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 Muhammad Naqi's research lab specializes in advanced 2D materials and oxide semiconductors for next-generation electronic and optoelectronic applications. The lab focuses on low-temperature fabrication of high-performance thin-film transistors, memristors, and photodetectors using materials such as MoS₂, tellurium nanowires, and amorphous indium gallium zinc oxide (a-IGZO). Key research directions include neuromorphic computing, flexible and wearable electronics, high-speed sensing, and scalable nanoscale device integration. The lab emphasizes materials synthesis, device physics, and real-world applications in biomedical sensing, energy-efficient electronics, and artificial intelligence hardware.
Professor Heekyeong Park's research lab specializes in the development of two-dimensional transition metal dichalcogenides (TMDs), particularly molybdenum disulfide (MoS₂), for advanced optoelectronic and biosensing applications. The lab focuses on large-scale synthesis of high-quality MoS₂ films, innovative device architectures such as nanoring and nanoporous structures, and the integration of these materials into ultrasensitive, label-free field-effect transistors for biomedical detection. Key research directions include enhancing optical and electrical performance for image sensors and cancer biomarker detection, with an emphasis on practical, real-world applications in healthcare and nanoelectronics.
Professor Seok Hyun Cho's research lab focuses on respiratory and inflammatory diseases, with a strong emphasis on chronic rhinosinusitis (CRS), asthma, and obstructive sleep apnea. The lab investigates the immunological and microbiological mechanisms underlying these conditions, particularly the role of type 1 and type 2 T cell responses, IgE sensitization, and microbial dysbiosis. It also explores innovative diagnostic technologies, such as impulse-radio ultra-wideband radar, for non-invasive detection of sleep-disordered breathing. The lab integrates clinical immunology, microbiome analysis, and biomedical engineering to advance understanding and management of chronic airway diseases.
Professor Byoungchol Chang's research lab specializes in artificial intelligence applications within healthcare and biomedical engineering, with a strong focus on medical image analysis for disease detection and classification. The lab develops advanced deep learning and explainable AI techniques for early diagnosis of conditions such as COVID-19, gastrointestinal disorders, and brain tumors using medical imaging. Additionally, the lab explores AI-driven predictive modeling for battery health and remaining useful life, as well as automated fruit disease detection using computer vision and optimization algorithms. The integration of AI with domain-specific knowledge, such as ontology-based educational systems, further expands the lab’s interdisciplinary research scope.
Professor Jihoon Lee's research lab specializes in the design and synthesis of advanced functional materials for energy and biomedical applications. Key research directions include the development of metal-organic frameworks and coordination polymers for aqueous rechargeable batteries, the engineering of luminescent materials for white-light emission in optoelectronic devices, and the application of organic synthesis strategies to access complex natural products. The lab also explores microbial synthesis of inorganic nanomaterials and their environmental implications, as well as molecular mechanisms underlying metabolic regulation in model organisms.
Professor Suh-Hee Choi's research lab specializes in tourism and destination management, with a strong focus on the psychological and behavioral dimensions of tourism, including tourist loyalty, satisfaction, and attribution processes. The lab explores how image, relationship quality, and cultural perceptions influence international public attitudes toward countries as both tourism destinations and investment sites. It also investigates the role of mobility, identity, and lifestyle integration in temporary residents' adaptation, particularly in dynamic urban contexts like Macau. The lab employs mixed-methods approaches, combining survey-based structural modeling with in-depth qualitative interviews to examine complex human behaviors in tourism and mobility contexts.
Professor Taeyoung Choi's research lab specializes in the atomic-scale manipulation and characterization of quantum systems, focusing on single-atom and single-molecule magnets for quantum technologies. The lab combines advanced scanning tunneling microscopy (STM) with electron spin resonance (ESR) to achieve precise control and readout of individual electron spins, enabling high-fidelity quantum operations. Key research directions include engineering magnetic anisotropy in surface-supported atoms and molecules, realizing scalable quantum gates in trapped ion systems, and probing spin-vibronic coupling in molecular magnets. The work bridges fundamental quantum physics with applications in quantum computing, spintronics, and ultra-sensitive quantum sensing.
Professor Oksoo Kim's research lab focuses on aging, mental health, and health disparities among older adults, particularly older Korean immigrants and vulnerable populations. The lab investigates psychosocial factors such as loneliness, social support, ethnic attachment, and body image in relation to mental health outcomes like depression and self-esteem. Key research directions include the impact of lifestyle and occupational factors on long-term health, as well as the therapeutic potential of emerging technologies like virtual reality in cognitive health. The lab emphasizes culturally adapted interventions and preventive strategies for mental and physical well-being across the lifespan.
Professor Hee Taek Kim's research lab specializes in metabolic engineering and synthetic biology for the sustainable production of high-value chemicals and polymers from renewable resources. The lab focuses on developing microbial cell factories—particularly engineered *Corynebacterium glutamicum* and *Escherichia coli*—to convert biomass-derived substrates into platform chemicals like cadaverine, 5-hydroxyvaleric acid, and aromatic compounds. A central theme is the chemo-biological upcycling of plastic waste, such as poly(ethylene terephthalate) (PET), through enzymatic depolymerization and downstream biotransformation into valuable chemicals. The lab also pioneers integrated bioprocesses combining fermentation, purification, and polymerization for the production of bio-based polyamides, supporting a circular bioeconomy.
Professor Jee-Hyeong Park's research lab specializes in international trade economics, with a focus on the enforcement of trade agreements, the role of international institutions like the WTO, and the economic implications of trade policy. The lab investigates strategic interactions among countries, particularly through the lens of repeated games and private information, and examines how institutions such as the WTO influence compliance and dispute resolution. It also explores labor market dynamics among professional groups with overlapping roles, as well as the determinants of safeguard measures and non-litigated settlements in the WTO system. The lab combines theoretical modeling with empirical analysis of real-world trade data to address pressing issues in global economic governance.
Professor Saehoon Kim's research lab focuses on urban sustainability and data-driven urban analytics, with a strong emphasis on addressing challenges in shrinking cities, urban heat vulnerability, and housing abandonment in East Asia. The lab integrates urban design, environmental data science, and machine learning to develop evidence-based strategies for resilient urban planning. Key research directions include understanding the socio-spatial dynamics of urban decline, identifying heat-vulnerable urban areas through multi-parameter data modeling, and applying advanced computational techniques such as hashing algorithms for efficient urban data processing.
Professor Kyung-Hoe Huh's research lab specializes in biomedical imaging and quantitative bone morphometry, focusing on the structural analysis of trabecular bone using advanced fractal geometry. The lab employs computational methods such as the tile counting method to assess the complexity and architectural integrity of mandibular trabecular bone, contributing to improved understanding of bone quality in clinical contexts. Current research directions emphasize the development of reliable, non-invasive biomarkers for early detection of bone metabolic disorders and osteoporosis. The lab also explores the application of fractal dimension as a quantitative parameter in dental and maxillofacial imaging.
Professor Jae Wook Lee's research lab focuses on regenerative medicine and immunotherapy, with a strong emphasis on mesenchymal stem cell therapy for lung injury and stroma-targeted cancer immunotherapy. The lab investigates mechanisms of tissue repair, including alveolar fluid clearance and antimicrobial activity, as well as the role of tumor microenvironment components like fibroblast activation protein (FAP) in cancer immunity. Their work bridges molecular biology, stem cell biology, and translational immunology to develop novel therapeutic strategies for inflammatory and malignant diseases.
Professor Wu Bin Ying's research lab specializes in the design and development of advanced functional polymers and smart electronic materials, with a focus on stretchable electronics, self-healing materials, and bio-integrated systems. The lab pioneers innovative polyurethanes and ionic elastomers that combine exceptional mechanical properties—such as high toughness, elasticity, and rapid self-healing—with stimuli-responsiveness and biocompatibility. Key research directions include biomimetic electronic skins, retinomorphic vision systems for robotics, and thermally repairable polymers inspired by biological tissues.
Professor Baek-Il Kim's research lab specializes in preventive and restorative dentistry with a strong focus on oral health promotion through advanced materials and microbiological interventions. The lab investigates the role of nano-hydroxyapatite and other biomaterials in preventing dental erosion and enhancing tooth whitening, while also exploring the use of light-activated therapies and photosensitizers to modulate the oral microbiome. A key research direction involves the clinical application of diagnostic technologies such as quantitative light-induced fluorescence (QLF) to detect early signs of dental disease and assess microbial community changes. The lab integrates clinical, biochemical, and molecular approaches to improve both oral and systemic health outcomes.
Professor Suk-Jin Yoon's research lab specializes in theoretical and computational astrophysics, focusing on the formation and evolution of globular clusters, stellar populations in early-type galaxies, and the dynamical processes in dense stellar systems. The lab investigates the nonlinear relationships between stellar colors and metallicities, the role of horizontal-bridge evolution in shaping observed cluster properties, and the impact of intermediate-mass black holes on black hole binary formation. It also explores the interplay between galactic environment, star formation, and cluster dynamics, integrating insights from stellar population synthesis, gravitational wave astronomy, and galaxy evolution. The lab combines large-scale Monte Carlo simulations with observational data to address fundamental questions in extragalactic astronomy and stellar dynamics.
Professor Hye Jung Park's research lab focuses on immunology and respiratory health, with a strong emphasis on allergic diseases, hypersensitivity reactions, and the impact of environmental factors on immune responses. The lab investigates HLA gene associations with drug-induced severe cutaneous adverse reactions, particularly SJS/TEN linked to allopurinol, and tracks long-term changes in allergen reactivity in Korean populations. Additionally, the lab explores the respiratory toxicity of nanomaterials—especially silica nanoparticles—under various exposure conditions, and examines the clinical progression of patients with PRISm (persistent respiratory symptoms with mild airflow obstruction), highlighting their risk for developing COPD. The research integrates clinical immunology, environmental health, and toxicology to improve patient monitoring and public health strategies in Korea and beyond.
Professor Jonghun Kam's research lab specializes in climate hydrology and drought dynamics, focusing on the interplay between climate variability, land-atmosphere interactions, and extreme hydrological events. The lab investigates drought mechanisms across diverse U.S. regions using observational data, reanalysis products, and land surface modeling, with particular emphasis on understanding nonstationary drought behavior, climate drivers like ENSO and PDO, and the impacts of anthropogenic climate change. Research also integrates novel data sources such as Google Trends to assess public awareness and societal responses to drought.
Professor Seung Hyun Kim's research lab specializes in perioperative medicine, with a focus on optimizing anesthetic techniques and postoperative outcomes in complex surgical procedures. The lab investigates multimodal analgesia, including peripheral nerve blocks and pharmacologic adjuvants like dexmedetomidine, to improve pain control and reduce complications. Key research directions include enhancing patient safety during neurosurgical and abdominal procedures through advanced monitoring (e.g., capnography) and protective anesthetic strategies in ischemia-reperfusion injury. The lab also explores predictive models for postoperative ICU needs, particularly after major thoracic surgery.
Professor Eun Young Park's research lab specializes in food science and materials engineering, focusing on the modification of plant-based materials to enhance their functional and structural properties. The lab investigates enzymatic and chemical treatments of starches and fibers—such as oat flakes, rice, and pine bark—to improve texture, stability, and processing characteristics in food systems. A key research direction involves understanding the physicochemical behavior of polysaccharides and their interactions under various processing conditions, including freezing and drying. The lab also applies advanced numerical methods, such as finite element analysis, to model mechanical behavior in complex materials.