Publication

Atomic-scale insights into the origin of rectangular lattice in nanographene probed by scanning tunneling microscopy

Shaoxian Li
2021
Article
Résumé

We conducted atomic-scale scanning tunneling microscopy of a graphene nanosheet on graphite. In addition to a rhombus lattice representing the (root 3x root 3)R30 degrees superstructure, we resolved another quadrangle lattice similar to a rectangle in the sheet. Its lattice size was approximately 0.37 x 0.22 nm(2) . To clarify the origin of this unique rectangular lattice, the overlap of the root 3x root 3 superstructures along the direction of their long diagonals was theoretically examined using a simple model. The electron distribution with high energy in the occupied states of armchair-edged graphene nanoribbons (AGNRs) was calculated based on first principles. A rectangular lattice, resembling the one observed experimentally, was found to form on the AGNR under a specific width condition. This finding was also analyzed in terms of Clar's theory and the scattering of electron waves. We propose that wrinkles and adsorbates in graphene play a role similar to an armchair edge, resulting in the root 3x root 3 phase. If these local defects are in close proximity, the rhombus phases interact to generate electronic structures predicted for AGNRs. This is probably the reason why a rectangular lattice was imaged on the graphene sheet that is not an ideal AGNR.

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Concepts associés (38)
Graphène
Le graphène est un matériau bidimensionnel cristallin, forme allotropique du carbone dont l'empilement constitue le graphite. Cette définition théorique est donnée par le physicien en 1947. Par la suite, le travail de différents groupes de recherche permettra de se rendre compte que la structure du graphène tout comme ses propriétés ne sont pas uniques et dépendent de sa synthèse/extraction (détaillée dans la section Production).
Graphene nanoribbon
Graphene nanoribbons (GNRs, also called nano-graphene ribbons or nano-graphite ribbons) are strips of graphene with width less than 100 nm. Graphene ribbons were introduced as a theoretical model by Mitsutaka Fujita and coauthors to examine the edge and nanoscale size effect in graphene. Large quantities of width-controlled GNRs can be produced via graphite nanotomy, where applying a sharp diamond knife on graphite produces graphite nanoblocks, which can then be exfoliated to produce GNRs as shown by Vikas Berry.
Microscope à force atomique
thumb|350px|Le premier microscope à force atomique du monde, au musée de la Science de Londres. Le microscope à force atomique (AFM pour atomic force microscope) est un type de microscope à sonde locale permettant de visualiser la topographie de la surface d'un échantillon. Inventé en 1985, par Gerd Binnig, Calvin Quate et Christoph Gerber, ce type de microscopie repose essentiellement sur l'analyse d'un objet point par point au moyen d'un balayage via une sonde locale, assimilable à une pointe effilée.
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