• DocumentCode
    1334934
  • Title

    Impact of Mechanical Bending on ZnO and IGZO Thin-Film Transistors

  • Author

    Cherenack, Kunigunde H. ; Münzenrieder, Niko S. ; Tröster, Gerhard

  • Author_Institution
    Inst. for Electron., Swiss Fed. Inst. of Technol. Zurich, Zürich, Switzerland
  • Volume
    31
  • Issue
    11
  • fYear
    2010
  • Firstpage
    1254
  • Lastpage
    1256
  • Abstract
    Both zinc-oxide (ZnO) and gallium-indium-ZnO (IGZO) are attractive as semiconductors to replace hydrogenated amorphous silicon in flexible thin-film transistors (TFTs) due to their high charge carrier mobility and low deposition temperature. However, the electrical performance of flexible TFTs needs to be insensitive to mechanical bending. We have fabricated TFTs using ZnO and IGZO semiconducting layers on polyimide substrates and exposed TFTs to tensile bending radii down to 10 mm. While the mobility, threshold voltage, and subthreshold slope of IGZO TFTs remained essentially unchanged over the entire bending range, the electrical performance parameters of ZnO TFTs were strongly degraded by bending. For ZnO TFTs bent to a radius of 10 mm, the mobility decreased by more than two orders of magnitude, the threshold voltage increased by a factor of ~ 5, and the subthreshold slope increased by a factor of ~ 2. Our results show that IGZO should be the material of choice for robust flexible thin-film transistors. Experimental evidence points toward the formation of microcracks as the cause of ZnO sensitivity to bending.
  • Keywords
    II-VI semiconductors; bending; carrier mobility; indium compounds; ternary semiconductors; thin film transistors; zinc compounds; IGZO; In-Ga-ZnO; ZnO; carrier mobility; gallium-indium-zinc oxide; mechanical bending; subthreshold slope; tensile bending; thin film transistors; threshold voltage; Aluminum oxide; Current measurement; Logic gates; Substrates; Thin film transistors; Threshold voltage; Zinc oxide; Flexible structures; strain; thin-film device;
  • fLanguage
    English
  • Journal_Title
    Electron Device Letters, IEEE
  • Publisher
    ieee
  • ISSN
    0741-3106
  • Type

    jour

  • DOI
    10.1109/LED.2010.2068535
  • Filename
    5585696