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Effect of thermal annealing on nebulizer spray deposited tin sulfide thin films and their application in a transparent oxide/CdS/SnS heterostructure.

Authors :
Arulanantham, A.M.S.
Valanarasu, S.
Jeyadheepan, K.
Kathalingam, A.
Source :
Thin Solid Films. Nov2018, Vol. 666, p85-93. 9p.
Publication Year :
2018

Abstract

Abstract Tin sulfide (SnS) thin film was deposited on glass substrates using simple nebulizer spray pyrolysis method. The influence of vacuum annealing on structural, optical, morphological, electrical and photovoltaic properties of the films were characterized by X-ray diffraction (XRD), Raman spectroscopy, scanning electron microscopy, atomic force microscopy, energy dispersive analysis of X- ray, UV-Visible spectrophotometry, photoluminescence spectrofluorometry and Hall measurements. Structural parameters such as lattice structure, crystallite size, micro strain and dislocation density were estimated using XRD analysis. There was a notable enhancement in morphology and surface roughness of the films and they were found to vary with respect to the annealing temperature. Optical studies done on the films revealed a decrease in energy gap for the increase of annealing temperatures. From the Hall effect study, it was found that SnS thin films have p-type conductivity. The lowest resistivity and higher carrier concentration were found to be 0.074 Ω cm and 1.07 × 1019 (cm−3) respectively. A heterojunction solar cell, CdS/SnS was fabricated and its solar conversion efficiency obtained was about 0.73% for tin sulfide films annealed at 400 °C. Highlights • Tin sulfide (SnS) films grown by using simple nebulizer spray pyrolysis technique. • Improvement in the structural and morphological properties of the film was observed after annealing. • Optimized SnS film is used for n-CdS/p-SnS structured solar cell. • The conversion efficiency of about η = 0.73% was obtained using SnS heterojunction. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00406090
Volume :
666
Database :
Academic Search Index
Journal :
Thin Solid Films
Publication Type :
Academic Journal
Accession number :
132364759
Full Text :
https://doi.org/10.1016/j.tsf.2018.09.014