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 Seunghak Lee's research lab specializes in subsurface hydrogeochemistry and environmental fluid dynamics, focusing on the biogeochemical behavior of contaminants such as arsenic and nitrate in vadose and saline aquifer systems. The lab investigates the dynamic interactions between hydrological conditions, soil properties, and microbial processes under fluctuating wet-dry cycles, with an emphasis on reactive transport, redox processes, and sustainable groundwater management. Advanced experimental and modeling approaches—including soil column studies, micro-CT imaging, and Bayesian inversion—are employed to understand and predict contaminant fate in complex porous media.
Professor Hyung-Kyu Lim's research lab specializes in the design and optimization of advanced electrocatalysts and functional nanomaterials for sustainable energy conversion and storage. The lab focuses on electrochemical CO2 reduction, lithium-oxygen and sodium-ion batteries, and hydrogen evolution reactions, with a strong emphasis on understanding reaction mechanisms at the atomic level through first-principles calculations and multiscale simulations. Key research directions include catalyst development using core-shell nanostructures, doping strategies, and the role of reaction environments such as ionic liquids in enhancing catalytic performance.
Professor Dai-Viet N. Vo's research lab specializes in advanced materials for sustainable energy and environmental applications, with a strong focus on photocatalysis and energy conversion. The lab investigates the design, synthesis, and optimization of titanium dioxide (TiO2) and other functional nanomaterials for applications such as photocatalytic hydrogen evolution and pollutant degradation. Key research directions include enhancing charge carrier separation, reducing bandgap, and improving surface reactivity through nanostructuring and heterojunction engineering. The lab also explores the integration of computational modeling with experimental synthesis to accelerate materials discovery.
Professor Jang-Kun Song's research lab specializes in advanced materials and devices for sustainable energy and next-generation optoelectronics. Key research directions include triboelectric nanogenerators using biobased materials like human hair, liquid crystal alignment technologies for high-performance displays, and solution-processed quantum-dot light-emitting diodes with tunable color emission. The lab focuses on innovative surface engineering, electrification mechanisms, and device architectures that enable energy harvesting, low-power displays, and efficient optoelectronic systems.
Professor Jong Man Kim's research lab specializes in advanced on-chip communication architectures, with a primary focus on Network-on-Chip (NoC) design for next-generation multi-core and 3D integrated circuits. The lab explores energy-efficient, low-latency, and reliable NoC solutions, particularly through adaptive and path-sensitive routing algorithms, congestion-aware flow control, and fault-tolerant mechanisms tailored for deep sub-micron technologies. A key research direction involves integrating packet-based NoC paradigms into three-dimensional (3D) chip architectures to minimize interconnect delays and global wiring length. The lab also emphasizes performance modeling and evaluation using queuing-theory-based approaches to optimize energy efficiency and system reliability.
Professor Jeong Eon Lee's research lab specializes in advanced energy storage systems, with a primary focus on battery management systems (BMS) and state-of-charge (SoC) estimation for lithium-ion batteries. The lab develops innovative estimation algorithms—such as the enhanced coulomb counting (ECC) method—by integrating open circuit voltage (OCV) and internal resistance models to improve accuracy and mitigate drift errors. Research directions include real-time battery state monitoring, health prognosis, and the optimization of battery performance under cycling conditions. The lab also explores the integration of electrochemical modeling with practical system applications for electric vehicles and smart grids.
Professor Soo Min Hwang's research lab specializes in the design and synthesis of advanced functional materials for sustainable energy applications. The lab focuses on developing novel nanomaterials—particularly metal oxides, doped carbons, and hybrid electrodes—for high-performance energy storage devices such as lithium-ion and sodium-ion batteries, as well as flow-based batteries. Key research directions include nanostructure engineering, interface control in dielectric and electrode materials, and scalable, low-cost fabrication processes for large-scale energy storage. The lab emphasizes practical solutions through innovative materials synthesis and process optimization, targeting both performance enhancement and environmental sustainability.
Professor Ton Hoang Nguyen's research lab specializes in advanced control strategies for electric machines, particularly permanent magnet synchronous motors (PMSMs), with a focus on enhancing robustness and accuracy under uncertain and dynamic operating conditions. The lab develops innovative control techniques such as adaptive sliding mode control, disturbance observers, model predictive control, and advanced encoder signal processing to mitigate the effects of parameter uncertainties, external load variations, and sensor signal distortions. Key research directions include disturbance estimation and feedforward compensation, anti-windup mechanisms for input saturation, and high-precision position and speed control in mechatronic systems. The lab emphasizes practical implementation and real-time performance, integrating theoretical rigor with engineering applications in industrial automation and motion control.
Professor Woon Ju Song's research lab specializes in the design and engineering of artificial metalloenzymes and supramolecular protein assemblies to create novel catalytic activities from non-natural protein scaffolds. The lab focuses on leveraging protein self-assembly, metal-templated structural organization, and interfacial metal sites to develop functional enzymes with applications in biocatalysis, antibiotic resistance, and biomimetic oxidation. Key research directions include the de novo design of metallo-β-lactamases, the generation of high-valent metal-oxo intermediates for oxidation catalysis, and the evolution of hydrolase activity in engineered protein complexes. The lab integrates structural biology, spectroscopy, and directed evolution to understand and optimize the function of artificial metalloenzymes at the molecular level.
Professor Dae Ryong Kang's research lab specializes in environmental and occupational health, with a primary focus on the health impacts of indoor air pollutants, particularly radon gas. The lab investigates the epidemiological and toxicological effects of long-term radon exposure, emphasizing its role in lung cancer development and the effectiveness of mitigation strategies. Research also extends to population-level health disparities, including sex-specific differences in hypertension prevalence and control, integrating large-scale national health surveys for robust risk assessment. The lab combines epidemiological data with environmental monitoring and predictive modeling to inform public health policy and risk management.
Professor Cheol Ryong Ku's research lab focuses on metabolic diseases, particularly diabetes and obesity, with an emphasis on the molecular mechanisms underlying insulin resistance and glucose homeostasis. The lab investigates the protective and therapeutic effects of natural compounds like resveratrol on pancreatic β-cells and brown adipose tissue, as well as the impact of surgical interventions—such as bariatric surgery and gastrectomy—on glucose metabolism. A key interest lies in identifying novel, targetable pathways in the intestine and endocrine system that regulate glucose disposal and energy metabolism.
Professor Yong Jun Choi's research lab focuses on translational and clinical research in respiratory and metabolic diseases, with a strong emphasis on understanding the impact of underlying conditions on clinical outcomes in infectious diseases such as COVID-19. The lab investigates the pathophysiology of chronic lung diseases like asthma and COPD, particularly the role of comorbidities and muscle wasting (sarcopenia) in disease progression. Additionally, the lab explores biochemical and molecular mechanisms in food safety, including biogenic amine formation in fermented fish products, and contributes to oncology research through rare neurological manifestations of hematologic malignancies, such as neurolymphomatosis. The integration of clinical data, molecular biology, and translational research defines the lab’s multidisciplinary approach.
Professor Hyungjin Rhee's research lab specializes in radiology and medical imaging, with a focus on improving the diagnosis and prognosis of hepatocellular carcinoma (HCC) and intrahepatic cholangiocarcinoma (iCCA). The lab investigates imaging biomarkers—such as IRE-HCC, Gd-EOB-MRI features, and CD signatures—that reflect tumor aggressiveness, microenvironment characteristics (e.g., hypoxia, fibrosis, stemness), and molecular pathways involving cancer-associated fibroblasts and KRT19 expression. Their work integrates advanced medical imaging with molecular pathology to enhance early detection, risk stratification, and treatment monitoring in liver cancers.
Professor Jung-Yeol Yeom's research lab specializes in the development and optimization of advanced scintillator materials and radiation detection systems for extreme environments and medical imaging applications. The lab focuses on single-crystal inorganic scintillators with enhanced radiation resistance, temperature stability, and mechanical robustness, particularly for use in nuclear energy, space exploration, and positron emission tomography (PET). A key research direction involves improving timing resolution in ToF-PET through innovative front-end electronics and detector configurations using silicon photomultipliers (SiPMs) and long scintillator crystals. The lab also explores novel opto-ultrasonic imaging systems that integrate multiwavelength light sources with ultrasound detection for biomedical applications.
Professor Mankyu Choi's research lab focuses on health services research, particularly on patient-centered healthcare delivery, medical service quality, and health-related quality of life across diverse populations. The lab investigates key determinants of patient satisfaction, intent to revisit, and mental health outcomes, with a strong emphasis on socio-economic, behavioral, and systemic factors influencing healthcare utilization and outcomes. Research spans primary care, dental clinics, chronic disease management (e.g., benign prostatic hyperplasia), and long-term care for older adults with disabilities, often using large-scale national survey data and advanced statistical modeling.
Professor Jong-Mu Sun's research lab specializes in translational oncology, with a primary focus on molecular biomarkers and personalized therapy in non-small cell lung cancer (NSCLC). The lab investigates the prognostic and predictive significance of genetic mutations such as KRAS and EGFR, aiming to improve treatment stratification and patient outcomes. Current research directions include identifying molecular subtypes of NSCLC, evaluating response to targeted therapies, and exploring the clinical implications of co-mutations. The lab integrates clinical data with molecular profiling to advance precision medicine in lung cancer.
Professor Jae Seung Kang's research lab focuses on the multifaceted roles of vitamin C (sodium ascorbate) and natural compounds like red ginseng in modulating immune responses, cancer progression, and neurodegenerative diseases. The lab investigates the mechanisms by which these compounds influence immune cell activation, tumor cell apoptosis, iron metabolism in melanoma, and inhibition of key enzymes such as BACE1 involved in Alzheimer’s disease. A central theme is the context-dependent biological effects of vitamin C, particularly its dual role in promoting cell death in cancer cells while protecting against inflammation-induced organ damage. The lab also explores the regulation of angiogenesis through VEGF modulation, highlighting the therapeutic potential of micronutrients in chronic disease prevention and treatment.
Professor Sungyong Baik's research lab specializes in meta-learning and few-shot learning, focusing on improving fast adaptation and generalization in low-data regimes. The lab develops advanced optimization strategies, particularly enhancing the inner-loop adaptation process in model-agnostic meta-learning (MAML) through adaptive hyperparameter learning and task-specific update rules. A key direction involves designing intelligent, lightweight meta-networks that dynamically adjust learning rates and weight decay during adaptation, enabling robust performance across diverse and unseen tasks. The lab also explores applications in visual tracking, integrating memory-augmented recurrent networks for real-time appearance adaptation.
Professor Soomin Kim's research lab specializes in human-computer interaction, with a focus on leveraging conversational agents and AI to enhance digital communication and decision-making processes. The lab explores the design and evaluation of intelligent chatbots that improve data quality in surveys, facilitate structured group discussions, and support deliberative online dialogue. Additionally, the lab investigates user behaviors in algorithmic systems, including strategies to circumvent or 'game' algorithms in online communities, and examines the socio-technical implications of emerging technologies like blockchain in smart cities. The overarching goal is to create more equitable, transparent, and effective digital interaction systems through human-centered AI design.
Professor Yong Bae Kim's research lab specializes in molecular oncology and cancer biology, with a focus on identifying key signaling pathways and biomarkers that influence cancer progression and treatment response. The lab investigates mechanisms underlying tumor cell survival, metastasis, and the tumor microenvironment, particularly the role of molecules such as COX-2, ILK, and PTEN in regulating cancer cell behavior. A significant emphasis is placed on understanding how phagocyte-cancer cell interactions and exosomal signaling modulate epithelial-mesenchymal transition and invasion, offering potential therapeutic insights. Additionally, the lab explores fundamental biophysical processes in materials science, particularly atomic layer deposition of high-k dielectrics, reflecting a multidisciplinary approach bridging biology and materials engineering.