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 |
- 2023.04 ~ 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) |
- First or Corresponding Author
"Reinforcing synaptic plasticity of defect-tolerant states in alloyed 2D artificial transistors", ACS Applied Materials & Interfaces 15, 39539 (2023) (I.F.=9.5)
"Nature of Photoconductivity in Self-Powered Single-Atomic-Layered Nb-Doped WSe2 Phototransistors", ACS Photonics 10, 2930 (2023) (I.F.=7.0)
"Unique Conduction Band Minimum of Semiconductors Possessing a Zincblende-Type Framework", Inorganic Chemistry 58, 10313 (2022) (I.F.=5.165)
“Dissociative and Associative Concerted Mechanism for Ammonia Synthesis over Co-Based Catalyst”, Journal of the American Chemical Society 143, 12857 (2021) (I.F.=15.419)
“A View on Formation Gap in Transition Metal Hydrides and Its Collapse”, Journal of the American Chemical Society 143, 11345 (2021) (I.F.=15.419)
“C2 Vacancy-Mediated N2 Activation over Ni-Loaded Rare-Earth Dicarbides for Ammonia Synthesis”, ACS catalysis 11, 7595 (2021) (I.F.=13.084)
“Intermetallic ZrPd3-Embedded Nanoporous ZrC as an Efficient and Stable Catalyst of the Suzuki Cross-Coupling Reaction”, ACS catalysis 10, 14366 (2020) (I.F.=13.084)
“Contribution of Nitrogen Vacancies to Ammonia Synthesis over Metal Nitride Catalysts”, Journal of the American Chemical Society 143, 14374 (2020) (I.F.=15.419)
“Vacancy-enabled N2 activation for ammonia synthesis on an Ni-loaded catalyst”, Nature 583, 391 (2020) (I.F.=49.96)
“Cation Clustering in Intermetallics: The Modular Bonding Schemes of CaCu and Ca2Cu”, Inorganic Chemistry 58, 10313 (2019) (I.F.=5.165)
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강의분야 |
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저 서 |
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