인수일
In, Su-IlDepartment of Energy Science and Engineering
학력
- 2004 ~ 2008Univ. of Cambridge 박사
- 2001 ~ 2003한국과학기술원 석사
- 1994 ~ 2000인하대학교 학사
경력
- 2014 ~ Current대구경북과학기술원(DGIST) / 비서실장
- 2012 ~ Current대구경북과학기술원(DGIST) / 조교수
- 2010 ~ 2012펜실베니아주립대 / 박사후연구원
- 2008 ~ 2010덴마크공과대 / 박사후연구원
- 2000 ~ 2001캘리포니아대 / 방문연구원
수상실적
- 2024학회발전상
- 2024안전관리 우수연구실
- 2024우수논문상
- 2024Top Downloaded Article certificate
- 2023우수상
연구실 소개
- Photo & Electrochemical Materials Science & Engineering Lab
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Research interests are synthesis, analysis and application of functional nano-materials for environmentally friendly renewable energy and advnaced functional devices. A central goal of this work is relating 1) Photovoltaic including quantum dot devices, dye sensitized solar cells and CZTS, 2) Solar Fuel including photocatalytic CO2 conversion to hydrocarbon fuels and water splitting for H2 generation, 3) Microbial metabolic engineering producing energy.
- "A 25 cm2 single Si-based solar redox flow battery with aqueous iodine-bromine redox couples", Kim, Jungmyung. (2025-07). A 25 cm2 single Si-based solar redox flow battery with aqueous iodine-bromine redox couples. Journal of Power Sources, 644. doi: 10.1016/j.jpowsour.2025.237045
- "Photocatalytic Hydrogen Production Using Semiconductor (CdSe)13 Clusters", Lee, Soyeon. (2025-05). Photocatalytic Hydrogen Production Using Semiconductor (CdSe)13 Clusters. Nano Letters, 25(18), 7351–7360. doi: 10.1021/acs.nanolett.5c00529
- "Novel perovskite-based betavoltaic cell: dual additive strategy for enhanced FAPbI3 α-phase stability and performance", Kim, Chol Hyun. (2025-04). Novel perovskite-based betavoltaic cell: dual additive strategy for enhanced FAPbI3 α-phase stability and performance. Chemical Communications, 61(32), 5930–5933. doi: 10.1039/d4cc05935b
- "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
- "Insights into an indolicidin-derived low-toxic anti-microbial peptide's efficacy against bacterial cells while preserving eukaryotic cell viability", Kim, Jihyun. (2025-01). Insights into an indolicidin-derived low-toxic anti-microbial peptide's efficacy against bacterial cells while preserving eukaryotic cell viability. BioFactors, 51(1). doi: 10.1002/biof.2145
- "Defect Engineering of Ternary Cu–In–Se Quantum Dots for Boosting Photoelectrochemical Hydrogen Generation", 김화평. (2023-11-22). Defect Engineering of Ternary Cu–In–Se Quantum Dots for Boosting Photoelectrochemical Hydrogen Generation. 2023 한국에너지기후변화학회 추계학술대회, 124–124.
- "1T/2H-MoS₂ interaction with reduced TiO₂ for photocatalytic CO₂ reduction into CO", 김동윤. (2023-10-19). 1T/2H-MoS₂ interaction with reduced TiO₂ for photocatalytic CO₂ reduction into CO. 한국에너지학회 2023년도 추계학술발표회, 149–149.
- "Hierarchical MicroNano-Porous Acupuncture Needles Offering Enhanced Therapeutic Properties", In, Su-Il. (2017-11-11). Hierarchical MicroNano-Porous Acupuncture Needles Offering Enhanced Therapeutic Properties. BIT's 15th Annual Congress of International Drug Discovery Science Technology.
- "Hybrid CuxO-TiO2 Heterostructured composites for Photocatalytic CO2 Reduction into Methane by Solar Irradiation Sunlight into Fuel", In, Su Il. (2017-03-03). Hybrid CuxO-TiO2 Heterostructured composites for Photocatalytic CO2 Reduction into Methane by Solar Irradiation Sunlight into Fuel. 2017 International Conference on Artificial Photosynthesis ICARP, 214–214.
연구 뉴스
- 세계 최초 차세대 페로브스카이트 베타전지 개발 2025-04-28
- 불규칙한 표면 특성의 광촉매로 이산화탄소 연료 전환 성공 2024-06-03
- 에너지 혁신의 시작! DGIST, 반영구적 차세대 배터리 기술 개발 2024-05-02
- DGIST Develops High-efficiency Photocatalyst for Converting Carbon Dioxide into Environmentally Friendly Energy Using Sunlight 2024-03-25
- 태양으로 이산화탄소를 친환경 에너지로 변환하는 고효율 광촉매 개발 2024-03-20
연구분야
미래유망 신기술(6T)
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30000. ST(우주항공기술)
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30200. 나노소재
30211. 나노소재기술(나노분말소재, 광학용 나노소재, 고기능 시너지 소재, 촉매․환경․기능소재에 중점)
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30000. ST(우주항공기술)
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30400. 나노기반․공정
30412. 나노 측정기술(100 nm이하)
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30000. ST(우주항공기술)
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30400. 나노기반․공정
30415. 나노 신기능 분자합성기술
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50000. NT(나노기술)
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50200. 에너지
50212. 미활용 에너지 이용기술
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국가과학기술표준분류
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EC. 화공
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EC01. 화학공정
EC0101. 촉매/반응기술
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ED. 전기/전자
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ED04. 반도체 소자·회로
ED0404. Sensor용 소자
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ED. 전기/전자
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ED07. 계측기기
ED0701. 계측센서/부품
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EF. 에너지/자원
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EF01. 온실가스 처리
EF0102. CO2 전환기술
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EF. 에너지/자원
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EF06. 전력시스템
EF0601. 태양광
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EF. 에너지/자원
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EF06. 전력시스템
EF0699. 달리 분류되지 않는 신재생에너지
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NB. 물리학
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NB05. 광학·양자전자학
NB0502. 양자광학
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NC. 화학
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NC03. 무기화학
NC0307. 촉매화학
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NC. 화학
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NC07. 광화학
NC0707. 태양에너지화학
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