世界の主要大学の研究室を探索 — 研究分野と主要論文を一目で確認できます。
Professor Geun Lee's research lab specializes in the study of soft power, public diplomacy, and international relations in the context of global and regional power dynamics. The lab explores how non-state actors, cultural diplomacy (such as the Korean Wave), and strategic military repositioning influence statecraft and international influence. It emphasizes relational, networked approaches to diplomacy and investigates how symbolic and material resources shape foreign policy outcomes.
Professor Young Soo Do's research lab specializes in interventional radiology and endovascular therapy, focusing on innovative catheter-based interventions for vascular diseases. The lab investigates percutaneous treatments for peripheral arterial disease, portal vein stenosis, and vascular malformations, with an emphasis on improving outcomes through novel embolization techniques and stent deployment. Key research directions include optimizing device efficacy, enhancing hemostasis after vascular procedures, and evaluating long-term patency and safety of endovascular stents in malignant obstructions.
Professor Min-Jae Oh's research lab specializes in tourism and event management, with a strong focus on film- and drama-induced tourism, market segmentation, and tourist motivation. The lab investigates how visual media, such as television dramas and major events like world expos, shape tourist perceptions, image formation, and behavioral intentions. Research directions include the impact of cultural festivals, the role of emotional and cognitive images in travel motivation, and the development of targeted tourism strategies based on demographic and psychographic segmentation.
Professor Jin Gyu Lee's research lab specializes in distributed control and coordination of multi-agent systems, with a focus on resilient state estimation, decentralized synchronization, and distributed optimization under uncertainty. The lab develops novel control methodologies—such as funnel coupling and blended dynamics—that enable robust, scalable, and fully decentralized solutions for heterogeneous networks under limited information and potential attacks. Key contributions include achieving asymptotic tracking and arbitrary-precision synchronization without requiring full system models or global knowledge.
Professor Junseok Kim's research lab specializes in advanced materials and numerical methods for energy conversion and storage, with a strong focus on solid oxide fuel cells (SOFCs) and proton ceramic electrochemical cells (PCECs). The lab develops innovative sintering strategies—such as dual-phase reaction sintering and roll calendering—to enhance electrolyte densification and electrochemical performance while minimizing high-temperature degradation. It also combines computational modeling, including adaptive mesh refinement and operator-splitting methods, to solve complex partial differential equations governing phase separation and financial derivatives, demonstrating a multidisciplinary approach to materials science and numerical analysis. The lab’s work bridges materials synthesis, microstructure engineering, and mathematical modeling to enable efficient, low-temperature energy devices.
Professor Si-Hyuk Lee's research lab specializes in insect toxicology and molecular entomology, focusing on the mechanisms of insecticide resistance in agricultural pests. The lab investigates metabolic and target-site resistance mechanisms, particularly in key pest species such as the brown planthopper, spider mites, and aphids, using molecular, biochemical, and -omics approaches. Phylogenetic and mitochondrial genome analyses are also conducted to understand evolutionary relationships and genetic adaptations in hemipteran insects. The lab's work contributes to the development of sustainable pest management strategies by identifying resistance markers and validating molecular targets for novel insecticides.
Professor Chae-Eun Lee's research lab specializes in video coding, hardware acceleration, and energy-efficient computing, with a strong focus on optimizing video compression standards such as H.264 and HEVC. The lab develops innovative algorithms and architectures that reduce computational complexity and memory bandwidth by leveraging prediction patterns, dynamic complexity scaling, and efficient pipeline scheduling. It also explores weakly-supervised learning techniques for instance segmentation, emphasizing knowledge transfer and minimal annotation requirements. The lab's work bridges theoretical optimization with practical hardware implementation for real-time, low-power applications in video processing and embedded systems.
Professor Jeong-ah Shin's research lab focuses on translational biomedical and biomaterials research, with a strong emphasis on infectious disease management, particularly multidrug-resistant pathogens like *Acinetobacter baumannii*, and on understanding the molecular mechanisms of retinal degeneration in inherited diseases such as retinitis pigmentosa. The lab also investigates placental biology and nutrient transport regulation during pregnancy, especially in the context of hypertension, and explores the development of bioactive biomaterials—such as hydroxyapatite-chitosan composites—for tissue engineering and bone regeneration. These diverse research directions are united by a common goal: advancing therapeutic strategies through molecular, cellular, and preclinical studies.
Professor Jaeyeol Yee's research lab specializes in socio-economic development, institutional dynamics, and regional innovation systems, with a strong focus on social quality, social capital, and global production networks. The lab investigates how institutional frameworks and social structures shape economic growth, inequality, and innovation, particularly in East Asian contexts such as South Korea. It also explores alternative indicators of societal progress beyond GDP, emphasizing the role of relational capital and structural empowerment in shaping social cohesion and development outcomes. Through interdisciplinary, theory-driven empirical research, the lab contributes to understanding the interplay between economic development, social equity, and institutional evolution in global and regional contexts.
Professor Dong Bum Suh's research lab focuses on clinical and epidemiological investigations in emergency medicine and dermatology, with a particular emphasis on the impact of lifestyle factors—such as diet and fatty acid intake—on inflammatory skin conditions like acne vulgaris. The lab also conducts population-based studies on pediatric health, emergency department utilization, and injury patterns related to emerging technologies like electric personal mobility devices. Additionally, the lab explores the clinical application and training of point-of-care ultrasound in emergency care settings. These research directions reflect a strong commitment to improving patient outcomes through evidence-based, translational medicine approaches.
Professor Jin Young Yeo's research lab specializes in data-driven decision making and intelligent systems, with a strong focus on leveraging big data and artificial intelligence to solve real-world problems in healthcare, e-commerce, and travel planning. The lab develops advanced machine learning and natural language processing techniques—particularly using large language models and deep learning—for clinical reasoning, customer behavior prediction, and personalized recommendation systems. Key research directions include explainable AI in healthcare, joint modeling of user and product behaviors for retargeting, and mining travel experiences from social media data using multimodal and natural language signals.
Professor Jangwan Ko's research lab specializes in higher education policy, educational equity, and leadership studies with a focus on student success, institutional effectiveness, and administrative reform. The lab investigates critical issues such as student learning experiences, cognitive and affective outcomes, college retention, and the impact of administrative support systems like educational administrative assistants. It also explores ethical leadership grounded in Korean traditional values and conducts comparative policy analysis, particularly on educational finance and information transparency in higher education.
Professor Ha Tae Kyun's research lab specializes in advanced materials synthesis and characterization, with a strong focus on nanomaterials for energy and environmental applications. Key research directions include the development of oxide-based nanocomposites—such as CuO, CeO₂, and Zr/Hf-doped ceria—for photocatalytic degradation of pollutants and efficient energy conversion. The lab also conducts cutting-edge research in accelerator physics, particularly in beam dynamics and vacuum technology for next-generation free-electron lasers and synchrotron light sources. Utilizing advanced spectroscopic and diffraction techniques like XANES, EXAFS, and synchrotron XRD, the lab investigates electronic and local atomic structures in doped oxides and functional materials.
Professor Seung Min Baek's research lab specializes in environmental remediation and microbial ecology, focusing on uranium bioremediation in contaminated aquifers. The lab investigates the stability and reactivity of uranium isotopes (U(IV) and U(VI)) under dynamic redox conditions, particularly the unexpected reoxidation of U(IV) even under continuous reducing environments. Using advanced molecular tools such as high-density 16S rRNA gene microarrays, the lab explores microbial community dynamics and their role in metal redox transformations. Additionally, the lab contributes to structural dynamics and computational mechanics, developing reduced-order modeling techniques to enhance the accuracy and efficiency of large-scale finite element simulations in structural systems.
Professor Seongdeog Yang's research lab specializes in differential geometry and geometric analysis, with a primary focus on zero mean curvature surfaces in Lorentz-Minkowski 3-space. The lab investigates space-like maximal surfaces and time-like minimal surfaces, particularly those exhibiting type change across light-like singularities or null curves. A key direction involves constructing embedded and triply periodic surfaces with mixed type behavior, including those with catenoidal ends and singular sets along light-like lines. The work also explores deep connections between these geometric surfaces and fluid dynamics, as well as higher-dimensional analogues in Lorentzian space.
Professor Sanghee Park's research lab focuses on organizational behavior, compensation systems, and the psychological and strategic dynamics underlying pay-for-performance (PFP) systems. The lab investigates how employees perceive and respond to complex PFP structures, including merit pay, bonuses, and long-term incentives, with an emphasis on longitudinal development of leader-member exchange (LMX) and the role of mental construal levels in shaping perceptions. The lab also explores the design and behavior of computational agents in digital marketplaces, particularly in information and e-commerce systems, where strategic incentives and decision-making complexity intersect. These interdisciplinary efforts bridge behavioral science, organizational psychology, and artificial intelligence.
Professor Hong-Gi Lee's research lab specializes in nanophotonics and plasmonics, focusing on advanced optical imaging and sensing techniques at the nanoscale. The lab develops innovative methods for super-resolution Raman microscopy, utilizing surface plasmon engineering, structured illumination, and disordered nanostructures to achieve high-sensitivity molecular detection. Key research directions include near-field optical enhancement, ultrafast plasmonic nanostructures, and quantitative measurement of local thermal and optical responses in plasmonic systems. The lab also explores applications in biomedical imaging and nanoscale diagnostics through novel sensor platforms based on plasmonic fingerprints and speckle patterns.
Professor Lee Hong-gi's research lab specializes in nanophotonics and plasmonics, focusing on the development of advanced optical imaging and sensing techniques at the nanoscale. The lab explores super-resolution microscopy, surface plasmon-based sensing, and near-field optical phenomena using structured illumination, plasmonic nanostructures, and ultrafast laser excitation. Key research directions include enhancing Raman spectroscopy for molecular imaging, detecting single nanoparticles via speckle patterns, and understanding plasmonic nonlinearity under thermal effects. The lab combines experimental optics with innovative nanofabrication and data analysis to push the limits of nanoscale sensing and imaging.
Professor Soong Joon Lee's research lab specializes in orthopedic surgery and hip joint disorders, with a primary focus on hip arthroplasty, femoroacetabular impingement (FAI), and the management of complex hip fractures in elderly patients. The lab investigates long-term outcomes of cementless total hip arthroplasty, innovative surgical techniques such as trochanteric osteotomy, and diagnostic accuracy in biliary strictures using endoscopic sampling methods. Their work emphasizes improving surgical outcomes, functional recovery, and patient safety through evidence-based approaches and advanced postural assessment in geriatric orthopedic populations.
Professor Minseok Kang's research lab specializes in wide-bandgap semiconductor devices, with a primary focus on silicon carbide (4H-SiC) based power electronics and advanced nanoscale transistor technologies. The lab investigates fundamental challenges in SiC MOSFETs, including defect engineering, contact optimization, and reliability under harsh electrical stress, while advancing ultra-small geometry devices such as nanoscale FinFETs and nano-channel FETs. Key research directions include high-voltage power device design, barrier engineering using metal nanoparticles, and process integration for high-performance and high-reliability power electronics.