4.6 Article

Electronic structure and optical property of boron doped semiconducting graphene nanoribbons

Journal

SCIENCE CHINA-PHYSICS MECHANICS & ASTRONOMY
Volume 54, Issue 8, Pages 1438-1442

Publisher

SCIENCE PRESS
DOI: 10.1007/s11433-011-4408-8

Keywords

B-doped graphene nanoribbons; electronic structure; optical property; density functional theory

Funding

  1. Natural Science Foundation of Fujian Province of China [A0220001]
  2. Leshan Vocational & Technical College [KY2011001]
  3. Key Research Project in Science and Technology of Leshan [2011GZD050]

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We present a system study on the electronic structure and optical property of boron doped semiconducting graphene nanoribbons using the density functional theory. Energy band structure, density of states, deformation density, Mulliken popular and optical spectra are considered to show the special electronic structure of boron doped semiconducting graphene nanoribbons. The C-B bond form is discussed in detail. From our analysis it is concluded that the Fermi energy of boron doped semiconducting graphene nanoribbons gets lower than that of intrinsic semiconducting graphene nanoribbons. Our results also show that the boron doped semiconducting graphene nanoribbons behave as p-type semiconducting and that the absorption coefficient of boron doped armchair graphene nanoribbons is generally enhanced between 2.0 eV and 3.3 eV. Therefore, our results have a great significance in developing nano-material for fabricating the nano-photovoltaic devices.

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