首尔大学、KAIST、延世大学等韩国QS前10名大学的研究室信息。
Professor Wan Ki Bae's research lab specializes in the design, synthesis, and application of colloidal quantum dots and nanocrystals for optoelectronic devices. The lab focuses on developing high-performance, solution-processable nanomaterials with tunable optical properties, particularly for light-emitting diodes (LEDs), photodetectors, and solar cells. Key research directions include engineering quantum dot heterostructures with graded compositions and alloyed interfaces to suppress non-radiative recombination and enhance stability and efficiency. The lab also investigates surface passivation strategies to improve the chemical and photostability of quantum dots, especially for infrared-emitting devices.
Professor Ju-Young Kim's research lab specializes in the design and fabrication of advanced functional materials for next-generation wearable and flexible electronics, with a focus on metallic glasses, nanolaminates, and nanofibrous structures. The lab explores mechanical robustness, electrical conductivity, and chemical stability under large deformations, aiming to develop stretchable, transparent, and corrosion-resistant electrodes and interconnects. Key research directions include the synthesis of high-strength metallic glass-based nanocomposites, magnetic nanoparticle-decorated nanofibers for air filtration, and silver-impregnated biomaterials with controlled antimicrobial release. The lab also investigates size-dependent mechanical behavior in nanoscale materials and integrates novel architectures such as origami-inspired substrates for flexible electronics.
Professor Dong Gyu Jo's research lab specializes in regenerative medicine and nanomedicine, focusing on stem cell-derived extracellular vesicles (EVs) as cell-free therapeutics for degenerative diseases. The lab investigates the therapeutic potential of extracellular vesicles from adipose-derived stem cells in conditions such as osteoarthritis, osteoporosis, and neurodegenerative disorders like Alzheimer’s disease. Key research directions include EV isolation using tangential flow filtration, mechanistic studies of EV-mediated tissue repair, and the development of targeted drug delivery systems for rheumatoid arthritis. The lab also explores post-translational modifications, such as O-GlcNAcylation and lipid peroxidation products like HNE, in neurodegenerative pathology.
Professor In Lee's research lab specializes in intelligent systems and advanced sensing technologies, with a focus on cybersecurity for the Internet of Things (IoT), structural health monitoring using optical fiber sensors, and adaptive control systems for flexible and dynamic structures. The lab develops innovative frameworks for cyber risk management, integrates advanced sensing techniques like fiber Bragg grating (FBG) sensors in composite materials, and designs adaptive control algorithms for vibration suppression in engineering systems. Research also extends to e-recruiting systems and supply chain collaboration, emphasizing technology integration and information sharing in complex organizational systems.
Professor Jongwon Kim's research lab specializes in translational biomedical research with a focus on oncology, molecular diagnostics, and biopharmaceutical development. The lab investigates prognostic biomarkers in gastric and thyroid cancers, explores the role of genetic mutations such as BRAF V600E in cancer progression, and develops advanced analytical methods for protein characterization in therapeutic antibody production. Additionally, the lab examines the biological activities of natural compounds like saponins in cancer and inflammatory diseases, and studies interfacial phenomena in colloidal systems relevant to pharmaceutical formulations.
Professor Jung's research lab specializes in computational thermodynamics and materials modeling, focusing on the development of advanced thermodynamic databases for complex oxide and metal systems. The lab develops and applies sophisticated models—such as the Modified Quasichemical Model—to predict phase equilibria in molten slags, steels, and solid oxides under industrial processing conditions. Research directions include thermodynamic optimization for steelmaking, inclusion formation, and refractory interactions, with applications in secondary steelmaking and high-temperature materials processing. The lab emphasizes user-friendly software integration to enable accurate, multi-component equilibrium calculations across wide temperature and oxygen potential ranges.
Professor Jung Eun Lee's research lab focuses on the intersection of human microbiota, metabolic and genetic factors, and their roles in cancer development and progression. The lab investigates how host factors—such as genetics, obesity, vitamin D status, and uric acid levels—influence microbial communities and disease outcomes, particularly in cancers like cervical, renal cell, and colorectal cancers. Using large-scale epidemiological studies, molecular analyses, and advanced imaging techniques, the lab aims to uncover biological mechanisms linking host physiology, microbiota, and cancer risk. The research also explores the clinical implications of these associations for early detection and personalized prevention strategies.
Professor Kyung Woo Park's research lab specializes in clinical and translational research in cardiovascular and liver diseases, with a strong focus on interventional cardiology, hepatocellular carcinoma (HCC) outcomes in hepatitis B-endemic regions, and pharmacogenomics of antiplatelet therapy. The lab investigates clinical predictors of treatment response, such as high on-treatment platelet reactivity in Asian patients, and explores molecular mechanisms underlying vascular remodeling and neointimal hyperplasia. Additionally, the lab examines biomarkers like the serum creatinine/cystatin C ratio to predict clinical outcomes in older patients undergoing percutaneous coronary intervention.
Professor Jin-Young Choi's research lab specializes in medical imaging and radiology, with a focus on advanced cross-sectional imaging techniques for the diagnosis and prognosis of hepatocellular carcinoma (HCC) and pancreatic neoplasms. The lab investigates the diagnostic performance of CT and MRI with both extracellular and hepatobiliary contrast agents, emphasizing imaging features, radiomics, and tumor characterization. Additionally, the lab explores immune cell subsets, particularly Tfh-like cells, in autoimmune diseases such as systemic lupus erythematosus, linking immunological markers to disease activity.
Professor Young Tae Kim's research lab focuses on gynecological oncology, with a primary emphasis on understanding the molecular mechanisms underlying cervical and ovarian carcinomas. The lab investigates genetic and epigenetic alterations, particularly in cell cycle regulation and drug resistance, using advanced genomic technologies such as aCGH. It also explores surgical innovations, including robot-assisted and minimally invasive techniques for endometrial cancer staging, and evaluates nutritional status as a prognostic factor in ovarian cancer. The integration of molecular pathology, surgical oncology, and clinical outcomes research defines the lab’s translational approach.
Professor Ki Bong Lee's research lab specializes in the development of advanced sorbent materials for high-temperature carbon dioxide (CO₂) capture, with a focus on metal oxides, hydrotalcites, and nitrogen-doped carbon materials. The lab investigates the fundamental surface chemistry and adsorption mechanisms of these materials to enhance CO₂ uptake capacity and selectivity under industrially relevant conditions, particularly in the context of post-combustion and pre-combustion CO₂ capture. Key research directions include the design of chemically modified sorbents through doping and impregnation (e.g., K₂CO₃ promotion) and the use of computational methods to understand the role of specific functional groups in CO₂ binding.
Professor Hyun-Jae Kang's research lab specializes in cardiovascular regenerative medicine, with a focus on stem cell therapy for myocardial infarction. The lab investigates the therapeutic potential of various stem cells—particularly mesenchymal and peripheral blood stem cells—administered via intracoronary infusion, especially in the context of drug-eluting stent implantation. Key research directions include optimizing stem cell mobilization and differentiation, evaluating long-term clinical outcomes, and assessing the safety and efficacy of adjunctive pharmacological agents such as celecoxib and antiplatelets in interventional cardiology.
Professor Tae-Hoon Jeon's research lab focuses on immunology and tumor microenvironment, with a central emphasis on innate-like T cells such as natural killer T (NKT) cells and regulatory T cells. The lab investigates the development, selection, and functional regulation of these immune cells, particularly their roles in immune tolerance, inflammation, and cancer immunosuppression. Key research directions include the signaling mechanisms of inhibitory receptors like LAG-3, the impact of radiation-induced senescence on glioblastoma recurrence, and the role of CD1d-restricted NKT cells in modulating immune responses. The lab also explores how metabolic and inflammatory pathways, such as GAS6-AXL signaling and NLRP3 inflammasome activation, influence disease progression in liver inflammation and cancer.
Professor Joo Hyun Nam's research lab focuses on gynecologic oncology, particularly fertility-sparing surgical interventions for early-stage cervical and ovarian cancers, with an emphasis on long-term oncologic and reproductive outcomes. The lab also investigates molecular mechanisms underlying skin photoaging, especially the role of calcium channels (e.g., TRPV1, ORAI1) and natural compounds like *Cyperus rotundus* extract in modulating these pathways. Additionally, the lab explores cellular signaling mechanisms involving phosphoinositide metabolism and mechanosensitive ion channel regulation in immune cells. These interdisciplinary efforts bridge clinical surgery, molecular pharmacology, and cell signaling to improve patient outcomes and identify novel therapeutic targets.
Professor Youngguk Ko's research lab specializes in interventional vascular medicine, with a primary focus on peripheral arterial disease, particularly femoropopliteal and vertebral artery interventions. The lab investigates endovascular therapies such as drug-coated balloons, stenting, and angioplasty, with an emphasis on optimizing outcomes using advanced imaging guidance like intravascular ultrasound. Research also extends to identifying genetic and clinical risk factors for acute myocardial infarction and improving post-procedural medical management in peripheral artery disease patients.
Professor Joo-Hun Ha's research lab focuses on cellular energy metabolism and redox signaling, with a central emphasis on the role of AMP-activated protein kinase (AMPK) as a master regulator of metabolic homeostasis. The lab investigates AMPK's involvement in metabolic diseases such as type 2 diabetes, cancer, and aging, exploring both direct and indirect activators of AMPK and their therapeutic potential. Key research directions include the regulation of acetyl-CoA carboxylase (ACC) by phosphorylation, AMPK's cross-talk with hypoxia-inducible factor-1 (HIF-1), and the metabolic effects of natural compounds like trans-resveratrol. The lab also examines how antioxidants modulate AMPK activity and redox homeostasis, linking cellular metabolism to longevity and disease prevention.
Professor Kim, Miyoung's research lab specializes in advanced materials characterization and design, with a focus on oxide semiconductors, cathode materials for lithium-ion batteries, and functional thin films. The lab combines cutting-edge electron microscopy techniques—such as aberration-corrected STEM and EELS—with first-principles calculations to uncover atomic-scale mechanisms governing electronic, magnetic, and structural properties. Key research directions include understanding nonstoichiometry in grain boundaries, engineering electrode structures for faster liquid crystal displays, and revealing the true polycrystalline nature of primary particles in high-capacity battery materials. The lab also investigates heteroepitaxial growth of III-nitrides on 2D materials and develops multifunctional composites for electromagnetic and thermal management.
Professor Yoon Kyung Jeon's research lab focuses on the tumor microenvironment, particularly the interplay between immune checkpoint molecules like PD-L1 and PD-1, tumor-infiltrating immune cells, and cancer metabolism in various malignancies, including non-small cell lung cancer and diffuse large B-cell lymphoma. The lab investigates molecular mechanisms underlying immune evasion, such as the regulation of PD-L1 by oncogenic drivers like EML4-ALK and the role of immune cell subsets like tumor-associated macrophages and Tregs in disease progression and prognosis. Additionally, the lab explores oncogenic signaling pathways, including Pellino-1-mediated ubiquitination, in tumorigenesis and metabolic reprogramming in cancer cells. Their work integrates clinical pathology with molecular oncology to identify novel therapeutic targets and biomarkers.
Professor Min-kyung Baek's research lab specializes in developing advanced deep learning methods for protein structure prediction and de novo protein design, with a strong focus on integrating structural biology with artificial intelligence. The lab pioneers end-to-end neural network architectures—such as RoseTTAFold and its variants—that predict 3D protein structures, protein-nucleic acid complexes, and oligomeric assemblies with high accuracy and speed. Their work extends to novel generative models for protein design and the adaptation of attention mechanisms to capture complex sequence-structure relationships. The lab also develops accessible computational tools, like GalaxyHomomer and RoseTTAFoldNA, to support structural biology research across diverse biological systems.
Professor Jeong Myung-jin's research lab specializes in medical imaging and diagnostic radiology, with a focus on the cross-sectional CT evaluation of interstitial lung diseases, pulmonary infections, and pancreatic tumors. The lab investigates the radiological features of complex pulmonary conditions such as Sjögren’s syndrome with amyloidosis, nontuberculous mycobacterial infections, and diffuse infiltrative lung diseases, emphasizing quantitative imaging biomarkers for objective disease assessment. The team also explores advanced imaging techniques, including dynamic spiral CT and multiplanar reconstructions, to improve the detection and characterization of small, subtle lesions such as islet cell tumors and sclerosing hemangiomas.