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The effects of metallic Si addtions on the synthesis of beta-SiC powders using a sol-gel method

Authors
Kim, Gyu-MiCho, Gyung-SunLim, Dea-SoonPark, Sang-Whan
Issue Date
6월-2010
Publisher
KOREAN ASSOC CRYSTAL GROWTH, INC
Keywords
Synthesis; SiC powder; Sol-gel; carbothermal
Citation
JOURNAL OF CERAMIC PROCESSING RESEARCH, v.11, no.3, pp.377 - 383
Indexed
SCIE
SCOPUS
KCI
Journal Title
JOURNAL OF CERAMIC PROCESSING RESEARCH
Volume
11
Number
3
Start Page
377
End Page
383
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/116361
ISSN
1229-9162
Abstract
Single phase beta-SiC powders were synthesized using SiO2/C hybrid precursors with and without the addition of metallic Si powders. The SiO2/C hybrid precursors with various C/Si mole ratios (1.6-4.0) were prepared by a sol-gel process using tetraethyl orthosilicate and phenol resin as starting materials. Fine beta-SiC powders were synthesized by the carbothermal reduction of the SiO2/C hybrid precursor with and without the addition of metallic Si powders in the temperature range between 1250 degrees C-1800 degrees C under a vacuum atmosphere. Single phase beta-SiC powders were obtained by the carbothermal reduction of the SiO2/C hybrid precursor with a C/Si mole ratio of 1.6 above 1600 degrees C under a vacuum atmosphere. It was found that the addition of metallic Si powders to the the SiO2/C hybrid precursor with excess carbon reduced the temperature for the synthesis of single phase beta-SiC powders to as low as 1350 degrees C. The particle sizes of synthesized beta-SiC powders from the metallic Si powder added SiO2/C hybrid precursor with excess carbon were less than 1 mu m, in which fine beta-SiC powders appeared to be slightly aggregated.
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