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PnC Lab

Polymer Nanocomposite

& Carbon Fiber Laboratory

RESEARCH TOPIC

Welcome to PnC Lab

  • RESEARCH 01
  • Polymer Physics
    / Processing

  • MORE VIEW
  • RESEARCH 02
  • High-performance
    / High-functional Fiber

  • MORE VIEW
  • RESEARCH 03
  • Catalyst Embedded
    Carbon Support

  • MORE VIEW
  • RESEARCH 04
  • Smart Textile
    for Wearable Device

  • MORE VIEW
  • RESEARCH 05
  • Rheological Ink Design
    for 3D Printing

  • MORE VIEW

PUBLICATION

Welcome to PnC Lab

  • 2026~2030
  • Rheological Pathways to a Scalable Ruthenium Nuclei-Anchored Carb…
  • Carbon fiber-based electrocatalysts offer significant advantages over conventional powder catalysts, including enhanced activ…

  • 2026~2030
  • Polymer-Scaffold-Guided Graphitization for High Thermal Conductiv…
  • Carbon nanotube (CNT) fibers exhibit outstanding intrinsic properties, yet their macroscopic performance is often limited by …

  • 2026~2030
  • Simple oxygen doping strategy for highly porous carbon fibers ena…
  • The effective removal of nuclear waste from fission has attracted significant attention, with numerous porous sorbents report…

  • 2026~2030
  • Templating effect of 2,9-dimethylquinacridone nanocrystals on str…
  • This study explores the templating role of organic nanocrystals, specifically 2,9-dimethylquinacridone (PR), in enhancing the…

  • 2026~2030
  • Thermal coalescence-driven structural transformation of carbon na…
  • Flexible thermoelectrics that conform to arbitrarily shaped heat sources in the through-plane direction are crucial for porta…

  • 2021~2025
  • Ultra-strong and biodegradable nanocomposite fibers of poly(butyl…
  • Fiber-based products constitute a significant portion of plastic waste and cause environmental damage. In particular, discard…

  • 2021~2025
  • Tailored performance optimization of p-aramid copolymer fibers: F…
  • aramid (p-aramid) fibers, traditionally used in bulletproof vests because of their exceptional strength and modulus, are now …

  • 2021~2025
  • Morphological and microstructural development of polyacrylonitril…
  • Controlling the microstructure of polyacrylonitrile (PAN) precursor fibers is critical for manufacturing high-performance car…

  • 2021~2025
  • Optimizing p-aramid copolymer superfibers: The synergistic effect…
  • Para-aramid (p-aramid) fibers have gained significant attention in lightweight vehicle and optical cable industries. However,…

  • 2021~2025
  • Unveiling the graphitization behaviors of highly stiff and therma…
  • We explored the potential of highly stiff and thermally conductive carbon fibers for thermal management applications. The pol…

  • 2021~2025
  • Phase separation behavior of polyacrylonitrile solution and micro…
  • This study examines the influence of different solvent/nonsolvent systems on the microstructure, microvoid morphology, and st…

  • 2021~2025
  • Development of Stearic Acid-Coated Cellulose Nanofibers in Aqueou…
  •  Poly(lactic acid) (PLA) has emerged as a promising biodegradable polymer for alternate petroleum-based plastics. Howeve…

  • 2021~2025
  • Rapid Fabrication of Tendon-inspired Ultrastrong, Water-rich Hydr…
  • Load-bearing fibrous tissues, like tendons, have remarkable strength with high water content (∼60%) due to the anisotropic ne…

  • 2021~2025
  • Optimization of the carbonization process based on the evolution …
  • This work presents a new approach for optimizing the carbonization conditions of polyacrylonitrile (PAN)-based fibers by trac…

  • 2021~2025
  • Geometric design of Cu2Se-based thermoelectric materials for enha…
  • Waste heat, an abundant energy source generated by both industries and nature, has the potential to be harnessed into electri…

NEWS & NOTICE

  • 2026-06
  • 09

수소 생산 촉매 전극, 국수 가락처럼 뽑아낸다

  • 2026-04
  • 06

유니스트, 방사성 요오드 잡는 신소재 개발

  • 2024-05
  • 22

UNIST, 초격차 그린수소 생산기술… 탄소섬…

GALLERY

2026년 2월 졸업

2026-02-27

2025 한국유변학회 추계학술발표회

2025-11-24

2025 한국섬유공학회 추계학술대회

2025-11-07