4.5 Article

Combustion synthesis as a novel method for production of 1-D SiC nanostructures

Journal

JOURNAL OF PHYSICAL CHEMISTRY B
Volume 109, Issue 34, Pages 16244-16251

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jp050837m

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1-D nanostructures of cubic phase silicon carbide (beta-SiC) were efficiently produced by combustion synthesis of mixtures containing Si-containing compounds and halocarbons in a calorimetric bomb. The influence of the operating parameters on I-D SiC formation yield Was Studied. The heat release. (lie heating rate, and the chamber pressure increase were monitored during the process. The composition and structural features of the products were characterized by elemental analysis, X-ray diffraction. differential thermal analysis/thermogravimetric technique. Raman spectroscopy, scanning and transmission electron microscopy. and energy-dispersive X-ray spectrometry. This self-induced growth process can produce SiC nanofibers and nanotubes ea. 20-100 nm in diameter with the aspect ratio higher than 1000, Bulk scale Raman studies showed the product to be comprised of mostly cubic polytype of SiC and that finite size effects are present. We believe that the nucleation mechanism involving radical gaseous Species is responsible for 14) nanostructures growth. The present study has enlarged the family of nanofibers and nanotubes available and offers a possible. new general route to 1-D crystalline materials.

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