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MoS2 P-type transistors and diodes enabled by high work function MoOx contacts

  • Steven Chuang
  • , Corsin Battaglia
  • , Angelica Azcatl
  • , Stephen McDonnell
  • , Jeong Seuk Kang
  • , Xingtian Yin
  • , Mahmut Tosun
  • , Rehan Kapadia
  • , Hui Fang
  • , Robert M. Wallace
  • , Ali Javey
  • University of California at Berkeley
  • LBL
  • University of Texas at Dallas

科研成果: 期刊稿件文章同行评审

553 引用 (Scopus)

摘要

The development of low-resistance source/drain contacts to transition-metal dichalcogenides (TMDCs) is crucial for the realization of high-performance logic components. In particular, efficient hole contacts are required for the fabrication of p-type transistors with MoS2, a model TMDC. Previous studies have shown that the Fermi level of elemental metals is pinned close to the conduction band of MoS2, thus resulting in large Schottky barrier heights for holes with limited hole injection from the contacts. Here, we show that substoichiometric molybdenum trioxide (MoOx, x < 3), a high work function material, acts as an efficient hole injection layer to MoS 2 and WSe2. In particular, we demonstrate MoS2 p-type field-effect transistors and diodes by using MoOx contacts. We also show drastic on-current improvement for p-type WSe2 FETs with MoOx contacts over devices made with Pd contacts, which is the prototypical metal used for hole injection. The work presents an important advance in contact engineering of TMDCs and will enable future exploration of their performance limits and intrinsic transport properties.

源语言英语
页(从-至)1337-1342
页数6
期刊Nano Letters
14
3
DOI
出版状态已出版 - 12 3月 2014
已对外发布

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