Reduced silicon nanoparticle formation from a laser beam heated silica/carbon mixture

  • Lee, Hakju
  • Lee, Seunghwan
  • Woo, Sungyoon
  • Jeon, Sangheon
  • Kim, Seongbeom
Citations

WEB OF SCIENCE

0
Citations

SCOPUS

0

초록

In this study, we demonstrate a novel approach for the reduction of silica to silicon nanoparticles using a CO2 laser beam. By irradiating a mixture of silica and carbon with a high-intensity laser, we observed the rapid formation of silicon nanoparticles. The emission spectra from the reaction zone were monitored using spectroscopy, which proved effective for real-time analysis of impurities in the feedstock materials. Raman spectroscopy and X-ray diffraction measurements confirmed the presence of crystalline silicon and silicon carbide in the reduced product. Our findings suggest that both the direct reduction of silica and the disproportionation of SiO contribute significantly to the reduction process. This laser-induced method contrasts sharply with traditional carbothermal reduction processes that require large furnaces and prolonged reaction times. The high-speed nature of the laser-induced reactions introduces new dynamics, making it challenging to explore the underlying mechanisms fully. This study represents a significant step forward in understanding silica reduction under high-intensity focused energy and opens new avenues for efficient and rapid silicon production. The implications of this research are substantial for the semiconductor and photovoltaic industries, as well as for the development of nanoparticle-based energy devices.

키워드

Silica reductionCO2 laserLaser reductionSiliconNanoparticleINDUCED BREAKDOWN SPECTROSCOPYPOROUS SILICONREDUCTIONMONOXIDEDISPROPORTIONATIONMODEL
제목
Reduced silicon nanoparticle formation from a laser beam heated silica/carbon mixture
저자
Lee, HakjuLee, SeunghwanWoo, SungyoonJeon, SangheonKim, Seongbeom
DOI
10.1007/s11051-025-06349-4
발행일
2025-06
유형
Article
저널명
Journal of Nanoparticle Research
27
6