Synthesis of novel solid electrolyte materials
Understanding of Li-ion transport phenomena
Vacuum-based thin-film deposition of Li-ion superconductors
Multi-scale fabrication of all-solid-state batteries
Advanced quantitative analysis of all-solid-state batteries
Fabrication of solid oxide fuel cells and electrolyzers
Characterization of solid oxide fuel cells and electrolyzers
Electrochemical analyses with impedance spectroscopy
Design of micro-scale solid oxide fuel cells for mobile applications
Wet- or dry-based powder processing
Gas-phase particle synthesis and processing
Vacuum-based thin-film deposition
Microfabrication processes for micro- and nano-scale pattering
Atomistic simulation of ion transport phenomena
Prediction of phonon heat transfer
Calculation of mechanical properties
Development of empirical potentials for molecular dynamics simulations
Industrial Cooperation Project, Solivis Inc. (2025 to 2026)*
University Research Project, Hongik University Research Fund (2025)*
Industrial Cooperation Project, Hyundai Motor Company (2024 to 2025)
University Research Project, Hongik University Research Fund (2024)
New Faculty Research Project, Hongik University New Faculty Research Support Fund (2024)
Mid-Career Research Grant, The National Research Foundation of Korea (2023 to 2026)*
Industrial Cooperation Project, Hyundai Motor Company (2022 to 2023)
Industrial Cooperation Project, Foosung Co., Ltd. (2022 to 2023)
Mid-Career Research Grant, The National Research Foundation of Korea (2020 to 2023)
Samsung Future Technology Incubation Program (2020 to 2022)
Civil-Military Technology Cooperation, Agency for Defense Development (2019 to 2021)
PRIDE-Up, Korea Institute of Science and Technology (2018)
Korea Institute of Energy Technology Evaluation and Planning (2015 to 2018)
Industrial Cooperation Project, Hyundai NGV (2015 to 2016)
Industrial Cooperation Project, Hyundai NGV (2014 to 2015)