최근 수정 시각 : 2025-11-22 04:58:29

이강민(교수)

<colbgcolor=#002c52><colcolor=#fff> 가톨릭대학교 교수
이강민
Kangmin Lee
파일:이강민교수.png
출생 1990년([age(1990-02-16)]세)
학력 안산동산고등학교 (졸업)
울산과학기술원 (Green Energy Engineering / 학사)
울산과학기술원 대학원 (Energy and Chemical Engineering / 석사박사)
경력 매사추세츠 공과대학교 (Postdoctoral Researcher)
울산과학기술원 (Research Assistant Professor)
하버드 대학교 (Visiting Researcher)
교토대학 (Visiting Researcher)
현직 가톨릭대학교 에너지환경공학과 교수 (조교수)


1. 개요2. 대표 연구분야3. 논문 (Selected)
3.1. 주저자3.2. 공동저자
4. 지적재산권 (Selected)5. 학회 발표 (Selected)

1. 개요

UNIST에서 투명 결정질 실리콘 태양전지(Transparent Crystalline Silicon Solar Cells) 연구로 박사학위를 취득하였으며, MIT(Massachusetts Institute of Technology)에서 박사후연구원(Postdoctoral Associate)으로 차세대 태양광 에너지 소재 및 소자를 연구하였다. 현재 가톨릭대학교 LEE(Leading-edge Energy materials and Electronics) Group에서는 결정질 실리콘을 기반으로 매우 혁신적인 에너지 소재 및 소자를 연구하고 있으며, 첨단 반도체 기술을 바탕으로 유리형 투명 태양전지, 초경량 유연 태양전지 등 차세대 태양전지 개발과 태양광 에너지 변환 효율의 이론적 한계 극복을 목표로 연구를 수행하고 있다. 아울러 Solar-to-Chemical Conversion, 광소자 및 차세대 반도체·디스플레이 소재와 소자, 반도체 공정 등 다양한 태양광 기반 에너지 소재·소자 및 반도체 분야로 연구를 확장하고 있다.

2. 대표 연구분야

  • Crystalline silicon, Inorganic semiconductor
  • Advanced semiconductor materials (e.g., Organic/Inorganic hybrid semiconductor)
  • Crystalline silicon based Next generation semiconductor (e.g., Transparent semiconductor)
  • Photovoltaics and Energy System
  • Semiconductor process
  • Singlet fission
  • Nano/micro-technology
  • Flexible/Transparent electronics
  • Solar to chemical conversion (e.g., H2, Reactive oxygen species)

3. 논문 (Selected)

3.1. 주저자

  • N. Nagaya‡, K. Lee‡, C. Perkison‡, A. Li, Y. Lee, X. Zhong, S. Lee, L. Weisburn, M. Bawendi, T. Voorhis, W. Tisdal, A. Kahn, K. Seo, M. Baldo* “Exciton Fission Enhanced Silicon Solar Cell” Joule, 2025, 9, 101965
  • K. Lee‡, J. Yeop‡, J. Park, J.G. Son, J.Y. Kim*, K. Seo* “Color tuning and efficiency enhancement of transparent c-Si solar cells with Ag/TiO2 double layer” Small, 2025, 2409487
  • J. Park‡, K. Lee‡, J. Lee, D. Kim, M. Lee, and K. Seo* "All-back-contact neutral-coloured transparent crystalline silicon solar cells enabling seamless modularization" PNAS (Proceedings of the National Academy of Sciences), 2024, 121, 33, e2404684121
  • K. Lee‡, J. Park‡, and K. Seo* "Neutral-colored transparent solar cells with radiative cooling and wide-angle anti-reflection" Cell Rep. Phys. Sci., 2023, 4, 101744
  • H. Shin‡, K. Lee‡, J. Mun‡, D-H. Roh, E. Hwang, J. Park, G. Lee*, K. Seo*, and T-H. Kwon* “Deep metal-assisted chemical etching using a porous monolithic AgAu layer to develop neutral-colored transparent silicon photovoltaics” J. Mater. Chem. A, 2023, 11, 19321-19327
  • K. Lee‡, J. Park‡, and K. Seo* "Minimizing the carrier collection loss of the neutral-color transparent crystalline-silicon solar modules via hybrid electrode design" Small, 2023, 2301480
  • J. Park‡, K. Lee‡, K. Seo* "25-cm2 glass-like transparent crystalline silicon solar cells with an efficiency of 14.5% " Cell Rep. Phys. Sci., 2022, 3, 100715
  • K. Lee‡, S. Shin‡, W. J. Lee, D. Choi, Y. Ahn, D. Seo*, K. Seo* "Sunlight Activatable ROS Generator for Cell Death using TiO2/c-Si Microwires" Nano Lett., 2021, 21 (16), 6998-7004
  • K. Lee, H. -D. Um, D. Choi, J. Park, N. Kim, H. Kim, K. Seo* "The Development of Transparent Photovoltaics" Cell Rep. Phys. Sci., 2020, 1, 100143 (Invited review)
  • K. Lee‡, N. Kim‡, K. Kim‡, H. -D. Um, W. Jin, D. Choi, J. Park, K. J. Park, S. Lee*, K.Seo* "Neutral-Colored Transparent Crystalline Silicon Photovoltaics" Joule, 2020, 4, 235
  • H. -T. Kim‡, K. Lee‡, W. Jin, H. -D. Um, M. Lee, E. Hwang, T. -H. Kwon*, K.Seo* " Phosphorescent Energy Downshifting for Diminishing Surface Recombination in Silicon Nanowire Solar Cells" Sci. Rep., 2018, 8, 16974
  • K. Lee‡, J. Park‡, H. Kim, H.-S. Park, H.-K. Song, K.-H. Kim*, and K. Seo* "High-Performance Electrothermal and Anticorrosive Transparent Heating Stickers" J. Mater. Chem. A, 2018, 6, 11790-11796
  • J. Park‡, K. Lee‡, H. Um, K. -H. Kim*, and K. Seo* "Direct Fabrication of Flexible Ni Micro-grid Transparent Conducting Electrodes via Electroplated Metal Transfer" Adv. Mater. Technol., 2018, 3, 1700213
  • C. Hwang‡, K. Lee‡, H. -D Um, Y. Lee, K. Seo* and H. -K. Song* "Conductive and Porous Silicon Nanowire Anodes for LIBs" J. Electrochem. Soc., 2017, 164 (7), A1564-A1568
  • K. Lee‡, I. Hwang‡, N. Kim, D. Choi, H.-D. Um, S. Kim, and K. Seo* "17.6%-efficient Radial Junction Solar Cells Using Silicon Nano/micro Hybrid Structure" Nanoscale, 2016, 8 (30), 14473-14479.

3.2. 공동저자

  • W. Jin, C. Shin, S. Lim, K. Lee, J. M. Yu, K. Seo* and J. -W. Jang* “Natural leaf-inspired solar water splitting system” Appl.Catl. B: Environ., 2023, 322, 122086
  • H. -D. Um, K. Lee, I. Hwang, J. Park, D. Choi, N. Kim, H. Kim, K. Seo* "Progress in Silicon Microwire Solar Cells" J. Mater. Chem. A, 2020, 8, 5395-5420
  • J. H. Seo, I. Hwang, H. -D. Um, S. Lee, K. Lee, J. Park, H. Shin, T. -H. Kwon, S. J. Kang*, and K. Seo* "Cold Isostatic-Pressured Silver Nanowire Electrodes for Flexible Organic Solar Cells via Room-Temperature Processes" Adv. Mater., 2017, 1701479
  • H.-D. Um, N. Kim, K. Lee. I. Hwang, J. H. Seo, and K. Seo* " Dopant-free All-back-contact Si Nanohole Solar Cells using MoOx and LiF Films" Nano Lett., 2016, 16 (2), 981-987
  • H.-D. Um, N. Kim, K. Lee, I. Hwang, J. H. Seo, Y. J. Yu, P. Duane, M. Wober, and K. Seo* "Versatile Control of Metal-assisted Chemical Etching for Vertical Silicon Microwire Arrays and Their Photovoltaic Applications" Sci. Rep., 2015, 5, 11277

4. 지적재산권 (Selected)

  • “Silicon solar cell design for triplet exciton sensitization”, U.S. Patent, Serial No.: 63/596585 (provisional)
  • "Colorless transparent crystalline silicon substrate, and method of preparing the same" U.S. Patent Application No. 17/267,031.
  • “A porous monolithic AgAu layer and Deep Metal-Assisted Chemical Etching Process for Neutral-colored Transparent Silicon” Korea Patent No. 10-2697894
  • “Solar cell and fabrication method thereof” Korea Patent No. 10-2023-0017930
  • “Solar cell and solar cell module including the same” Korea Patent No. 10-2022-0153815
  • "Solar cell Module" PCT/KR2022/003201
  • “Transparent semiconductor substrate for improving double-sided light transmittance and manufacturing method thereof” Korea Patent No. 10-2021-0025568
  • “Solar cell module” Korea Patent No. 10-2620243
  • "Transparent solar cell module using connection electrode" Korea Patent No. 10-2021-0050362
  • "Colorless transparent crystalline silicon substrate, and method of preparing the same" PCT/KR/2019/007221
  • "Reactive oxygen generation device and manufacturing method thereof" Korea Patent No. 10-2019-0040293
  • "Stretchable electrode with controlled transmittance, manufacturing method thereof, and device comprising the same” Korea Patent No. 10-2018-0006277
  • "Solar cell with controlled transmittance and manufacturing method thereof" Korea Patent No. 10-2017-0126357
  • "Silicon solar cell and manufacturing method for the same" Korea Patent No. 10-2017-0104562
  • "Steam generation device, and purification device comprising the same" Korea Patent No. 10-2017-0177483
  • "Method for manufacturing transparent electrode and electro substrate comprising transparent electrode" Korea Patent No. 10-2016-0143421

5. 학회 발표 (Selected)

  • MARC, 2025. 01; Bretton Woods, USA
  • PVSEC-35, 2024. 11; Numazu, Japan
  • ISPF2, 2024. 07; New York, USA
  • MARC, 2024. 01; Bretton Woods, USA
  • 2023 MRS Fall Meeting & Exhibit, 2023. 11; Boston, USA
  • 2023 SPIE, 2023. 08; San Diego, USA
  • 2022 MRS Fall Meeting & Exhibit, 2022. 12; Boston, USA
  • PVSEC 33, 2022. 11; Nagoya, Japan
  • GPVC 2022, 2022. 07; Gwangju, Republic of Korea
  • GPVC 2021, 2021. 07; Gwangju, Republic of Korea
  • PVSEC-30 & GPVC 2020, 2020. 11; Jeju, Republic of Korea
  • 2019 MRS Fall Meeting, 2019, 12; Boston, USA
  • IUMRS-ICA 2019, 2019. 09; Perth, Australia
  • PVSEC-27, 2017. 11; Otsu, Japan
  • 253rd ACS National Meeting, 2017. 03; San Francisco, USA
  • PVSEC-26, 2017. 10; Singapore
  • 2015 MRS Fall Meeting, 2015. 11; Boston, USA
  • ICP 2015, 2015. 06; Jeju, Republic of Korea