• DocumentCode
    1090359
  • Title

    Electrical Properties of Low-Temperature-Compatible P-Channel Polycrystalline-Silicon TFTs Using High- \\kappa Gate Dielectrics

  • Author

    Yang, Ming-Jui ; Chien, Chao-Hsin ; Lu, Yi-Hsien ; Shen, Chih-Yen ; Huang, Tiao-Yuan

  • Author_Institution
    Nat. Chiao Tung Univ., Hsinchu
  • Volume
    55
  • Issue
    4
  • fYear
    2008
  • fDate
    4/1/2008 12:00:00 AM
  • Firstpage
    1027
  • Lastpage
    1034
  • Abstract
    In this paper, we describe a systematic study of the electrical properties of low-temperature-compatible p-channel polycrystalline-silicon thin-film transistors (poly-Si TFTs) using HfO2 and HfSiOx, high-k gate dielectrics. Because of their larger gate capacitance density, the TFTs containing the high-k gate dielectrics exhibited superior device performance in terms of higher Ion/Ioff current ratios, lower subthreshold swings (SSs), and lower threshold voltages (Vth), relative to conventional deposited-SiO2, albeit with slightly higher OFF-state currents. The TFTs incorporating HfSiOx, as the gate dielectric had ca. 1.73 times the mobility (muFE) relative to that of the deposited-SiO2 TFTs; in contrast, the HfO2 TFTs exhibited inferior mobility. We investigated the mechanism for the mobility degradation in these HfO2 TFTs. The immunity of the HfSiOx, TFTs was better than that of the HfO2 TFTs-in terms of their Vth shift, SS degradation, muFE degradation, and drive current deterioration-against negative bias temperature instability stressing. Thus, we believe that HfSiOx, rather than HfO2, is a potential candidate for use as a gate-dielectric material in future high-performance poly-Si TFTs.
  • Keywords
    elemental semiconductors; high-k dielectric thin films; silicon; thin film transistors; current ratios; gate capacitance density; high-k gate dielectrics; low-temperature-compatible p-channel polycrystalline-silicon TFT; mobility degradation; subthreshold swings; thin-film transistors; Capacitance; Degradation; Dielectrics; Hafnium oxide; Iron; Leakage current; Negative bias temperature instability; Niobium compounds; Thin film transistors; Titanium compounds; Hafnium silicate $(hbox{HfSiO}_{x})$; Hafnium silicate $(hbox{HfSiO}_{x})$; high dielectric constant (high-$kappa$); high dielectric constant (high-$kappa$); negative bias temperature instability (NBTI); polycrystalline-silicon thin-film transistors (poly-Si TFTs);
  • fLanguage
    English
  • Journal_Title
    Electron Devices, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9383
  • Type

    jour

  • DOI
    10.1109/TED.2008.916759
  • Filename
    4461118