Performance of bilayer carbon-doped boron nitride nanoribbon for gas sensing application

Carbon doped Boron Nitride Nanoribbon (BC2NNR) materials is studied to expand its possibility for use sensing devices. In this paper, a bilayer Carbon doped Boron Nitride Nanoribbon hydrogen gas sensing performance is investigated using computational simulation at different temperature. The current...

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Main Authors: Taib, Ainun Khairiyah, Johari, Zaharah, Abd. Rahman, Shaharin Fadzli, Mohd. Yusoff, Mohd. Fairus
Format: Conference or Workshop Item
Published: 2023
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Online Access:http://eprints.utm.my/107685/
http://dx.doi.org/10.1109/SENNANO57767.2023.10352538
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Institution: Universiti Teknologi Malaysia
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spelling my.utm.1076852024-09-25T07:52:19Z http://eprints.utm.my/107685/ Performance of bilayer carbon-doped boron nitride nanoribbon for gas sensing application Taib, Ainun Khairiyah Johari, Zaharah Abd. Rahman, Shaharin Fadzli Mohd. Yusoff, Mohd. Fairus TK Electrical engineering. Electronics Nuclear engineering Carbon doped Boron Nitride Nanoribbon (BC2NNR) materials is studied to expand its possibility for use sensing devices. In this paper, a bilayer Carbon doped Boron Nitride Nanoribbon hydrogen gas sensing performance is investigated using computational simulation at different temperature. The current - voltage characteristic was simulated from the device model evaluating the position of the hydrogen molecules on the bilayer BC2NNR surface namely on top of carbon, boron and both boron and nitrogen molecules. Through simulation, higher sensitivity was achieved when hydrogen molecules were attached to boron atom where considerable current variation was seen while the other two position exhibit little changes. The increment of temperature exhibits significant changes when the temperature was increasing double from the room temperature. Notable increase of more than 90% was obtained at a much higher temperature where significant increase in current was obtained in terms of sensitivity upon the attachment of Hydrogen molecules on boron binding site on bilayer BC2NNR. The results presented in this paper provides additional evident in applying bilayer BC2NNR for sensing application. 2023 Conference or Workshop Item PeerReviewed Taib, Ainun Khairiyah and Johari, Zaharah and Abd. Rahman, Shaharin Fadzli and Mohd. Yusoff, Mohd. Fairus (2023) Performance of bilayer carbon-doped boron nitride nanoribbon for gas sensing application. In: 2023 IEEE International Conference on Sensors and Nanotechnology (SENNANO), 26 September 2023-27 September 2023, Putrajaya, Malaysia. http://dx.doi.org/10.1109/SENNANO57767.2023.10352538
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Taib, Ainun Khairiyah
Johari, Zaharah
Abd. Rahman, Shaharin Fadzli
Mohd. Yusoff, Mohd. Fairus
Performance of bilayer carbon-doped boron nitride nanoribbon for gas sensing application
description Carbon doped Boron Nitride Nanoribbon (BC2NNR) materials is studied to expand its possibility for use sensing devices. In this paper, a bilayer Carbon doped Boron Nitride Nanoribbon hydrogen gas sensing performance is investigated using computational simulation at different temperature. The current - voltage characteristic was simulated from the device model evaluating the position of the hydrogen molecules on the bilayer BC2NNR surface namely on top of carbon, boron and both boron and nitrogen molecules. Through simulation, higher sensitivity was achieved when hydrogen molecules were attached to boron atom where considerable current variation was seen while the other two position exhibit little changes. The increment of temperature exhibits significant changes when the temperature was increasing double from the room temperature. Notable increase of more than 90% was obtained at a much higher temperature where significant increase in current was obtained in terms of sensitivity upon the attachment of Hydrogen molecules on boron binding site on bilayer BC2NNR. The results presented in this paper provides additional evident in applying bilayer BC2NNR for sensing application.
format Conference or Workshop Item
author Taib, Ainun Khairiyah
Johari, Zaharah
Abd. Rahman, Shaharin Fadzli
Mohd. Yusoff, Mohd. Fairus
author_facet Taib, Ainun Khairiyah
Johari, Zaharah
Abd. Rahman, Shaharin Fadzli
Mohd. Yusoff, Mohd. Fairus
author_sort Taib, Ainun Khairiyah
title Performance of bilayer carbon-doped boron nitride nanoribbon for gas sensing application
title_short Performance of bilayer carbon-doped boron nitride nanoribbon for gas sensing application
title_full Performance of bilayer carbon-doped boron nitride nanoribbon for gas sensing application
title_fullStr Performance of bilayer carbon-doped boron nitride nanoribbon for gas sensing application
title_full_unstemmed Performance of bilayer carbon-doped boron nitride nanoribbon for gas sensing application
title_sort performance of bilayer carbon-doped boron nitride nanoribbon for gas sensing application
publishDate 2023
url http://eprints.utm.my/107685/
http://dx.doi.org/10.1109/SENNANO57767.2023.10352538
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