Published January 2010 | Version v1
Journal article

Visible luminescence in photo-electrochemically etched p-type porous silicon: Effect of illumination wavelength

  • 1. Atomic Energy Commission, Damascus (Syrian Arab Republic). Dept. of Physics

Description

The effect of low power density of ∼5 μWcm-2 monochromatic light of different wavelengths on the visible photoluminescence (PL) properties of photo-electrochemically formed p-type porous silicon (PS) has been investigated. Tow peak PL red and green is resolved in PS samples etched under blue-green wavelength illumination; 480,533 and 580 nm. It is found that the weight of green PL has maxima for the sample illuminated with 533 nm wavelength whereas, PL spectra of PS prepared under the influence of red illumination or in dark does not exhibit green PL band, but shows considerable enhancement in the red PL peak intensity. Fourier transform infrared (FTIR) spectroscopic analysis reveals the relationship between the structures of chemical bonding in PS and the observed PL behavior. In particular, the PL efficiency is highly affected by the alteration of the relative content of hydride, oxide and hydroxyl species. Moreover, relative content of hydroxyl group with respect to oxide bonding is seen to have strong relationship to the blue PL. Although, the estimated energy gap value of PS samples shows a considerable enlargement with respect to that of bulk c-Si, the FTIR, low temperature PL and Raman measurements and analysis have inconsistency with quantum confinement of PS. (author)

Additional details

Publishing Information

Journal Title
Aalam Al-Zarra
Journal Issue
125
Journal Page Range
p. 59
ISSN
1607-985X
CODEN
AAALE5

INIS

Country of Publication
Syrian Arab Republic
Country of Input or Organization
Syrian Arab Republic
INIS RN
41029533
Subject category
S36: MATERIALS SCIENCE;
Descriptors DEI
ETCHING; FOURIER TRANSFORMATION; ILLUMINANCE; INFRARED SPECTRA; PHOTOLUMINESCENCE; POROUS MATERIALS; RAMAN EFFECT; SILICON; WAVELENGTHS
Descriptors DEC
ELEMENTS; EMISSION; INTEGRAL TRANSFORMATIONS; LUMINESCENCE; MATERIALS; PHOTON EMISSION; SEMIMETALS; SPECTRA; SURFACE FINISHING; TRANSFORMATIONS

Optional Information

Notes
Abstract of Scientific Research