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AuthorHossain, Md. Anower
AuthorAl-Gaashani, Rashad
AuthorHamoudi, Hicham
AuthorAl Marri, Mohammed J.
AuthorHussein, Ibnelwaleed A.
AuthorBelaidi, Abdelhak
AuthorMerzougui, Belabbes A.
AuthorAlharbia, Fahhad H.
AuthorTabetab, Nouar
Available date2020-09-20T08:35:37Z
Publication Date2017
Publication NameMaterials Science in Semiconductor Processing
ResourceScopus
ISSN13698001
URIhttp://dx.doi.org/10.1016/j.mssp.2017.02.012
URIhttp://hdl.handle.net/10576/16180
AbstractThin films of Cu2O comprised of wavelike surface characteristic of compact nanoparticles were synthesized using a facile and cost-effective electrodeposition approach. The distinct surface morphologies with well-aligned crystal orientation were obtained through the controlled electrodeposition parameters. The high resolution AFM combined with the peak force AFM images mapped the nanomechanical and chemical properties of the Cu2O nanostructured films. The structural, optical, and compositional analyses of the as-deposited thin films show bulk Cu2O material. The electrodeposition approach could proceed non-intermittently under ambient conditions, and provides a facile and economic way of depositing thin films of Cu2O with wavelike characteristics. The photoluminescence lifetime was found be very short in the range of 0.8-1.3 ns for Cu2O films. The Mott-Schottky measurement exhibited p-type conductivity and carrier density was found to be ~2x1018. The observed photoluminescence lifetimes, and carrier densities could help implementing the Cu2O films as an efficient hole-conducting, and photoelectrode materials in solar cells and water splitting devices.
SponsorThis work was financially supported by Qatar National Research Fund under a Qatar National Priority Project, NPRP-6?931-2?382. The authors would like to thank for the supports of Qatar Environmental and Energy Research Institute, Hamad Bin Khalifa University.
Languageen
PublisherElsevier Ltd
SubjectCuprous oxide
Electrodeposition
Fluorescence lifetime
Material compositional analysis
Mott-Schottky plot
Thin film
TitleControlled growth of Cu2O thin films by electrodeposition approach
TypeArticle
Pagination203-211
Volume Number63


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