Delafossite oxide materials as a p-type transparent conducting oxide

Transparent conducting oxides (TCOs) are electrically conductive materials and have been widely utilized in several applications, especially in opto-electrical devices, but TCOs are still used in fabrications of only a few active device. Although most of TCOs are n-type, an increasing number of bina...

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Main Authors: Alias, Afishah, Lias, Jais, Mohamad, Khairul Anuar
Format: Book Section
Language:English
Published: Penerbit Uthm 2019
Subjects:
Online Access:http://eprints.uthm.edu.my/3583/1/c%209%20DONE.pdf
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author Alias, Afishah
Lias, Jais
Mohamad, Khairul Anuar
author_facet Alias, Afishah
Lias, Jais
Mohamad, Khairul Anuar
author_sort Alias, Afishah
collection UTHM
description Transparent conducting oxides (TCOs) are electrically conductive materials and have been widely utilized in several applications, especially in opto-electrical devices, but TCOs are still used in fabrications of only a few active device. Although most of TCOs are n-type, an increasing number of binary metal oxides with p-type conductivity are also being investigated. For instance, the p-type zinc oxide (ZnO) is difficult to fabricate due to the absence of appropriate dopants. The lithium (Li)-, sodium (Na)-, potassium (K)-, nitrogen (N)-, phosphorus (P)- and arsenic (As)-dopants were observed as deep acceptors, which resulted in no significant p-type conduction of ZnO films. In addition, impurities and lattice defects in ZnO, such as oxygen vacancies and zinc interstitial supply the electrons. A series of TCOs based on copper-based oxide materials such as delafossite copper oxide (CuMO2), where M represents elements in group IIIA, have recently been extensively studied for p-type conductivity materials.
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spelling uthm.eprints-35832022-01-10T04:24:14Z http://eprints.uthm.edu.my/3583/ Delafossite oxide materials as a p-type transparent conducting oxide Alias, Afishah Lias, Jais Mohamad, Khairul Anuar TK7800-8360 Electronics Transparent conducting oxides (TCOs) are electrically conductive materials and have been widely utilized in several applications, especially in opto-electrical devices, but TCOs are still used in fabrications of only a few active device. Although most of TCOs are n-type, an increasing number of binary metal oxides with p-type conductivity are also being investigated. For instance, the p-type zinc oxide (ZnO) is difficult to fabricate due to the absence of appropriate dopants. The lithium (Li)-, sodium (Na)-, potassium (K)-, nitrogen (N)-, phosphorus (P)- and arsenic (As)-dopants were observed as deep acceptors, which resulted in no significant p-type conduction of ZnO films. In addition, impurities and lattice defects in ZnO, such as oxygen vacancies and zinc interstitial supply the electrons. A series of TCOs based on copper-based oxide materials such as delafossite copper oxide (CuMO2), where M represents elements in group IIIA, have recently been extensively studied for p-type conductivity materials. Penerbit Uthm 2019 Book Section PeerReviewed text en http://eprints.uthm.edu.my/3583/1/c%209%20DONE.pdf Alias, Afishah and Lias, Jais and Mohamad, Khairul Anuar (2019) Delafossite oxide materials as a p-type transparent conducting oxide. In: Current Advances in Microdevices and Nanotechnology. Penerbit Uthm, Uthm, pp. 165-172. ISBN 978-967-2306-25-2
spellingShingle TK7800-8360 Electronics
Alias, Afishah
Lias, Jais
Mohamad, Khairul Anuar
Delafossite oxide materials as a p-type transparent conducting oxide
title Delafossite oxide materials as a p-type transparent conducting oxide
title_full Delafossite oxide materials as a p-type transparent conducting oxide
title_fullStr Delafossite oxide materials as a p-type transparent conducting oxide
title_full_unstemmed Delafossite oxide materials as a p-type transparent conducting oxide
title_short Delafossite oxide materials as a p-type transparent conducting oxide
title_sort delafossite oxide materials as a p type transparent conducting oxide
topic TK7800-8360 Electronics
url http://eprints.uthm.edu.my/3583/1/c%209%20DONE.pdf
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