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 Hyeong-Dong Park's research lab specializes in geospatial intelligence and sustainable energy systems, focusing on the integration of GIS, remote sensing, and renewable energy technologies. The lab develops advanced spatial modeling and decision-support systems for optimizing solar energy deployment, particularly floating photovoltaics and campus-scale microgrids, while also addressing cultural heritage conservation through geospatial analysis and material stabilization techniques. Research spans from satellite-based solar irradiance modeling to intelligent route planning in mining and dynamic interoperable web GIS applications.
Professor Sang-Yoon Lee's research lab focuses on the intersection of medical image processing, noise modeling, and labor law reform in South Korea. The lab conducts advanced research on Poisson-Gaussian noise modeling and multiscale image denoising techniques—particularly using the Non-Subsampled Contourlet Transform (NSCT)—to improve low-dose X-ray imaging for patient safety. Concurrently, the lab explores legal and institutional frameworks for labor rights, especially the protection of subordinate labor relationships and the legalization of public sector labor unions, with a focus on university employees and government workers. The research integrates technical innovation in medical imaging with socio-legal analysis to address real-world challenges in healthcare and labor policy.
Professor Jonggi Heo's research lab specializes in oral and maxillofacial imaging, focusing on the application of artificial intelligence and advanced medical imaging techniques to improve diagnostic accuracy and treatment outcomes. The lab conducts cutting-edge research in deep learning-based analysis of dental implant systems, temporomandibular joint disorders, and rare bone pathologies using panoramic radiographs, CBCT, and MRI. Key research directions include automated detection and classification of oral diseases, 3D volumetric analysis of joint changes post-surgery, and the development of AI-driven diagnostic tools to reduce misdiagnosis and unnecessary interventions.
Professor Min-gu Lee's research lab specializes in sustainable environmental technologies and advanced biomedical applications. The lab focuses on carbon capture and utilization (CCU) technologies, particularly developing innovative processes for converting CO₂ into high-purity calcium carbonate using industrial wastewater and alkanolamine absorbents, with an emphasis on energy-efficient, continuous operation and absorbent recycling. In parallel, the lab explores bioactive phytochemicals, such as anthocyanin oligomers, for their anti-cancer properties in breast cancer cell lines. Additionally, the lab investigates secure communication systems using NFC and EAP/AAA protocols for next-generation smart authentication in healthcare and access control systems.
Professor Bo Woo Nam's research lab specializes in marine hydrodynamics and offshore structure dynamics, focusing on wave-structure interactions, floating body motions, and fluid-structure coupling phenomena. The lab conducts advanced numerical simulations and experimental validations to study complex hydrodynamic behaviors such as sloshing, wave drift forces, and wave energy conversion. Key research directions include the dynamic response of floating offshore units, deep-sea lifting operations, and the design optimization of wave energy converters and coastal protection devices.
Professor Jeong-Ho Han's research lab specializes in strategic communication, crisis management, and digital media engagement, with a focus on how online platforms such as blogs and social media influence public perception, political efficacy, and organizational reputation. The lab investigates the psychological and social mechanisms behind public responses to corporate and health-related crises, emphasizing the role of relational dynamics, media literacy, and digital participation. It also explores the impact of online communication on public engagement and the formation of active publics in digital environments. The research integrates theories such as attribution theory and situational theory to analyze real-world communication phenomena in health, corporate, and social contexts.
Professor Beomjoon Kim's research lab specializes in intelligent planning and decision-making for complex, continuous-state robotic systems. The lab focuses on developing sample-efficient and safe reinforcement and imitation learning algorithms that integrate expert demonstrations with online interaction to accelerate policy learning. Key research directions include efficient search in high-dimensional continuous spaces, knowledge transfer through problem representation (e.g., score-space), and novel optimization techniques such as GAN-based action sampling and Voronoi-based function optimization. The lab's work bridges theoretical guarantees with practical deployment in robotics, automation, and control systems.
Professor Tae-Young Park's research lab focuses on aging, financial well-being, and social policy, with a strong emphasis on the economic and psychological impacts of life transitions in later life. The lab investigates how financial socialization, health shocks like cancer, and social safety nets such as pensions influence individual well-being, financial capability, and consumption behavior among older adults. It also applies machine learning to public health challenges, particularly suicide risk prediction in South Korean populations. The lab’s work bridges behavioral economics, gerontology, and public policy to inform social welfare reforms.
Professor Young-hoon Yun's research lab focuses on emergency medicine and critical care, with a strong emphasis on improving diagnostic accuracy and patient outcomes in acute settings. Key research directions include the clinical application of point-of-care biomarkers—such as procalcitonin and D-dimer—in sepsis and pulmonary embolism, as well as the identification and management of rare but serious adverse effects from herbal medicines like Ganoderma species. The lab also investigates public health challenges in emergency care, including toxic exposure and tetanus prophylaxis in trauma patients, aiming to enhance clinical guidelines and patient safety.
Professor Hoseong Sohn's research lab specializes in biomedical engineering and regenerative medicine, focusing on cardiac repair, tissue engineering, and implantable medical devices. Key research directions include the development of injectable hydrogels for myocardial regeneration, biocompatible tissue adhesives for surgical applications, and wearable ECG systems for early detection of cardiac arrhythmias. The lab also investigates the biological effects of simulated microgravity on cancer cell behavior and the hemodynamic complications of percutaneous spinal interventions.
Professor Ji Eun Lee's research lab focuses on interdisciplinary studies at the intersection of education equity, environmental sustainability, and health sciences. The lab investigates gender disparities in educational outcomes, particularly the impact of teacher gender on student achievement in sub-Saharan Africa, while also exploring urban mobility challenges linked to decentralization and transportation inequality. Additionally, the lab conducts applied research in biotechnology and environmental engineering, including biofuel production from agricultural waste and the development of advanced materials for pollutant removal. A growing focus is on the health implications of aging, particularly the links between sarcopenia and age-related hearing impairment in older populations.
Professor Hee-Jung Jeon's research lab focuses on urban and community sustainability, with a strong emphasis on spatial inequality, resilience, and the social dimensions of urban planning. The lab investigates how housing policies, neighborhood change, and environmental factors influence residential satisfaction, health outcomes such as obesity, and sustainable development across different spatial and social scales. Key research directions include the impact of mixed-housing developments, the role of community participation in planning, and gender-specific spatial patterns in health and mobility. The lab employs mixed-methods and spatial analytical techniques to inform equitable and resilient urban policy.
Professor Jeong-San Kim's research lab specializes in the foundational aspects of quantum information theory, with a primary focus on characterizing and quantifying multi-party quantum entanglement. The lab investigates monogamy and polygamy relations of entanglement using generalized entanglement measures such as convex-roof extended negativity, Tsallis-$q$ entropy, and unified-$(q,s)$ entropy, particularly in multiqubit and qudit systems. Their work provides rigorous mathematical frameworks for understanding the shareability and distribution of quantum correlations in complex quantum systems, with applications to quantum information processing and quantum many-body physics. The lab also develops novel entanglement measures and establishes tight inequalities that generalize known results in quantum information theory.
Professor Jae Hyun Yang's research lab specializes in the development and optimization of advanced optoelectronic materials for sustainable energy applications, with a primary focus on perovskite and colloidal quantum dot (CQD) semiconductors. The lab explores fundamental materials science challenges such as phase control, defect passivation, and interfacial engineering to enhance the performance and stability of photovoltaic devices. By integrating high-throughput experimental workflows and advanced characterization techniques, the lab accelerates the discovery of composition-structure-property relationships in hybrid halide perovskites and CQD films. Their work bridges materials synthesis, nanoscale characterization, and device physics to enable next-generation, low-cost, and efficient solar energy technologies.
Professor Karam Nam's research lab specializes in clinical and translational research within cardiovascular and anesthesiology sciences, with a focus on improving surgical outcomes and patient safety. Key research directions include optimizing perioperative management in heart transplantation, evaluating oxygenation strategies during off-pump coronary surgery, and enhancing airway management techniques in patients with spinal instability. The lab also investigates hemodynamic and transfusion-related factors affecting postoperative outcomes in high-risk cardiac procedures.
Professor Kyungrock Paik's research lab specializes in hydrological and geomorphological systems, focusing on the scaling laws, topology, and self-organization in natural and engineered drainage networks. The lab investigates the principles underlying the formation of tree-like patterns in river and urban drainage systems, emphasizing energy dissipation, entropy production, and optimal flow configurations. Using advanced modeling and optimization techniques—including meta-heuristic algorithms and digital elevation model analysis—the lab explores how spatial variability in flow velocity and network structure shape nonlinear rainfall-runoff responses. Their work bridges conceptual hydrology, landscape evolution, and complex systems theory to understand the emergent behavior of dissipative systems.
Professor Youngik Sohn's research lab specializes in quantum nanophotonics and hybrid quantum systems, focusing on the integration of solid-state quantum emitters—particularly silicon-vacancy color centers in diamond—with nanoscale photonic and phononic structures. The lab develops tunable, high-fidelity quantum devices for scalable quantum information processing, including photonic qubits, quantum networks, and phonon-mediated spin control. Key innovations include nanomechanical tuning of color centers, high-quality factor nanomechanical resonators, and monolithic integration of photonic components for fault-tolerant quantum technologies. The lab's work bridges fundamental quantum physics with practical device engineering for quantum communication and computing.
Professor Younkyoo Kim's research spans interdisciplinary areas at the intersection of bioinorganic chemistry and biophysics, with a primary focus on the electronic and structural properties of heme-copper oxidases—key enzymes in biological electron transfer and oxygen reduction. His work employs advanced vibrational spectroscopy techniques, such as resonance Raman spectroscopy, to investigate the reaction intermediates and metal-ligand interactions in cytochrome c oxidase and related ferrous cyano complexes. The lab’s research provides critical insights into the mechanisms of oxygen activation and electron transfer in respiratory enzymes, with implications for understanding cellular energy production and oxidative stress.
Professor Jong-Hee Kim's research lab focuses on the molecular mechanisms underlying plant stress responses, with a central emphasis on the ubiquitin-proteasome system (UPS) and its regulatory E3 ubiquitin ligases. The lab investigates how E3 ligases, including RING and U-box types, modulate key stress signaling pathways—particularly those involving abscisic acid (ABA) and brassinosteroid (BR) hormones—thereby influencing plant development and resilience under abiotic and biotic stresses. Key studies in model plants like Arabidopsis and staple crops such as rice and barley have revealed novel regulatory nodes, such as OsPUB24 and AtAIRP2, that control protein stability and stress adaptation. The lab integrates molecular genetics, biochemistry, and cell biology to uncover conserved and crop-specific mechanisms of stress tolerance.
Professor Jinman Kim's research lab specializes in developing and applying advanced optical and molecular tools to investigate fundamental cellular processes with high spatiotemporal precision. The lab focuses on understanding the regulation of cell signaling, cytoskeletal dynamics, and cell migration through optogenetics, live-cell imaging, and biochemical dissection of key pathways such as TGF-β, YAP/TAZ, and Rho GTPase signaling. A central theme is the integration of light-based control systems with cellular physiology to decode complex signaling networks in live cells and tissues, particularly in the context of development and disease. The lab also explores the application of wavefront shaping for deep-tissue optogenetics, enabling precise manipulation of intracellular signals through scattering biological tissues.