Electrical Performance and Stability Improvement of p-Channel SnO Thin-Film Transistors Using Atomic-Layer-Deposited Al2O3 Capping Layer

  • Bae, K.-H.; 
  • Shin, M.G.; 
  • Hwang, S.-H.; 
  • Jeong, H.-S.; 
  • Kim, D.-H.; 
  • ... Kwon, Hyuck-In
Citations

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초록

The incorporation of an atomic-layer-deposited Al2O3 capping layer was proposed as an effective method to enhance the electrical performance and stability of p-channel SnO thin-film transistors (TFTs). The SnO TFT with the Al2O3 capping layer demonstrated better electrical characteristics, such as higher field-effect mobility ( μFE =1.7 cm2/ Vs ), smaller subthreshold swing (SS =2.9 V/dec), and larger current on/off ratio ( ION/OFF = 1.6× 104 ), than the pristine SnO TFT ( μFE =1.5 cm2/ Vs , SS =3.8 V/dec, and ION/OFF = 6.9× 102 ). Furthermore, the Al2O3-capped SnO TFT exhibited significantly enhanced electrical stability under an applied negative-gate-bias stress compared to the pristine device. The observed phenomena were mainly attributed to the decreased number of oxygen-vacancy-induced hole trap states within the SnO owing to diffused hydrogen from the atomic-layer-deposited Al2O3 layer. Our experimental results thus demonstrate that incorporating the atomic-layer-deposited Al2O3 capping layer is a simple and effective method for improving the electrical characteristics of p-channel SnO TFTs. © 2013 IEEE.

키워드

Al2O3capping layer; atomic layer deposition (ALD); hydrogen; oxygen vacancy; P-channel SnO TFTs; Alumina; Aluminum oxide; Atomic layer deposition; Atoms; Electric field effects; Thin film circuits; Thin films; Atomic layer deposited; Electrical characteristic; Electrical performance; Electrical stability; Field-effect mobilities; Stability improvement; Subthreshold swing; Thin-film transistor (TFTs); Thin film transistors
제목
Electrical Performance and Stability Improvement of p-Channel SnO Thin-Film Transistors Using Atomic-Layer-Deposited Al2O3 Capping Layer
저자
Bae, K.-H.; Shin, M.G.; Hwang, S.-H.; Jeong, H.-S.; Kim, D.-H.; Kwon, Hyuck-In
DOI
10.1109/ACCESS.2020.3043780
발행일
2020-12
유형
Article
저널명
IEEE Access
권
8
페이지
222410 ~ 222416

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