이화여자대학교

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화학ㆍ나노과학과

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연구실적
  • A Structure-Defined Cu(I) Dual-Atom Catalyst with a Cu2N6 Motif in a Metal-Organic Framework for CO Electroreduction Angewandte Chemie - International Edition, 2026, v.65 no.5, e22583
    SCIE Scopus dColl.
  • Mechanochemistry beyond synthesis: An alternative pathway for overcoming the challenges in metal-organic frameworks Bulletin of the Korean Chemical Society, 2026, v.47 no.1, 22-34
    SCIE Scopus dColl.
  • Highly porous single-phase rhombohedral CrxRh2−xO3 nanofibers expediting oxygen evolution reaction Applied Surface Science Advances, 2025, v.28, 100789
    Scopus dColl.
  • Identification of Ni–N4 Active Sites in Atomically Dispersed Ni Catalysts for Efficient Chlorine Evolution Reaction Journal of the American Chemical Society, 2025, v.147 no.31, 27664-27675
    SCIE Scopus dColl.
  • Rational Pore Design in Multivariate Metal-Organic Frameworks for C2H6/C2H4 Separation SMALL, 2025, v.21 no.11, 2500937
    SCIE Scopus dColl.
  • Strategic engineering of structural complexity in metal-organic frameworks TRENDS IN CHEMISTRY, 2025, v.7 no.10, 590-602
    SCIE Scopus dColl.
  • Text mining in MOF research: from manual curation to large language model-based automation Chemical Communications, 2025, v.61 no.60, 11083-11094
    SCIE Scopus dColl.
  • Unraveling the adsorption mechanisms of cationic dyes on defective UiO-66: Insights from kinetics, isotherms, and spectroscopic analyses Journal of Environmental Management, 2025, v.393, 127106
    Scopus dColl.
  • Advancing Metal-Organic Framework Designs for Room-Temperature Chemiresistive Gas Sensors ACS Applied Electronic Materials, 2024, v.6 no.5, 3024-3038
    SCIE Scopus dColl.
  • Carboxylate-Based Metal-Organic Framework and Coordination Polymer Glasses: Progress and Perspectives Accounts of Chemical Research, 2024, v.57 no.16, 2347-2357
    SCIE Scopus dColl.
  • Lotus-root-like multichannel nanotubes of IrO2–ZnO for electrocatalysis of pH-universal oxygen evolution reaction: A simple strategy to control the structure and crystallinity Applied Surface Science, 2024, v.644, 158741
    SCIE Scopus dColl.
  • Melt-quenched carboxylate metal–organic framework glasses Nature Communications, 2024, v.15 no.1, 1174
    SCIE Scopus dColl.
  • Metal–organic frameworks as a fluorescent probe for detection of pathogenic biomarkers in human urine Bulletin of the Korean Chemical Society, 2024, v.45 no.4, 308-316
    SCIE Scopus dColl.
  • Moisture-triggered proton conductivity switching in metal-organic frameworks: role of coordinating solvents JOURNAL OF MATERIALS CHEMISTRY A, 2024, v.12 no.2, 795-801
    SCIE Scopus dColl.
  • Parsimonious Topology Based on Frank-Kasper Polyhedra in Metal-Organic Frameworks JACS Au, 2024, v.4 no.7, 2539-2546
    Scopus dColl.
  • All-Impurities Scavenging, Safe Separators with Functional Metal-Organic-Frameworks for High-Energy-Density Li-Ion Battery Advanced Functional Materials, 2023, v.33 no.37, 2302563
    SCIE Scopus dColl.
  • Computational Prediction of Stacking Mode in Conductive Two-Dimensional Metal-Organic Frameworks: An Exploration of Chemical and Electrical Property Changes ACS Sensors, 2023, v.8 no.8, 3068-3075
    SCIE Scopus dColl.
  • Effect of steric hindrance on the interfacial connection of MOF-on-MOF architectures NANOSCALE ADVANCES, 2023, v.5 no.7, 2111-2117
    SCIE Scopus dColl.
  • Macroscopic alignment of metal-organic framework crystals in specific crystallographic orientations MATERIALS CHEMISTRY FRONTIERS, 2023, v.7 no.22, 5545-5560
    SCIE Scopus dColl.
  • Progress in the development of flexible metal–organic frameworks for hydrogen storage and selective separation of its isotopes Coordination Chemistry Reviews, 2023, v.497, 215402
    Scopus dColl.
  • [학술지논문] Lotus-root-like multichannel nanotubes of IrO2-ZnO for electrocatalysis of pH-universal oxygen evolution reaction: A simple strategy to control the structure and crystallinity APPLIED SURFACE SCIENCE, 2024, v.644no.1, 158741-158741
    SCIE
  • [학술지논문] All-impurities Scavenging, Safe Separators with Functional Metal-Organic-Frameworks for High-Energy-Density Li-Ion Battery ADVANCED FUNCTIONAL MATERIALS, 2023, v.33no.37, 230256-230256
    SCIE
  • [학술지논문] Computational Prediction of Stacking Mode in Conductive Two-Dimensional Metal-Organic Frameworks: An Exploration of Chemical and Electrical Property Changes ACS Sensors, 2023, v.8no.8, 3068-3075
    SCIE
  • [학술지논문] Macroscopic alignment of metal-organic framework crystals in specific crystallographic orientations MATERIALS CHEMISTRY FRONTIERS, 2023, v.7no.22, 5545-5560
    SCIE
  • [학술지논문] Progress in the development of flexible metal-organic frameworks for hydrogen storage and selective separation of its isotopes COORDINATION CHEMISTRY REVIEWS, 2023, v.497no.0, 215402-215402
    SCIE
  • [학술지논문] Synthesis of Single-Crystalline Core-Shell Metal-Organic Frameworks JOVE-JOURNAL OF VISUALIZED EXPERIMENTS, 2023, v.192no.192, 64978-64978
    SCIE
강의
  • 2026-1학기

    • 화학연구I

      • 학수번호 33702분반 01
      • 4학년 (2학점, 3시간) 토 2~3 (포361)
      • 2025 겨울방학 실험실 인턴학생 대상/팀티칭
    • 고급연구Ⅲ

      • 학수번호 G10115분반 01
      • 학년 (3학점, 6시간) 토 1~4 (종D106)
    • 글로벌첨단바이오소재Ⅰ

      • 학수번호 G18696분반 01
      • 학년 (3학점, 3시간) 월 6~7 (종D109)
  • 2025-2학기

    • 일반화학실험Ⅱ

      • 학수번호 20419분반 05
      • 1학년 (1학점, 1.5시간) 월 6~6 (종)
      • 자연대, 식생공1, 화신공1, 전자전기1, 지능형반도체1 / 다음교시까지 진행
    • 일반화학실험Ⅱ

      • 학수번호 20419분반 10
      • 1학년 (1학점, 1.5시간) 월 4~4 (종)
      • 자연대, 식생공1, 화신공1, 전자전기1, 지능형반도체1 / 다음교시까지 진행
    • 무기화학Ⅱ

      • 학수번호 20550분반 01
      • 3학년 (3학점, 3시간) 수 3~3 (포363),금 2~2 (포363)
      • 영어강의
    • 고급연구Ⅱ

      • 학수번호 G10114분반 01
      • 학년 (3학점, 6시간) 토 1~4 (종D106)
  • 2025-1학기

    • 일반화학Ⅰ

      • 학수번호 20416분반 03
      • 1학년 (3학점, 3시간) 화 5~5 (포363),목 6~6 (포363)
      • 영어강의 자연대,화신공1,식공1,전자전기1,지능형반도체1,기후1,휴기바1,건축1,건도시1(ABEEK),재학생(편입생,복학생,고학번미수강자,호크마,전공결정생 등),일반화학과 중복수강 불가
    • 무기화학특강Ⅰ

      • 학수번호 G16238분반 01
      • 학년 (3학점, 3시간) 금 4~5 (종D108)
      • 영어강의
  • 2024-2학기

    • 무기화학특론

      • 학수번호 37118분반 01
      • 4학년 (3학점, 3시간) 월 4~4 (포465),목 5~5 (포465)
      • 영어강의
  • 2024-1학기

    • 무기화학Ⅰ

      • 학수번호 20549분반 02
      • 3학년 (3학점, 3시간) 월 3~3 (종),수 4~4 (101)
      • 영어강의
  • 2023-2학기

    • 일반화학실험Ⅱ 강의 계획서 상세보기

      • 학수번호 20419분반 02
      • 1학년 (1학점, 1.5시간) 월 6~6 (종)
      • 자연대, 호크마1, 다음교시까지 진행
    • 일반화학실험Ⅱ 강의 계획서 상세보기

      • 학수번호 20419분반 03
      • 1학년 (1학점, 1.5시간) 금 6~6 (종)
      • 자연대, 호크마1, 다음교시까지 진행
    • 화학연구II

      • 학수번호 33703분반 01
      • 4학년 (2학점, 3시간) 토 2~3 (포453)
      • 영어강의 팀티칭. 2023 여름방학 실험실 인턴학생 대상
    • 무기화학특론

  • 2023-1학기

    • 일반화학I

      • 학수번호 20416분반 05
      • 1학년 (3학점, 3시간) 화 6~6 (종A),목 4~4 (102)
      • 영어강의,ABEEK 자연대, 화신공1, 식공1, 환경1, 호크마1, 컴공1, 기후·에너지1, 일반화학과 중복수강 불가