학 력 |
- 2016 ~ 2019 Tokyo Institute of Technology (Materials Science & Engineering) 공학박사
2011 ~ 2013 Tokyo Institute of Technology (Materials Science & Engineering) 공학석사
2007 ~ 2011 Shinshu University (Physics) 이학학사
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경 력 |
- 2022.04 ~ present University of Suwon, Assistant Professor
2021.04 ~ 2022.03 Samsung Electronics, Staff Engineer
2020.05 ~ 2021.03 National Institute for Materials Science, Visiting Researcher
2019.10 ~ 2021.03 Tokyo Institute of Technology, Postdoctoral
2018.01 ~ 2018.03 University of Wisconsin–Madison, Visting Scholar
2013.04 ~ 2016.04 Korea Institute of Materials Science, Researcher
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연구관심분야 |
- Electron Active Materials
Catalyst using Active Vacancy for Ammonia Synthesis and Ammonia Decomposition
Hydrogen Storage Materials
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주요논문 (최근 5년간) |
- "Reinforcing synaptic plasticity of defect-tolerant states in alloyed 2D artificial transistors", ACS Applied Materials & Interfaces 15, 39539 (2023)
"Nature of Photoconductivity in Self-Powered Single-Atomic-Layered Nb-Doped WSe2 Phototransistors", ACS Photonics 10, 2930 (2023)
"Unique Conduction Band Minimum of Semiconductors Possessing a Zincblende-Type Framework", Inorganic Chemistry 58, 10313 (2022)
“Dissociative and Associative Concerted Mechanism for Ammonia Synthesis over Co-Based Catalyst”, Journal of the American Chemical Society 143, 12857 (2021)
“A View on Formation Gap in Transition Metal Hydrides and Its Collapse”, Journal of the American Chemical Society 143, 11345 (2021)
“C2 Vacancy-Mediated N2 Activation over Ni-Loaded Rare-Earth Dicarbides for Ammonia Synthesis”, ACS catalysis 11, 7595 (2021)
“Intermetallic ZrPd3-Embedded Nanoporous ZrC as an Efficient and Stable Catalyst of the Suzuki Cross-Coupling Reaction”, ACS catalysis 10, 14366 (2020)
“Contribution of Nitrogen Vacancies to Ammonia Synthesis over Metal Nitride Catalysts”, Journal of the American Chemical Society 143, 14374 (2020)
“Vacancy-enabled N2 activation for ammonia synthesis on an Ni-loaded catalyst”, Nature 583, 391 (2020)
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강의분야 |
- 공업수학1
물리화학2
전자구조와 재료화학
기능재료와 원소
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저 서 |
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