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dc.creatorMarković, Zoran M.
dc.creatorTodorović-Marković, Biljana
dc.creatorMohai, I
dc.creatorKaroly, Z
dc.creatorSzepvolgyi, J
dc.creatorFarkas, Z
dc.creatorNikolić, Zoran M.
dc.date.accessioned2018-03-01T19:39:55Z
dc.date.available2018-03-01T19:39:55Z
dc.date.issued2005
dc.identifier.issn1536-383X
dc.identifier.urihttps://vinar.vin.bg.ac.rs/handle/123456789/2910
dc.description.abstractResults on studies of molecular spectra emitted in the initial stages of fullerene synthesis during processing of graphite powder in RF thermal plasma conditions are presented in this work. CN-usually present in carbon plasmas-and C-2 were found as dominant molecular species. The role of CN radicals on the fullerene formation was discussed in detail. Intensities of CN and C-2 lines were studied against the composition of gas phase and the feed rate of graphite powder. The rotational-vibrational temperatures of CN species were calculated by fitting the experimental spectra to the simulated ones. It was concluded that in the plasma region CN radicals could be formed by the reaction Of C-2 with atomic nitrogen at smaller loads. This reaction lowered the yield of fullerenes. At larger loads, C2 formation was decreased due to lower temperature of the particles compared to smaller load. The CN radicals were produced by the surface reaction of the hot carbon particles with nitrogen atoms. Results confirmed that for effective fullerene synthesis, the nitrogen content of the precursors and the plasma gases should be minimized.en
dc.rightsrestrictedAccessen
dc.sourceFullerenes Nanotubes and Carbon Nanostructuresen
dc.subjectfullereneen
dc.subjectplasma reactionsen
dc.subjectscanning electron microscopyen
dc.titleOptical emission study of RF thermal plasma during fullerene synthesisen
dc.typearticleen
dcterms.abstractМарковиц, З; Мохаи, И; Сзепволгyи, Ј; Фаркас, З; Тодоровић-Марковић Биљана; Каролy, З; Николиц, З;
dc.citation.volume13
dc.citation.issue3
dc.citation.spage215
dc.citation.epage226
dc.identifier.wos000230757000004
dc.identifier.doi10.1081/FST-200056236
dc.citation.rankM23
dc.identifier.scopus2-s2.0-23144465886


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