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 Seung Hoon Kim's research lab specializes in diagnostic radiology and medical imaging, with a focus on advanced MRI techniques for the accurate detection and characterization of abdominal and intracranial lesions. The lab investigates the application of high-field (3-T) MRI and functional imaging sequences—such as T2*-weighted and proton density FSE—for improving the diagnosis of hepatocellular carcinoma and brain tumors. Additionally, the lab explores the radiological features of rare vascular anomalies and the impact of emerging behaviors like e-cigarette use on adolescent mental health, integrating clinical imaging with broader public health concerns.
Professor Hyunwoo Lee's research lab focuses on molecular microbiology, neuroscience, and neurodegenerative diseases, with a central emphasis on signal transduction pathways in bacterial antibiotic resistance, synaptic organization and spine morphogenesis, and the role of phosphoinositide signaling in neuronal function and neurodegeneration. The lab investigates key regulatory systems such as the PmrA/PmrB two-component system in *Salmonella*, postsynaptic scaffolding proteins like PSD-95 and their interactors (e.g., Preso), and lipid phosphatases such as MTMR2 in neuronal health and disease. The lab integrates molecular biology, cell biology, and biochemical approaches to understand disease mechanisms and identify potential therapeutic targets in infections and neurological disorders.
Professor Sungsoon Fang's research lab focuses on nuclear receptor signaling and its role in metabolic regulation, particularly in liver metabolism, lipid homeostasis, and energy balance. The lab investigates transcriptional mechanisms involving nuclear receptors such as RORα, FXR, and PPARγ, as well as coregulators like SHP, SMRT, and p300, in the context of metabolic diseases including nonalcoholic fatty liver disease (NAFLD), obesity, and insulin resistance. Key research directions include chromatin remodeling, post-translational modifications (e.g., acetylation, methylation), and metabolic reprogramming in cancer and liver disease. The lab employs mouse models, transcriptomics, and molecular biology to dissect gene regulatory networks underlying metabolic homeostasis and disease progression.
Professor Jeong Ho Park's research lab focuses on translational biomedical research with a strong emphasis on infectious disease immunology and neuroimmunological disorders. The lab investigates innovative vaccination strategies, particularly in ovo prime-boost immunization against avian pathogens like infectious bursal disease virus, while exploring host immune modulators such as chicken cytokines as adjuvants. In parallel, the lab explores rare neuroimmunological conditions such as neuro-Behçet’s disease, emphasizing clinical phenotypes, diagnostic challenges, and treatment responses. The integration of clinical case studies with immunological and virological research highlights the lab’s commitment to improving health outcomes in both veterinary and human medicine.
Professor Jongwook Park's research lab specializes in the design, synthesis, and application of novel organic semiconductors for optoelectronic devices, with a primary focus on high-performance blue organic light-emitting diodes (OLEDs). The lab develops advanced emitter materials featuring tailored molecular architectures—such as anthracene, pyrene, and indenopyrazine cores—engineered for enhanced thermal stability, high photoluminescence quantum yield, and narrow emission bandwidths. Key research directions include molecular engineering of dendritic and dual-core architectures to improve device efficiency, color purity, and operational stability in non-doped and doped OLED configurations.
Professor Sang Woong Youn's research lab specializes in dermatological science, focusing on the objective assessment of skin physiology and its clinical implications. The lab investigates skin aging, sebum secretion dynamics, and the pathophysiology of common skin conditions such as acne and chronic urticaria. By integrating objective measurements—such as skin elasticity, sebum levels, and wrinkle morphology—the lab aims to refine skin type classification and improve understanding of skin health across diverse populations. Their work bridges clinical dermatology with epidemiological research, emphasizing evidence-based approaches to skin disease and aging.
Professor Jae-Sung Kwon's research lab specializes in biomaterials and advanced manufacturing for biomedical and dental applications. The lab focuses on developing bioresorbable and functionalized polymers, such as polylactide (PLA) and poly(methyl methacrylate) (PMMA), using 3D and 4D printing technologies to enhance tissue regeneration and clinical performance. Key research directions include improving the mechanical, biological, and antimicrobial properties of dental materials through novel fillers like hydrated calcium silicate and natural additives such as phytoncide, with applications in regenerative dentistry and implantology. The lab also investigates the cytotoxicity and biocompatibility of dental cements, emphasizing rigorous evaluation across different cell types.
Professor Seung Seok Han's research lab specializes in nephrology and aging-related health outcomes, with a focus on the pathophysiology of kidney disease, metabolic syndrome, and long-term survival in elderly and critically ill populations. The lab investigates biomarkers such as serum bilirubin and hemoglobin in relation to diabetes, chronic kidney disease, and acute kidney injury, while also exploring the impact of body composition, including lean mass and BMI, on mortality. A key research direction involves understanding the natural history and outcomes of kidney transplant recipients, particularly in the context of recurrent IgA nephropathy and donor type. The lab integrates clinical epidemiology with large-scale population-based data to refine risk prediction models and improve patient outcomes.
Professor Da Hye Won's research lab specializes in electrochemical and photoelectrochemical conversion of carbon dioxide into sustainable fuels and chemicals, with a strong focus on catalyst design, surface engineering, and reaction mechanism understanding. The lab investigates heterogeneous electrocatalysts—particularly Zn-, Sn-, and single-atom based materials—for selective CO2 reduction to CO and formate, emphasizing morphology-dependent activity, facet-specific reactivity, and subsurface oxygen effects. They also explore low-concentration CO2 conversion and photocathode systems for efficient solar fuel production, integrating experimental electrochemistry with DFT calculations to guide rational catalyst development. Their work aims to enhance selectivity, activity, and stability for scalable, industrially viable CO2 utilization technologies.
Professor Shinhyun Choi's research lab specializes in advanced resistive switching devices, particularly memristors and RRAM (resistive random access memory), with a focus on their applications in neuromorphic computing and artificial intelligence. The lab investigates fundamental resistance switching mechanisms, including oxygen vacancy dynamics and filament formation, using advanced characterization techniques such as noise analysis and in-situ microscopy. Key research directions include improving device reliability and uniformity through novel material engineering—such as amorphous TiO₂-based structures and halide doping—while enabling scalable, high-performance crossbar architectures for non-von Neumann computing systems. The lab also explores online, unsupervised learning implementations using memristor arrays, demonstrating practical applications in principal component analysis and feature extraction.
Professor Jun-Bean Park's research lab specializes in cardiovascular imaging and biomarker discovery, focusing on non-invasive diagnostic methods and prognostic indicators for coronary artery disease and pulmonary hypertension. The lab integrates advanced medical imaging techniques—such as CT angiography, cardiac MRI, and PET—with hemodynamic and biochemical markers to improve risk stratification and early detection of atherosclerotic and vascular diseases. Key research directions include assessing arterial stiffness, plaque vulnerability, and inflammatory processes in the vasculature using innovative imaging agents and computational hemodynamics. The lab also investigates metabolic and systemic biomarkers, such as alkaline phosphatase and lipid profiles, to predict adverse cardiovascular outcomes in interventional and structural heart disease patients.
Professor Yoon-E Choi's research lab focuses on microalgal biotechnology with an emphasis on optimizing the production of high-value compounds such as astaxanthin in *Haematococcus pluvialis* and *Haematococcus lacustris*. The lab investigates physiological and environmental factors influencing astaxanthin biosynthesis, including light stress and nutrient manipulation, while also exploring microbial interactions in the algal phycosphere. A key research direction involves identifying and characterizing symbiotic bacteria—such as *Achromobacter* sp. CBA4603—that enhance algal growth and productivity. The lab integrates systems biology and microbial ecology to advance sustainable bioproduction platforms.
Professor Woong Hee Lee's research lab specializes in the design and development of advanced electrocatalysts for sustainable energy conversion and environmental remediation. The lab focuses on understanding and manipulating the electronic and structural states of transition metal catalysts—particularly cobalt and iridium-based materials—under operational conditions to enhance their activity and stability in oxygen evolution and hydrogen reactions. A key emphasis is placed on in-situ characterization techniques, such as X-ray absorption and Raman spectroscopy, to probe dynamic phase and spin-state changes during electrocatalysis. The lab also pioneers innovative electrode architectures, including single-atom catalysts and stackable membrane electrode assemblies, for efficient CO2 reduction to valuable chemicals like ethylene.
Professor Choong-kun Lee's research lab specializes in translational oncology, focusing on the molecular mechanisms underlying cancer metastasis and the development of targeted therapies for gastrointestinal cancers. The lab investigates key signaling pathways—such as YAP/FAO in lymph node metastasis and FGFR/RTK signaling in colorectal cancer—alongside immunotherapeutic strategies in hepatocellular and gastric cancers. A central theme is identifying predictive biomarkers and optimizing combination therapies to improve patient outcomes in HER2-positive and advanced gastric cancers.
Professor Byoung-Hoon Lee's research lab specializes in advanced materials and catalysis, focusing on the design and characterization of single-atom and nanostructured catalysts for sustainable chemical transformations. The lab investigates the electronic and structural properties of metal-oxide interfaces, particularly in titania and ceria supports, to optimize catalytic activity in multistep organic reactions and redox processes. Their work combines advanced spectroscopic techniques, electron microscopy, and materials synthesis to understand and control active sites at the atomic level. The lab also explores the application of these materials in energy and environmental technologies, including selective oxidation and C–C coupling reactions.
Professor Jae-Hyeok Shim's research lab specializes in multiscale materials modeling and generative 3D shape synthesis, focusing on the atomic-scale mechanisms of dislocation-precipitate interactions in metallic systems and the development of advanced deep generative models for 3D shape creation. The lab investigates martensitic transformations and dislocation dynamics in complex alloys, particularly in bcc Fe-Cu systems, using molecular dynamics simulations to uncover deformation mechanisms. Concurrently, the lab pioneers diffusion-based generative models that leverage signed distance fields (SDF) for high-fidelity 3D shape generation, addressing memory and resolution challenges through a two-stage diffusion framework. These interdisciplinary efforts bridge materials science and machine learning to enable next-generation design of functional materials and digital twins of complex geometries.
Professor Min-Suk Heo's research lab specializes in the application of artificial intelligence and deep learning in oral and maxillofacial (OMF) radiology, with a focus on improving diagnostic accuracy and forensic identification. The lab investigates age-related changes in mandibular bone structure, particularly cortical and trabecular bone alterations in men and women, to support osteoporosis risk assessment. A key research direction involves developing automated systems for detecting natural teeth and dental restoration patterns in panoramic radiographs to enhance disaster victim identification. The lab also explores radiographic biomarkers using fractal analysis and imaging metrics for clinical and forensic applications.
Professor Hyunsoo Park's research lab specializes in the intersection of materials science, artificial intelligence, and computational chemistry, focusing on accelerating the discovery and design of advanced porous materials—particularly metal-organic frameworks (MOFs), covalent organic frameworks (COFs), and other crystalline porous materials. The lab develops and applies cutting-edge machine learning and generative modeling techniques, including reinforcement learning, transformers, and diffusion models, to predict materials with targeted properties for energy and environmental applications such as carbon capture and sustainable nanofabrication. A central theme is overcoming data scarcity and synthesis bottlenecks through AI-driven data mining, multimodal pretraining, and intelligent material design.
Professor Jong-Soo Rhyee's research lab specializes in advanced thermoelectric materials and 2D semiconductors, focusing on enhancing energy conversion efficiency through innovative nanostructuring, defect engineering, and electronic band structure optimization. The lab explores materials such as MoSe₂, PbTe, Bi₂Te₃-based compounds, and In₄Se₃-based systems, aiming to achieve high thermoelectric performance (ZT) by manipulating phonon scattering, charge localization, and lattice dynamics. A key focus is on developing large-area, highly crystalline 2D materials for high-mobility, flexible electronics, while simultaneously advancing n-type and p-type thermoelectrics for sustainable energy harvesting. The lab combines advanced synthesis techniques with detailed structural and electronic characterization to enable next-generation applications in wearable electronics and clean energy technologies.
Professor Jae Chun Choe's research lab specializes in evolutionary ecology and behavioral biology, with a focus on the evolution of mating systems, parental care, and sociality in insects and arachnids. The lab investigates how ecological factors, sexual selection, and predation risk shape behavioral diversity, particularly in social insects, hemipterans, and crustaceans. Key research directions include the evolution of parental investment, the role of sexual signals in mate choice under predation pressure, and the ecological drivers of social behavior across invertebrate taxa.