ソウル大学、KAIST、延世大学など韓国QSトップ10大学の研究室情報です。
Professor Yunseok Choi's research lab specializes in advanced energy storage systems and intelligent computing technologies. The lab focuses on developing machine learning and deep learning models for accurate state-of-health prediction in lithium-ion and seawater batteries, emphasizing robustness across diverse chemistries and operating conditions. Additionally, the lab explores neuromorphic computing using two-dimensional materials, aiming to create next-generation low-power, high-efficiency computing systems. The integration of structural and sequential modeling in code summarization further highlights the lab’s interdisciplinary approach to AI-driven systems design.
Professor Hyun Joon Kim's research lab specializes in operations research, optimization, and intelligent systems with a focus on sustainable energy systems and industrial process integration. The lab develops decision support systems and advanced algorithms for optimizing complex supply chains—particularly hydrogen refueling and supply networks—while also addressing challenges in manufacturing processes such as steel-making batching and microminiature heat exchanger welding. Research spans mathematical modeling, graph algorithms, and signal fusion techniques to improve efficiency, reliability, and performance in energy and metallurgical industries. The lab emphasizes real-world applicability through prototype development and computational validation.
Professor Eun-Sung Son's research lab specializes in aging and mental health, with a strong focus on gerontological psychology, particularly the psychological adaptation of older adults following major life stressors such as spousal bereavement. The lab conducts advanced statistical and structural equation modeling analyses to understand predictors of depression, resilience, and quality of life in older populations. Additionally, the lab is actively engaged in computing education research, developing and evaluating data science and computational thinking curricula for non-major students to enhance digital literacy and problem-solving skills.
Professor Ildoo Kim's research lab specializes in stochastic analysis, particularly the theory of stochastic partial differential equations (SPDEs) involving fractional derivatives and non-Markovian processes. The lab focuses on developing $L_p$- and $L_q(L_p)$-theories for both linear and quasi-linear SPDEs with irregular coefficients, including those with time-dependent and discontinuous leading coefficients. A central theme is the extension of classical harmonic analysis tools—such as the Calderón-Zygmund theorem and Marcinkiewicz interpolation—to stochastic and fractional settings, often through stochastic counterparts of the Hörmander condition. The lab also investigates the regularity and well-posedness of solutions in various function spaces, including Lipschitz and Sobolev-type spaces.
Professor Jiwoon Lee's research lab specializes in the development of advanced thin-film optoelectronic devices for next-generation imaging systems, with a focus on colloidal quantum dots and halide perovskites. The lab pioneers monolithic integration of solution-processed semiconductors with CMOS readout circuits to enable high-performance, low-cost short-wavelength infrared (SWIR) and near-infrared (NIR) image sensors. Key research directions include enhancing external quantum efficiency, improving linearity and sensitivity, and enabling high-pixel-density imaging through novel device architectures and advanced processing techniques. The lab also explores cutting-edge applications in biomedical imaging and single-photon detection using specialized silicon-based SPADs.
Professor Sang-Yoon Han's research lab specializes in otorhinolaryngology and neuroscience, focusing on the interplay between hearing disorders, tinnitus, and systemic factors such as body composition and socioeconomic status. The lab investigates inflammatory mechanisms in nasal polyps, the impact of hearing aids on mental and social health, and neurodegenerative changes associated with tinnitus in individuals with mild cognitive impairment. Using advanced imaging techniques like MRI and PET, along with population-based epidemiological data, the lab aims to uncover biological and psychosocial determinants of auditory and neurological health.
Professor Doo-San Baek's research lab specializes in the discovery and development of novel therapeutic antibodies and targeted biologics for cancer and inflammatory diseases. The lab focuses on engineering human antibody libraries, including Fab and VH domains, for high-affinity targeting of disease-relevant antigens such as SARS-CoV-2 spike protein, ADAM10, CEACAM5, and neutrophil elastase. Utilizing advanced techniques like phage display, yeast surface display, and recombinant protein expression, the lab develops therapeutic candidates with potent neutralizing or inhibitory activities, emphasizing translational applications in oncology and infectious diseases. The research integrates structural immunology, synthetic biology, and translational medicine to advance next-generation biologics.
Professor Hye Sol Jung's research lab focuses on advancing the understanding and treatment of gastrointestinal malignancies, particularly pancreatic and colorectal cancers. The lab investigates mechanisms of chemoresistance, especially in pancreatic ductal adenocarcinoma, with a focus on mitochondrial dynamics and metabolic regulators like SLC5A3. It also explores innovative imaging techniques, such as F-18 AIF-FAPI-74 PET/CT, for improved clinical staging, and evaluates the impact of nutritional status during neoadjuvant therapy on patient outcomes. The lab integrates clinical oncology with molecular mechanisms to identify high-risk subgroups and optimize treatment strategies.
Professor Tae Hee Kim's research spans interdisciplinary domains, focusing on socio-cultural studies of healthcare and welfare policies in 20th-century South Korea, particularly under the Park Chung-hee regime, as well as the development of smart health technologies for aging populations. His work examines the intersection of state-led modernization, medical welfare, and cultural production—such as theater and censorship—while also advancing practical innovations in assistive technologies, including smart walking sticks with biometric and communication functions. He further explores mental health interventions in vulnerable youth populations through school-based cognitive-behavioral programs.
Professor Yong Wook Lee's research lab specializes in international relations, with a focus on the role of identity, state agency, and historical discourse in shaping foreign economic policy. The lab explores how states—particularly Japan—challenge dominant global economic orders, such as neoliberalism, through alternative development models. Key research directions include the politics of economic identity, the impact of international norms on state behavior, and the historical construction of developmentalist ideologies in East Asia. The lab also investigates state-led responses to global financial crises, such as Japan’s proposal for the Asian Monetary Fund during the 1997 Asian financial crisis.
Professor Kang-san Lee's research lab specializes in interdisciplinary social science and biomedical research, focusing on the societal impacts of emerging technologies—particularly artificial intelligence in education—and the dynamics of social relationships during global crises like the COVID-19 pandemic. The lab also investigates molecular mechanisms in neurobiology, especially the regulation of tyrosine hydroxylase in dopamine synthesis, using biochemical and immunological approaches. Additionally, the lab explores social and visual determinants of art market valuation, emphasizing the role of social signals in shaping perceived value in cultural markets.
Professor Du-Young Jeong's research lab specializes in advanced energy conversion systems and materials surface science, with a strong focus on power electronics, semiconductor surface chemistry, and underwater acoustic modeling. The lab develops innovative power inverters for industrial heating applications, investigates molecular adsorption and surface reactions on semiconductors using advanced characterization techniques, and designs high-fidelity sound propagation algorithms for sonar simulation tailored to complex ocean environments. These interdisciplinary efforts bridge materials science, electronic systems, and ocean acoustics to address real-world engineering challenges in energy efficiency, structural integrity, and underwater sensing.
Professor Ki Jun Jeong's research lab specializes in advanced energy conversion systems, semiconductor surface science, and underwater acoustic modeling. The lab focuses on innovative power electronics for industrial applications—such as high-efficiency induction heating inverters—and investigates fundamental surface reactions of molecules on semiconductor materials like Ge(100) using advanced characterization techniques. Additionally, the lab develops real-time, environment-accurate sound propagation algorithms for sonar simulation, particularly tailored for Korean marine conditions. These diverse research directions reflect a strong emphasis on both applied engineering solutions and fundamental materials science.
Professor Ain Chung's research lab specializes in advanced energy conversion systems, surface science of semiconductors, and underwater acoustic modeling. The lab focuses on innovative power electronics for industrial heating applications, such as resonant inverters for induction heating, and develops precise thermal control systems for manufacturing processes. It also conducts fundamental studies on molecular adsorption and surface reactions on semiconductor surfaces using in situ microscopy and theoretical calculations. Additionally, the lab designs and validates high-fidelity sound propagation algorithms tailored for real-time sonar simulation in complex ocean environments, particularly those relevant to Korean marine conditions. These diverse research directions reflect a strong emphasis on both applied engineering solutions and fundamental surface and materials science.
Professor Juho Lee's research lab specializes in machine learning, statistical modeling, and computational neuroscience, with a focus on few-shot and few-data learning, neural processes, and brain-computer interfaces. The lab develops data-driven methods such as transductive learning, bootstrap-based neural processes, and domain adaptation to improve model generalization and reliability in low-data regimes. It also explores neurophysiological applications, including gamma entrainment stimulation and EEG-based motor imagery classification, aiming to bridge machine learning with neuroscience and clinical applications. The lab emphasizes scalable inference, interpretability, and real-world applicability in both artificial intelligence and biomedical systems.
Professor Sung-Woong Jeong's research lab specializes in advanced energy conversion systems and materials science, with a strong focus on power electronics, surface chemistry of semiconductors, and underwater acoustics. The lab develops innovative power converter topologies—such as resonant inverters for induction heating—while also investigating molecular-level surface reactions on semiconductor materials like Ge(100) using advanced characterization techniques. Additionally, the lab contributes to ocean acoustic modeling for sonar simulation, emphasizing real-time performance and environmental adaptability. These diverse research directions reflect a multidisciplinary approach combining electrical engineering, materials science, and ocean acoustics to solve practical industrial and environmental challenges.
Professor Nam Eun Kim's research lab focuses on translational biomedical research with a strong emphasis on clinical outcomes in critical care and transplant medicine. Key research directions include understanding and mitigating nurse turnover in healthcare settings, evaluating patient acceptance of online health information using technology acceptance models, and investigating molecular mechanisms underlying metabolic and renal complications in lung transplant patients. The lab also conducts molecular biology studies on host defense peptides and metabolic enzymes, particularly in the context of animal models and their implications for human disease.
Professor Yoo Junehee's research lab specializes in science education, particularly focusing on student engagement, collaborative learning, and the development of scientific reasoning and conceptual understanding in K-12 and undergraduate settings. The lab investigates how structured social interactions—such as online discussion forums, small-group inquiry, and model-based reasoning—support students in constructing and refining scientific models, especially in physics and life sciences. A central theme is the role of peer interaction, teacher facilitation, and social norms in fostering deep conceptual learning and career choices in STEM fields.
Professor Joon-Sung Park's research lab specializes in advanced surgical oncology, with a primary focus on minimally invasive and robotic surgery for hepatobiliary and pancreatic diseases. The lab investigates innovative surgical techniques—such as robotic hepatectomy and laparoscopic resection—to improve outcomes in liver and pancreatic cancer. It also emphasizes postoperative nutritional management, particularly early enteral feeding, and explores molecular markers like p16 and p53 to better understand pancreatic cancer pathogenesis and improve diagnostic accuracy. The lab integrates clinical research with translational studies to enhance resectability and survival rates in gastrointestinal malignancies.
Professor Hyunwoo Kim's research lab specializes in the development of innovative electrocatalytic methodologies for the selective and sustainable synthesis of pharmaceutically relevant molecules. The lab focuses on leveraging electricity and transition metal catalysis—particularly cobalt and copper systems—to enable challenging C–H and C–C bond transformations with high chemoselectivity and functional group tolerance. Key research directions include the electrochemical synthesis of nitrogen- and oxygen-containing heterocycles, difluoromethylation of unsaturated systems, and the construction of complex molecular architectures under mild conditions.