Effect of gaseous medium pressure on plasmadynamic synthesis product in the C-N system with melamine

Результат исследований: Материалы для книги/типы отчетовМатериалы для конференции

13 Цитирования (Scopus)

Аннотация

The possibility of plasmodynamic synthesis in the carbon-nitrogen system when using melamine as a precursor is described in the paper. The system based on the capacitive energy storage, which allows simultaneously powering the two opposite-directed coaxial magnetoplasma accelerators, is developed. The effect of gaseous medium in the processing chamber of the system on the synthesis product is investigated by applying such techniques as X-ray diffraction analysis (XRD), transmission electron microscopy (TEM), and X-ray photoelectron spectroscopy (XPS). It is demonstrated that an increase in nitrogen pressure results in the structural and morphological changes in the synthesized sample, which might be caused by the increased carbon nitride yield and a great number of the appearing C-N bonds.

Язык оригиналаАнглийский
Название основной публикацииAdvanced Materials Research
ИздательTrans Tech Publications Ltd
Страницы813-818
Число страниц6
Том1040
ISBN (печатное издание)9783038352648
DOI
СостояниеОпубликовано - 2014
СобытиеInternational Conference for Young Scientists “High Technology: Research and Applications 2014”, HTRA 2014 - Tomsk, Российская Федерация
Продолжительность: 26 мар 201428 мар 2014

Серия публикаций

НазваниеAdvanced Materials Research
Том1040
ISSN (печатное издание)10226680
ISSN (электронное издание)16628985

Другое

ДругоеInternational Conference for Young Scientists “High Technology: Research and Applications 2014”, HTRA 2014
СтранаРоссийская Федерация
ГородTomsk
Период26.3.1428.3.14

ASJC Scopus subject areas

  • Engineering(all)

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  • Цитировать

    Shanenkov, I. I., Sivkov, A. A., Pak, A. Y., & Kolganova, Y. L. (2014). Effect of gaseous medium pressure on plasmadynamic synthesis product in the C-N system with melamine. В Advanced Materials Research (Том 1040, стр. 813-818). (Advanced Materials Research; Том 1040). Trans Tech Publications Ltd. https://doi.org/10.4028/www.scientific.net/AMR.1040.813