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Ewha University

College of Science & Industry Convergence

Byoung Hoon Lee Associate Professor

Department of Chemical Engineering and Materials Science/

이병훈 프로필 사진

				
  • Research Cooperation Building #353
  • 02-3277-4757
  • Research Interests
    • Organic Electronic Materials, Conducting Polymers, Flexible Electronics, Wearable Electronics, Flexible Biosignal Sensors
Research Record
  • A Semi-Crystalline Polymer Semiconductor with Thin Film Stretchability Exceeding 200% Advanced Science, 2023, v.10 no.22, 2302683
    SCIE Scopus dColl.
  • Ambipolar Charge Transport in p-Type Cyclopentadithiophene-Based Polymer Semiconductors Enabled by D-A-A-D Configuration Chemistry of Materials, 2023, v.35 no.22, 9562-9571
    SCIE Scopus dColl.
  • Effect of Fluorination Position on the Crystalline Structure and Stretchability of Intrinsically Stretchable Polymer Semiconductors ACS Macro Letters, 2023, v.12 no.11, 1569-1575
    SCIE Scopus dColl.
  • Stretchable and Biocompatible Transparent Electrodes for Multimodal Biosignal Sensing from Exposed Skin Advanced Electronic Materials, 2023, v.9 no.7, 2300075
    SCIE Scopus dColl.
  • Utilizing a Siloxane-Modified Organic Semiconductor for Photoelectrochemical Water Splitting ACS Energy Letters, 2023, v.8 no.6, 2595-2602
    SCIE Scopus dColl.
  • Effect of Bulky Atom Substitution on Backbone Coplanarity and Electrical Properties of Cyclopentadithiophene-Based Semiconducting Polymers Macromolecular Rapid Communications, 2022, v.43 no.4, 2100709
    SCIE Scopus dColl.
  • Enhanced phase separation in PEDOT:PSS hole transport layer by introducing phenylethylammonium iodide for efficient perovskite solar cells Journal of Renewable and Sustainable Energy, 2022, v.14 no.1, 13502
    SCIE Scopus dColl.
  • Fluorinated Benzothiadiazole-based polymers with chalcogenophenes for organic field-effect transistors Organic Electronics, 2022, v.111, 106649
    SCIE Scopus dColl.
  • Organic Field-Effect Transistors with Bottlebrush Polymer Gate Dielectrics Thermally Cross-Linked in Less Than 1 min CHEMISTRY OF MATERIALS, 2021, v.33 no.16, 6356-6364
    SCIE Scopus dColl.
  • Regioregular, yet ductile and amorphous indacenodithiophene-based polymers with high-mobility for stretchable plastic transistors Journal of Materials Chemistry C, 2021, v.9 no.30, 9670-9682
    Scopus dColl.
  • Thermally Stable and High-Mobility Dithienopyran-Based Copolymers: How Donor-Acceptor- and Donor-Donor-Type Structures Differ in Thin-Film Transistors SMALL STRUCTURES, 2021, v.2 no.8, 2100024
    SCIE dColl.
  • Bicontinuous network of electron donor-acceptor composites achieved by additive-free sequential deposition for efficient polymer solar cells Current Applied Physics, 2020, v.20 no.6, 760-764
    SCIE Scopus KCI dColl.
  • Lead Acetate Assisted Interface Engineering for Highly Efficient and Stable Perovskite Solar Cells ACS APPLIED MATERIALS & INTERFACES, 2020, v.12 no.6, 7186-7197
    SCIE Scopus dColl.
  • Opposite Polarity Surface Photovoltage of MoS2 Monolayers on Au Nanodot versus Nanohole Arrays ACS APPLIED MATERIALS & INTERFACES, 2020, v.12 no.43, 48991-48997
    SCIE Scopus dColl.
  • Dithienosilole-co-5-fluoro-2,1,3-benzothiadiazole-containing regioisomeric polymers for organic field-effect transistors JOURNAL OF MATERIALS CHEMISTRY C, 2019, v.7 no.28, 8522-8526
    SCIE dColl.
  • Morphological and Optical Engineering for High-Performance Polymer Solar Cells ACS APPLIED MATERIALS & INTERFACES, 2019, v.11 no.5, 4705-4711
    SCIE Scopus dColl.
  • An Ultrahigh Mobility in Isomorphic Fluorobenzo[c]-[1,2,5]thiadiazole-Based Polymers ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2018, v.57 no.41, 13629-13634
    SCIE Scopus dColl.
  • High-efficiency photovoltaic cells with wide optical band gap polymers based on fluorinated phenylene-alkoxybenzothiadiazole Energy and Environmental Science, 2017, v.10 no.6, 1443-1455
    SCIE Scopus dColl.
  • Doping-Induced Carrier Density Modulation in Polymer Field-Effect Transistors ADVANCED MATERIALS, 2016, v.28 no.1, 57-
    SCIE Scopus dColl.
  • Flexible Organic Transistors with Controlled Nanomorphology NANO LETTERS, 2016, v.16 no.1, 314-319
    SCIE Scopus dColl.
  • Molecularly Smooth Self-Assembled Monolayer for High-Mobility Organic Field-Effect Transistors NANO LETTERS, 2016, v.16 no.10, 6709-6715
    SCIE Scopus dColl.
  • [학술지논문] A Semi-Crystalline Polymer Semiconductor with Thin Film Stretchability Exceeding 200% ADVANCED SCIENCE, 2023, v.10 no.22 , 230268-230268
    SCIE
  • [학술지논문] Ambipolar Charge Transport in p-Type Cyclopentadithiophene-Based Polymer Semiconductors Enabled by D-A-A-D Configuration CHEMISTRY OF MATERIALS, 2023, v.35 no.22 , 9562-9571
    SCIE
  • [학술지논문] Effect of Fluorination Position on the Crystalline Structure and Stretchability of Intrinsically Stretchable Polymer Semiconductors ACS MACRO LETTERS, 2023, v.12 no.11 , 1569-1575
    SCIE
  • [학술지논문] Flexible Organic Photodetectors with Mechanically Robust Zinc Oxide Nanoparticle Thin Films ACS APPLIED MATERIALS & INTERFACES, 2023, v.15 no.8 , 10926-10935
    SCIE
  • [학술지논문] Protic Ionic Liquids for Intrinsically Stretchable Conductive Polymers ACS APPLIED MATERIALS & INTERFACES, 2023, v.15 no.2 , 3203-3213
    SCIE
  • [학술지논문] Stretchable and Biocompatible Transparent Electrodes for Multimodal Biosignal Sensing from Exposed Skin ADVANCED ELECTRONIC MATERIALS, 2023, v.9 no.7 , 1-9
    SCIE
  • [학술지논문] Utilizing a Siloxane-Modified Organic Semiconductor for Photoelectrochemical Water Splitting ACS ENERGY LETTERS, 2023, v.8 no.6 , 2595-2602
    SCIE
  • [학술지논문] Effect of Bulky Atom Substitution on Backbone Coplanarity and Electrical Properties of Cyclopentadithiophene-Based Semiconducting Polymers MACROMOLECULAR RAPID COMMUNICATIONS, 2022, v.43 no.4 , 2100709-2100709
    SCI
  • [학술지논문] Enhanced phase separation in PEDOT:PSS hole transport layer by introducing phenylethylammonium iodide for efficient perovskite solar cells JOURNAL OF RENEWABLE AND SUSTAINABLE ENERGY, 2022, v.14 no.1 , 013502-1-013502-9
    SCIE
  • [학술지논문] Fluorinated Benzothiadiazole-based polymers with chalcogenophenes for organic field-effect transistors ORGANIC ELECTRONICS, 2022, v.111 no.0 , 106649-106649
    SCI
  • [학술지논문] Organic Field-Effect Transistors with Bottlebrush Polymer Gate Dielectrics Thermally Cross-Linked in Less Than 1 min CHEMISTRY OF MATERIALS, 2021, v.33 no.16 , 6356-6364
    SCI
  • [학술지논문] Regioregular, yet ductile and amorphous indacenodithiophene-based polymers with high-mobility for stretchable plastic transistors JOURNAL OF MATERIALS CHEMISTRY C, 2021, v.9 no.30 , 9670-9682
    SCI
  • [학술지논문] Thermally Stable and High-Mobility Dithienopyran-Based Copolymers: How Donor-Acceptor- and Donor-Donor-Type Structures Differ in Thin-Film Transistors SMALL STRUCTURES, 2021, v.2 no.8 , 2100024-2100024
    SCIE
  • [학술지논문] Lead Acetate Assisted Interface Engineering for Highly Efficient and Stable Perovskite Solar Cells ACS APPLIED MATERIALS & INTERFACES, 2020, v.12 no.6 , 7186-7197
    SCI
  • [학술지논문] Opposite Polarity Surface Photovoltage of MoS2 Monolayers on Au Nanodot versus Nanohole Arrays ACS APPLIED MATERIALS & INTERFACES, 2020, v.12 no.43 , 48991-48997
    SCI
  • [학술지논문] Dithienosilole-co-5-fluoro-2,1,3-benzothiadiazole-containing regioisomeric polymers for organic field-effect transistors JOURNAL OF MATERIALS CHEMISTRY C, 2019, v.7 no.28 , 8522-8526
    SCI
  • [학술지논문] An Ultrahigh Mobility in Isomorphic Fluorobenzo[c]-[1,2,5]thiadiazole-Based Polymers ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2018, v.57 no.41 , 13629-13634
    SCI
  • [학술지논문] High-efficiency photovoltaic cells with wide optical band gap polymers based on fluorinated phenylene-alkoxybenzothiadiazole ENERGY & ENVIRONMENTAL SCIENCE, 2017, v.10 no.6 , 1443-1455
    SCI
  • [학술지논문] Doping-Induced Carrier Density Modulation in Polymer Field-Effect Transistors ADVANCED MATERIALS, 2016, v.28 no.1 , 57-57
    SCI
  • [학술지논문] Flexible Organic Transistors with Controlled Nanomorphology NANO LETTERS, 2016, v.16 no.1 , 314-319
    SCI
  • [학술지논문] Molecularly Smooth Self-Assembled Monolayer for High-Mobility Organic Field-Effect Transistors NANO LETTERS, 2016, v.16 no.10 , 6709-6715
    SCI
  • [지적재산권] Cyclopentadithiophene 기반의 유기트랜지스터(organic field-effect transistors OFETs)에 적용 가능한 전도성 고분자 제조방법 Domestic : Patent , Registration , 10-2560214, 2023
  • [지적재산권] 개질된 전도성 고분자를 포함하는 신축성 전극 및 이를 포함하는 센서 Domestic : Patent , Registration , 10-2593821, 2023
  • [지적재산권] 병솔 고분자를 포함하는 트랜지스터 게이트절연층용 고분자 박막 및 이를 포함하는 유기전계효과트랜지스터 Domestic : Patent , Registration , 10-2540663, 2023
  • [지적재산권] 개질된 전도성 고분자 박막의 제조 방법 및 이를 이용하여 제조된 개질된 전도성 고분자 박막 Domestic : Patent , Registration , 10-2398273, 2022
  • [지적재산권] Doping-induced carrier density modulation in polymer field-effect transistors Overseas : Patent , Registration , 10167362, 2019
  • [지적재산권] Flexible organic transistors with controlled nanomorphology Overseas : Patent , Registration , 10008683, 2018
  • [지적재산권] SEMICONDUCTING POLYMERS WITH MOBILITY APPROACHING ONE HUNDRED SQUARE CENTIMETERS PER VOLT PER SECOND Overseas : Patent , Application
  • [지적재산권] 그래핀 박막 이송 방법 및 이를 이용한 소자(METHOD FOR TRANSFERING GRAPHENE FILMS AND DEVICE USING THE SAME) Domestic : Patent , Registration , 10-1584222-0000, 2016
Courses
  • 2024-1st

    • Engineering Polymer Chemistry 강의 계획서 상세보기

      • Subject No 37526Class No 01
      • 4Year ( 3Credit , 3Hour) Tue 5~5 (ENG ) , Thu 6~6 (161)
    • Engineering Instrumental Analysis

      • Subject No 37837Class No 01
      • 3Year ( 3Credit , 3Hour) Tue 3~3 (ENG A) , Thu 2~2 (101)
    • Polymer Electronic Materials 강의 계획서 상세보기

      • Subject No G18271Class No 01
      • Year ( 3Credit , 3Hour) Fri 2~3 (ENG )
    • Advanced Convergent Materials for System Healthcare

      • Subject No G18278Class No 01
      • Year ( 3Credit , 3Hour) Tue 6~7 (ENG )
  • 2022-2nd

    • Heat and Mass Transfer

      • Subject No 37515Class No 01
      • 3Year ( 3Credit , 3Hour) Mon 3~3 (ESEA) , Wed 2~2 (CH)
    • Materials Processing Laboratory

      • Subject No 37521Class No 01
      • 3Year ( 3Credit , 4.5Hour) Mon 5~7 (ENG )
  • 2022-1st

    • Engineering Polymer Chemistry

      • Subject No 37526Class No 01
      • 4Year ( 3Credit , 3Hour) Tue 4~4 (ENG ) , Fri 5~5 (161)
    • Engineering Instrumental Analysis

      • Subject No 37837Class No 01
      • 3Year ( 3Credit , 3Hour) Wed 6~6 (ENG ) , Fri 4~4 (159)
    • Polymer Electronic Materials

      • Subject No G18271Class No 01
      • Year ( 3Credit , 3Hour) Tue 5~6 (-)
    • Advanced convergent materials for system healthcare

      • Subject No G18278Class No 01
      • Year ( 3Credit , 3Hour) Wed 7~8 (-)
  • 2021-2nd

    • Heat and Mass Transfer

      • Subject No 37515Class No 01
      • 3Year ( 3Credit , 3Hour) Mon 3~3 , Wed 2~2
    • Materials Processing Laboratory

      • Subject No 37521Class No 01
      • 3Year ( 3Credit , 4.5Hour) Mon 5~7 (ENG )
  • 2021-1st

    • HOKMA Seminar

    • Engineering Polymer Chemistry

      • Subject No 37526Class No 01
      • 4Year ( 3Credit , 3Hour) Wed 3~3 , Fri 2~2
    • Engineering Instrumental Analysis

      • Subject No 37837Class No 01
      • 3Year ( 3Credit , 3Hour) Wed 6~6 , Fri 4~4
    • Advanced convergent materials for system healthcare

      • Subject No G18073Class No 01
      • Year ( 3Credit , 3Hour) Fri 5~6 (ENG )
      • Professor Changed
Academic Background

GIST 공학박사(신소재공학부)

Work Experience

University of California, Santa Barbara 2013-10-01 ~ 2017-02-28

2005-12-19 ~ 2007-02-26