Please use this identifier to cite or link to this item: http://essuir.sumdu.edu.ua/handle/123456789/69283
Or use following links to share this resource in social networks: Recommend this item
Title Single Crystal, High Band Gap CdS Thin Films Grown by RF Magnetron Sputtering in Argon Atmosphere for Solar Cell Applications
Authors Rupali, Kulkarni
Amit, Pawbake
Ravindra, Waykar
Ashok, Jadhawar
Haribhau, Borate
Rahul, Aher
Ajinkya, Bhorde
Shruthi, Nair
Priyanka, Sharma
Sandesh, Jadkar
ORCID
Keywords CdS films
RF magnetron sputtering
Low angle XRD
Raman spectroscopy
EDX spectroscopy
Type Article
Date of Issue 2018
URI http://essuir.sumdu.edu.ua/handle/123456789/69283
Publisher Sumy State University
License
Citation Single Crystal, High Band Gap CdS Thin Films Grown by RF Magnetron Sputtering in Argon Atmosphere for Solar Cell Applications [Текст] / K. Rupali, P. Amit, W. Ravindra [et al.] // Журнал нано- та електронної фізики. - 2018. - Т.10, № 3. - 03005. - DOI: 10.21272/jnep.10(3).03005.
Abstract Single crystal thin films of CdS were grown onto glass substrates by RF magnetron sputtering at var ious substrate temperatures. Structural, optical and morphology properties of these films were investigated through low angle XRD, Raman spectroscopy, scanning electron microscopy (SEM), energy dispersive x-ray (EDX) spectroscopy, UV-Visible spectroscopy etc. Formation of single crystal CdS films has been confirmed by low angle XRD and Raman spectroscopy analysis. Low angle XRD showed that CdS films has preferred orientation in (111) direction. Improvement of crystallinity and increase in average grain size of CdS crystallites has been observed with increase in substrate temperature. Surface morphology investigated using SEM showed that CdS films deposited over entire range of substrate temperature are highly smooth, dense, homogeneous, and free of flaws and cracks. The EDX data revealed the formation of high-quality nearly stoichiometric CdS films by RF magnetron sputtering. Furthermore, the CdS films deposited at low substrate temperatures (< 200 0C) are slightly S rich while deposited at higher substrate temperatures (> 200 0C) are slightly Cd rich. The UV-Visible spectroscopy analysis showed that an average transmission ~ 80-90 % in the visible range of the spectrum having band gap ~ 2.28 -2.38 eV, which is quite close to the optimum value of band gap for a buffer layer in CdTe/CdS, Cu2S/CdS hetero-junction solar cells.
Appears in Collections: Журнал нано- та електронної фізики (Journal of nano- and electronic physics)

Views

Belgium Belgium
1
China China
4439
Denmark Denmark
1
France France
505251091
Greece Greece
1
Hong Kong SAR China Hong Kong SAR China
24976
India India
94410
Ireland Ireland
5232714
Lithuania Lithuania
1
Malaysia Malaysia
1
Mexico Mexico
1
Netherlands Netherlands
34448888
Pakistan Pakistan
1
South Korea South Korea
1
Sweden Sweden
49952
Ukraine Ukraine
173539
United Kingdom United Kingdom
1555525896
United States United States
1369422765
Unknown Country Unknown Country
143069
Vietnam Vietnam
8882

Downloads

China China
-824586666
Egypt Egypt
1
Estonia Estonia
1
France France
505251092
India India
-638483534
Jordan Jordan
1
Lithuania Lithuania
1
Netherlands Netherlands
1
Taiwan Taiwan
1
Turkey Turkey
1
Ukraine Ukraine
142722
United Kingdom United Kingdom
1
United States United States
-824586666
Unknown Country Unknown Country
14
Vietnam Vietnam
1090051

Files

File Size Format Downloads
JNEP_03005.pdf 703,98 kB Adobe PDF -1781172979

Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.