial mixture of reagents by the pulsed plasma-chemical method. Argon was used as a buffer gas. Pulsed plasma-chemical synthesis was realized using a TEA-500 electron accelerator. The physicochemical properties of the obtained TiO2@TixCyOz nanocomposites (morphology, average particle size, elemental, and phase composition) were studied. It was shown that by changing the buffer gas concentration, it was possible to control the phase composition, particle size, and shell thickness of TiO2@TixCyOz nanocomposites. The values of the band gap were calculated for the synthesized TiO2@TixCyOz nanocomposites. The photocatalytic and adsorption properties of TiO2@TixCyOz nanocomposites were studied. 
653 |a нанокомпозиты 
653 |a импульсный плазмохимический метод 
653 |a ускорители электронов 
653 |a фотокаталитические свойства 
653 |a адсорбционные свойства 
655 4 |a статьи в журналах  |9 879358 
700 1 |a Sazonov, Roman V.  |9 803558 
700 1 |a Kholodnaya, Galina  |9 503044 
700 1 |a Ponomarev, Denis  |9 503042 
700 1 |a Lapteva, Olga  |9 805921 
700 1 |a Konusov, Fedor V.  |9 814408 
700 1 |a Gadirov, Ruslan M.  |9 95832 
700 1 |a Zhirkov, Igor  |9 805923 
773 0 |t Fullerenes, nanotubes, and carbon nanostructures  |d 2021  |g Vol. 29, № 8. P. 567-575  |x 1536-383X 
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