Variation of Nd and Vfb for different compositions of CdSexTe1−x thin films by pulse plating technique

CdSexTe1-x thin films with 0 < x < 1 have been pulse electrodeposited oil titanium (Ti), nickel (Ni) and stainless-steel (SS) substrates with different duty cycles. The size of the particles could be controlled by the pulse parameters. The deposition was carried out at room temperature for I I...

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Main Authors: SAAMINATHAN, V, MURALI, K
Format: Article
Published: 2006
Subjects:
Online Access:http://shdl.mmu.edu.my/1996/
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author SAAMINATHAN, V
MURALI, K
author_facet SAAMINATHAN, V
MURALI, K
author_sort SAAMINATHAN, V
building MMU Institutional Repository
collection Online Access
description CdSexTe1-x thin films with 0 < x < 1 have been pulse electrodeposited oil titanium (Ti), nickel (Ni) and stainless-steel (SS) substrates with different duty cycles. The size of the particles could be controlled by the pulse parameters. The deposition was carried out at room temperature for I It under potentiostatic mode with CdSO4, SeO2, TeO2, and H2SO4 as precursors. As-deposited and annealed films coated on Ti, Ni and SS were characterized by X-ray diffraction technique and SEM, and their electrical properties were studied. The as-deposited films exhibited a cubic structure; those after heat treatment at 500 degrees C in air exhibited a hexagonal structure. Variation of donor concentration and the flat band potential for different values of 'x' and duty cycles were studied for CdSexTe1-x thin films. The semiconductor parameters for all compositions coated on Ti, Ni and SS were estimated. It showed good agreement with the earlier reports. (c) 2005 Elsevier B.V. All rights reserved.
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spelling mmu-19962011-09-23T02:47:41Z http://shdl.mmu.edu.my/1996/ Variation of Nd and Vfb for different compositions of CdSexTe1−x thin films by pulse plating technique SAAMINATHAN, V MURALI, K QC Physics CdSexTe1-x thin films with 0 < x < 1 have been pulse electrodeposited oil titanium (Ti), nickel (Ni) and stainless-steel (SS) substrates with different duty cycles. The size of the particles could be controlled by the pulse parameters. The deposition was carried out at room temperature for I It under potentiostatic mode with CdSO4, SeO2, TeO2, and H2SO4 as precursors. As-deposited and annealed films coated on Ti, Ni and SS were characterized by X-ray diffraction technique and SEM, and their electrical properties were studied. The as-deposited films exhibited a cubic structure; those after heat treatment at 500 degrees C in air exhibited a hexagonal structure. Variation of donor concentration and the flat band potential for different values of 'x' and duty cycles were studied for CdSexTe1-x thin films. The semiconductor parameters for all compositions coated on Ti, Ni and SS were estimated. It showed good agreement with the earlier reports. (c) 2005 Elsevier B.V. All rights reserved. 2006-03 Article NonPeerReviewed SAAMINATHAN, V and MURALI, K (2006) Variation of Nd and Vfb for different compositions of CdSexTe1−x thin films by pulse plating technique. Physica B: Condensed Matter, 373 (2). pp. 233-239. ISSN 09214526 http://dx.doi.org/10.1016/j.physb.2005.11.149 doi:10.1016/j.physb.2005.11.149 doi:10.1016/j.physb.2005.11.149
spellingShingle QC Physics
SAAMINATHAN, V
MURALI, K
Variation of Nd and Vfb for different compositions of CdSexTe1−x thin films by pulse plating technique
title Variation of Nd and Vfb for different compositions of CdSexTe1−x thin films by pulse plating technique
title_full Variation of Nd and Vfb for different compositions of CdSexTe1−x thin films by pulse plating technique
title_fullStr Variation of Nd and Vfb for different compositions of CdSexTe1−x thin films by pulse plating technique
title_full_unstemmed Variation of Nd and Vfb for different compositions of CdSexTe1−x thin films by pulse plating technique
title_short Variation of Nd and Vfb for different compositions of CdSexTe1−x thin films by pulse plating technique
title_sort variation of nd and vfb for different compositions of cdsexte1−x thin films by pulse plating technique
topic QC Physics
url http://shdl.mmu.edu.my/1996/
http://shdl.mmu.edu.my/1996/
http://shdl.mmu.edu.my/1996/