High mobility and transparent ZTO ETM prepared by RF reactive co-sputtering for perovskite solar cell application

Thin-films of Zinc Tin Oxide (ZTO) with high charge carrier mobility and superior optical transmittance has been prepared by the rf-reactive co-sputtering technique in argon-oxygen (99:01) ambient. These deposited films have been systematically studied to determine the effect of deposition temperatu...

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Main Authors: Islam, M.A., Rahman, K.S., Misran, H., Asim, N., Hossain, M.S., Akhtaruzzaman, M., Amin, N.
Format: Article
Language:English
Published: 2020
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spelling my.uniten.dspace-128772020-07-07T06:10:34Z High mobility and transparent ZTO ETM prepared by RF reactive co-sputtering for perovskite solar cell application Islam, M.A. Rahman, K.S. Misran, H. Asim, N. Hossain, M.S. Akhtaruzzaman, M. Amin, N. Thin-films of Zinc Tin Oxide (ZTO) with high charge carrier mobility and superior optical transmittance has been prepared by the rf-reactive co-sputtering technique in argon-oxygen (99:01) ambient. These deposited films have been systematically studied to determine the effect of deposition temperature on film structure, composition, and optoelectronic properties. X-ray diffraction (XRD) spectra indicated that the ZTO films remain amorphous even growth temperature increased to 400 °C. The films deposited at room temperature (RT) and 100 °C were slightly tin-rich found in Energy-dispersive X-ray (EDX) spectroscopy compared to the films deposited over 100 °C. It was found that growth temperature played a crucial role in carrier concentration and mobility of the films and such properties are controlled by the grain boundary scattering over the Sn dopant concentration. The transmittance of the films was found above 85% in the visible range regardless of substrate temperature. The complete perovskite solar cell has been numerically analyzed by employing SCAPS-1D software and the effect of ZTO's optoelectrical properties on cell performance has been revealed. © 2019 2020-02-03T03:27:30Z 2020-02-03T03:27:30Z 2019 Article 10.1016/j.rinp.2019.102518 en
institution Universiti Tenaga Nasional
building UNITEN Library
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country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
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language English
description Thin-films of Zinc Tin Oxide (ZTO) with high charge carrier mobility and superior optical transmittance has been prepared by the rf-reactive co-sputtering technique in argon-oxygen (99:01) ambient. These deposited films have been systematically studied to determine the effect of deposition temperature on film structure, composition, and optoelectronic properties. X-ray diffraction (XRD) spectra indicated that the ZTO films remain amorphous even growth temperature increased to 400 °C. The films deposited at room temperature (RT) and 100 °C were slightly tin-rich found in Energy-dispersive X-ray (EDX) spectroscopy compared to the films deposited over 100 °C. It was found that growth temperature played a crucial role in carrier concentration and mobility of the films and such properties are controlled by the grain boundary scattering over the Sn dopant concentration. The transmittance of the films was found above 85% in the visible range regardless of substrate temperature. The complete perovskite solar cell has been numerically analyzed by employing SCAPS-1D software and the effect of ZTO's optoelectrical properties on cell performance has been revealed. © 2019
format Article
author Islam, M.A.
Rahman, K.S.
Misran, H.
Asim, N.
Hossain, M.S.
Akhtaruzzaman, M.
Amin, N.
spellingShingle Islam, M.A.
Rahman, K.S.
Misran, H.
Asim, N.
Hossain, M.S.
Akhtaruzzaman, M.
Amin, N.
High mobility and transparent ZTO ETM prepared by RF reactive co-sputtering for perovskite solar cell application
author_facet Islam, M.A.
Rahman, K.S.
Misran, H.
Asim, N.
Hossain, M.S.
Akhtaruzzaman, M.
Amin, N.
author_sort Islam, M.A.
title High mobility and transparent ZTO ETM prepared by RF reactive co-sputtering for perovskite solar cell application
title_short High mobility and transparent ZTO ETM prepared by RF reactive co-sputtering for perovskite solar cell application
title_full High mobility and transparent ZTO ETM prepared by RF reactive co-sputtering for perovskite solar cell application
title_fullStr High mobility and transparent ZTO ETM prepared by RF reactive co-sputtering for perovskite solar cell application
title_full_unstemmed High mobility and transparent ZTO ETM prepared by RF reactive co-sputtering for perovskite solar cell application
title_sort high mobility and transparent zto etm prepared by rf reactive co-sputtering for perovskite solar cell application
publishDate 2020
_version_ 1672614186109108224
score 13.214268