Simulation of carrier mobility through Graphene Nanoribbon based DNA sensor

This conference paper was presented in the 1st IEEE International Conference on Electrical, Computer and Communication Technologies, ICECCT 2015; SVS College of Engineering Coimbatore; India; 5 March 2015 through 7 March 2015 [© 2015 Institute of Electrical and Electronics Engineers Inc.] The confer...

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Egile Nagusiak: Hasan, Rifat, Nandy, Turja, Abedin, Minhaz Ibna, Hassan, Asif S., Mondol, Raktim Kumar
Beste egile batzuk: Department of Electrical and Electronic Engineering
Formatua: Conference Paper
Hizkuntza:English
Argitaratua: © 2015 Institute of Electrical and Electronics Engineers Inc. 2016
Gaiak:
Sarrera elektronikoa:http://hdl.handle.net/10361/6975
id 10361-6975
record_format dspace
spelling 10361-69752016-11-27T06:12:45Z Simulation of carrier mobility through Graphene Nanoribbon based DNA sensor Hasan, Rifat Nandy, Turja Abedin, Minhaz Ibna Hassan, Asif S. Mondol, Raktim Kumar Department of Electrical and Electronic Engineering Conductance DNA Graphene nanoribbon Mean free path Mobility Resistivity This conference paper was presented in the 1st IEEE International Conference on Electrical, Computer and Communication Technologies, ICECCT 2015; SVS College of Engineering Coimbatore; India; 5 March 2015 through 7 March 2015 [© 2015 Institute of Electrical and Electronics Engineers Inc.] The conference paper's definite version is available at: http://10.1109/ICECCT.2015.7225951 Graphene Nanoribbons (GNRs), now-a-days, are used in detecting Deoxyribonucleic Acid (DNA) which is one of the breakthroughs in modern nanobiomaterial and biomedical applications. The conductance is calculated by transferring the electron from DNA to Graphene Nanoribbon sample. The conductance is the basic parameter of calculating carrier properties from DNA to GNR pathway. One of the carrier properties is mobility upon which hereditary information can be observed for different patch of helix. In this paper, firstly we will observe conductance for DNA-GNR structure by controlling the gate voltage. Then we will measure the variation of mean free path for different conductance of this structure. From this observation, we will investigate the resistivity and calculate the carrier mobility through DNA to GNR sample. Published 2016-11-24T10:24:07Z 2016-11-24T10:24:07Z 2015 Conference Paper Hasan, R., Nandy, T., Abedin, M. I., Hassan, A., & Mondol, R. K. (2015). Simulation of carrier mobility through graphene nanoribbon based DNA sensor. Paper presented at the Proceedings of 2015 IEEE International Conference on Electrical, Computer and Communication Technologies, ICECCT 2015, doi:10.1109/ICECCT.2015.7225951 978-147996084-2 http://hdl.handle.net/10361/6975 10.1109/ICECCT.2015.7225951 en http://ieeexplore.ieee.org/document/7225951/ © 2015 Institute of Electrical and Electronics Engineers Inc.
institution Brac University
collection Institutional Repository
language English
topic Conductance
DNA
Graphene nanoribbon
Mean free path
Mobility
Resistivity
spellingShingle Conductance
DNA
Graphene nanoribbon
Mean free path
Mobility
Resistivity
Hasan, Rifat
Nandy, Turja
Abedin, Minhaz Ibna
Hassan, Asif S.
Mondol, Raktim Kumar
Simulation of carrier mobility through Graphene Nanoribbon based DNA sensor
description This conference paper was presented in the 1st IEEE International Conference on Electrical, Computer and Communication Technologies, ICECCT 2015; SVS College of Engineering Coimbatore; India; 5 March 2015 through 7 March 2015 [© 2015 Institute of Electrical and Electronics Engineers Inc.] The conference paper's definite version is available at: http://10.1109/ICECCT.2015.7225951
author2 Department of Electrical and Electronic Engineering
author_facet Department of Electrical and Electronic Engineering
Hasan, Rifat
Nandy, Turja
Abedin, Minhaz Ibna
Hassan, Asif S.
Mondol, Raktim Kumar
format Conference Paper
author Hasan, Rifat
Nandy, Turja
Abedin, Minhaz Ibna
Hassan, Asif S.
Mondol, Raktim Kumar
author_sort Hasan, Rifat
title Simulation of carrier mobility through Graphene Nanoribbon based DNA sensor
title_short Simulation of carrier mobility through Graphene Nanoribbon based DNA sensor
title_full Simulation of carrier mobility through Graphene Nanoribbon based DNA sensor
title_fullStr Simulation of carrier mobility through Graphene Nanoribbon based DNA sensor
title_full_unstemmed Simulation of carrier mobility through Graphene Nanoribbon based DNA sensor
title_sort simulation of carrier mobility through graphene nanoribbon based dna sensor
publisher © 2015 Institute of Electrical and Electronics Engineers Inc.
publishDate 2016
url http://hdl.handle.net/10361/6975
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AT nandyturja simulationofcarriermobilitythroughgraphenenanoribbonbaseddnasensor
AT abedinminhazibna simulationofcarriermobilitythroughgraphenenanoribbonbaseddnasensor
AT hassanasifs simulationofcarriermobilitythroughgraphenenanoribbonbaseddnasensor
AT mondolraktimkumar simulationofcarriermobilitythroughgraphenenanoribbonbaseddnasensor
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