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Toward single-layer uniform hexagonal boron nitride-graphene patchworks with zigzag linking edges

  • Yabo Gao
  • , Yanfeng Zhang*
  • , Pengcheng Chen
  • , Yuanchang Li
  • , Mengxi Liu
  • , Teng Gao
  • , Donglin Ma
  • , Yubin Chen
  • , Zhihai Cheng
  • , Xiaohui Qiu
  • , Wenhui Duan
  • , Zhongfan Liu
  • *Corresponding author for this work
  • Peking University
  • National Center for Nanoscience and Technology
  • Tsinghua University

Research output: Contribution to journalArticlepeer-review

Abstract

The atomic layer of hybridized hexagonal boron nitride (h-BN) and graphene has attracted a great deal of attention after the pioneering work of P. M. Ajayan et al. on Cu foils because of their unusual electronic properties (Ci, L. J.; et al. Nat. Mater. 2010, 9, 430-435). However, many fundamental issues are still not clear, including the in-plane atomic continuity as well as the edge type at the boundary of hybridized h-BN and graphene domains. To clarify these issues, we have successfully grown a perfect single-layer h-BN-graphene (BNC) patchwork on a selected Rh(111) substrate, via a two-step patching growth approach. With the ideal sample, we convinced that at the in-plane linking interface, graphene and h-BN can be linked perfectly at an atomic scale. More importantly, we found that zigzag linking edges were preferably formed, as demonstrated by atomic-scale scanning tunneling microscopy images, which was also theoretically verified using density functional theory calculations. We believe the experimental and theoretical works are of particular importance to obtain a fundamental understanding of the BNC hybrid and to establish a deliberate structural control targeting high-performance electronic and spintronic devices.

Original languageEnglish
Pages (from-to)3439-3443
Number of pages5
JournalNano Letters
Volume13
Issue number7
DOIs
Publication statusPublished - 10 Jul 2013
Externally publishedYes

Keywords

  • BNC hybrid
  • STM
  • boron nitride
  • graphene
  • interface

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