진병두 사진

진병두 | 공과대학 고분자시스템공학부 (제3공학관)

  • 직급:
    교수

교수소개

연세대학교 화학공학과를 1994년 졸업하고, 1996/2000년에 한국과학기술원 화학공학과에서 석사/박사학위를 받았다. 학위논문제목은 "응답성유체의 유변물성과 재료특성"이다. 미국 매사추세츠대학 앰허스트캠퍼스에서 고분자 겔 분야로 박사후과정을 거친 후 삼성SDI중앙연구소에서 능동형 OLED/고효율소자 및 고해상도 패턴형성 분야의 연구개발을 2005년까지 수행하였고 한국과학기술연구원(KIST)의 재료연구본부에서 2009년 초까지 유기반도체 소자, 태양전지 등의 연구개발을 하였다. 2009년 3월 본교 고분자시스템공학과 부임 후 나노전자재료 연구실을 설치하여 유기/고분자 디스플레이와 태양전지, 유기반도체 소자의 프린팅공정 등 기초와 응용분야를 접목한 차세대 고분자 기술개발에 노력하고 있다.

학력

  • [1994] 학사 연세대학교 / 화학공학 / 화학공학
  • [1996] 석사 한국과학기술원 / 화학공학 / 고분자공학
  • [2000] 박사 한국과학기술원 / 화학공학(고분자) / 전자재료 (반도체/디스플레이)

주요연구분야

유/무기 융합형 전자재료 및 소자
유기디스플레이 및 태양전지
유기반도체 소자

컨설팅 가능 분야

플렉서블 디스플레이 및 에너지 소자기술
전자소자의 연속생산 공정기술
유기태양전지, 유기발광소자 전자물리 및 재료기술

연구업적

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  • 일반논문[20230630] Inkjet printing of pixel arrays: droplet formation and pattern uniformity of a non-aqueous ink with tunable viscosity
  • 일반논문[20220901] Efficient InP/ZnSe/ZnS quantum dot shelling and the effect of a bi-layered organic-inorganic electron-transport layer on the performance of quantum dot light-emitting diode devices
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  • 일반논문[20211001] Ink Formulation and Optimum Surface Condition for a Printed Organic Light-Emitting Diode with High Boiling Point and Surface Tension Solvents
  • 일반논문[20210901] Highly efficient and low turn-on voltage quantum-dot light-emitting diodes using a ZnMgO/ZnO double electron transport layer
  • 일반논문[20210601] Solvent mixture formulation for orthogonal inkjet processing and uniform pixel patterning of quantum dot light-emitting diode
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  • 일반논문[20201201] Electrical resonant effects of ligands on the luminescent properties of InP/ZnSeS/ZnS quantum dots and devices configured therefrom
  • 일반논문[20201201] Fabrication of highly efficient pure blue-emitting electroluminescent devices using ZnSe/ZnSexS1-x/ZnS QDs
  • 일반논문[20201001] Effect of dithiocarbamate chelate ligands on the optical properties of InP/ZnS quantum dots and their display devices
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  • 일반논문[20160115] Plasmonic Nanostructures based on Block Copolymer Templates for Efficient Organic Solar Cells
  • 일반논문[20160101] Foldable Organic Devices Based on the Graphene/Metal Grid Composite Electrodes
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  • 일반논문[20151015] 20% External Quantum Effi ciency in Solution-Processed Blue Thermally Activated Delayed Fluorescent Devices
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  • 일반논문[20091201] Charge Carrier Trapping and Enhanced Electroluminescent Efficiency of Blue Light Emitting Polymer with Gold Nanoparticles
  • 일반논문[20090901] Influence of metal cathode for organic photovoltaic device performance
  • 일반논문[20090901] Partitioning of the organic layers for the fabrication of high efficiency organic photovoltaic devices
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  • 학술발표[20101022] OLED 소자의 계면물성제어와 패턴형성 최적화 기술
  • 학술발표[20100708] Interfacial layers for the facilitated hole extraction and efficiency of organic photovoltaic devices
  • 학술발표[20091210] Effects of Multilayer Structures and Interfacial Engineering for the Performance of Organic Photovoltaic Devices
  • 학술발표[20090803] High Efficiency Phosphorescent OLEDs based on the Heterostructured Light Emission and Charge Injection Layers
캠퍼스별 교무팀