Title of article
Lithium adsorption on armchair graphene nanoribbons
Author/Authors
Krepel، نويسنده , , Dana and Hod، نويسنده , , Oded، نويسنده ,
Issue Information
هفته نامه با شماره پیاپی سال 2011
Pages
10
From page
1633
To page
1642
Abstract
Lithium adsorption on two dimensional graphene and armchair graphene nanoribbons is studied using advanced density functional theory calculations. The relative stability of different adsorption sites is investigated taking into account different ribbon widths, adsorbate densities, and spin states. We find the singlet spin state to be the true ground state of the systems considered. For this spin state, the binding energy increases with decreasing adatom density due to lower Coulomb repulsion between the partially charged Li atoms. At low adsorbate densities the favorable adsorption sites on the nanoribbons are found to be the hollow sites near the edges of the ribbon, whereas at higher densities, Li atoms tend to couple on next-nearest neighboring hexagons close to the ribbonʹs edge. Adsorption of the metal atoms is found to significantly decrease the bandgaps of all systems studied, turning them metallic for sufficiently large adatom densities. This suggests lithium doping as a possible route for bandgap engineering of graphitic systems.
Keywords
lithium , graphene , Armchair graphene nanoribbon , Chemical adsorption , Density functional theory
Journal title
Surface Science
Serial Year
2011
Journal title
Surface Science
Record number
1686165
Link To Document