Title of article
First-principle study of energy band structure of armchair graphene nanoribbons
Author/Authors
Ma، نويسنده , , Fei and Guo، نويسنده , , Zhankui and Xu، نويسنده , , Kewei and Chu، نويسنده , , Paul K.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2012
Pages
5
From page
1089
To page
1093
Abstract
First-principle calculation is carried out to study the energy band structure of armchair graphene nanoribbons (AGNRs). Hydrogen passivation is found to be crucial to convert the indirect band gaps into direct ones as a result of enhanced interactions between electrons and nuclei at the edge boundaries, as evidenced from the shortened bond length as well as the increased differential charge density. Ribbon width usually leads to the oscillatory variation of band gaps due to quantum confinement no matter hydrogen passivated or not. Mechanical strain may change the crystal symmetry, reduce the overlapping integral of C–C atoms, and hence modify the band gap further, which depends on the specific ribbon width sensitively. In practical applications, those effects will be hybridized to determine the energy band structure and subsequently the electronic properties of graphene. The results can provide insights into the design of carbon-based devices.
Keywords
A. Graphene , C. Structural modification , B. Band gap
Journal title
Solid State Communications
Serial Year
2012
Journal title
Solid State Communications
Record number
1793355
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