Synthesis and characterization of PLD glass phosphate films doped with CdS

被引:0
|
作者
M. Elisa
C. R. Iordanescu
I. C. Vasiliu
I. D. Feraru
G. Epurescu
M. Filipescu
C. Plapcianu
C. Bartha
R. Trusca
S. Peretz
机构
[1] National Institute of R & D for Optoelectronics INOE 2000,Institute of Physical Chemistry “I. Murgulescu”
[2] National Institute for Laser,undefined
[3] Plasma and Radiation Physics,undefined
[4] National Institute of Materials Physics,undefined
[5] S.C. METAV – CD,undefined
[6] Romanian Academy,undefined
来源
Journal of Materials Science | 2017年 / 52卷
关键词
Pulse Laser Deposition; Phosphate Glass; Longitudinal Optical Phonon; Cadmium Sulphide; Pulse Laser Deposition Technique;
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学科分类号
摘要
In the present work, optical, structural and morphological properties of CdS-doped phosphate films obtained by pulsed laser deposition (PLD) method were investigated. In the deposition process, a target based on a mixture composed of Li2O-Al2O3-BaO-La2O3-ZnO-P2O5 glass and CdS powder as dopant was used. The phosphate glass target was obtained by non-conventional wet route of raw reagents processing followed by melt-quenching technique. The complex oxide composition of the glass as well as the final PLD target consisting in a mixture of glass and CdS powder followed by pressing and heat treatment represents the novelty of the work. CdS dopant particles were highlighted by X-ray diffraction analysis as well as by Raman spectroscopy. Thus, cubic CdS particles having less than 10 nm size corroborated with specific LO (longitudinal optical phonons) and 2LO CdS Raman peaks from 300 and 600 cm−1, respectively, certified the presence of the dopant in the deposited films. Specific vibration modes for the vitreous phosphate matrix were revealed by fourier transform infrared spectroscopy, and spherulitic units characteristic to PLD technique were found by scanning electron microscopy and atomic force microscopy analyses. A relative large luminescence band located around 430 nm was provided by UV excitation, representative for CdS nanoparticles having about 9–10 nm size.
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页码:2895 / 2901
页数:6
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