공과대학 - 공과대학

  • 교수 나노물성분석
  • 김윤석
    Lab 스마트재료이미징연구실

관심분야

나노크기 물성 분석 연구, 데이터 분석 및 머신러닝, 전기화학/압전/강유전성/기계적물성 연구 

학력

  • (03.2004-08.2007)
  • Ph.D., Materials Science and Engineering, Korea Advanced Institute of Science and Technology,
  • (03.2002-02.2004)
  • M.S., Materials Science and Engineering, Korea Advanced Institute of Science and Technology,
  • (03.1998-02.2002)
  • B.S., Materials Science and Engineering, Korea University

약력/경력

  • (08.2012-present)
  • Assistant/Associate professor, School of Advanced Materials Science and Engineering, Sungkyunkwan University,
  • (01.2011-08.2012)
  • Postdoctroal research associate, Oak Ridge National Laboratory, USA,
  • (10.2008-12.2012)
  • Postdoctoral researcher, Max Planck Institute of Microstructure Physics, Germany,
  • (09.2007-02.2009)
  • Postdoctoral researcher, Applied Science Research Institute, Korea Advanced Institute of Science and Technology

학술지 논문

  • (2024)  AC poling induced giant piezoelectricity and high mechanical quality factor in [001] PMN-PZT hard single crystals.  SENSORS AND ACTUATORS A-PHYSICAL.  372,  1
  • (2024)  Understanding local physical properties of barium titanate ceramics depending on the synthesis conditions assisted by a machine learning algorithm.  JOURNAL OF ALLOYS AND COMPOUNDS.  976,  1
  • (2023)  Local probing of eddy current correlated with magnetic properties.  APPLIED PHYSICS LETTERS.  123,  24
  • (2023)  High-speed mapping of surface charge dynamics using sparse scanning Kelvin probe force microscopy.  NATURE COMMUNICATIONS.  14,  1
  • (2023)  A brief review of characterization techniques with different length scales for hydrogen storage materials.  NANO ENERGY.  113,  -
  • (2023)  Negative differential capacitance in ultrathin ferroelectric hafnia.  NATURE ELECTRONICS.  6,  5
  • (2023)  Crucial role of Ce particles during initial hydrogen absorption of AB-type hydrogen storage alloys.  NANO ENERGY.  112,  1
  • (2023)  Deep learning for exploring ultra-thin ferroelectrics with highly improved sensitivity of piezoresponse force microscopy.  NPJ COMPUTATIONAL MATERIALS.  9,  1
  • (2022)  Local probing of the non-uniform distribution of ferrielectric and antiferroelectric phases.  NANO RESEARCH.  1,  1
  • (2022)  In situ formation of Imidazole-Based 2D interlayer for efficient perovskite solar cells and modules.  INTERNATIONAL JOURNAL OF ENERGY RESEARCH.  46,  11
  • (2022)  Atomic and Electronic Manipulation of Robust Ferroelectric Polymorphs.  ADVANCED MATERIALS.  34,  1
  • (2022)  High-power energy harvesting and imperceptible pulse sensing through peapod-inspired hierarchically designed piezoelectric nanofibers.  NANO ENERGY.  99,  1
  • (2022)  Size Effect of Local Current-Voltage Characteristics of MX2 Nanoflakes: Local Density of States Reconstruction from Scanning Tunneling Microscopy Experiments.  PHYSICAL REVIEW APPLIED.  17,  6
  • (2022)  Ferroelectric Field-Effect-Transistor Integrated with Ferroelectrics Heterostructure.  ADVANCED SCIENCE.  9,  21
  • (2022)  Hybrid Silicon-Polymer Photodetector Engineered Using Oxidative Chemical Vapor Deposition for High-Performance and Bias-Switchable Multi-Functionality.  ADVANCED FUNCTIONAL MATERIALS.  32,  29
  • (2022)  Tough, transparent, biocompatible and stretchable thermoplastic copolymer with high stability and processability for soft electronics.  MATERIALS TODAY.  57,  1
  • (2022)  Highly enhanced ferroelectricity in HfO2-based ferroelectric thin film by light ion bombardment.  SCIENCE.  376,  6594
  • (2022)  Ambient Humidity-Induced Phase Separation for Fiber Morphology Engineering toward Piezoelectric Self-Powered Sensing.  SMALL.  18,  17
  • (2022)  Frequency-dependent PFM signal induced by surface adsorbates.  APPLIED SURFACE SCIENCE.  571, 
  • (2021)  Quantitative Local Probing of Polarization with Application on HfO2-Based Thin Films.  SMALL METHODS.  5,  11

학술회의논문

  • (2022)  Highly enhanced ferroelectricity in HfO2-based ferroelectric thin film by light ion bombardment.  2022 MRS Fall Meeting.  미국