Skip to Main Content (Press Enter)

Logo UNIMORE
  • ×
  • Home
  • Degree programmes
  • Modules
  • Jobs
  • People
  • Research Outputs
  • Academic units
  • Third Mission
  • Projects
  • Skills

UNI-FIND
Logo UNIMORE

|

UNI-FIND

unimore.it
  • ×
  • Home
  • Degree programmes
  • Modules
  • Jobs
  • People
  • Research Outputs
  • Academic units
  • Third Mission
  • Projects
  • Skills
  1. Research Outputs

Designing All-Graphene Nanojunctions by Covalent Functionalization

Academic Article
Publication Date:
2011
Short description:
Designing All-Graphene Nanojunctions by Covalent Functionalization / C., Cocchi; Ruini, Alice; D., Prezzi; M. J., Caldas; Molinari, Elisa. - In: JOURNAL OF PHYSICAL CHEMISTRY. C. - ISSN 1932-7447. - ELETTRONICO. - 115:7(2011), pp. 2969-2973. [10.1021/jp109909s]
abstract:
We investigated theoretically the effect of covalent edge functionalization, with organic functional groups, on the electronic properties of graphene nanostructures and nanojunctions. Our analysis shows that functionalization can be designed to tune electron affinities and ionization potentials of graphene flakes, and to control the energy alignment of frontier orbitals in nanometer-wide graphene junctions. The stability of the proposed mechanism is discussed with respect to the functional groups, their number as well as the width of graphene nanostructures. The results of our work indicate that different level alignments can be obtained and engineered in order to realize stable all-graphene nanodevices.
Iris type:
Articolo su rivista
Keywords:
graphene nanostructures; edge-functionalization; electron affinity; ionization potential
List of contributors:
C., Cocchi; Ruini, Alice; D., Prezzi; M. J., Caldas; Molinari, Elisa
Authors of the University:
MOLINARI Elisa
RUINI Alice
Handle:
https://iris.unimore.it/handle/11380/668249
Published in:
JOURNAL OF PHYSICAL CHEMISTRY. C
Journal
  • Use of cookies

Powered by VIVO | Designed by Cineca | 26.4.5.0