- 연구실소개 (책임교수 : 안준성)
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고려대학교 센서 및 나노공정 시스템 연구실(SEnsor and Nanofabrication System Laboratory, SENS Lab)은 다음과 같은 두 가지 연구 방향을 수립하고 개발해 나가고 있습니다. 1) AI/VR/AR/Metaverse 기반 개인화된 운동 모니터링 시스템 개발: 고령화 되어가는 현대 사회에서는 개개인의 건강 증진을 위한 운동 활동은 필수적입니다. 피부 부착형 인장/압력 센서 기반 VR/AR로 개개인의 운동 자세를 피드백 할 수 있는 시스템을 구상 및 연구 중에 있습니다. 2) 1D/2D/3D 무기물 나노구조체의 개발 및 차세대 친환경 에너지 소자, 스마트 팜에의 응용: 갈수록 심각해지는 지구 온난화 문제의 해결에 기여하기 위하여, 전자/기계공학적 나노구조체 설계 능력을 보유한 SENS 연구실과 국내외 유수 기관과의 협업을 통한 차세대 친환경 에너지 수확/저장/변환 소자 및 스마트팜 전용 센서를 개발 중에 있습니다.
연구분야
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연구업적
Selected Publications
- [1]“Illuminating Recent Progress in Nanotransfer Printing: Core Principles, Emerging Applications, and Future Perspectives”, Advanced Science, 2024, 11, 2303704 (Front cover article)
- [2]“Micro/Nano Hierarchical Structures Physically Engineered on Surface: Analysis and Perspectives”, Advanced Materials, 2024, 36, 2300871 (Inside front cover article)
- [3]“Highly Sensitive Soft Pressure Sensors for Wearable Applications based on Composite Films with Curved 3D Carbon Nanotube Structures”, Small, 2024, 20, 2303981
- [4]“Recent Advances in Sensor–Actuator Hybrid Soft Systems: Core Advantages, Intelligent Applications, and Future Perspectives”, Advanced Science, 2023, 10, 2302775 (Inside back cover article)
- [5]“Nanotransfer-on-things: From rigid to stretchable nanophotonic devices”, ACS Nano, 2023, 17, 6, 5935-5942
- [6]“Nanoscale Three-Dimensional Fabrication Based on Mechanically Guided Assembly”, Nature Communications, 2023, 14, 833
- [7]“Skin-like Omnidirectional Stretchable Platform with Negative Poisson’s Ratio for Wearable Strain–Pressure Simultaneous Sensor”, Advanced Functional Materials, 2023, 33, 3, 2208792 (Front cover article)
- [8]“A Review of Recent Advances in Electrically-Driven Polymer-based Flexible Actuators: Smart Materials, Structures, and Their Applications”, Advanced Materials Technologies, 2022, 7, 2200041
- [9]“All-recyclable triboelectric nanogenerator for sustainable ocean monitoring systems”, Advanced Energy Materials, 2022, 12, 30, 2201341 (Back cover article)
- [10]“Spherical Micro/Nano Hierarchical Structures for Energy and Water Harvesting Devices”, Small Methods, 2022, 6, 7, 2200248 (Inside cover article)
- [11]“Wafer-scale, highly uniform, and well-arrayed suspended nanostructures for enhancing the performance of electronic devices”, Nanoscale, 2022, 14, 1136-1143 (Inside front cover article)
- [12]“Self-Powered Strain Sensor based on the Piezo-Transmittance of a Mechanical Metamaterial”, Nano Energy, 2021, 89, 106447
- [13]“Morphology-Controllable Wrinkled Hierarchical Structure and its Application to Superhydrophobic Triboelectric Nanogenerator”, Nano Energy, 2021, 85, 105978
- [14]“Large-Area Nanogap-Controlled 3D Nanoarchitectures Fabricated via Layer-by-Layer Nanoimprint”, ACS Nano, 2021, 15, 1, 503-514
- [15]“Shape-Controlled and Well-Arrayed Heterogeneous Nanostructures via Melting Point Modulation at the nanoscale”, ACS Applied Materials & Interfaces, 2021, 13, 2, 3358-3368 (Supplementary cover article)
- [16]“Microporous Elastomer Filter Coated with Metal Organic Frameworks for Improved Selectivity and Stability of Metal Oxide Gas Sensors”, ACS Applied Materials & Interfaces, 2020, 12, 11, 13338
- [17]“Heterogeneous conductance-based locally shape-morphable soft electrothermal actuator”, Advanced Materials Technologies, 2020, 5, 1900997 (Back cover article)
- [18]“Printed fabric heater based on Ag nanowire/carbon nanotube composites”, Nanotechnology, 2019, 30, 45