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Physical Properties of Nanostructured CdO Films from Alkaline Baths Containing Saccharin as Additive
Author
Source
Issue
Vol. 2013, Issue 2013 (31 Dec. 2013), pp.1-5, 5 p.
Publisher
Hindawi Publishing Corporation
Publication Date
2013-06-05
Country of Publication
Egypt
No. of Pages
5
Main Subjects
Medicine
Information Technology and Computer Science
Abstract EN
Nanostructured cadmium oxide (CdO) films were fabricated on glass substrates from alkaline baths containing saccharin as an additive by a successive ionic layer adsorption and reaction (SILAR) method.
The effects of saccharin concentration in the bath on the structural, morphological, and optical properties were studied by means of scanning electron microscopy (SEM), X-ray diffraction (XRD), photoluminescence, and Raman spectroscopy.
The analyses showed that the surface morphologies, XRD peak intensities, Raman spectroscopy, and photoluminescence properties of CdO films changed with saccharin concentration.
From the results, it can be said that morphological characteristic and optical properties of the films could be calibrated by adding various saccharin percentages in the growth bath.
American Psychological Association (APA)
Şahin, Bünyamin. 2013. Physical Properties of Nanostructured CdO Films from Alkaline Baths Containing Saccharin as Additive. The Scientific World Journal،Vol. 2013, no. 2013, pp.1-5.
https://search.emarefa.net/detail/BIM-1032614
Modern Language Association (MLA)
Şahin, Bünyamin. Physical Properties of Nanostructured CdO Films from Alkaline Baths Containing Saccharin as Additive. The Scientific World Journal No. 2013 (2013), pp.1-5.
https://search.emarefa.net/detail/BIM-1032614
American Medical Association (AMA)
Şahin, Bünyamin. Physical Properties of Nanostructured CdO Films from Alkaline Baths Containing Saccharin as Additive. The Scientific World Journal. 2013. Vol. 2013, no. 2013, pp.1-5.
https://search.emarefa.net/detail/BIM-1032614
Data Type
Journal Articles
Language
English
Notes
Includes bibliographical references
Record ID
BIM-1032614