Jung-Yong Lee

Jung-Yong Lee

Korea Advanced Institute of Science and Technology

Associate Professor

School of Electrical Engineering

Research Area

  • #Materials science
  • #Optoelectronics
  • #Nanotechnology
  • #Energy conversion efficiency
  • #Organic solar cell
  • #Electrode
  • #Polymer
  • #Chemical engineering
  • #Polymer solar cell
  • #Thin film

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Related papers to
‘ Materials science ‘ : 74

  • Au@Ag Core-Shell Nanocubes for Efficient Plasmonic Light Scattering Effect in Low Bandgap Organic Solar Cells

    2014/03

    12.9 Impact Factor

    220 citations

    Se Woong Baek, Garam Park, Jonghyeon Noh, Changsoon Cho, Chun-Ho Lee, Min-Kyo Seo, Hyunjoon Song, Jung-Yong Lee

    DOI : 10.1021/NN500222Q

    • #Materials science
    • #Optoelectronics
    • #Scattering
    • #Nanoparticle
    • #Band gap
    • #Energy conversion efficiency
    • #Quantum efficiency
    • #Light scattering
    • #Organic solar cell
    • #PEDOT:PSS

All papers authored by
‘ Jung-Yong Lee ’ : 77

  • Au@Ag Core-Shell Nanocubes for Efficient Plasmonic Light Scattering Effect in Low Bandgap Organic Solar Cells

    2014/03
    ACS NANO

    12.9 Impact Factor

    220 citations

    Se Woong Baek, Garam Park, Jonghyeon Noh, Changsoon Cho, Chun-Ho Lee, Min-Kyo Seo, Hyunjoon Song, Jung-Yong Lee

    DOI : 10.1021/NN500222Q

    • #Materials science
    • #Optoelectronics
    • #Scattering
    • #Nanoparticle
    • #Band gap
    • #Energy conversion efficiency
    • #Quantum efficiency
    • #Light scattering
    • #Organic solar cell
    • #PEDOT:PSS

Related papers to
‘ Materials science ‘ : 74

  • Au@Ag Core-Shell Nanocubes for Efficient Plasmonic Light Scattering Effect in Low Bandgap Organic Solar Cells

    2014/03
    ACS NANO

    12.9 Impact Factor

    220 citations

    Se Woong Baek, Garam Park, Jonghyeon Noh, Changsoon Cho, Chun-Ho Lee, Min-Kyo Seo, Hyunjoon Song, Jung-Yong Lee

    DOI : 10.1021/NN500222Q

    • #Materials science
    • #Optoelectronics
    • #Scattering
    • #Nanoparticle
    • #Band gap
    • #Energy conversion efficiency
    • #Quantum efficiency
    • #Light scattering
    • #Organic solar cell
    • #PEDOT:PSS
  • Flexible transparent conducting hybrid film using a surface-embedded copper nanowire network: a highly oxidation-resistant copper nanowire electrode for flexible optoelectronics.

    2014/09
    ACS NANO

    12.9 Impact Factor

    158 citations

    Hyeon-Gyun Im, Soo-Ho Jung, Jungho Jin, Dasom Lee, Jae Min Lee, Daewon Lee, Jung-Yong Lee, Il-Doo Kim, Byeong-Soo Bae

    DOI : 10.1021/NN504883M

    • #Materials science
    • #Optoelectronics
    • #Electrode
    • #Copper
    • #Nanowire
    • #OLED
    • #Oxidation stability
    • #Transparent conducting film
    • #Flexible organic light-emitting diode
    • #Oxidation resistant

Get access to
Contact information

Log in

All papers authored by
‘ Jung-Yong Lee ’ : 77

  • Au@Ag Core-Shell Nanocubes for Efficient Plasmonic Light Scattering Effect in Low Bandgap Organic Solar Cells

    2014/03
    ACS NANO

    12.9 Impact Factor

    220 citations

    Se Woong Baek, Garam Park, Jonghyeon Noh, Changsoon Cho, Chun-Ho Lee, Min-Kyo Seo, Hyunjoon Song, Jung-Yong Lee

    DOI : 10.1021/NN500222Q

    • #Materials science
    • #Optoelectronics
    • #Scattering
    • #Nanoparticle
    • #Band gap
    • #Energy conversion efficiency
    • #Quantum efficiency
    • #Light scattering
    • #Organic solar cell
    • #PEDOT:PSS
  • Flexible transparent conducting hybrid film using a surface-embedded copper nanowire network: a highly oxidation-resistant copper nanowire electrode for flexible optoelectronics.

    2014/09
    ACS NANO

    12.9 Impact Factor

    158 citations

    Hyeon-Gyun Im, Soo-Ho Jung, Jungho Jin, Dasom Lee, Jae Min Lee, Daewon Lee, Jung-Yong Lee, Il-Doo Kim, Byeong-Soo Bae

    DOI : 10.1021/NN504883M

    • #Materials science
    • #Optoelectronics
    • #Electrode
    • #Copper
    • #Nanowire
    • #OLED
    • #Oxidation stability
    • #Transparent conducting film
    • #Flexible organic light-emitting diode
    • #Oxidation resistant

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