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Preferable binding site of gas molecules on graphene nanoribbon with Stone-Wales defect

Auzar, Z. and Johari, Z. and Sakina, S. H. and Alias, N. E. and Abidin, M. S. Z. (2017) Preferable binding site of gas molecules on graphene nanoribbon with Stone-Wales defect. Materials Research Express, 4 (2). ISSN 2053-1591

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Abstract

The issue of sensitivity of sensing device has focused on the development of sensing devices by using new materials, such as graphene. The gas molecules in different positions such as on, near and far from the defect are placed in the same binding site in two graphene configurations from fair comparison. The interaction between two different graphene configurations such as (pristine armchair graphene nanoribbon (P-AGNR) and Stone-Wales defect on graphene surface (SW-AGNR)) with gas molecules (e.g. O2, N2 and NH3) have been investigated to observe the preferential position site of adsorbate gas molecules. The preferable position sites are investigated by using Extended-Huckel Theory. It is found that, the electronic properties of each configuration are strongly depends on the position of gas molecules and graphene system. Meanwhile, the binding site of the gas molecules on the defective site of graphene surface is a significant factor in determining the sensing behavior of graphene based gas defection device.

Item Type:Article
Uncontrolled Keywords:Charge transfer, Pristine graphene
Subjects:T Technology > TK Electrical engineering. Electronics Nuclear engineering
Divisions:Electrical Engineering
ID Code:76930
Deposited By: Fazli Masari
Deposited On:31 May 2018 09:31
Last Modified:31 May 2018 09:31

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