Effect of Gallium Interlayer in ZnO and Al-doped ZnO Thin Films

Copyright © Taylor & Francis Group, LLC. For applications in the field of optoelectronics, zinc oxide (ZnO) based transparent conducting oxide thin films such as aluminium-doped zinc oxide (AZO) have recently received much attention. It is one of the most promising alternative materials to the...

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Main Authors: Chawalit Bhoomanee, Sanpet Nilphai, Sutthipoj Sutthana, Pipat Ruankham, Supab Choopun, Duangmanee Wongratanaphisan
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Published: 2018
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http://cmuir.cmu.ac.th/jspui/handle/6653943832/44608
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spelling th-cmuir.6653943832-446082018-04-25T07:54:19Z Effect of Gallium Interlayer in ZnO and Al-doped ZnO Thin Films Chawalit Bhoomanee Sanpet Nilphai Sutthipoj Sutthana Pipat Ruankham Supab Choopun Duangmanee Wongratanaphisan Agricultural and Biological Sciences Copyright © Taylor & Francis Group, LLC. For applications in the field of optoelectronics, zinc oxide (ZnO) based transparent conducting oxide thin films such as aluminium-doped zinc oxide (AZO) have recently received much attention. It is one of the most promising alternative materials to the widely used indium tin oxide (ITO or tin-doped indium oxide) and fluorine-doped tin oxide (FTO). In this work, the ZnO and AZO base thin films were prepared by radio frequency (rf) magnetron sputtering technique using ZnO and AZO (1at%Al) ceramic target. The Ga interlayer films, added in between base thin films (ZnO and AZO), were deposited by evaporation technique. Both ZnO/Ga/ZnO and AZO/Ga/AZO multilayer thin film structures were grown on glass substrates. Then the obtained multilayer structures were annealed in argon (Ar) ambient at 400°C for 1 hr. The morphology, qualitative and quantitative elemental analysis, crystal structure, electrical properties, and optical properties of the multilayer thin films were characterized by field emission scanning electron microscope (FE-SEM), energy dispersive X-ray spectroscopy (EDS), X-ray diffracti on (XRD), a four-point probe method and UV-Vis spectroscopy. The results revealed that after annealing treatment, the average transmittance of the both multilayer thin films in visible region was improved due to a decrease in surface roughness resulting in an increase in crystalline surface. Furthermore, the results revealed lower sheet resistance in the AZO/Ga/AZO relative to pure ZnO multilayer base thin films. The significance of the electrical properties of the AZO/Ga/AZO films can be achieved due to local structure of Al site in ZnO and partial diffusion of Ga atoms into the base thin film layers. This indicates that the Ga interlayer in both ZnO/Ga/ZnO and AZO/Ga/AZO multilayer thin films can be used to further improve electrical conductivity without degrading optical transmission. © 2015 2018-01-24T04:45:28Z 2018-01-24T04:45:28Z 2015-01-01 Journal 16078489 10584587 2-s2.0-84945134253 10.1080/10584587.2015.1063914 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84945134253&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/44608
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
collection CMU Intellectual Repository
topic Agricultural and Biological Sciences
spellingShingle Agricultural and Biological Sciences
Chawalit Bhoomanee
Sanpet Nilphai
Sutthipoj Sutthana
Pipat Ruankham
Supab Choopun
Duangmanee Wongratanaphisan
Effect of Gallium Interlayer in ZnO and Al-doped ZnO Thin Films
description Copyright © Taylor & Francis Group, LLC. For applications in the field of optoelectronics, zinc oxide (ZnO) based transparent conducting oxide thin films such as aluminium-doped zinc oxide (AZO) have recently received much attention. It is one of the most promising alternative materials to the widely used indium tin oxide (ITO or tin-doped indium oxide) and fluorine-doped tin oxide (FTO). In this work, the ZnO and AZO base thin films were prepared by radio frequency (rf) magnetron sputtering technique using ZnO and AZO (1at%Al) ceramic target. The Ga interlayer films, added in between base thin films (ZnO and AZO), were deposited by evaporation technique. Both ZnO/Ga/ZnO and AZO/Ga/AZO multilayer thin film structures were grown on glass substrates. Then the obtained multilayer structures were annealed in argon (Ar) ambient at 400°C for 1 hr. The morphology, qualitative and quantitative elemental analysis, crystal structure, electrical properties, and optical properties of the multilayer thin films were characterized by field emission scanning electron microscope (FE-SEM), energy dispersive X-ray spectroscopy (EDS), X-ray diffracti on (XRD), a four-point probe method and UV-Vis spectroscopy. The results revealed that after annealing treatment, the average transmittance of the both multilayer thin films in visible region was improved due to a decrease in surface roughness resulting in an increase in crystalline surface. Furthermore, the results revealed lower sheet resistance in the AZO/Ga/AZO relative to pure ZnO multilayer base thin films. The significance of the electrical properties of the AZO/Ga/AZO films can be achieved due to local structure of Al site in ZnO and partial diffusion of Ga atoms into the base thin film layers. This indicates that the Ga interlayer in both ZnO/Ga/ZnO and AZO/Ga/AZO multilayer thin films can be used to further improve electrical conductivity without degrading optical transmission. © 2015
format Journal
author Chawalit Bhoomanee
Sanpet Nilphai
Sutthipoj Sutthana
Pipat Ruankham
Supab Choopun
Duangmanee Wongratanaphisan
author_facet Chawalit Bhoomanee
Sanpet Nilphai
Sutthipoj Sutthana
Pipat Ruankham
Supab Choopun
Duangmanee Wongratanaphisan
author_sort Chawalit Bhoomanee
title Effect of Gallium Interlayer in ZnO and Al-doped ZnO Thin Films
title_short Effect of Gallium Interlayer in ZnO and Al-doped ZnO Thin Films
title_full Effect of Gallium Interlayer in ZnO and Al-doped ZnO Thin Films
title_fullStr Effect of Gallium Interlayer in ZnO and Al-doped ZnO Thin Films
title_full_unstemmed Effect of Gallium Interlayer in ZnO and Al-doped ZnO Thin Films
title_sort effect of gallium interlayer in zno and al-doped zno thin films
publishDate 2018
url https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84945134253&origin=inward
http://cmuir.cmu.ac.th/jspui/handle/6653943832/44608
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