공과대학 - 화학공학부

  • 부교수 분자전자재료
  • 조새벽
    Lab 분자광전자연구실

관심분야

전자재료 광물리화학 및 분자분광학.
차세대 정보에너지 소재/소자/공정 개발. 

학력

  • 포항공과대학교 화학공학과 박사 (14')
  • 포항공과대학교 화학공학과 학사 (09')

약력/경력

  • 연세대학교 연구교수 (2020-2022)
  • 워싱턴대 재료공학과 Postdoc. (2015-2020)

학술지 논문

  • (2025)  Long-Lived Dark Excited States Enable Efficient Charge Generation in Photocatalytic Organic Nanoparticles.  ADVANCED OPTICAL MATERIALS.  00,  00
  • (2025)  Stereoisomerism of multi-functional electrolyte additives for initially anodeless aqueous zinc metal batteries.  NATURE COMMUNICATIONS.  16,  00
  • (2024)  Self-defined dual charge percolation networks for solution-processed multithreshold transistors.  NPJ FLEXIBLE ELECTRONICS.  8,  1
  • (2024)  Molecular Design Motifs of Non-Fullerene Acceptors for Mitigating All Inherent Non-Ideal Energy Losses in Organic Photovoltaics.  ADVANCED ENERGY MATERIALS.  15,  2
  • (2023)  Approaching Theoretical Limits in the Performance of Printed P-Type CuI Transistors via Room Temperature Vacancy Engineering.  ADVANCED MATERIALS.  35,  51
  • (2023)  High-Speed Operation of Electrochemical Logic Circuits Depending on 3D Construction of Transistor Architectures.  ADVANCED FUNCTIONAL MATERIALS.  33,  46
  • (2023)  Wafer-scale transistor arrays fabricated using slot-die printing of molybdenum disulfide and sodium-embedded alumina.  NATURE ELECTRONICS.  6,  6
  • (2023)  Monolithic Tandem Vertical Electrochemical Transistors for Printed Multi-Valued Logic.  ADVANCED MATERIALS.  35,  9
  • (2022)  3D Meniscus-Guided Evaporative Assembly for Rapid Template-Free Synthesis of Highly Crystalline Perovskite Nanowire Arrays.  ADVANCED FUNCTIONAL MATERIALS.  32,  41
  • (2022)  Gate-Deterministic Remote Doping Enables Highly Retentive Graphene-MXene Hybrid Memory Devices on Plastic.  ADVANCED FUNCTIONAL MATERIALS.  32,  20
  • (2022)  The Molecular Ordering and Double-Channel Carrier Generation of Nonfullerene Photovoltaics within Multi-Length-Scale Morphology.  ADVANCED MATERIALS.  34,  16
  • (2022)  Dilution effect for highly efficient multiple-component organic solar cells.  NATURE NANOTECHNOLOGY.  17,  1