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International Journal of Innovation and Applied Studies
ISSN: 2028-9324     CODEN: IJIABO     OCLC Number: 828807274     ZDB-ID: 2703985-7
 
 
Sunday 18 November 2018

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Effect of heat treatment on optical properties of Cadmium Zinc Telluride thin films grown by cathodic radiofrequency sputtering


Volume 9, Issue 1, November 2014, Pages 89–94

 Effect of heat treatment on optical properties of Cadmium Zinc Telluride thin films grown by cathodic radiofrequency sputtering

Y. El gabbas1, H. Bellakhder2, M.A. El idrissi Raghni3, and A. Outzourhit4

1 Solid state physics and thin films laboratory (LPSCM), Faculty of science Semlalia (FSSM), Cadi Ayyad University (UCAM), Marrakech, Morocco
2 Solid state physics and thin films laboratory (LPSCM), Faculty of science Semlalia (FSSM), Cadi Ayyad University (UCAM), Marrakech, Morocco
3 Material Science Laboratory (LSM), Faculty of science Semlalia (FSSM), Cadi Ayyad University (UCAM), Marrakech, Morocco
4 Solid state physics and thin films laboratory (LPSCM), Faculty of science Semlalia (FSSM), Cadi Ayyad University (UCAM), Marrakech, Morocco

Original language: English

Received 8 September 2014

Copyright © 2014 ISSR Journals. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

Abstract


Cadmium zinc telluride thin films were prepared by cathodic radio frequency sputtering from cadmium telluride and zinc telluride targets. The films deposited on glass substrates were annealed in vacuum at different temperatures (300

Author Keywords: Cd1-xZnxTe thin films, CdTe, ZnTe, Cathodic rf-sputtering, annealing temperature.


How to Cite this Article


Y. El gabbas, H. Bellakhder, M.A. El idrissi Raghni, and A. Outzourhit, “Effect of heat treatment on optical properties of Cadmium Zinc Telluride thin films grown by cathodic radiofrequency sputtering,” International Journal of Innovation and Applied Studies, vol. 9, no. 1, pp. 89–94, November 2014.