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Churilov, G. N.
Nikolaev, N. S.
Cherepakhin, A. V.
Dudnik, A. I.
Tomashevich, E. V.
Trenikhin, M. V.
Bulina, N. G.
2019-07-01T07:27:43Z
2019-07-01T07:27:43Z
2018-02
Churilov, G. N. Thermal oxidation of a carbon condensate formed in high-frequency carbon and carbon-nickel plasma flow [Текст] / G. N. Churilov, N. S. Nikolaev, A. V. Cherepakhin, A. I. Dudnik, E. V. Tomashevich, M. V. Trenikhin, N. G. Bulina // Technical Physics. — 2018. — Т. 63 (№ 2). — С. 216-219
10637842
https://link.springer.com/search?query=Thermal+Oxidation+of+a+Carbon+Condensate
https://elib.sfu-kras.ru/handle/2311/111012
Текст статьи не публикуется в открытом доступе в соответствии с политикой журнала.
We have reported on the comparative characteristics of thermal oxidation of a carbon condensate prepared by high-frequency arc evaporation of graphite rods and a rod with a hollow center filled with nickel powder. In the latter case, along with different forms of nanodisperse carbon, nickel particles with nickel core-carbon shell structures are formed. It has been found that the processes of the thermal oxidation of carbon condensates with and without nickel differ significantly. Nickel particles with the carbon shell exhibit catalytic properties with respect to the oxidation of nanosized carbon structures. A noticeable difference between the temperatures of the end of the oxidation process for various carbon nanoparticles and nickel particles with the carbon shell has been established. The study is aimed at investigations of the effect of nickel nanoparticles on the dynamics of carbon condensate oxidation upon heating in the argon-oxygen flow.
Thermal oxidation of a carbon condensate formed in high-frequency carbon and carbon-nickel plasma flow
Journal Article
Published Journal Article
216-219
29.19
2019-07-01T07:27:43Z
10.1134/S1063784218020093
Институт инженерной физики и радиоэлектроники
Базовая кафедра физики твердого тела и нанотехнологий
Technical Physics
Q2
Q4


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