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Research

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POSTECH

학력

  • 2015.01 ~ 2018.12 UNIVERSITY OF WISCONSIN - MADISON (박사-Materials Science & Engineering)
  • 2013.06 ~ 2014.12 UNIVERSITY OF WISCONSIN - MADISON (석사-Materials Science & Engineering)
  • 2001.03 ~ 2003.02 서울대학교 (석사-재료공학)
  • 1997.03 ~ 2001.02 서울대학교 (학사-재료공학)

전문분야

  • 반도체 및 양자물질 소재 및 소자 연구
  • 2차원 물리 및 표면 양자 현상 분석
  • 원자층 고정밀 박막증착, 박막공학, 박막성장장비
  • 나노공정 및 나노분석
  • 고온 초전도체 성장 및 분석

학술지

국제전문학술지
  • Quantum coherence tomography of lightwavecontrolled superconductivity, Nature Physics, , 19, 201-209 (2023 )
  • Waferscale integration of transition metal dichalcogenide fieldeffect transistors using adhesion lithography, Nature Electronics, , 6, 146-153 (2023 )
  • Local atomic configuration control of superconductivity in the undoped pnictide parent compound BaFe2As2, ACS Applied Electronic Materials, , 4, 1511-1517 (2022 )
  • Robotic fourdimensional pixel assembly of van der Waals solids, Nature Nanotechnology, , 17, 361-+ (2022 )
  • Light quantum control of persisting Higgs modes in ironbased superconductors, Nature Communications, , 12, - (2021 )
  • Atomically thin optically isotropic films with 3D nanotopography, Nano Letters, , 21, 7291-7297 (2021 )
  • Superconductivity in undoped BaFe2As2 by tetrahedral geometry design, Proceedings of the National Academy of Sciences of the United States of America, , 117, 21170-21174 (2020 )
  • Lightwavedriven gapless superconductivity and forbidden quantum beats by terahertz symmetry breaking, Nature Photonics, , 13, 728-728 (2019 )
  • Control of epitaxial BaFe2As2 atomic configurations with substrate surface terminations, Nano Letters, , 18, 6347-6352 (2018 )
  • Terahertzlight quantum tuning of a metastable emergent phase hidden by superconductivity, Nature Materials, , 17, 586-591 (2018 )
  • Isostructural metalinsulator transition in VO2, SCIENCE, , 362, 1037-+ (2018 )

학회발표

  • Heteroepitaxial thin film synthesis of unconventional superconductors, , 0, 0, - (2024)
  • Atomically thin 3D optoelectronic films, , 0, 0, - (2023)
  • Threedimensional monolayer film design of atomically thin semiconductors, , 0, 0, - (2023)
  • 3D conformal growth of threeatomthick semiconducting thin films, , 0, 0, - (2023)
  • 3D structured semiconducting thin films with ultimate thickness limit, , 0, 0, - (2023)
  • Threedimensional architecture of atomically thin semiconductors, , 0, 0, - (2023)
  • Atomically thin semiconductors 2D or not 2D, , 0, 0, - (2023)
  • Threedimensional structuring of atomically thin semiconducting films, , 0, 0, - (2023)
  • 3D nanodomed atomically thin semiconductors for geometrydriven optical properties, , 0, 0, - (2022)
  • Atomicscale thin film quantum materials in two dimension and beyond, , 0, 0, - (2022)

연구실적

  • (전사) 2차원 소재 디자인으로 에너지 하베스팅 기술 응용 및 포스코그룹 활용 제안 (1/1), 포스코홀딩스(주) (2023-2024)
  • [4.27212_기술개발](전사) 2차원 소재 디자인으로 에너지 하베스팅 기술 응용 및 포스코그룹 활용 제안 (1/1), 포항공대산학협력단 (2023-2024)
  • 차세대 반도체/양자소자 구현을 위한 원자층 제어 반데르발스 신물질 연구, 재단법인 포스코청암재단 (2024-2025)
  • , 포항공과대학교 (2024-2040)

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nykim@postech.ac.kr

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