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Enhanced carrier transport by transition metal doping in WS2field effect transistors

  • Maomao Liu
  • , Sichen Wei
  • , Simran Shahi
  • , Hemendra Nath Jaiswal
  • , Paolo Paletti
  • , Sara Fathipour
  • , Maja Remškar
  • , Jun Jiao
  • , Wansik Hwang
  • , Fei Yao
  • , Huamin Li
  • SUNY Buffalo
  • University of Notre Dame
  • Jožef Stefan Institute
  • Portland State University
  • Korea Aerospace University

Research output: Contribution to journalArticlepeer-review

45 Scopus citations

Abstract

High contact resistance is one of the primary concerns for electronic device applications of two-dimensional (2D) layered semiconductors. Here, we explore the enhanced carrier transport through metal-semiconductor interfaces in WS2 field effect transistors (FETs) by introducing a typical transition metal, Cu, with two different doping strategies: (i) a "generalized"Cu doping by using randomly distributed Cu atoms along the channel and (ii) a "localized"Cu doping by adapting an ultrathin Cu layer at the metal-semiconductor interface. Compared to the pristine WS2 FETs, both the generalized Cu atomic dopant and localized Cu contact decoration can provide a Schottky-to-Ohmic contact transition owing to the reduced contact resistances by 1-3 orders of magnitude, and consequently elevate electron mobilities by 5-7 times. Our work demonstrates that the introduction of transition metal can be an efficient and reliable technique to enhance the carrier transport and device performance in 2D TMD FETs.

Original languageEnglish
Pages (from-to)17253-17264
Number of pages12
JournalNanoscale
Volume12
Issue number33
DOIs
StatePublished - Sep 7 2020

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