Gold-Catalyzed Growth of Aluminium-Doped Zinc Oxide Nanorods by Sputtering Method

Aluminium-doped zinc oxide (AZO) nanorods thin films were grown by RF magnetron sputtering on gold (Au) metal catalyst. The Au catalyst layers with 5, 10, and 15 nm thickness were deposited on glass substrates by sputtering method followed by annealing for 15 min at 500°C to form Au nanostructures o...

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Published in:Journal of Nanomaterials
Main Author: Rosli A.B.; Marbie M.M.; Herman S.H.; Ani M.H.
Format: Article
Language:English
Published: Hindawi Publishing Corporation 2014
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-84935001430&doi=10.1155%2f2014%2f672047&partnerID=40&md5=8a1e382b767f44d30e90eb9865243503
id 2-s2.0-84935001430
spelling 2-s2.0-84935001430
Rosli A.B.; Marbie M.M.; Herman S.H.; Ani M.H.
Gold-Catalyzed Growth of Aluminium-Doped Zinc Oxide Nanorods by Sputtering Method
2014
Journal of Nanomaterials
2014

10.1155/2014/672047
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84935001430&doi=10.1155%2f2014%2f672047&partnerID=40&md5=8a1e382b767f44d30e90eb9865243503
Aluminium-doped zinc oxide (AZO) nanorods thin films were grown by RF magnetron sputtering on gold (Au) metal catalyst. The Au catalyst layers with 5, 10, and 15 nm thickness were deposited on glass substrates by sputtering method followed by annealing for 15 min at 500°C to form Au nanostructures on the glass substrate. The AZO thin films were then deposited on the Au catalyst at different deposition temperature varying from 200 to 500°C. Postdeposition annealing processes of the Au catalyst resulted in different morphologies of the Au catalyst layers depending on their thicknesses. This in turn gave different AZO morphologies which suggest that the Au catalyst layer thickness and the deposition temperature contribute to the growth mechanism of the AZO nanostructures. AZO nanorods thin films having hexagonal wurtzite structure with individual nanorods on the film surface were obtained from the samples deposited on 5 and 10 nm thick Au catalyst with the deposition temperature of 300°C. © 2014 A. B. Rosli et al.
Hindawi Publishing Corporation
16874110
English
Article
All Open Access; Green Open Access; Hybrid Gold Open Access
author Rosli A.B.; Marbie M.M.; Herman S.H.; Ani M.H.
spellingShingle Rosli A.B.; Marbie M.M.; Herman S.H.; Ani M.H.
Gold-Catalyzed Growth of Aluminium-Doped Zinc Oxide Nanorods by Sputtering Method
author_facet Rosli A.B.; Marbie M.M.; Herman S.H.; Ani M.H.
author_sort Rosli A.B.; Marbie M.M.; Herman S.H.; Ani M.H.
title Gold-Catalyzed Growth of Aluminium-Doped Zinc Oxide Nanorods by Sputtering Method
title_short Gold-Catalyzed Growth of Aluminium-Doped Zinc Oxide Nanorods by Sputtering Method
title_full Gold-Catalyzed Growth of Aluminium-Doped Zinc Oxide Nanorods by Sputtering Method
title_fullStr Gold-Catalyzed Growth of Aluminium-Doped Zinc Oxide Nanorods by Sputtering Method
title_full_unstemmed Gold-Catalyzed Growth of Aluminium-Doped Zinc Oxide Nanorods by Sputtering Method
title_sort Gold-Catalyzed Growth of Aluminium-Doped Zinc Oxide Nanorods by Sputtering Method
publishDate 2014
container_title Journal of Nanomaterials
container_volume 2014
container_issue
doi_str_mv 10.1155/2014/672047
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-84935001430&doi=10.1155%2f2014%2f672047&partnerID=40&md5=8a1e382b767f44d30e90eb9865243503
description Aluminium-doped zinc oxide (AZO) nanorods thin films were grown by RF magnetron sputtering on gold (Au) metal catalyst. The Au catalyst layers with 5, 10, and 15 nm thickness were deposited on glass substrates by sputtering method followed by annealing for 15 min at 500°C to form Au nanostructures on the glass substrate. The AZO thin films were then deposited on the Au catalyst at different deposition temperature varying from 200 to 500°C. Postdeposition annealing processes of the Au catalyst resulted in different morphologies of the Au catalyst layers depending on their thicknesses. This in turn gave different AZO morphologies which suggest that the Au catalyst layer thickness and the deposition temperature contribute to the growth mechanism of the AZO nanostructures. AZO nanorods thin films having hexagonal wurtzite structure with individual nanorods on the film surface were obtained from the samples deposited on 5 and 10 nm thick Au catalyst with the deposition temperature of 300°C. © 2014 A. B. Rosli et al.
publisher Hindawi Publishing Corporation
issn 16874110
language English
format Article
accesstype All Open Access; Green Open Access; Hybrid Gold Open Access
record_format scopus
collection Scopus
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