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 Woosuk Cho's research lab specializes in advanced materials for next-generation lithium-ion and all-solid-state batteries, with a strong focus on enhancing the structural stability, interfacial compatibility, and electrochemical performance of cathode and solid electrolyte materials. Key research directions include surface and bulk doping strategies (e.g., Mn and Ti) to improve thermal and cycle stability of Ni-rich layered oxide cathodes, the development of moisture- and H₂S-resistant solid electrolytes using zeolite composites, and innovative interphase engineering using ionic liquids and polymer matrices to reduce interfacial resistance in all-solid-state batteries. The lab also investigates fundamental degradation mechanisms and practical electrode fabrication challenges, such as void formation in dry-electrode processes, to enable scalable and high-performance battery systems for electric vehicles and grid storage.
Professor Dongwook Kim's research lab specializes in computational and experimental studies at the intersection of physical chemistry, materials science, and biomedical engineering. The lab investigates non-covalent interactions such as anion–π and cation–π interactions using high-level quantum chemical calculations, aiming to understand their electronic origins and applications in molecular recognition and functional materials. In parallel, the lab develops advanced photonic devices—such as compact polarization beam splitters using silicon nanowaveguides—through 3D simulation and nanofabrication, with applications in integrated optics and telecommunications. Additionally, the lab contributes to clinical research, particularly in orthopedic surgery and end-of-life care in oncology, reflecting a multidisciplinary approach to scientific and societal challenges.
Professor Dongmin Kang's research lab specializes in molecular and cellular biology, with a focus on redox signaling, cell cycle regulation, and autophagy. The lab investigates the roles of key regulatory proteins such as Chfr in maintaining genomic stability and controlling mitotic progression under stress conditions. It also explores the dual roles of reactive oxygen species like hydrogen peroxide as both damaging agents and signaling molecules, particularly through the function of peroxiredoxins. Additionally, the lab develops advanced nanomaterials for biomedical sensing, including fluorescent and colorimetric probes for detecting metal ions such as Cu²⁺ in living cells.
Professor Sangyeol Lee's research lab specializes in statistical inference and time series analysis, with a strong focus on change-point detection, parameter stability, and robust estimation in stochastic processes. The lab investigates advanced cusum-based testing procedures for structural changes in autoregressive, moving average, and GARCH-type models, particularly under non-Gaussian and heavy-tailed innovations. A key emphasis is placed on developing robust and asymptotically valid methods for financial and econometric time series, including applications to volatility modeling, Poisson autoregressions, and regression with ARCH errors. The lab also explores quantile regression and empirical process theory in dynamic and high-dimensional settings.
Professor Ji-Young Lee's research lab focuses on plant developmental genetics and gene regulatory networks, with a particular emphasis on understanding the molecular mechanisms underlying cell and tissue identity, floral organ development, and evolutionary diversification in flowering plants. The lab integrates functional genomics, comparative genomics, and molecular genetics to dissect transcriptional regulation, especially of transcription factors and regulatory elements, in model and non-model plant species such as Arabidopsis and Lepidium. A key focus is on the evolution of developmental traits, including nectary formation and floral organ reduction, using molecular, genetic, and phylogenetic approaches.
Professor Sang Yoon Lee's research lab specializes in regenerative medicine and musculoskeletal disorders, with a focus on innovative cell-based therapies and soft tissue repair. The lab investigates the therapeutic potential of mesenchymal stem cells—particularly allogeneic adipose-derived stem cells—in treating tendinopathies and other degenerative joint conditions. It also explores biomechanical and physiological factors influencing joint function, such as capsular stiffness and muscle mass, in relation to osteoarthritis and shoulder mobility. The lab integrates clinical outcomes with advanced imaging and biophysical measurements to develop targeted, evidence-based interventions.
Professor Jinkyu Hong's research lab specializes in land-atmosphere interactions, with a focus on ecosystem-scale carbon and water cycling in diverse terrestrial environments. The lab conducts field measurements using eddy covariance and micrometeorological techniques to quantify turbulent fluxes and understand surface-atmosphere exchanges under varying climatic and topographic conditions. Key research directions include flux data standardization, turbulence dynamics in complex terrain and stable boundary layers, and the impacts of monsoonal systems and climate change on ecosystem functions. The lab also contributes to regional and global flux networks such as KoFlux and AsiaFlux, advancing data quality and model validation for climate and hydrological studies.
Professor Hyung-Ju Cho's research lab focuses on the pathophysiology of airway diseases, particularly chronic rhinosinusitis with nasal polyps (CRSwNP), allergic rhinitis (AR), and cystic fibrosis (CF), with a strong emphasis on epithelial ion transport, mucociliary clearance, and innate immune responses in the nasal and airway epithelia. The lab investigates the role of molecular mediators such as Hsp70, protease-activated receptors (PARs), and calcium signaling in allergic and inflammatory airway disorders, and explores translational insights from porcine models to human disease. They also examine surgical outcomes in upper airway interventions, integrating clinical and basic science approaches to improve therapeutic strategies.
Professor Kyoung-Ho Pyo's research lab focuses on cancer immunology and host-directed therapies, particularly exploring the anti-tumor mechanisms of parasitic antigens such as *Toxoplasma gondii* lysate antigen (TLA) and profilin-like protein (TgPLP). The lab investigates how these parasitic components modulate the tumor microenvironment by enhancing dendritic cell and macrophage activation, promoting T-cell responses, and suppressing angiogenesis and metastasis. A key focus is overcoming resistance to immune checkpoint inhibitors by combining parasitic immunomodulators with existing immunotherapies, such as anti-PD-1 therapy. The lab also examines metabolic reprogramming in cancer cells, particularly the role of O-GlcNAcylation in tumor progression and therapy resistance.
Professor Sang Baek Koh's research lab specializes in health outcomes assessment and clinical epidemiology, with a focus on patient-reported outcomes and musculoskeletal disorders in chronic disease populations. The lab investigates the reliability and validity of health-related quality of life instruments, such as the SF-36, and explores the prevalence and risk factors of specific complications in patients with diabetes, particularly trigger digits. Research directions include health survey methodology, chronic disease management, and the identification of clinical and demographic predictors for musculoskeletal conditions in diabetic patients. The lab combines survey-based research with clinical data analysis to improve patient-centered outcomes and inform public health strategies.
Professor Si Eun Lee's research lab specializes in maternal-fetal medicine and perinatal health, focusing on the pathophysiology of preterm birth, intra-amniotic inflammation, and the role of bioactive mediators such as prostaglandins and matrix metalloproteinases in pregnancy complications. The lab investigates biomarkers and imaging techniques to improve early diagnosis and risk stratification in conditions like preterm premature rupture of membranes and funisitis. Using clinical and molecular approaches, including amniotic fluid analysis and radiomics, the lab aims to enhance perinatal outcomes through precision medicine strategies.
Professor Joon-Sup Yeom's research lab focuses on infectious disease epidemiology, particularly the transmission dynamics and control of vector-borne and viral infections. The lab investigates the epidemiology of re-emerging infectious diseases such as *Plasmodium vivax* malaria and SARS-CoV-2, with an emphasis on transmission patterns, diagnostic methods, and public health interventions. Research also includes gastrointestinal endoscopy-related studies, examining conditions like reflux esophagitis and hiatal hernia in clinical populations. The lab’s work bridges clinical medicine, public health surveillance, and preventive strategies in endemic and outbreak settings.
Professor June Choi's research lab specializes in translational biomedical research, focusing on the intersection of medical imaging, ototoxicity, and inner ear pathology. The lab investigates coronary artery disease using advanced cardiac CT imaging techniques, such as intracoronary attenuation analysis, while also exploring mechanisms of drug-induced hearing loss—particularly cisplatin-induced ototoxicity—using cellular and zebrafish models. A key focus is identifying protective agents, such as apocynin and quercetin, that mitigate oxidative stress and apoptosis in cochlear cells. The lab also examines surgical outcomes in tympanic membrane repair, comparing novel patch techniques with conventional methods. These diverse yet interconnected research directions highlight a commitment to improving diagnostic accuracy and developing protective strategies in cardiovascular and auditory medicine.
Professor Jae-Ho Choi's research lab specializes in advanced functional materials and smart photonic systems, with a focus on stimuli-responsive nanostructures, structural coloration, and intelligent sensing technologies. The lab explores the design and fabrication of reconfigurable photonic devices using azobenzene-based materials and hydrogels for applications in anti-counterfeiting, omniphobic surfaces, and dynamic optical encryption. Additionally, the lab integrates machine learning with radar-based sensing to address challenges in people counting and human motion analysis, particularly in complex and variable spatial environments. Their interdisciplinary work bridges nanofabrication, photonics, and artificial intelligence to develop next-generation adaptive materials and intelligent systems.
Professor Ji-Sang Park's research lab specializes in computational and experimental materials science, focusing on defect engineering, electronic structure, and nanostructured materials for next-generation optoelectronic and photovoltaic applications. The lab investigates fundamental mechanisms governing charge transport and recombination in halide perovskites, particularly the role of grain boundaries and point defects such as iodine interstitials. It also explores advanced heteroepitaxial growth techniques for group IV and III–V semiconductors, aiming to achieve low-defect-density materials for high-performance devices. The work combines first-principles calculations with advanced characterization and thin-film fabrication methods to design materials with tailored electronic and optical properties.
Professor Srinivas Gandla's research lab specializes in the development of flexible, stretchable, and biocompatible electronic systems for wearable and on-skin biomedical applications. The lab focuses on designing low-cost, large-area electronic sensors using advanced fabrication techniques such as laser ablation and structural engineering inspired by nature, including kirigami and serpentine designs. Key research directions include transparent and conductive oxide semiconductors, biodegradable sensor platforms, and high-performance thin-film transistors for real-time physiological monitoring.
Professor Ik-Kyung Jang's research lab specializes in interventional cardiology and vascular imaging, with a primary focus on understanding the pathological mechanisms underlying acute coronary syndromes (ACS), particularly plaque erosion and its hemodynamic and biological determinants. The lab leverages advanced intravascular imaging techniques—especially optical coherence tomography (OCT) and intravascular ultrasound (IVUS)—to investigate plaque phenotypes, stent healing, and vascular responses in vivo, aiming to refine patient-specific treatment strategies. A key research direction involves distinguishing the pathophysiological mechanisms of plaque erosion from plaque rupture, with implications for tailored anti-thrombotic and interventional therapies. The lab also explores clinical outcomes in special populations, such as women with heparin-induced thrombocytopenia (HIT), highlighting sex-specific differences in treatment response.
Professor Jung-Wook Kim's research lab specializes in the genetic and molecular basis of inherited dental disorders, with a focus on amelogenesis imperfecta, dentin defects, and tooth agenesis. The lab investigates disease-causing mutations in key enamel and dentin-related genes such as ENAM, AMELX, MSX1, and PAX9, aiming to elucidate genotype-phenotype correlations and improve clinical diagnosis. Using molecular genetics, cytogenetic analysis, and functional characterization, the lab explores the structural and functional impacts of gene variants on tooth development and mineralization. Their work contributes to understanding the complex etiology of hereditary craniofacial diseases and supports precision medicine approaches in dentistry.
Professor Changbum R. Ahn's research lab specializes in advancing construction safety, operational efficiency, and environmental sustainability through wearable sensing technologies and data-driven analytics. The lab focuses on leveraging real-time physiological and motion data—collected via low-cost sensors like accelerometers and wearable biometrics—to assess worker fall risk, detect latent safety hazards, and optimize equipment performance. A key research direction involves integrating gait stability metrics such as maximum Lyapunov exponents and operational efficiency models to quantify and reduce air pollutant emissions from construction activities. The lab also emphasizes practical, economically feasible solutions for heterogeneous equipment fleets and real-world construction sites.
Professor Jiyong Eom's research lab focuses on integrated assessment modeling of climate change mitigation, with a strong emphasis on long-term energy system transitions, carbon neutrality pathways, and the role of key mitigation technologies such as carbon capture and storage (CCS) and negative emission technologies (NETs). The lab investigates the implications of policy timing and technological deployment in achieving climate targets, particularly in the context of national energy systems like Korea’s. It also explores the intersection of consumer behavior, demand-side management, and energy efficiency in residential settings. Additionally, the lab engages in materials science research, particularly on silicon-based anodes for lithium-ion batteries using carbon nanotube composites to enhance energy storage performance.