Artículos de revistas
Optical Properties and Charge-Transfer Excitations in Edge-Functionalized All-Graphene Nanojunctions
Fecha
2011Registro en:
JOURNAL OF PHYSICAL CHEMISTRY LETTERS, v.2, n.11, p.1315-1319, 2011
1948-7185
10.1021/jz200472a
Autor
COCCHI, Caterina
PREZZI, Deborah
RUINI, Alice
Caldas, Marilia Junqueira
MOLINARI, Elisa
Institución
Resumen
We investigate the optical properties of edge-fiinctionalized graphene nanosystems, focusing on the formation of junctions and charge-transfer excitons. We consider a class of graphene structures that combine the main electronic features of graphene with the wide tunability of large polycyclic aromatic hydrocarbons. By investigating prototypical ribbon-like systems, we show that, upon convenient choice of functional groups, low-energy excitations with remarkable charge-transfer character and large oscillator strength are obtained. These properties can be further modulated through an appropriate width variation, thus spanning a wide range in the low-energy region of the UV-vis spectra. Our results are relevant in view of designing all-graphene optoelectronic nanodevices, which take advantage of the versatility of molecular functionalization, together with the stability and the electronic properties of graphene nanostructures.