DocumentCode :
3343535
Title :
Synthesis of polycrystalline ZnS0.5Se0.5 layers by chemical spray deposition process
Author :
Reddy, K. T Ramakrishna ; Reddy, T.B.S. ; Forbes, I. ; Miles, R.W.
Author_Institution :
Dept. of Phys., Sri Venkateswara Univ., Tirupati, India
fYear :
2002
fDate :
19-24 May 2002
Firstpage :
620
Lastpage :
623
Abstract :
Thin films of ZnS0.5Se0.5 have been synthesised by spray pyrolysis using an aqueous solution of ZnCl2, thiourea and selenourea. The films were deposited onto glass substrates at different temperatures in the range, 250-550°C, keeping the other deposition parameters constant. The structure, surface topography, composition and optical properties of these films have been investigated as a function of substrate temperature. The layers grown at temperatures <350°C showed secondary phases of ZnS, ZnCl2 and Se in conjunction with a ZnS0.5Se0.5 phase. At growth temperatures above 350°C, all the secondary phases started to disappear favouring the formation of ZnS0.5Se0.5. Polycrystalline ZnS0.5Se0.5 films with a strong [100] orientation were grown at a temperature of 475°C. These layers have the wurzite crystal structure and consist of densely packed pyramidlike grains. The films have optical transmittances greater than 75% for long wavelength photons and the absorption edges were found to be steep. The energy band gap was found to be 3.04 eV for x = 0.5.
Keywords :
II-VI semiconductors; energy gap; infrared spectra; optical constants; phase separation; semiconductor thin films; spray coatings; surface topography; wide band gap semiconductors; zinc compounds; 250 to 550 degC; ZnCl2; ZnS0.5Se0.5; chemical spray deposition process; composition; deposition temperature; energy band gap; optical properties; optical transmittance; polycrystalline ZnS0.5Se0.5 layers; secondary phases; selenourea; spray pyrolysis; structure; surface topography; synthesis; thiourea; Absorption; Glass; Optical films; Optical surface waves; Photonic crystals; Spraying; Surface topography; Temperature distribution; Transistors; Zinc compounds;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Photovoltaic Specialists Conference, 2002. Conference Record of the Twenty-Ninth IEEE
ISSN :
1060-8371
Print_ISBN :
0-7803-7471-1
Type :
conf
DOI :
10.1109/PVSC.2002.1190641
Filename :
1190641
Link To Document :
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