Resistivity measurement of ZnO:AI films for solar cell

Aluminium doped Zinc Oxide films were deposited on glass slide by RF magnetron sputtering using a ZnO target mixed with A120J. All the films were growth in room temperature without intentional heating. The resistivity of the ZnO:AI films were measured using van der Pauw method in terms of the prepar...

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Main Authors: Tan, Hang Khume, Md. Yusuf, Mohd. Nor, Ismail, Bakar, Wahab, Yussof, Othaman, Zulkafli
Format: Conference or Workshop Item
Language:English
Published: 2006
Subjects:
Online Access:http://eprints.utm.my/9302/1/TanHangKhume2006_ResistivityMeasurementofZnO.pdf
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author Tan, Hang Khume
Md. Yusuf, Mohd. Nor
Ismail, Bakar
Wahab, Yussof
Othaman, Zulkafli
author_facet Tan, Hang Khume
Md. Yusuf, Mohd. Nor
Ismail, Bakar
Wahab, Yussof
Othaman, Zulkafli
author_sort Tan, Hang Khume
collection ePrints
description Aluminium doped Zinc Oxide films were deposited on glass slide by RF magnetron sputtering using a ZnO target mixed with A120J. All the films were growth in room temperature without intentional heating. The resistivity of the ZnO:AI films were measured using van der Pauw method in terms of the preparation conditions such as RF power, working pressure, deposition time, O2 content in sputtering gas and target-substrate distance. Resistivity of the deposited films shows the following behaviours: decreases with the increasing RF power and film thickness while increase with increasing target substrate distance, and O2 content in sputtering gas. Resistivity for films prepared in different working pressure decreases with the Argon pressure but increased after the optimal pressure of 45mTorr.
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spelling utm.eprints-93022010-11-11T07:15:14Z http://eprints.utm.my/9302/ Resistivity measurement of ZnO:AI films for solar cell Tan, Hang Khume Md. Yusuf, Mohd. Nor Ismail, Bakar Wahab, Yussof Othaman, Zulkafli QC Physics Aluminium doped Zinc Oxide films were deposited on glass slide by RF magnetron sputtering using a ZnO target mixed with A120J. All the films were growth in room temperature without intentional heating. The resistivity of the ZnO:AI films were measured using van der Pauw method in terms of the preparation conditions such as RF power, working pressure, deposition time, O2 content in sputtering gas and target-substrate distance. Resistivity of the deposited films shows the following behaviours: decreases with the increasing RF power and film thickness while increase with increasing target substrate distance, and O2 content in sputtering gas. Resistivity for films prepared in different working pressure decreases with the Argon pressure but increased after the optimal pressure of 45mTorr. 2006-06 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utm.my/9302/1/TanHangKhume2006_ResistivityMeasurementofZnO.pdf Tan, Hang Khume and Md. Yusuf, Mohd. Nor and Ismail, Bakar and Wahab, Yussof and Othaman, Zulkafli (2006) Resistivity measurement of ZnO:AI films for solar cell. In: Proceedings of Annual Fundamental Science Seminar 2006 (AFSS 2006), 6th - 7th June 2006, Universiti Teknologi Malaysia, Skudai, Malaysia.
spellingShingle QC Physics
Tan, Hang Khume
Md. Yusuf, Mohd. Nor
Ismail, Bakar
Wahab, Yussof
Othaman, Zulkafli
Resistivity measurement of ZnO:AI films for solar cell
title Resistivity measurement of ZnO:AI films for solar cell
title_full Resistivity measurement of ZnO:AI films for solar cell
title_fullStr Resistivity measurement of ZnO:AI films for solar cell
title_full_unstemmed Resistivity measurement of ZnO:AI films for solar cell
title_short Resistivity measurement of ZnO:AI films for solar cell
title_sort resistivity measurement of zno ai films for solar cell
topic QC Physics
url http://eprints.utm.my/9302/1/TanHangKhume2006_ResistivityMeasurementofZnO.pdf
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AT ismailbakar resistivitymeasurementofznoaifilmsforsolarcell
AT wahabyussof resistivitymeasurementofznoaifilmsforsolarcell
AT othamanzulkafli resistivitymeasurementofznoaifilmsforsolarcell