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Fast growth of inch-sized single-crystalline graphene from a controlled single nucleus on Cu-Ni alloys

  • Tianru Wu
  • , Xuefu Zhang
  • , Qinghong Yuan
  • , Jiachen Xue
  • , Guangyuan Lu
  • , Zhihong Liu
  • , Huishan Wang
  • , Haomin Wang
  • , Feng Ding*
  • , Qingkai Yu
  • , Xiaoming Xie
  • , Mianheng Jiang
  • *此作品的通讯作者

科研成果: 期刊稿件文章同行评审

摘要

Wafer-scale single-crystalline graphene monolayers are highly sought after as an ideal platform for electronic and other applications. At present, state-of-the-art growth methods based on chemical vapour deposition allow the synthesis of one-centimetre-sized single-crystalline graphene domains in ∼12 h, by suppressing nucleation events on the growth substrate. Here we demonstrate an efficient strategy for achieving large-area single-crystalline graphene by letting a single nucleus evolve into a monolayer at a fast rate. By locally feeding carbon precursors to a desired position of a substrate composed of an optimized Cu-Ni alloy, we synthesized an ∼1.5-inch-large graphene monolayer in 2.5 h. Localized feeding induces the formation of a single nucleus on the entire substrate, and the optimized alloy activates an isothermal segregation mechanism that greatly expedites the growth rate. This approach may also prove effective for the synthesis of wafer-scale single-crystalline monolayers of other two-dimensional materials.

源语言英语
页(从-至)43-47
页数5
期刊Nature Materials
15
1
DOI
出版状态已出版 - 1 1月 2016

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