Title of article :
Formulation of atomic positions and carbon–carbon bond length in armchair graphene nanoribbons: an ab initio study
Author/Authors :
Balarastaghi, Mehran Department of Electrical Engineering - Science and Research Branch - Islamic Azad University, Tehran , Ahmadi, Vahid Faculty of Electrical and Computer Engineering - Tarbiat Modares University, Tehran
Pages :
9
From page :
191
To page :
199
Abstract :
In this paper, we investigate the atomic positions of single layer armchair graphene nanoribbon for two cases, with and without hydrogen-passivate edges, accurately and propose a formula which either removes the need of structural relaxation generally or decreases its time extremely (up to seven times). We also propose a general pattern (hyperbolic) for these positions. On the other hand, we show that edge effect influences several atoms near the edge not just one. These results can be used in software, which compute atomic positions and can increase their efficiency. In addition, we prove that the C–C bond distance depends on dimer number and differs in length and width directions, especially for narrow AGNRs. The maximum value of these differences is about 0.017 A ° .
Keywords :
Armchair graphene nanoribbon (AGNR) , Structural relaxation , Atomic position , Dimer , C–C bond length
Journal title :
Journal of Theoretical and Applied Physics
Serial Year :
2017
Record number :
2509386
Link To Document :
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