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Comprehensive study of growth mechanism and properties of low Zn content Cd1-xZnxS thin films by chemical bath

Authors :
Claudia Carrasco
Francisco De la Carrera
Renato Saavedra
Myrna Guadalupe Sandoval-Paz
Carlos Anibal Rodríguez
Cuauhtémoc Trejo-Cruz
Luis E. Aragon
Martin Sirena
Marie-Paule Delplancke
Source :
Materials research, 19 (6, CONICET Digital (CONICET), Consejo Nacional de Investigaciones Científicas y Técnicas, instacron:CONICET, Materials Research, Volume: 19, Issue: 6, Pages: 1335-1343, Published: 03 OCT 2016, Materials Research, Vol 19, Iss 6, Pp 1335-1343 (2016), Materials Research v.19 n.6 2016, Materials research (São Carlos. Online), Universidade Federal de São Carlos (UFSCAR), instacron:ABM ABC ABPOL
Publication Year :
2016

Abstract

Cd1-xZnxS thin films have been studied extensively as window layers for solar cell applications. However, a mismatch between the Cd1-xZnxS and copper-indium-gallium-selenide absorber layers increases with Zn film concentration, which reduces the device eficiency. In this work, Cd1-xZnxS thin films with low Zn concentrations were analyzed. The effect of the addition of different molar Zn concentrations to the reaction mixture on the growth mechanism of Cd1-xZnxS thin films and the influence of these mechanisms on structural, optical and morphological properties of the films has been studied. Cd1-xZnxS thin films were synthesized by chemical bath deposition using an ammonia-free alkaline solution. Microstructural analysis by X-ray diffraction showed that all deposited films grew with hexagonal structure and crystallite sizes decreased as the Zn concentration in the film increased. Optical measurements indicated a high optical transmission between 75% and 90% for wavelengths above the absorption edge. Band gap value increased from 2.48 eV to 2.62 eV, and the refractive index values for Cd1-xZnxS thin films decreased as the Zn increased. These changes in films and properties are related to a modification in growth mechanism of the Cd1-xZnxS thin films, with the influence of Zn(OH)2 formation being more important as Zn in solution increases.<br />SCOPUS: ar.j<br />info:eu-repo/semantics/published

Details

Language :
English
Database :
OpenAIRE
Journal :
Materials research, 19 (6, CONICET Digital (CONICET), Consejo Nacional de Investigaciones Científicas y Técnicas, instacron:CONICET, Materials Research, Volume: 19, Issue: 6, Pages: 1335-1343, Published: 03 OCT 2016, Materials Research, Vol 19, Iss 6, Pp 1335-1343 (2016), Materials Research v.19 n.6 2016, Materials research (São Carlos. Online), Universidade Federal de São Carlos (UFSCAR), instacron:ABM ABC ABPOL
Accession number :
edsair.doi.dedup.....66e1851954664c816de80dba01744d0d