Static and low frequency noise characterization of N-type random network of carbon nanotubes thin film transistors

  • Joo, Min-Kyu; 
  • Mouis, Mireille; 
  • Jeon, Dae-Young; 
  • Kim, Gyu-Tae; 
  • Kim, Un Jeong; 
  • 외 1명
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초록

Static and low frequency noise (LFN) characterizations in two-dimensional (2D) N-type random network thin film transistors (RN-TFTs) based on single-walled carbon nanotubes were presented. For the electrical parameter extraction, the Y-function method was used to suppress the series resistance (R-sd) influence. The gate-to-channel capacitance (C-gc) was directly measured by the split capacitance-to-voltage method and compared to 2D metal-plate capacitance model (C-2D). In addition, to account for the percolation-dominated 2D RN-TFTs, a numerical percolation simulation was performed. LFN measurements were also carried out and the results were well interpreted by the carrier number and correlated mobility fluctuation model. Finally, one-dimensional (1D) cylindrical analytical capacitance based model (C-1D) was suggested and applied to provide better consistency between all electrical parameters based on experimental and simulation results. (C) 2013 AIP Publishing LLC.

제목
Static and low frequency noise characterization of N-type random network of carbon nanotubes thin film transistors
저자
Joo, Min-Kyu; Mouis, Mireille; Jeon, Dae-Young; Kim, Gyu-Tae; Kim, Un Jeong; Ghibaudo, Gerard
DOI
10.1063/1.4825221
발행일
2013-10
저널명
Journal of Applied Physics
권
114
호
15