Blue Photoluminescence from Quantum Size Silicon Nanopowder
- 1 December 2005
- journal article
- Published by Trans Tech Publications, Ltd. in Solid State Phenomena
- Vol. 108-109, 65-70
- https://doi.org/10.4028/www.scientific.net/ssp.108-109.65
Abstract
Silicon nanopowders were produced using electron-beam-induced evaporation of bulk silicon ingots in various gas atmosphere. Optical properties of the nanopowders were studied with the use of photoluminescence and Raman spectroscopy techniques. Photoluminescence peaks in the visible region of the spectrum have been detected at room temperature in silicon nanopowders, produced in argon gas atmosphere. Strong short-wavelength shift of the photoluminescence peaks can be result of quantum confinement effect for electrons and holes in small silicon nanocrystals (down to 2 nm in diameter). The size of silicon nanocrystals was estimated from Raman spectroscopy data. The calculated in frame of effective mass model optical gaps for silicon nanocrystals of spherical shape are in good correlation with experimental photoluminescence data. The attempts of deposition of silicon nanocrystal films from the nanopowders on silicon substrates were carried out.Keywords
This publication has 4 references indexed in Scilit:
- Visible photoluminescence from silicon nanopowders produced by silicon evaporation in a high-power electron beamJETP Letters, 2004
- Self-Orientation of Silicon Nanocrystals Created under Pulse Laser Impact in Stressed α-Si:H Films on Glass SubstratesSolid State Phenomena, 2001
- Synthesis and characterization of aerosol silicon nanocrystal nonvolatile floating-gate memory devicesApplied Physics Letters, 2001
- Improved one-phonon confinement model for an accurate size determination of silicon nanocrystalsJournal of Applied Physics, 1999