4.8 Article

Uniform hexagonal graphene flakes and films grown on liquid copper surface

出版社

NATL ACAD SCIENCES
DOI: 10.1073/pnas.1200339109

关键词

atomic crystal; electronic materials

资金

  1. National Basic Research Program of China [2011CB932700, 2011CB808403, 2011CB932303, 2009CB623603]
  2. National Natural Science Foundation of China [61171054, 60736004, 20973184, 20825208, 60911130231]
  3. Chinese Academy of Sciences

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Unresolved problems associated with the production of graphene materials include the need for greater control over layer number, crystallinity, size, edge structure and spatial orientation, and a better understanding of the underlying mechanisms. Here we report a chemical vapor deposition approach that allows the direct synthesis of uniform single-layered, large-size (up to 10,000 mu m(2)), spatially self-aligned, and single-crystalline hexagonal graphene flakes (HGFs) and their continuous films on liquid Cu surfaces. Employing a liquid Cu surface completely eliminates the grain boundaries in solid polycrystalline Cu, resulting in a uniform nucleation distribution and low graphene nucleation density, but also enables self-assembly of HGFs into compact and ordered structures. These HGFs show an average two-dimensional resistivity of 609 +/- 200 Omega and saturation current density of 0.96 +/- 0.15 mA/mu m, demonstrating their good conductivity and capability for carrying high current density.

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