Electronic Properties of Graphene Nanoribbons: A Density Functional Investigation

被引:0
作者
Kumar, Sandeep [1 ]
Sharma, Hitesh [1 ]
机构
[1] Punjab Tech Univ Kapurthala, Dept Phys, Kapurthala 144601, Punjab, India
来源
PROCEEDINGS OF THE INTERNATIONAL CONFERENCE ON CONDENSED MATTER PHYSICS 2014 (ICCMP 2014) | 2015年 / 1661卷
关键词
PSEUDOPOTENTIALS; RIBBONS; STATE; EDGE;
D O I
10.1063/1.4915407
中图分类号
O469 [凝聚态物理学];
学科分类号
070205 ;
摘要
Density functional theory calculations have been performed on graphene nano ribbons (GNRs) to investigate the electronic properties as a function of chirality, size and hydrogenation on the edges. The calculations were performed on GNRs with armchair and zigzag configurations with 28, 34, 36, 40, 50, 56, 62, 66 carbon atoms. The structural stability of AGNR and ZGNR increases with the size of nanoribbon where as hydrogenation of GNR tends to lowers their structural stability. All GNRs considered have shown semiconducting behavior with HOMO-LUMO gap decreasing with the increase in the GNR size. The hydrogenation of GNR decreases its HOMO-LUMO gap significantly. The results are in agreement with the available experimental and theoretical results.
引用
收藏
页数:4
相关论文
共 18 条
[1]   Electronic structure and stability of semiconducting graphene nanoribbons [J].
Barone, Veronica ;
Hod, Oded ;
Scuseria, Gustavo E. .
NANO LETTERS, 2006, 6 (12) :2748-2754
[2]   Anisotropy of the Stone-Wales defect and warping of graphene nanoribbons: A first-principles analysis [J].
Bhowmick, Somnath ;
Waghmare, Umesh V. .
PHYSICAL REVIEW B, 2010, 81 (15)
[3]   Adsorption and diffusion of gold adatoms on graphene nanoribbons: An ab initio study [J].
Brito, W. H. ;
Miwa, R. H. .
PHYSICAL REVIEW B, 2010, 82 (04)
[4]   Dynamical gap generation in graphene nanoribbons: An effective relativistic field theoretical model [J].
Chaves, A. J. ;
Lima, G. D. ;
de Paula, W. ;
Cordeiro, C. E. ;
Delfino, A. ;
Frederico, T. ;
Oliveira, O. .
PHYSICAL REVIEW B, 2011, 83 (15)
[5]   Crystallographic etching of few-layer graphene [J].
Datta, Sujit S. ;
Strachan, Douglas R. ;
Khamis, Samuel M. ;
Johnson, A. T. Charlie .
NANO LETTERS, 2008, 8 (07) :1912-1915
[6]   Peculiar localized state at zigzag graphite edge [J].
Fujita, M ;
Wakabayashi, K ;
Nakada, K ;
Kusakabe, K .
JOURNAL OF THE PHYSICAL SOCIETY OF JAPAN, 1996, 65 (07) :1920-1923
[7]   EFFICACIOUS FORM FOR MODEL PSEUDOPOTENTIALS [J].
KLEINMAN, L ;
BYLANDER, DM .
PHYSICAL REVIEW LETTERS, 1982, 48 (20) :1425-1428
[8]   Observation of zigzag and armchair edges of graphite using scanning tunneling microscopy and spectroscopy [J].
Kobayashi, Y ;
Fukui, K ;
Enoki, T ;
Kusakabe, K ;
Kaburagi, Y .
PHYSICAL REVIEW B, 2005, 71 (19)
[9]   Edge state in graphene ribbons: Nanometer size effect and edge shape dependence [J].
Nakada, K ;
Fujita, M ;
Dresselhaus, G ;
Dresselhaus, MS .
PHYSICAL REVIEW B, 1996, 54 (24) :17954-17961
[10]   Self-consistent order-N density-functional calculations for very large systems [J].
Ordejon, P ;
Artacho, E ;
Soler, JM .
PHYSICAL REVIEW B, 1996, 53 (16) :10441-10444