Preparation and evaluation of Zn(O,S) thin film layer by sulfurization method
In this paper, we propose a method of incorporating sulfur on the ZnO film surface, which can effectively alter the properties of the ZnO. Through sulfurization, a ZnS cubic crystal structure is formed in the ZnO film, with the ZnS peak increasing as the sulfur weight increases. This approach may pa...
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my.uniten.dspace-340282024-10-14T11:17:42Z Preparation and evaluation of Zn(O,S) thin film layer by sulfurization method Bahrudin M.S. Arsad A.Z. Abdullah S.F. Azman N.I. Chau C.F. Ahmad I. Adini W.S.W. Mahmood Zuhdi A.W. Wan Abdullah W.S. 55603412800 56926685200 14319069500 56104480900 25824209000 12792216600 58315812200 56589966300 58175300700 Solar energy materials Sputtering Structural Thin films Buffer layers Crystal structure Film preparation II-VI semiconductors Metallic films Solar cells Solar energy Sulfur Zinc oxide Zinc sulfide Film surfaces Property S thin films Solar energy materials Sputtering Structural Sulphurization Thin film layers Thin-films ZnO films Thin films In this paper, we propose a method of incorporating sulfur on the ZnO film surface, which can effectively alter the properties of the ZnO. Through sulfurization, a ZnS cubic crystal structure is formed in the ZnO film, with the ZnS peak increasing as the sulfur weight increases. This approach may pave the way for the successful production of Zn(O,S) film which may suit as an alternative buffer layer for CIGS solar cell structure. � 2023 Elsevier B.V. Final 2024-10-14T03:17:42Z 2024-10-14T03:17:42Z 2023 Article 10.1016/j.matlet.2023.134697 2-s2.0-85161978842 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85161978842&doi=10.1016%2fj.matlet.2023.134697&partnerID=40&md5=7e83b81f7da58b8c91573c9ef1f93aa3 https://irepository.uniten.edu.my/handle/123456789/34028 349 134697 Elsevier B.V. Scopus |
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Solar energy materials Sputtering Structural Thin films Buffer layers Crystal structure Film preparation II-VI semiconductors Metallic films Solar cells Solar energy Sulfur Zinc oxide Zinc sulfide Film surfaces Property S thin films Solar energy materials Sputtering Structural Sulphurization Thin film layers Thin-films ZnO films Thin films |
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Solar energy materials Sputtering Structural Thin films Buffer layers Crystal structure Film preparation II-VI semiconductors Metallic films Solar cells Solar energy Sulfur Zinc oxide Zinc sulfide Film surfaces Property S thin films Solar energy materials Sputtering Structural Sulphurization Thin film layers Thin-films ZnO films Thin films Bahrudin M.S. Arsad A.Z. Abdullah S.F. Azman N.I. Chau C.F. Ahmad I. Adini W.S.W. Mahmood Zuhdi A.W. Wan Abdullah W.S. Preparation and evaluation of Zn(O,S) thin film layer by sulfurization method |
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In this paper, we propose a method of incorporating sulfur on the ZnO film surface, which can effectively alter the properties of the ZnO. Through sulfurization, a ZnS cubic crystal structure is formed in the ZnO film, with the ZnS peak increasing as the sulfur weight increases. This approach may pave the way for the successful production of Zn(O,S) film which may suit as an alternative buffer layer for CIGS solar cell structure. � 2023 Elsevier B.V. |
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55603412800 |
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55603412800 Bahrudin M.S. Arsad A.Z. Abdullah S.F. Azman N.I. Chau C.F. Ahmad I. Adini W.S.W. Mahmood Zuhdi A.W. Wan Abdullah W.S. |
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Article |
author |
Bahrudin M.S. Arsad A.Z. Abdullah S.F. Azman N.I. Chau C.F. Ahmad I. Adini W.S.W. Mahmood Zuhdi A.W. Wan Abdullah W.S. |
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Bahrudin M.S. |
title |
Preparation and evaluation of Zn(O,S) thin film layer by sulfurization method |
title_short |
Preparation and evaluation of Zn(O,S) thin film layer by sulfurization method |
title_full |
Preparation and evaluation of Zn(O,S) thin film layer by sulfurization method |
title_fullStr |
Preparation and evaluation of Zn(O,S) thin film layer by sulfurization method |
title_full_unstemmed |
Preparation and evaluation of Zn(O,S) thin film layer by sulfurization method |
title_sort |
preparation and evaluation of zn(o,s) thin film layer by sulfurization method |
publisher |
Elsevier B.V. |
publishDate |
2024 |
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1814061037260898304 |