Controlled epitaxial graphene growth within amorphous carbon corrals - Archive ouverte HAL Accéder directement au contenu
Article Dans Une Revue Applied Physics Letters Année : 2014

Controlled epitaxial graphene growth within amorphous carbon corrals

James Palmer
  • Fonction : Auteur
Jan Kunc
  • Fonction : Auteur
Yike Hu
  • Fonction : Auteur
John Hankinson
  • Fonction : Auteur
Zelei Guo
  • Fonction : Auteur
Claire Berger
Walt de Heer
  • Fonction : Auteur

Résumé

Structured growth of high quality graphene is necessary for technological development of carbon based electronics. Specifically, control of the bunching and placement of surface steps under epitaxial graphene on SiC is an important consideration for graphene device production. We demonstrate lithographically patterned evaporated amorphous carbon corrals as a method to pin SiC surface steps. Evaporated amorphous carbon is an ideal step-flow barrier on SiC due to its chemical compatibility with graphene growth and its structural stability at high temperatures, as well as its patternability. The amorphous carbon is deposited in vacuum on SiC prior to graphene growth. In the graphene furnace at temperatures above 1200$^\circ$C, mobile SiC steps accumulate at these amorphous carbon barriers, forming an aligned step free region for graphene growth at temperatures above 1330$^\circ$C. AFM imaging and Raman spectroscopy support the formation of quality step-free graphene sheets grown on SiC with the step morphology aligned to the carbon grid.
Fichier principal
Vignette du fichier
1402.4768.pdf (627.19 Ko) Télécharger le fichier
Origine : Fichiers produits par l'(les) auteur(s)

Dates et versions

hal-01002955 , version 1 (06-04-2022)

Identifiants

Citer

James Palmer, Jan Kunc, Yike Hu, John Hankinson, Zelei Guo, et al.. Controlled epitaxial graphene growth within amorphous carbon corrals. Applied Physics Letters, 2014, 105 (2), pp.023106. ⟨10.1063/1.4890499⟩. ⟨hal-01002955⟩

Collections

UGA CNRS NEEL
64 Consultations
13 Téléchargements

Altmetric

Partager

Gmail Facebook X LinkedIn More