Achievements

  • home_icon HOME
  • Research
  • Achievements
  • Paper
Paper
  1. Polymer Analog Memristive Synapse with Atomic-Scale Conductive Filament for Flexible Neuromorphic Computing System

    NANO Letters / / 2019 / Im, Sung Gap / KINC > NT for Advanced Opto-Electronics

  2. Order-of-Magnitude, Broadband-Enhanced Light Emission from Quantum Dots Assembled in Multiscale Phase-Separated Block Copolymers

    NANO Letters / / 2019 / Choi, Sung-Yool / KINC > NT for Advanced Opto-Electronics

  3. Chemically exfoliated 1T-phase transition metal dichalcogenide nanosheets for transparent antibacterial applications

    2D Materials / / 2019 / Choi, Sung-Yool / KINC > NT for Advanced Opto-Electronics

  4. Nonvolatile Memories Based on Graphene and Related 2D Materials

    Advanced Materials / / 2019 / Choi, Sung-Yool / KINC > NT for Advanced Opto-Electronics

  5. Improved Electrical Contact Properties of MoS2-Graphene Lateral Heterostructure

    Advanced Functional Materials / / 2019 / Choi, Sung-Yool / KINC > NT for Advanced Opto-Electronics

  6. Quantitative analysis for lipophilic drug transport through a model lipid membrane with membrane retention

    European Journal of Pharmaceutical Sciences / / 2019 / Choi, siyoung / KINC > NT for Advanced Opto-Electronics

  7. Photochemically-enhanced Selective Adsorption of Gold Ions on Tannin-coated Porous Polymer Microspheres

    ACS Applied Materials & Interfaces / / 2019 / Nam, Yoon Sung / KINC > NT for Healthcare

  8. Nitrogen-dopant Induced Organic-Inorganic Hybrid Perovskite Crystal Growth on Carbon Nanotubes

    Advanced Functional Materials / / 2019 / Nam, Yoon Sung / KINC > NT for Healthcare

  9. A ruthenium-based plasmonic hybrid photocatalyst for aqueous carbon dioxide conversion with a high reaction rate and selectivity

    Journal of Materials Chemistry A / / 2019 / Nam, Yoon Sung / KINC > NT for Healthcare

  10. Continuous Meter-Scale Synthesis of Weavable Tunicate Cellulose/Carbon Nanotube Fibers for High-Performance Wearable Sensors

    ACS NANO / / 2019 / Kim, Il-Doo / KINC > NT for Healthcare

  11. Heterogeneous, Porous 2D Oxide Sheets via Rapid Galvanic Replacement: Toward Superior HCHO Sensing Application

    Advanced Functional Materials / / 2019 / Kim, Il-Doo / KINC > NT for Healthcare

  12. A General Synthesis of Crumpled Metal Oxide Nanosheets as Superior Chemiresistive Sensing Layers

    Advanced Functional Materials / / 2019 / Kim, Il-Doo / KINC > NT for Healthcare

  13. Atomic-scale combination of germanium-zinc nanofibers for structural and electrochemical evolution

    Nature Communications / / 2019 / Kim, Il-Doo / KINC > NT for Healthcare

  14. An investigation into the factors governing the oxidation of two-dimensional Ti3C2 Mxene

    Nanoscale / / 2019 / Jung, Hee Tae / KINC > NT for Healthcare

  15. High-Rate Cycling of Lithium-Metal Batteries Enabled by Dual-Salt Electrolyte-Assisted Micropatterned Interfaces

    ACS Applied Materials & Interfaces / / 2019 / Kim, Heetak / KINC > NT for Climate Change

  16. Catalytic production of impurity-free V3.5+ electrolyte for vanadium redox flow batteries

    Nature Communications / / 2019 / Kim, Heetak / KINC > NT for Climate Change

  17. Rational Design of Highly Packed, Crack-Free Sulfur Electrodes by Scaffold-Supported Drying for Ultrahigh-Sulfur-Loaded Lithium-Sulfur Batteries

    ACS Applied Materials & Interfaces / / 2019 / Kim, Heetak / KINC > NT for Climate Change

  18. Achieving three-dimensional lithium sulfide growth in lithium-sulfur batteries using high-donor-number anions

    Nature Communications / / 2019 / Kim, Heetak / KINC > NT for Climate Change

  19. Relationship between Hydrogen Evolution and Wettability for Multiscale Hierarchical Wrinkles

    ACS Applied Materials & Interfaces / / 2019 / Jung, Hee Tae / KINC > NT for Climate Change

  20. Continuous 3D Titanium Nitride Nanoshell Structure for Solar-Driven Unbiased Biocatalytic CO2 Reduction

    Advanced Energy Materials / / 2019 / Jeon, Seokwoo / KINC > NT for Climate Change

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