4.8 Article

Sub-100 nm Channel Length Graphene Transistors

期刊

NANO LETTERS
卷 10, 期 10, 页码 3952-3956

出版社

AMER CHEMICAL SOC
DOI: 10.1021/nl101724k

关键词

Graphene transistors; self-aligned gate. nanowires; transit time; cutoff frequency

资金

  1. NSF [0956171]
  2. NIH [IDP20D004342-01]

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Here we report high-performance sub-100 nm channel length graphene transistors fabricated using a self-aligned approach The graphene transistors are fabricated using a highly doped GaN1 nanowire as the local gate with the source and drain electrodes defined through a self-aligned process and the channel length defined by the nanowire size This fabrication approach allows the preservation of the high carrier mobility in graphene and ensures nearly perfect alignment between source, drain, and gate electrodes It therefore affords transistor performance not previously possible Graphene transistors with 45 100 nm channel lengths have been fabricated with the scaled transconductance exceeding 2 mS/prn. comparable to the best performed high electron mobility transistors with similar channel lengths Analysis of and the device characteristics gives a transit time of 120-220 fs and the projected intrinsic cutoff frequency (fT) reaching 700-1400 GHz This study demonstrates the exciting potential of graphene based electronics in terahertz electronics

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