Enhanced humidity sensing performance using Sn-Doped ZnO nanorod Array/SnO2 nanowire heteronetwork fabricated via two-step solution immersion

A unique heteronetwork consisting of crystalline tin-doped zinc oxide nanorod arrays and rutile tin oxide nanowires (SZO/SnO2) was fabricated for the first time using a two-step solution immersion method at a low temperature and immersion time (2 h) for humidity sensing applications. The average dia...

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Published in:Materials Letters
Main Author: Ismail A.S.; Mamat M.H.; Yusoff M.M.; Malek M.F.; Zoolfakar A.S.; Rani R.A.; Suriani A.B.; Mohamed A.; Ahmad M.K.; Rusop M.
Format: Article
Language:English
Published: Elsevier B.V. 2018
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85029408957&doi=10.1016%2fj.matlet.2017.09.040&partnerID=40&md5=110d7b412a7fe4be5ef8381bc34912b7
id 2-s2.0-85029408957
spelling 2-s2.0-85029408957
Ismail A.S.; Mamat M.H.; Yusoff M.M.; Malek M.F.; Zoolfakar A.S.; Rani R.A.; Suriani A.B.; Mohamed A.; Ahmad M.K.; Rusop M.
Enhanced humidity sensing performance using Sn-Doped ZnO nanorod Array/SnO2 nanowire heteronetwork fabricated via two-step solution immersion
2018
Materials Letters
210

10.1016/j.matlet.2017.09.040
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85029408957&doi=10.1016%2fj.matlet.2017.09.040&partnerID=40&md5=110d7b412a7fe4be5ef8381bc34912b7
A unique heteronetwork consisting of crystalline tin-doped zinc oxide nanorod arrays and rutile tin oxide nanowires (SZO/SnO2) was fabricated for the first time using a two-step solution immersion method at a low temperature and immersion time (2 h) for humidity sensing applications. The average diameter and thickness of the SZO are approximately 95 and 730 nm, respectively. The diameter of the SnO2 nanowires ranges from 60 nm to 120 nm, and the length of the nanowire is approximately 10 µm. The SZO/SnO2-based humidity sensor exhibits high stability and superior humidity sensing performance compared with the SZO-, SnO2-, and ZnO/SnO2-based sensors with a sensitivity of 67.8. Results demonstrate that the unique architecture of SZO/SnO2 heteronetwork can enhance the humidity sensing capabilities of the nanowires. © 2017 Elsevier B.V.
Elsevier B.V.
0167577X
English
Article

author Ismail A.S.; Mamat M.H.; Yusoff M.M.; Malek M.F.; Zoolfakar A.S.; Rani R.A.; Suriani A.B.; Mohamed A.; Ahmad M.K.; Rusop M.
spellingShingle Ismail A.S.; Mamat M.H.; Yusoff M.M.; Malek M.F.; Zoolfakar A.S.; Rani R.A.; Suriani A.B.; Mohamed A.; Ahmad M.K.; Rusop M.
Enhanced humidity sensing performance using Sn-Doped ZnO nanorod Array/SnO2 nanowire heteronetwork fabricated via two-step solution immersion
author_facet Ismail A.S.; Mamat M.H.; Yusoff M.M.; Malek M.F.; Zoolfakar A.S.; Rani R.A.; Suriani A.B.; Mohamed A.; Ahmad M.K.; Rusop M.
author_sort Ismail A.S.; Mamat M.H.; Yusoff M.M.; Malek M.F.; Zoolfakar A.S.; Rani R.A.; Suriani A.B.; Mohamed A.; Ahmad M.K.; Rusop M.
title Enhanced humidity sensing performance using Sn-Doped ZnO nanorod Array/SnO2 nanowire heteronetwork fabricated via two-step solution immersion
title_short Enhanced humidity sensing performance using Sn-Doped ZnO nanorod Array/SnO2 nanowire heteronetwork fabricated via two-step solution immersion
title_full Enhanced humidity sensing performance using Sn-Doped ZnO nanorod Array/SnO2 nanowire heteronetwork fabricated via two-step solution immersion
title_fullStr Enhanced humidity sensing performance using Sn-Doped ZnO nanorod Array/SnO2 nanowire heteronetwork fabricated via two-step solution immersion
title_full_unstemmed Enhanced humidity sensing performance using Sn-Doped ZnO nanorod Array/SnO2 nanowire heteronetwork fabricated via two-step solution immersion
title_sort Enhanced humidity sensing performance using Sn-Doped ZnO nanorod Array/SnO2 nanowire heteronetwork fabricated via two-step solution immersion
publishDate 2018
container_title Materials Letters
container_volume 210
container_issue
doi_str_mv 10.1016/j.matlet.2017.09.040
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85029408957&doi=10.1016%2fj.matlet.2017.09.040&partnerID=40&md5=110d7b412a7fe4be5ef8381bc34912b7
description A unique heteronetwork consisting of crystalline tin-doped zinc oxide nanorod arrays and rutile tin oxide nanowires (SZO/SnO2) was fabricated for the first time using a two-step solution immersion method at a low temperature and immersion time (2 h) for humidity sensing applications. The average diameter and thickness of the SZO are approximately 95 and 730 nm, respectively. The diameter of the SnO2 nanowires ranges from 60 nm to 120 nm, and the length of the nanowire is approximately 10 µm. The SZO/SnO2-based humidity sensor exhibits high stability and superior humidity sensing performance compared with the SZO-, SnO2-, and ZnO/SnO2-based sensors with a sensitivity of 67.8. Results demonstrate that the unique architecture of SZO/SnO2 heteronetwork can enhance the humidity sensing capabilities of the nanowires. © 2017 Elsevier B.V.
publisher Elsevier B.V.
issn 0167577X
language English
format Article
accesstype
record_format scopus
collection Scopus
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