Impact of changing channel length and band gaps of a carbon nanotube on the current of a Carbon Nanotube Field Effect Transistors (CNTFETs)

This paper introduce a new way to simulate the effect of changing the length and the band gap of the nanotube on the current of carbon nanotube field effect transistors (CNTFET( by using simulation tools: FETToy, CNTFET lab, CNT bands 2.0, since this simulation were done in different parameters of Z...

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Main Authors: Khoder Bachour, Majdeddin Ali, Ied Alabboud
Format: Article
Language:English
Published: Al-Nahrain Journal for Engineering Sciences 2020-03-01
Series:مجلة النهرين للعلوم الهندسية
Subjects:
Online Access:https://nahje.com/index.php/main/article/view/704
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spelling doaj-6d084e04dc1646a9afc99d7e5562bed02020-11-25T03:00:33ZengAl-Nahrain Journal for Engineering Sciencesمجلة النهرين للعلوم الهندسية2521-91542521-91622020-03-01231212910.29194/NJES.23010021704Impact of changing channel length and band gaps of a carbon nanotube on the current of a Carbon Nanotube Field Effect Transistors (CNTFETs)Khoder Bachour0Majdeddin Ali1Ied Alabboud2Syrian 00963933849035Department of electronics, University of AL-Baath, Syria.Department of electronics, University of AL-Baath, Syria.This paper introduce a new way to simulate the effect of changing the length and the band gap of the nanotube on the current of carbon nanotube field effect transistors (CNTFET( by using simulation tools: FETToy, CNTFET lab, CNT bands 2.0, since this simulation were done in different parameters of ZigZag nanotube. We use three simulations tools because each tool provides simulation of parameters that differ from the parameters of other tools, so we can study more parameters that we change which this article is studied. In this paper we studied the effect of changing of ZigZag nanotube length which has a chirality (n,0) on the current of the CNTFET. We have found that the relationship between nanotube length and the current of the CNTFET is an inverse proportional, as the nanotube length increase, the current of CNTFET decrease, and the relation between the band gap of the ZigZag nanotube and current of the CNTFET has been studied too. We have found that this relationship is an inverse proportional, as the band gap increase, the current of CNTFET decrease. Also, we studied the relation between the band gap of the ZigZag nanotube and the average velocity of charges in CNTFET, we found that relationship is an inverse proportional, as the band gap increase, the average velocity of charges of CNTFET decrease.https://nahje.com/index.php/main/article/view/704nanotube lengthband gapaverage velocity of chargeschiralitycntfet
collection DOAJ
language English
format Article
sources DOAJ
author Khoder Bachour
Majdeddin Ali
Ied Alabboud
spellingShingle Khoder Bachour
Majdeddin Ali
Ied Alabboud
Impact of changing channel length and band gaps of a carbon nanotube on the current of a Carbon Nanotube Field Effect Transistors (CNTFETs)
مجلة النهرين للعلوم الهندسية
nanotube length
band gap
average velocity of charges
chirality
cntfet
author_facet Khoder Bachour
Majdeddin Ali
Ied Alabboud
author_sort Khoder Bachour
title Impact of changing channel length and band gaps of a carbon nanotube on the current of a Carbon Nanotube Field Effect Transistors (CNTFETs)
title_short Impact of changing channel length and band gaps of a carbon nanotube on the current of a Carbon Nanotube Field Effect Transistors (CNTFETs)
title_full Impact of changing channel length and band gaps of a carbon nanotube on the current of a Carbon Nanotube Field Effect Transistors (CNTFETs)
title_fullStr Impact of changing channel length and band gaps of a carbon nanotube on the current of a Carbon Nanotube Field Effect Transistors (CNTFETs)
title_full_unstemmed Impact of changing channel length and band gaps of a carbon nanotube on the current of a Carbon Nanotube Field Effect Transistors (CNTFETs)
title_sort impact of changing channel length and band gaps of a carbon nanotube on the current of a carbon nanotube field effect transistors (cntfets)
publisher Al-Nahrain Journal for Engineering Sciences
series مجلة النهرين للعلوم الهندسية
issn 2521-9154
2521-9162
publishDate 2020-03-01
description This paper introduce a new way to simulate the effect of changing the length and the band gap of the nanotube on the current of carbon nanotube field effect transistors (CNTFET( by using simulation tools: FETToy, CNTFET lab, CNT bands 2.0, since this simulation were done in different parameters of ZigZag nanotube. We use three simulations tools because each tool provides simulation of parameters that differ from the parameters of other tools, so we can study more parameters that we change which this article is studied. In this paper we studied the effect of changing of ZigZag nanotube length which has a chirality (n,0) on the current of the CNTFET. We have found that the relationship between nanotube length and the current of the CNTFET is an inverse proportional, as the nanotube length increase, the current of CNTFET decrease, and the relation between the band gap of the ZigZag nanotube and current of the CNTFET has been studied too. We have found that this relationship is an inverse proportional, as the band gap increase, the current of CNTFET decrease. Also, we studied the relation between the band gap of the ZigZag nanotube and the average velocity of charges in CNTFET, we found that relationship is an inverse proportional, as the band gap increase, the average velocity of charges of CNTFET decrease.
topic nanotube length
band gap
average velocity of charges
chirality
cntfet
url https://nahje.com/index.php/main/article/view/704
work_keys_str_mv AT khoderbachour impactofchangingchannellengthandbandgapsofacarbonnanotubeonthecurrentofacarbonnanotubefieldeffecttransistorscntfets
AT majdeddinali impactofchangingchannellengthandbandgapsofacarbonnanotubeonthecurrentofacarbonnanotubefieldeffecttransistorscntfets
AT iedalabboud impactofchangingchannellengthandbandgapsofacarbonnanotubeonthecurrentofacarbonnanotubefieldeffecttransistorscntfets
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