Title
Thermally evaporated SnS:Cu thin films for solar cells
Abstract
Cu-doped tin sulphide (SnS) films with a thickness of about 300nm have been grown on glass substrates by thermal evaporation technique. Different Cu-doped SnS films were obtained by controlling the Cu evaporation time to roughly alter Cu-doping concentration in SnS films (from 5.7 to 23atom). Then they were annealed at a temperature of 250°C and a pressure of 5.0×10 -3Pa for 90min. The structural, optical and electrical properties of the films were characterised by X-ray diffraction, atomic force microscopy, ultraviolet-visible-near infrared spectrometer and Hall-effect measurement system. All the films are polycrystalline SnS with orthorhombic structure, and the crystallites in the films are all exclusively oriented along (111) direction. Annealing can optimise the crystallinity of all the films. With the increase of Cu-doping concentration, the grain size of the films becomes larger and larger, but the roughness decreases. Meanwhile, the evaluated direct bandgap Eg of the SnS:Cu films initially decreases, reaches a minimum value of 1.38eV with 15atom Cu and then increases thereafter. The carrier concentration of the films increases sharply, while the resistivity of the films decreases straightly. All the films are of p-type conductivity. Using the optimised conditions, it is possible to prepare SnS:Cu thin films suitable for absorbers of thin film solar cells. © 2011 The Institution of Engineering and Technology.
Year
DOI
Venue
2011
10.1049/mnl.2011.0121
Micro and Nano Letters
Keywords
Field
DocType
x ray diffraction,annealing,grain size,atomic force microscopy,carrier density,direct bandgap,doping,infrared spectra,thermal evaporation,copper,hall effect
Analytical chemistry,Crystallite,Evaporation,Evaporation (deposition),Annealing (metallurgy),Solar cell,Thin film,Crystallinity,Materials science,Carbon film
Conference
Volume
Issue
ISSN
6
7
null
ISBN
Citations 
PageRank 
978-1-61284-775-7
0
0.34
References 
Authors
1
2
Name
Order
Citations
PageRank
Shuai Zhang13711.44
Shuying Cheng200.34