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전자정보공과대학 교수소개

광운대학교 전자정보공과대학 교수님들을 소개합니다.
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교수진 구분 내용
성명 이지훈 교수님
학과 전자공학과
전공분야 Advanced semiconductor quantum-nano structures and optoelectronic devices
직책 교수
연구실 화도관 635호
사무실
전화번호 940-5297
이메일 jihoonlee@kw.ac.kr
상담시간 화요일(15:30~16:30), 목요일(14:00~16:00)
연구분야
Exploring Advanced Optoelectronic Devices with Functional Quantum-& Nano-structures and Materials
Less Energy, High Performance & Efficiency Low-Carbon & Green Growth
Advanced Quantum-Nano Materials & Optoelectronics Laboratory (AQNMOL)
학력
학사 경상국립대학교 전자공학과 공학 학사 1994.03.01~2002.08.31
석사 University of Arkansas, Fayetteville, USA Micro Electronics and Photonics 공학 석사 2003.08.01~2005.07.31
석사 Sam M. Walton College of Business School, University of Arkansas, Fayetteville, USA Master of Business Administration (MBA) 경영학 석사 2006.05.01~2008.08.31
박사 University of Arkansas, Fayetteville, USA Micro Electronics and Photonics 공학 박사 2005.08.01~2008.08.31
논문 및 저서
Chromium‐Doped NiBP Micro‐Sphere Electrocatalysts for Green Hydrogen Production under Industrial Operational Conditions, Small Methods, 2401939 (2025).
Ru/NiMnB spherical cluster pillar for highly proficient green hydrogen electrocatalyst at high current density, Journal of Energy Chemistry, 100, 397-408 (2025)
Dual-Functional Ru/Ni-B-P Electrocatalyst Toward Accelerated Water Electrolysis and High-Stability, Small, 2307533 (2023).
Ni-B-P micro spheres for superior water splitting OER electrocatalyst satisfying industrial operational requirement, Chemical Engineering Journal, 462, 142177 (2023).
Hybrid UV Photodetector Design Incorporating AuPt Alloy Hybrid Nanoparticles, ZnO Quantum Dots, and Graphene Quantum Dots, ACS Applied Materials & Interfaces, 15, 1 (2022).
Hybrid Device Architecture Using Plasmonic Nanoparticles, Graphene Quantum Dots, and Titanium Dioxide for UV Photodetectors, ACS Applied Materials & Interfaces, 13, 2 (2021).
Improved Photoresponse of UV Photodetectors by the Incorporation of Plasmonic Nanoparticles on GaN Through the Resonant Coupling of Localized Surface Plasmon Resonance, Nano-Micro Letter, 12, 91 (2020).
Enhanced Spatial Light Confinement of All Inorganic Perovskite Photodetectors Based on Hybrid Plasmonic Nanostructures, Small, 2004234 (2020).
Self‑Assembled Al Nanostructure/ZnO Quantum Dot Heterostructures for High Responsivity and Fast UV Photodetector, Nano-Micro Letter, 12, 114 (2020).
Improved Configuration and LSPR Response of Platinum Nanoparticles via Enhanced Solid State Dewetting of In-Pt Bilayers, Scientific Reports 9:1329 (2019).
주요경력
광운대학교 전자공학과 교수 2009 - current
Over 10 SCI Journals Reviewers 2006 - current
Collaborative Conference on Materials Research International Conference Organizer 2010 - 2019
3D RESEARCH (Springer NewYork) http://www.3dresearch.org/ Managing Editor 2009 - 2020
University of Arkansas, Fayetteville, USA Adjunct Professor 2010 - 2019
Villa and Virtual Conference on Interaction Among Nanostructures (VCIAN) 2010 International Conference Organizer 2009 - 2010
Nano & Micro Association at University of Arkansas President 2007 - 2008
2008 Villa and Virtual Conference on Interaction Among Nanostructures International Conference Organizer 2007 - 2008
2007 Virtual Conference on Nanoscale Science and Technology (VC-NST) International Conference Organizer 2006 - 2007
14th Semiconducting and insulating Materials Conference International Conference Organizer 2006 - 2007
연구과제 실적
4단계 두뇌한국(BK)21 사업, 광운대학교 전자공학과 BK21 교육연구팀, 팀장, 한국연구재단, 교육부 (2020 ~ 2027)
중점연구소, 나노소자응용연구소, 참여, 한국연구재단, 교육부 (2019 ~ 2026)
중점연구사업 일반연구자지원사업, 연구책임 교육과학기술부 (2014.03.01~2017.02.28)
대학 IT 연구센터 육성 지원 사업, 공동연구 정보통신부 (2010.01.01~2010.12.31)
고효율 쏠라셀 어플리케이션을 위한 Quantum Dots complex 제어 및 나노구조물에 관한 연구, 연구책임 광운대학교
지식재산건 실적
METHOD FOR CONFIGURATING PLATINUM NANOSTRUCTURES USING A SACRIFICIAL INDIUM LAYER, KIPO
METHOD FOR CONFIGURATING PLATINUM NANOPARTICLES VIA DEWETTING EHANCED SOLID STATE OF In-Pt BILAYERS, KIPO
METHOD FOR FABRICATING Ag-Pd ALLOY NANOPARTICLES, KIPO
Method for manufacturing silver-palladium alloy nanoparticles, KIPO
Method for controlling growth of gold nanoparticles spontaneously formed on GaN, KIPO