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Electronic properties of embedded graphene: Doped amorphous silicon/CVD graphene heterostructures

  • Hakim Arezki
  • , Mohamed Boutchich
  • , David Alamarguy
  • , Ali Madouri
  • , José Alvarez
  • , Pere Roca I. Cabarrocas
  • , Jean Paul Kleider
  • , Fei Yao
  • , Young Hee Lee
  • Université Paris-Saclay
  • Centre de Nanosciences et de Nanotechnologies
  • Université Paris-Saclay
  • Sungkyunkwan University

Research output: Contribution to journalArticlepeer-review

7 Scopus citations

Abstract

Large-area graphene film is of great interest for a wide spectrum of electronic applications, such as field effect devices, displays, and solar cells, among many others. Here, we fabricated heterostructures composed of graphene (Gr) grown by chemical vapor deposition (CVD) on copper substrate and transferred to SiO2/Si substrates, capped by n or p-type doped amorphous silicon (a-Si:H) deposited by plasma-enhanced chemical vapor deposition. Using Raman scattering we show that despite the mechanical strain induced by the a-Si:H deposition, the structural integrity of the graphene is preserved. Moreover, Hall effect measurements directly on the embedded graphene show that the electronic properties of CVD graphene can be modulated according to the doping type of the a-Si:H as well as its phase i.e. amorphous or nanocrystalline. The sheet resistance varies from 360 sq-1 to 1260 sq-1 for the (p)-a-Si:H/Gr (n)-a-Si:H/Gr, respectively. We observed a temperature independent hole mobility of up to 1400 cm2 V-1 s-1 indicating that charge impurity is the principal mechanism limiting the transport in this heterostructure. We have demonstrated that embedding CVD graphene under a-Si:H is a viable route for large scale graphene based solar cells or display applications.

Original languageEnglish
Article number404001
JournalJournal of Physics Condensed Matter
Volume28
Issue number40
DOIs
StatePublished - Aug 10 2016

Keywords

  • CVD
  • amorphous silicon
  • doping
  • grapheme
  • heterostructure
  • transport properties

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