김현민
Kim, HyunminDivision of Biomedical Technology
학력
- 2004 ~ 2009University of California-Irvin 박사
- 2001 ~ 2003University of Wisconsin-Madiso 석사
- 1997 ~ 1999포항공과대학교 석사
- 1991 ~ 1997포항공과대학교 학사
경력
- 2021 ~ Current대구경북과학기술원 융합전공 / 겸무교수
- 2019 ~ Current대구경북과학기술원 / 책임연구원
- 2012 ~ 2019대구경북과학기술원 / 선임연구원
- 2012 ~ 2012한국화학연구원 나노기술융합연구단 / Post-Doc
- 2009 ~ 2011NIST / Post-Doc
수상실적
- 2025총장표창
- 2019공로상
Related Keyword
- "Inherent Lattice Distortion Engineering via Magnetic Field for High-Quality Strained MAPbI3 Perovskite Single Crystals", Ogunleye, Abdulazeez M. (2025-05). Inherent Lattice Distortion Engineering via Magnetic Field for High-Quality Strained MAPbI3 Perovskite Single Crystals. Advanced Materials Interfaces, 12(9). doi: 10.1002/admi.202400781
- "Exploring the frontier: nonlinear optics in low dimensional materials", Adeshina, Mohammad Awwal. (2025-05). Exploring the frontier: nonlinear optics in low dimensional materials. Nanophotonics, 14(10), 1451–1473. doi: 10.1515/nanoph-2024-0652
- "Bright Prospects, Lingering Challenges: CsPbBr3 Quantum Dots for Environmental Sensing", Ogunleye, Abdulazeez M. (2025-04). Bright Prospects, Lingering Challenges: CsPbBr3 Quantum Dots for Environmental Sensing. Crystal Growth & Design, 25(9), 3238–3252. doi: 10.1021/acs.cgd.4c01484
- "Selective conversion of CO2 to CO using blue TiO2 with an r-GO shell and quantitative measurement of excited electrons with four-wave mixing microspectroscopy", Yang, Wonseok. (2025-01). Selective conversion of CO2 to CO using blue TiO2 with an r-GO shell and quantitative measurement of excited electrons with four-wave mixing microspectroscopy. Carbon, 232. doi: 10.1016/j.carbon.2024.119819
- "Graphene-Liquid Crystal Synergy: Advancing Sensor Technologies across Multiple Domains", Adeshina, Mohammad Awwal. (2024-09). Graphene-Liquid Crystal Synergy: Advancing Sensor Technologies across Multiple Domains. Materials, 17(17). doi: 10.3390/ma17174431
- "Sub-diffraction Second Harmonic Generation Microscopy using Particle Swarm Optimized Phase Mask", Frontiers in Optics, FiO 2022, pp.1 - 2
- "Focal Field Engineered Infrared-sensitive Third-order Sum Frequency Generation Microscopy", Manattayil, Jyothsna Konkada. (2022-05-09). Focal Field Engineered Infrared-sensitive Third-order Sum Frequency Generation Microscopy. Biomedical Spectroscopy, Microscopy, and Imaging II 2022. doi: 10.1117/12.2621764
연구 뉴스
- 비틀림 적층 그래핀 구조의 광학 및 전기적 특성 규명 2020-07-14
- 원자층의 울림을 깨워 더 밝고 새로운 빛으로...고효율 빛 변환 메커니즘 발견 2020-07-08
- Novel “Dual-Resonant Method” in 2D Materials Can Spur Advances in the Field of Photonics 2020-07-08
- The Big Picture: A New Imaging Approach to See Multiple Proteins Simultaneously 2020-04-28
- 광석계 팔방미인 페로브스카이트, 레이저로 변신! 2020-04-27
연구분야
미래유망 신기술(6T)
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20000. BT(생명공학기술)
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20100. 기초․기반기술
20117. 생명공학 산물 안전성 및 유효성 평가기술
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20000. BT(생명공학기술)
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20100. 기초․기반기술
20119. 기타기초․기반기술
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30000. ST(우주항공기술)
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30400. 나노기반․공정
30412. 나노 측정기술(100 nm이하)
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국가과학기술표준분류
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NB. 물리학
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NB05. 광학·양자전자학
NB0501. 분광학
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-
LA. 생명과학
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LA07. 융합바이오
LA0704. 바이오이미징
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NB. 물리학
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NB05. 광학·양자전자학
NB0502. 양자광학
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-
NB. 물리학
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NB05. 광학·양자전자학
NB0504. 비선형광학
-
-
NC. 화학
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NC01. 물리화학
NC0103. 분광학
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12대 국가전략기술 분야
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첨단바이오
합성생물학