Achievements

  • home_icon HOME
  • Research
  • Achievements
  • Paper
Paper
  1. Microwave syntheses of graphene and graphene decorated with metal nanoparticles

    CARBON / vol.49 no.13 / 2011 / Oh, IlKwon / KINC > NT for Advanced Opto-Electronics

  2. Electro-active graphene-Nafion actuators

    CARBON / vol.49 no.4 / 2011 / Oh, IlKwon / KINC > NT for Advanced Opto-Electronics

  3. Highly conducting multilayer films from graphene nanosheets by a spin self-assembly method

    JOURNAL OF MATERIALS CHEMISTRY / vol.21 no.14 / 2011 / Oh, IlKwon / KINC > NT for Advanced Opto-Electronics

  4. Theory, Synthesis, and Oxygen Reduction Catalysis of Fe-Porphyrin-Like Carbon Nanotube

    PHYSICAL REVIEW LETTERS / vol.106 no.17 / 2011 / Kim, Sang Ouk;Kim, Yong-Hyun / KINC > NT for Advanced Opto-Electronics

  5. Wide Memory Window In Graphene Oxide Charge Storage Nodes

    Applied Physics Letters / vol.96 no.14 / 2010 / Cho, Byung Jin / KINC > NT for Advanced Opto-Electronics

  6. Investigation Of Interaction Between Graphene And Dielectrics

    Nanotechnology / vol.21 no.33 / 2010 / Cho, Byung Jin / KINC > NT for Advanced Opto-Electronics

  7. Flexible Resistive Switching Memory Device Based on Graphene Oxide

    IEEE Electron Device Letters / vol.31 no.9 / 2010 / Kim, Sang Ouk;Cho, Byung Jin;Choi, Sung-Yool / KINC > NT for Advanced Opto-Electronics

  8. Graphene Oxide Thin Films for Flexible Nonvolatile Memory Applications

    Nanoletters / vol.10 no.11 / 2010 / Lee, Jeong Yong ;Cho, Byung Jin;Kim, Sang Ouk;Choi, Sung-Yool / KINC > NT for Advanced Opto-Electronics

  9. Photovoltaic cells fabricated utilizing core-shell CdSe/ZnSe quantum dot/multiwalled carbon nanotube heterostructures

    Appl. Phys. Lett. / vol.95 no.6 / 2009 / Kim, Sang Ouk;Cho, Yong-Hoon / KINC > NT for Advanced Opto-Electronics

  10. Fabrication and Electrochemical Characterization of TiO2 Three-Dimensional Nanonetwork Based on Peptide Assembly

    ACS Nano / vol.3 no.5 / 2009 / Kim, Sang Ouk / KINC > NT for Advanced Opto-Electronics

KAIST 291 Daehak-ro, Yuseong-gu, Daejeon (34141)
T : +82-42-350-2381~2384
F : +82-42-350-2080
Copyright (C) 2015. KAIST Institute