Engineering Optical and Electronic Properties of WS2 by Varying the Number of Layers

  • Kim, Hyun-Cheol; 
  • Kim, Hakseong; 
  • Lee, Jae-Ung; 
  • Lee, Han-Byeol; 
  • Choi, Doo-Hua; 
  • ... Cheong, Hyeonsik; 
  • 외 6명
Citations

WEB OF SCIENCE

144
Citations

SCOPUS

151

초록

The optical constants, bandgaps, and band alignments of mono-, bi-, and trilayer WS2 were experimentally measured, and an extraordinarily high dependency on the number of layers was revealed. The refractive indices and extinction coefficients were extracted from the optical-contrast oscillation for various thicknesses of SiO2 on a Si substrate. The bandgaps of the few-layer WS2 were both optically and electrically measured, indicating high exciton-binding energies. The Schottky-barrier heights (SBHs) with Au/Cr contact were also extracted, depending on the number of layers (1-28). From an engineering viewpoint, the bandgap can be modulated from 3.49 to 2.71 eV with additional layers. The SBH can also be reduced from 0.37 eV for a monolayer to 0.17 eV for 28 layers. The technique of engineering materials' properties by modulating the number of layers opens pathways uniquely adaptable to transition-metal dichalcogenides.

키워드

tungsten disulfide; transition-metal dichalcogenide; bandgap; band-alignment; Schottky barrier; EXCITON BINDING-ENERGY; HETEROSTRUCTURES; TRANSISTORS; GRAPHENE; MOS2; EVOLUTION; SHEETS; STATES; GAP
제목
Engineering Optical and Electronic Properties of WS2 by Varying the Number of Layers
저자
Kim, Hyun-Cheol; Kim, Hakseong; Lee, Jae-Ung; Lee, Han-Byeol; Choi, Doo-Hua; Lee, Jun-Ho; Lee, Wi Hyoung; Jhang, Sung Ho; Park, Bae Ho; Cheong, Hyeonsik; Lee, Sang-Wook; Chung, Hyun-Jong
DOI
10.1021/acsnano.5b01727
발행일
2015-07
유형
Article
저널명
ACS Nano
권
9
호
7
페이지
6854 ~ 6860