Browsing by Titles

Showing results 1 to 6 of 6

  • 2022-07
  • Jang, Bongho. (2022-07). Combustion-assisted low-temperature solution process for high-performance SnO2 thin-film transistors. Ceramics International, 48(14), 20591–20598. doi: 10.1016/j.ceramint.2022.04.026
  • Pergamon Press Ltd.
  • View : 636
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  • Pham-Cong, De
  • Kim, Ji Yoon
  • Park, Jung Soo
  • Kim, Jae Hyun
  • Kim, Jong-Pil
  • Jeong, Euh-Duck
  • Kim, Jinwoo
  • Jeong, Se-Young
  • Cho, Chae-Ryong
  • 2015-04
  • Electrochimica Acta, v.161, pp.1 - 9
  • Elsevier
  • View : 1139
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  • Lee, Won-Yong
  • Ha, Seung Hyun
  • Lee, Hyunjae
  • Bae, Jin-Hyuk
  • Jang, Bongho
  • Kwon, Hyuk-Jun
  • Jang, Jaewon
  • 2019-06
  • Lee, Won-Yong. (2019-06). Densification Control as a Method of Improving the Ambient Stability of Sol-Gel-Processed SnO2 Thin-Film Transistors. IEEE Electron Device Letters, 40(6), 905–908. doi: 10.1109/LED.2019.2910286
  • Institute of Electrical and Electronics Engineers
  • View : 753
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Enhancement Mode Flexible SnO2Thin Film Transistors Via a UV/Ozone-Assisted Sol-Gel Approach

  • Jang, Bongho
  • Kang, Hongki
  • Lee, Won-Yong
  • Bae, Jin-Hyuk
  • Kang, In-Man
  • Kim, Kwangeun
  • Kwon, Hyuk-Jun
  • Jang, Jaewon
  • 2020-07
  • Jang, Bongho. (2020-07). Enhancement Mode Flexible SnO2Thin Film Transistors Via a UV/Ozone-Assisted Sol-Gel Approach. IEEE Access, 8, 123013–123018. doi: 10.1109/ACCESS.2020.3007372
  • Institute of Electrical and Electronics Engineers Inc.
  • View : 645
  • Download : 143

Sol-gel Processed Yttrium-doped SnO2 Thin Film Transistors

  • Lee, Changmin
  • Lee, Won-Yong
  • Lee, Hyunjae
  • Ha, Seunghyun
  • Bae, Jin-Hyuk
  • Kang, In-Man
  • Kang, Hongki
  • Kim, Kwangeun
  • Jang, Jaewon
  • 2020-02
  • Lee, Changmin. (2020-02). Sol-gel Processed Yttrium-doped SnO2 Thin Film Transistors. Electronics, 9(2), 254. doi: 10.3390/electronics9020254
  • MDPI AG
  • View : 651
  • Download : 298
  • Kim, Seok
  • Lee, Hochun
  • Park, Chang Min
  • Jung, Yongju
  • 2012-02
  • Kim, Seok. (2012-02). Synthesis of Tin Oxide Nanoparticle Film by Cathodic Electrodeposition. doi: 10.1166/jnn.2012.4646
  • American Scientific Publishers
  • View : 867
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