Article ID Journal Published Year Pages File Type
5359258 Applied Surface Science 2011 7 Pages PDF
Abstract

We perform first-principles calculations based on density functional theory to study the configuration and electronic properties of graphene nanoribbons (GNRs) on Si(2 1 1) surface. Both [0 1 1¯] and [1¯ 1 1] adsorption orientations of Si(2 1 1) surface are considered. We find that the adsorption energy is determined not only by the edge states of GNRs, but also by the ribbon width and the orientation of the substrate. Bridge and M-shape adsorption configurations appear gradually as the ribbon width increases. The substrate effectively affects the edge states of GNRs and tends to depress the metallic nature of zigzag GNRs (Z-GNRs) and metallize the armchair GNRs (A-GNRs).

Research highlights▶ Configurations and electronic structures of GNRs on Si(2 1 1) surface have been inverstigated by using first-principles method. ▶ Bridge and M-shape adsorption configurations of GNRs on Si(2 1 1) surface appear gradually as the ribbon width increases. ▶ The Si(2 1 1) substrate effectively affects the edge states of GNRs and tends to depress the metallic nature of zigzag GNRs (Z-GNRs) and metallize the armchair GNRs (A-GNRs).

Related Topics
Physical Sciences and Engineering Chemistry Physical and Theoretical Chemistry
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