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 Kim, Ryan Jin Young's research lab specializes in digital dentistry and biomaterials, focusing on the accuracy and clinical performance of digital impression technologies, including intraoral scanners and 3D printing for dental restorations. The lab investigates adhesive bonding techniques for dental ceramics and composite resins, emphasizing long-term durability and interface integrity. Additionally, the lab evaluates the biocompatibility and cytotoxicity of endodontic materials, particularly novel root canal sealers, to ensure clinical safety and tissue compatibility. Their work bridges digital technology and biomaterial science to improve restorative and endodontic outcomes.
Professor Sunhui Kim's research lab specializes in the intersection of neuroscience, artificial intelligence, and sustainable energy systems. The lab focuses on leveraging electroencephalography (EEG) signals for real-time emotion recognition and mental health analysis, employing advanced deep learning and signal processing techniques such as Deep Feature Clustering and sliding-window segmentation. Additionally, the lab explores neuromorphic computing using memristor-based hardware for unsupervised learning, particularly spike timing-dependent plasticity, and contributes to renewable energy innovation through the design of durable floating photovoltaic systems. The overarching research direction integrates human-centered AI with biomedical and environmental applications.
Professor Sungsun Yim's research lab specializes in synthetic biology and metabolic engineering, focusing on the development of advanced microbial platforms for industrial biotechnology. The lab pioneers innovative tools for recording and analyzing dynamic biological processes, such as CRISPR-based biological tape recorders and high-throughput cell-free screening systems. Key research directions include engineering *Corynebacterium glutamicum* for the sustainable production of high-value chemicals—such as ectoine, amino acids, and recombinant proteins—using synthetic promoters, transcriptional balancing, and consolidated bioprocesses. The lab also explores the utilization of renewable biomass like hemicellulose to enable efficient, single-step bioproduction systems.
Professor Jeonghee Park's research lab specializes in biomedical engineering and health sciences, with a focus on developing advanced biomaterials for tissue engineering and regenerative medicine. The lab pioneers innovative microspherical cell carriers and nanocomposite systems to enhance stem cell delivery and osteogenic differentiation for bone repair. Additionally, the lab investigates health disparities, physical activity patterns, and cardiovascular health, particularly in aging and diverse populations, with an emphasis on health equity and lifestyle factors during public health challenges such as the COVID-19 pandemic. Their interdisciplinary work bridges materials science, clinical physiology, and public health to improve patient outcomes through personalized and equitable healthcare solutions.
Professor Kibog Park's research lab specializes in advanced semiconductor materials and heterostructures, with a focus on wide-bandgap semiconductors such as β-gallium oxide, 4H- and 3C-silicon carbide, and graphene-based heterojunctions. The lab investigates fundamental electronic and optical properties, including Schottky barrier formation, quantum well behavior in polytype inclusions, and Fermi-level pinning effects at 2D/semiconductor interfaces. Using advanced characterization techniques like ballistic electron and hole emission microscopy (BEEM/BHEM), finite-element modeling, and capacitive sensing, the lab explores both nanoscale device physics and innovative applications in power electronics and wearable biosensors. Their work bridges materials synthesis, interface science, and device engineering for next-generation electronic and optoelectronic systems.
Professor Kwangkeun Yi's research lab specializes in programming language analysis, formal methods, and software engineering, with a focus on developing automated tools and methodologies for program verification, optimization, and education. The lab explores interprocedural analysis, model checking, and efficient static analysis techniques—particularly through the design of domain-specific tools like system Z and Z1 for generating accurate and efficient program analyses. A significant emphasis is also placed on applying formal methods in teaching, using interactive and intuitive approaches such as finite games to teach complex concepts like model checking. Additionally, the lab investigates practical performance measurement techniques, such as on-the-fly working set size estimation, for use in hardware and compiler design.
Professor Kyu Sang Lee's research lab specializes in translational oncology and molecular pathology, with a primary focus on identifying and validating biomarkers for colorectal cancer (CRC) prognosis and treatment response. The lab investigates key oncogenic drivers such as c-MYC, β-catenin, and PD-L1, exploring their expression patterns, genetic alterations, and clinical implications. Additionally, the lab extends its research into neuroimmunology and pain modulation, examining the role of NMDA receptor antagonists in arthritis-related pain. The integration of molecular pathology with clinical outcomes and experimental therapeutics defines the lab’s interdisciplinary approach.
Professor Wayneong Jung's research lab specializes in energy-efficient electronics and integrated systems for Internet of Things (IoT) applications. The lab focuses on ultra-low power circuit design, energy harvesting, and near-threshold computing to enable long-lasting, miniature sensor systems. Key research directions include low-power analog and mixed-signal circuits, self-oscillating power management, and system-level integration for millimeter-scale IoT devices.
Professor Soontae Ahn's research lab specializes in media literacy, advertising persuasion, and the psychological impact of commercial messaging, particularly on children and adolescents. The lab investigates how children perceive and respond to advertising in digital environments such as advergames and native ads, with a focus on recognition, skepticism, and the effectiveness of advertising literacy education. It also explores the ethical tensions between commercial interests and journalistic integrity in media organizations. The lab’s work bridges communication theory, developmental psychology, and media ethics to address real-world challenges in media literacy and consumer protection.
Professor Soojin Yoon's research lab focuses on energy policy, climate change mitigation, and sustainable development, with a strong emphasis on the socio-political and institutional dimensions of energy transitions in South Korea. The lab investigates energy efficiency in industrial and residential sectors, the role of policy networks in shaping climate and energy strategies, and public acceptance of renewable energy technologies such as wind and nuclear power. Research also explores the interplay between economic development, environmental protection, and energy security in the context of long-term climate goals. The lab combines empirical analysis, policy network modeling, and survey-based studies to inform evidence-based energy and environmental policies.
Professor Sae-Yong Jeong's research lab focuses on biomedical materials and advanced drug delivery systems, with a strong emphasis on developing biocompatible and biodegradable materials for therapeutic applications. The lab investigates the biological impacts of microplastics at the cellular level, explores cardiovascular toxicities of emerging therapeutics like remdesivir, and designs innovative biomaterials—such as chitosan- and silk fibroin-based systems—for tissue engineering and controlled drug release. A central theme is the creation of functional, implantable materials that mimic natural physiological structures, particularly in cardiovascular applications including heart valve prostheses and circulatory support systems.
Professor Jae Young Yeon's research lab specializes in cerebrovascular diseases, with a primary focus on moyamoya disease (MMD) and intracranial arterial stenosis (ICAS), particularly in East Asian populations. The lab investigates genetic susceptibility, especially the role of RNF213 variants, and aims to clarify the clinical and radiological characteristics of asymptomatic and unilateral MMD presentations. Using advanced neuroimaging techniques such as MR angiography and perfusion-weighted imaging, the lab explores hemodynamic mechanisms, infarct patterns, and collateral circulation in stroke patients with MMD. The research also contributes to the development of clinical practice guidelines for optimal management of subarachnoid hemorrhage and cerebrovascular disorders.
Professor Jin A Lee's research lab focuses on neonatal and pediatric critical care, with a primary emphasis on preterm infant health outcomes, particularly the management and long-term implications of patent ductus arteriosus (PDA). The lab investigates therapeutic strategies, risk factors, and clinical decision-making in very-low-birth-weight infants, integrating clinical data from large-scale neonatal networks. Additional research extends to ophthalmic emergencies and alcohol withdrawal syndrome, reflecting a broader interest in acute critical care interventions across different patient populations. The lab emphasizes evidence-based, symptom-driven approaches to improve patient outcomes in vulnerable neonatal and adult populations.
Professor Sinsuk Park's research lab specializes in intelligent robotic systems and advanced medical technologies, with a strong focus on enhancing human-robot interaction in healthcare and emergency response. The lab develops innovative solutions in surgical robotics, gait rehabilitation, and disaster response robotics, emphasizing miniaturized actuators, real-time control, and augmented reality for improved precision and safety. Key research directions include the integration of biomedical sensing, artificial intelligence, and compliant robotic designs to address clinical and operational challenges.
Professor Jong-Ho Kim's research spans interdisciplinary domains, focusing on health and well-being through physical activity and mental health, particularly among university students. His work also extends into urban housing policy and resident satisfaction, especially in public housing contexts. Additionally, he explores advanced materials, such as capacitive force sensors based on dielectric elastomers, for applications in wearable technology and robotics. His research integrates social science, public policy, and materials science, reflecting a broad yet focused approach to societal and technological challenges.
Professor Jeong-hyun Tae's research lab focuses on gastrointestinal diseases, particularly colorectal cancer and Clostridium difficile infection (CDI), with an emphasis on molecular mechanisms underlying carcinogenesis and treatment resistance. The lab investigates epigenetic alterations such as promoter methylation of genes like ADHFE1 and the role of metabolic regulators like adiponectin and its receptors in the normal-adenoma-carcinoma sequence. Additionally, the lab contributes to clinical guidelines, such as those for percutaneous endoscopic gastrostomy (PEG), reflecting its translational approach to digestive health in aging populations.
Professor Soo Yon Lee's research lab specializes in advanced materials science with a focus on nanostructured materials for energy applications and smart functional devices. The lab investigates the design, synthesis, and characterization of inorganic nanomaterials to enhance enzyme stability and activity for biocatalysis, while also developing high-performance cathode materials for lithium-ion batteries, particularly addressing surface degradation and crack formation mechanisms in Ni-rich layered oxides. Additionally, the lab pioneers novel soft actuators using shape memory alloys for adaptive morphing systems, demonstrating applications in flexible robotics and aerospace engineering. The research integrates in situ analytical techniques and atomic-scale characterization to understand and control material behavior under operational conditions.
Professor Eun Youn Roh's research lab focuses on regenerative medicine and translational biomedical research, with a strong emphasis on intervertebral disc degeneration, cord blood banking, and metabolic and cardiovascular disease biomarkers. The lab investigates gene therapy and biological interventions for discogenic lower back pain, explores human leukocyte antigen (HLA) diversity in Korean cord blood for transplantation applications, and examines the clinical associations of biomarkers such as CEA and HbA1c in metabolic disorders. The lab also contributes to public health by studying dyslipidemia trends and donor awareness in high-potential populations, bridging basic science with clinical and population health applications.
Professor Cheol-Woo Jeong's research lab specializes in the development of advanced data-driven technologies for perioperative and critical care medicine. The lab focuses on leveraging machine learning and big data analytics to improve patient outcomes through real-time prediction of clinical complications such as acute kidney injury, in-hospital cardiac arrest, and hemorrhage. By creating open-source biosignal databases like VitalDB and developing innovative medical devices such as mussel-inspired hemostatic polysaccharides, the lab bridges the gap between clinical monitoring, artificial intelligence, and translational medicine. Their interdisciplinary work integrates biomedical engineering, clinical anesthesiology, and data science to enable precision perioperative care.
Professor Changhwan Lee's research lab specializes in plasmonics and hot electron-based energy conversion, focusing on the design and optimization of nanomaterials for next-generation photovoltaic and photocatalytic devices. The lab investigates the generation, manipulation, and efficient extraction of hot electrons in plasmonic nanostructures such as Au/TiO₂ and Au-TiO₂-Ti heterostructures, with an emphasis on enhancing photocurrent through engineered Schottky barriers and surface plasmon resonance. Key research directions include the role of light polarization, quantum dot integration, and defect engineering in controlling electron transfer dynamics and improving energy conversion efficiency.