Sang-HeeKo Park

Sang-HeeKo Park

Korea Advanced Institute of Science and Technology

Professor

Department of Materials Science and Engineering

Research Area

  • #Materials science
  • #Optoelectronics
  • #Thin-film transistor
  • #Transistor
  • #Oxide
  • #Thin film
  • #Flexible electronics
  • #Semiconductor
  • #Atomic layer deposition
  • #Oxide thin-film transistor

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Related papers to
‘ Materials science ‘ : 43

  • The effects of buffer layers on the performance and stability of flexible InGaZnO thin film transistors on polyimide substrates

    2014/02

    3.3 Impact Factor

    95 citations

    Kyung-Chul Ok, Sang-Hee Ko Park, Chi-Sun Hwang, Hyun-Jong Kim, Hyun Soo Shin, Jonguk Bae, Jin-Seong Park

    DOI : 10.1063/1.4864617

    • #Materials science
    • #Optoelectronics
    • #Thin film
    • #Annealing (metallurgy)
    • #Polyimide
    • #Flexible electronics
    • #Transistor
    • #Fabrication
    • #Thin-film transistor
    • #Buffer (optical fiber)

All papers authored by
‘ Sang-HeeKo Park ’ : 44

  • The effects of buffer layers on the performance and stability of flexible InGaZnO thin film transistors on polyimide substrates

    2014/02
    APPLIED PHYSICS LETTERS

    3.3 Impact Factor

    95 citations

    Kyung-Chul Ok, Sang-Hee Ko Park, Chi-Sun Hwang, Hyun-Jong Kim, Hyun Soo Shin, Jonguk Bae, Jin-Seong Park

    DOI : 10.1063/1.4864617

    • #Materials science
    • #Optoelectronics
    • #Thin film
    • #Annealing (metallurgy)
    • #Polyimide
    • #Flexible electronics
    • #Transistor
    • #Fabrication
    • #Thin-film transistor
    • #Buffer (optical fiber)

Related papers to
‘ Materials science ‘ : 43

  • The effects of buffer layers on the performance and stability of flexible InGaZnO thin film transistors on polyimide substrates

    2014/02
    APPLIED PHYSICS LETTERS

    3.3 Impact Factor

    95 citations

    Kyung-Chul Ok, Sang-Hee Ko Park, Chi-Sun Hwang, Hyun-Jong Kim, Hyun Soo Shin, Jonguk Bae, Jin-Seong Park

    DOI : 10.1063/1.4864617

    • #Materials science
    • #Optoelectronics
    • #Thin film
    • #Annealing (metallurgy)
    • #Polyimide
    • #Flexible electronics
    • #Transistor
    • #Fabrication
    • #Thin-film transistor
    • #Buffer (optical fiber)
  • Skin‐Like Oxide Thin‐Film Transistors for Transparent Displays

    2016/09
    ADVANCED FUNCTIONAL MATERIALS

    12.1 Impact Factor

    92 citations

    Haneol Lee, Seungjun Kim, Jong Beom Ko, Hye-In Yeom, Chun-Won Byun, Seung Hyun Lee, Daniel J. Joe, Tae Hong Im, Sang-Hee Ko Park, Keon Jae Lee

    DOI : 10.1002/ADFM.201601296

    • #Materials science
    • #Optoelectronics
    • #Semiconductor
    • #Oxide
    • #Electronic circuit
    • #Sol-gel
    • #Flexible electronics
    • #Transistor
    • #Thin-film transistor
    • #Stretchable electronics

Get access to
Contact information

Log in

All papers authored by
‘ Sang-HeeKo Park ’ : 44

  • The effects of buffer layers on the performance and stability of flexible InGaZnO thin film transistors on polyimide substrates

    2014/02
    APPLIED PHYSICS LETTERS

    3.3 Impact Factor

    95 citations

    Kyung-Chul Ok, Sang-Hee Ko Park, Chi-Sun Hwang, Hyun-Jong Kim, Hyun Soo Shin, Jonguk Bae, Jin-Seong Park

    DOI : 10.1063/1.4864617

    • #Materials science
    • #Optoelectronics
    • #Thin film
    • #Annealing (metallurgy)
    • #Polyimide
    • #Flexible electronics
    • #Transistor
    • #Fabrication
    • #Thin-film transistor
    • #Buffer (optical fiber)
  • Skin‐Like Oxide Thin‐Film Transistors for Transparent Displays

    2016/09
    ADVANCED FUNCTIONAL MATERIALS

    12.1 Impact Factor

    92 citations

    Haneol Lee, Seungjun Kim, Jong Beom Ko, Hye-In Yeom, Chun-Won Byun, Seung Hyun Lee, Daniel J. Joe, Tae Hong Im, Sang-Hee Ko Park, Keon Jae Lee

    DOI : 10.1002/ADFM.201601296

    • #Materials science
    • #Optoelectronics
    • #Semiconductor
    • #Oxide
    • #Electronic circuit
    • #Sol-gel
    • #Flexible electronics
    • #Transistor
    • #Thin-film transistor
    • #Stretchable electronics

Get access to Contact information

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