Seunghyup Yoo

Seunghyup Yoo

Korea Advanced Institute of Science and Technology

Professor

School of Electrical Engineering

Research Area

  • #Materials science
  • #Optoelectronics
  • #OLED
  • #Diode
  • #Nanotechnology
  • #Electrode
  • #Optics
  • #Quantum efficiency
  • #Light-emitting diode
  • #Polymer

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Related papers to
‘ Materials science ‘ : 65

  • Highly Efficient Light‐Emitting Diode of Graphene Quantum Dots Fabricated from Graphite Intercalation Compounds

    2014/11

    4.1 Impact Factor

    180 citations

    Sung Ho Song, Min-Ho Jang, Jin Chung, Sung Hawn Jin, Bo Hyun Kim, Seung-Hyun Hur, Seunghyup Yoo, Yong-Hoon Cho, Seokwoo Jeon

    DOI : 10.1002/ADOM.201400184

    • #Materials science
    • #Nanotechnology
    • #Graphene
    • #Luminescence
    • #Graphite
    • #Light-emitting diode
    • #Photoluminescence
    • #Quantum dot
    • #Intercalation (chemistry)
    • #Nanodot

All papers authored by
‘ Seunghyup Yoo ’ : 78

  • Overcoming the electroluminescence efficiency limitations of perovskite light-emitting diodes.

    2015/12
    SCIENCE

    35.3 Impact Factor

    1635 citations

    Himchan Cho, Su Hun Jeong, Min Ho Park, Young Hoon Kim, Christoph Wolf, Chang Lyoul Lee, Jin Hyuck Heo, Aditya Sadhanala, Nosoung Myoung, Seunghyup Yoo, Sang Hyuk Im, Richard H. Friend, Tae-Woo Lee

    DOI : 10.1126/SCIENCE.AAD1818

    • #Chemistry
    • #Optoelectronics
    • #Nanotechnology
    • #Diode
    • #Light-emitting diode
    • #Photoluminescence
    • #Electroluminescence
    • #Nanocrystal
    • #Exciton
    • #Perovskite (structure)
    • #Phosphorescence

Related papers to
‘ Materials science ‘ : 65

  • Highly Efficient Light‐Emitting Diode of Graphene Quantum Dots Fabricated from Graphite Intercalation Compounds

    2014/11
    ADVANCED OPTICAL MATERIALS

    4.1 Impact Factor

    180 citations

    Sung Ho Song, Min-Ho Jang, Jin Chung, Sung Hawn Jin, Bo Hyun Kim, Seung-Hyun Hur, Seunghyup Yoo, Yong-Hoon Cho, Seokwoo Jeon

    DOI : 10.1002/ADOM.201400184

    • #Materials science
    • #Nanotechnology
    • #Graphene
    • #Luminescence
    • #Graphite
    • #Light-emitting diode
    • #Photoluminescence
    • #Quantum dot
    • #Intercalation (chemistry)
    • #Nanodot
  • Synthesis of ultrathin polymer insulating layers by initiated chemical vapour deposition for low-power soft electronics

    2015/06
    NATURE MATERIALS

    39.4 Impact Factor

    153 citations

    Hanul Moon, Hyejeong Seong, Woo Cheol Shin, Won-Tae Park, Mincheol Kim, Seungwon Lee, Jae Hoon Bong, Yong-Young Noh, Byung Jin Cho, Seunghyup Yoo, Sung Gap Im

    DOI : 10.1038/NMAT4237

    • #Materials science
    • #Optoelectronics
    • #Nanotechnology
    • #Polymer
    • #Graphene
    • #Leakage (electronics)
    • #Band gap
    • #Transistor
    • #Chemical vapor deposition
    • #Field-effect transistor
    • #Organic electronics

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All papers authored by
‘ Seunghyup Yoo ’ : 78

  • Overcoming the electroluminescence efficiency limitations of perovskite light-emitting diodes.

    2015/12
    SCIENCE

    35.3 Impact Factor

    1635 citations

    Himchan Cho, Su Hun Jeong, Min Ho Park, Young Hoon Kim, Christoph Wolf, Chang Lyoul Lee, Jin Hyuck Heo, Aditya Sadhanala, Nosoung Myoung, Seunghyup Yoo, Sang Hyuk Im, Richard H. Friend, Tae-Woo Lee

    DOI : 10.1126/SCIENCE.AAD1818

    • #Chemistry
    • #Optoelectronics
    • #Nanotechnology
    • #Diode
    • #Light-emitting diode
    • #Photoluminescence
    • #Electroluminescence
    • #Nanocrystal
    • #Exciton
    • #Perovskite (structure)
    • #Phosphorescence
  • Controlled Doping of Vacancy-Containing Few-Layer MoS2 via Highly Stable Thiol-Based Molecular Chemisorption

    2015/11
    ACS NANO

    13.3 Impact Factor

    214 citations

    Dong Min Sim, Mincheol Kim, Soonmin Yim, Min-Jae Choi, Jaesuk Choi, Seunghyup Yoo, Yeon Sik Jung

    DOI : 10.1021/ACSNANO.5B05173

    • #Chemistry
    • #Inorganic chemistry
    • #Chemical physics
    • #Molecule
    • #Doping
    • #Annealing (metallurgy)
    • #X-ray photoelectron spectroscopy
    • #Vacancy defect
    • #Surface charge
    • #Chemisorption
    • #Electronegativity

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