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Please use this identifier to cite or link to this item: http://repository.fuoye.edu.ng/handle/123456789/2369

Title: TIME DEPENDENCE OF ENERGY BAND GAP OF ELECTRODEPOSITED ALUMINUM SELENIDE Al2Se3
Authors: Olubosede, O
Faremi, A.A
Odo, E.A
Owolabi, F.M
Ajiboye, E
Fateye, J.O
Olanibi, E.O
Keywords: Electrodeposition
Thin Films
Cathodic graphite
Characterization
Varied potential voltages
Issue Date: 6-Aug-2021
Series/Report no.: FJPAS;Volume 5 (1)
Abstract: In this paper, Aluminum selenide (Al2Se3) thin films are synthesized electrochemically using cathodic deposition technique in which graphite was used as a cathode while carbon as an anode. Synthesis is done at 700 C temperature from an aqueous solution of analytical grade selenium dioxide (SeO2), and Aluminum chloride (AlCl2.7H2O). Aluminum selenide thin films from a controlled medium (pH =2.5) are deposited on fluorine doped tin oxide (FTO) substrate using different time of deposition 3mins, 6mins, 9mins, 12mins and 15mins. Further investigation was done to study the effect of deposition time. The films are characterized for their; electrical conductivity, structural, morphological, and optical properties of the deposited films have been studied using photoelectrochemical (PEC) cell measurement, X-ray diffraction, scanning electron microscopy (SEM) and UV-visibile spectroscopy. These various characterizations reveal the successful fabrication of Al2Se3 thin films.
Description: ORIGINAL RESEARCH
URI: http://repository.fuoye.edu.ng/handle/123456789/2369
ISSN: 2616-1419
Appears in Collections:FUOYE Journal of Pure and Applied Sciences

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