정보통신대학 - 전자전기공학부

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관심분야

Photonic systems and instrumentations for biomedical applications 
Optical ultrasound sensors and transmitters, Nanophotonic energy conversion structures, High-energy fiber laser 
Focused ultrasound therapy, Micro-ultrasonic treatment of tissue and cells, Miniaturized optical/ultrasonic systems for biomedical diagnosis and therapy

학력

  • (Ph.D.) Electrical Engineering and Computer Sciences, University of Michigan, Ann Arbor (2012)

약력/경력

  • Assistant Professor, School of Electronic and Electrical Engineering (2014-present), Dept. Global Biomedical Engineering (2015-present), Sungkyunkwan University
  • Research Fellow, Harvard Medical School and Massachusetts General Hospital (2012-2014)
  • Visiting Scientist, Dept. Biomedical Engineering, Cornell University (2004-2005)
  • Research and Technical Staff, Seoul National University Nano-Bioelectronics & Systems Research Center (2001-2006)

학술지 논문

  • (2023)  Highly Reliable 3D Channel Memory and Its Application in a Neuromorphic Sensory System for Hand Gesture Recognition.  ACS NANO.  17,  24
  • (2023)  Reflection-Boosted Wearable Ring-Type Pulse Oximeters for SpO<sub>2</sub> Measurement with High Sensitivity and Low Power Consumption.  BIOSENSORS-BASEL.  13,  7
  • (2023)  Flexible and Stretchable Piezoresistive Sensor with Decoupled Pressure Sensing Capability.  ADVANCED MATERIALS TECHNOLOGIES.  8,  15
  • (2023)  Room-Temperature-Processable Highly Reliable Resistive Switching Memory with Reconfigurability for Neuromorphic Computing and Ultrasonic Tissue Classification.  ADVANCED FUNCTIONAL MATERIALS.  33,  14
  • (2023)  Understanding a spectral response in a metal-dielectric-metal cavity structure: The role of constituent metals.  OPTICS AND LASER TECHNOLOGY.  158,  1
  • (2022)  Micro-ultrasonic Assessment of Early Stage Clot Formation and Whole Blood Coagulation Using an All-Optical Ultrasound Transducer and Adaptive Signal Processing Algorithm.  ACS SENSORS.  7,  10
  • (2022)  Reversible electrical percolation in a stretchable and self-healable silver-gradient nanocomposite bilayer.  NATURE COMMUNICATIONS.  13,  1
  • (2022)  Epidermal piezoresistive structure with deep learning-assisted data translation.  NPJ FLEXIBLE ELECTRONICS.  6,  1
  • (2022)  Wave-Mode Configurable Ultrasonic Non-Destructive Evaluation System Using Optoacoustic Prism.  IEEE ACCESS.  10,  -
  • (2022)  Functional Encapsulating Structure for Wireless and Immediate Monitoring of the Fluid Penetration.  ADVANCED FUNCTIONAL MATERIALS.  32,  31
  • (2021)  Variable-focus optoacoustic lens with wide dynamic range and long focal length by using a flexible polymer nano-composite membrane.  ULTRASONICS.  117, 
  • (2021)  Rigorous characterization of fiber-optic hydrophone responses using a discretized-domain-based rigid-piston model and a broadband photoacoustic pulse.  JOURNAL OF SOUND AND VIBRATION.  512, 
  • (2021)  Durable and Fatigue-Resistant Soft Peripheral Neuroprosthetics for In Vivo Bidirectional Signaling.  ADVANCED MATERIALS.  33,  20
  • (2021)  Defect-passivation of organometal trihalide perovskite with functionalized organic small molecule for enhanced device performance and stability.  DYES AND PIGMENTS.  189, 
  • (2021)  Laser-generated focused ultrasound transducer using a perforated photoacoustic lens for tissue characterization.  BIOMEDICAL OPTICS EXPRESS.  12,  3
  • (2021)  Demonstration of the one-step continuous fabrication of flexible polymer ridge waveguides via nanochannel-guided lithography.  JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY.  95, 
  • (2020)  Origin of Gouy Phase Shift Identified by Laser-Generated Focused Ultrasound.  ACS PHOTONICS.  7,  11
  • (2020)  Defect-Passivating Organic/Inorganic Bicomponent Hole-Transport Layer for High Efficiency Metal-Halide Perovskite Device.  ACS APPLIED MATERIALS & INTERFACES.  12,  36
  • (2019)  Flexible High-Color-Purity Structural Color Filters Based on a Higher-Order Optical Resonance Suppression.  SCIENTIFIC REPORTS.  9,  1
  • (2019)  Laser-generated focused ultrasound transmitters with frequency-tuned outputs over sub-10-MHz range.  APPLIED PHYSICS LETTERS.  115,  15