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 Kwanho You's research lab specializes in advanced control systems and signal processing for dynamic systems, with a strong focus on robust and optimal control methodologies. The lab develops innovative control strategies—such as sliding mode control, LQG, and support vector machine-based discrimination—for applications in aerospace (e.g., quadrotor drones), electromechanical systems (e.g., PMSM motors), and seismic monitoring. Research emphasizes real-time stability, disturbance rejection, and performance enhancement through adaptive algorithms, nonlinear observers, and machine learning integration. The lab also investigates sensor signal compensation techniques, particularly in laser interferometry for seismic wave detection.
Professor Jeong-Won Lee's research lab focuses on identifying novel molecular targets and therapeutic strategies for aggressive gynecological cancers, particularly cervical and epithelial ovarian cancer (EOC). The lab investigates the roles of non-coding RNAs, such as miRNAs, and key signaling molecules like sphingosine kinase 1 (SK1) and autophagy regulators in tumor progression and drug resistance. Using preclinical models, including patient-derived cell lines and orthotopic xenografts, the lab evaluates targeted therapies, antibody-drug conjugates (e.g., 1C1-mcMMAF), and combination regimens (e.g., chloroquine with cisplatin) to overcome chemoresistance and improve treatment outcomes. The overarching goal is to translate molecular insights into effective prognostic biomarkers and precision therapies for gynecologic malignancies.
Professor Minah Suh's research lab specializes in neurovascular coupling, focusing on the dynamic interplay between neural activity, cerebrovascular responses, and gaseous signaling molecules in the brain. The lab employs advanced optical and electrochemical techniques to study hemodynamic changes during epilepsy, stress, and motor behaviors, with an emphasis on real-time in vivo measurements of blood flow, oxygenation, and signaling molecules like nitric oxide and carbon monoxide. Key research directions include understanding the mechanisms of interictal spikes, predictive versus sensory-driven motor control, and the impact of chronic stress on cerebral circulation. The lab integrates multimodal imaging, electrophysiology, and biosensing to unravel the physiological and pathological regulation of cerebral blood flow.
Professor Tae Hyun Sung's research lab specializes in advanced functional materials and smart sensing technologies, with a focus on laser additive manufacturing of high-performance coatings and flexible piezoelectric sensors. The lab investigates the microstructural evolution and mechanical properties of laser-clad Ti-based coatings, emphasizing in-situ phase synthesis and solidification dynamics for enhanced durability. Simultaneously, the lab pioneers next-generation wearable sensors using 2D materials like tungsten disulfide (WS2) to harvest energy from human motion, targeting applications in self-powered health monitoring systems. The integration of materials science, additive manufacturing, and energy harvesting defines the lab’s multidisciplinary approach.
Professor Jiyoung Park's research lab focuses on the molecular mechanisms linking adipose tissue dysfunction in obesity to cancer progression, with a particular emphasis on the tumor microenvironment. The lab investigates how adipocyte-derived factors—such as endotrophin, leptin, and metabolic enzymes like glucose-6-phosphate dehydrogenase (G6PD)—contribute to tumor growth, fibrosis, angiogenesis, inflammation, and chemotherapy resistance. Key research directions include the role of extracellular matrix remodeling, oxidative stress, and metabolic reprogramming in obesity-associated cancers, especially breast cancer.
Professor Ji Young Cho's research lab specializes in natural product discovery and marine bioprospecting, focusing on the isolation, structural elucidation, and biological evaluation of novel bioactive compounds from marine-derived microorganisms such as actinomycetes and Streptomyces. The lab integrates advanced spectroscopic techniques—including NMR, X-ray crystallography, and MS—along with chemical derivatization and stereochemical analysis (e.g., Mosher’s method) to determine complex molecular structures. Research directions include the biosynthesis of unique ring systems, cytotoxicity screening of peptides and polyketides, and the development of eco-friendly algaecidal agents for controlling harmful algal blooms. The lab also explores the intersection of sensory design and consumer behavior in luxury retail environments, highlighting the symbolic role of aesthetics in brand perception.
Professor Byung-Kwon Kim's research lab specializes in single-entity electrochemistry, focusing on the electrochemical detection and analysis of individual micro- and nanoscale entities such as emulsion droplets, platelets, and hydrazine molecules. The lab pioneers innovative electrochemical techniques—particularly using ultramicroelectrodes (UME)—to study collision events at the single-particle level, enabling precise measurements of concentration, size distribution, and redox behavior. Key research directions include the development of selective electrochemical sensors for environmental and biomedical applications, such as hydrazine detection in water and serotonin quantification in single platelets, as well as the electrochemistry of complex systems like Pickering emulsions and water-in-oil emulsions without relying on redox probes. The lab’s work bridges fundamental electrochemistry with practical applications in environmental monitoring, clinical diagnostics, and materials science.
Professor Hyoung Kyu Cho's research lab specializes in thermal-hydraulic safety analysis of nuclear reactor systems, with a focus on two-phase flow phenomena, film condensation, and emergency core cooling under accident conditions. The lab develops and validates advanced simulation codes such as CUPID and MARS, integrating experimental validation with innovative sensor technologies like flexible three-electrode conductance probes for accurate measurements in complex, high-temperature, and dynamic environments. Research directions include passive safety systems, scaling methodologies for reactor safety analysis, and the impact of external motions on marine nuclear reactors.
Professor Sunghee H. Tak's research lab focuses on aging, long-term care, and health technology, with an emphasis on improving quality of life for older adults, particularly those with dementia. The lab investigates eHealth literacy, digital health interventions, and the role of technology in long-term care settings to support independence and well-being. Research also explores person-centered approaches to health promotion, stress management, and fall prevention tailored to older adults’ psychological and social needs.
Professor Yoon Jun Kim's research lab focuses on the molecular mechanisms underlying liver diseases, particularly hepatocellular carcinoma (HCC) and cholangiocarcinoma (CC), with an emphasis on identifying genetic and molecular subtypes through integrative oncogenomics. The lab investigates genetic susceptibility variants, particularly in the context of chronic hepatitis B virus (HBV) infection, and explores the role of key signaling molecules such as TGF-beta1 in hepatocarcinogenesis. Additionally, the lab contributes to translational research in non-alcoholic fatty liver disease (NAFLD), evaluating therapeutic interventions like oltipraz. The lab also engages in materials science, developing supramolecular electrolytes for enhanced dye-sensitized solar cells, reflecting a multidisciplinary approach to biomedical and energy applications.
Professor Myung-Joo Kim's research lab specializes in biomaterials and dental implant technology, focusing on the development and evaluation of advanced polymers and metal alloys for orthopedic and dental applications. The lab investigates the mechanical behavior, surface properties, and biological responses of materials such as PEEK, titanium, and Co-Cr alloys, with an emphasis on fatigue resistance, osseointegration, and implant fit accuracy. Research also extends to the biological effects of natural extracts on liver injury, reflecting a multidisciplinary approach combining materials science, biomedical engineering, and pharmacology. The lab leverages cutting-edge fabrication techniques like laser sintering and CAD/CAM to advance digital dentistry and implant design.
Professor Kyunghwan Choi's research lab specializes in advanced control systems and intelligent sensing technologies for electromechanical systems, with a strong focus on electric machines, hybrid electric vehicles, and upper limb prosthetics. The lab develops innovative fault diagnosis, real-time parameter estimation, and optimal control strategies for permanent magnet synchronous motors (PMSMs) and interior PMSMs, addressing challenges related to model uncertainties, load variations, and computational efficiency. In the biomedical domain, the lab pioneers compact, multi-modal sensory feedback systems using electrotactile stimulation to restore tactile perception in forearm prostheses, emphasizing cognitive accuracy and miniaturization for clinical integration. The research integrates control theory, signal processing, and human-machine interaction to enable smarter, more responsive electromechanical systems.
Professor Mojca Jazbinšek's research lab specializes in advanced photonic materials, with a primary focus on organic nonlinear optical (NLO) crystals for terahertz (THz) photonics. The lab explores the design, synthesis, and characterization of acentric organic crystals—particularly stilbazolium-based and other π-conjugated systems—engineered for ultrafast, broadband THz wave generation and detection. Key research directions include molecular engineering of supramolecular structures to enhance second-order optical nonlinearity, understanding structure-property relationships, and developing novel photonic devices such as polymer-dispersed liquid crystal gratings and photorefractive waveguides. The lab also investigates materials for high-speed optical signal processing and integrated photonic circuits.
Professor Yoon Ha's research lab specializes in regenerative medicine and neural repair, with a primary focus on stem cell therapy for spinal cord injury (SCI). The lab investigates the therapeutic potential of various stem cells—such as bone marrow-derived, neural, and umbilical cord blood–derived stem cells—combined with growth factors like GM-CSF to enhance neuronal survival and functional recovery. Key research directions include improving stem cell survival in the hostile post-injury microenvironment through co-transplantation strategies and exploring the endogenous neurogenic potential of circulating stem cells in early postnatal life. The lab also examines biomechanical factors in spinal deformity surgery, particularly proximal junctional kyphosis (PJK), to optimize long-term spinal stability and patient outcomes.
Professor Ik Seon Kwon's research lab specializes in the design, synthesis, and characterization of two-dimensional transition metal dichalcogenide (TMD) nanomaterials for sustainable energy applications. The lab focuses on engineering electronic and crystal structures through alloying, doping, and defect engineering to enhance electrocatalytic performance in hydrogen evolution reaction (HER) and overall water splitting. Key research directions include phase transition control (e.g., 2H to 1T'), atomic-scale defect modulation, and the development of earth-abundant electrocatalysts for clean hydrogen production.
Professor Heetae Cho's research lab specializes in tourism and leisure studies, with a strong focus on the psychological and emotional drivers behind tourist behavior, particularly nostalgia, identity, and well-being. The lab investigates how nostalgia—especially in sport tourism and cultural events—shapes life satisfaction, behavioral intentions, and volunteer engagement. It also explores the impact of external factors such as global crises (e.g., the COVID-19 pandemic) on consumer behavior, including impulse buying in fitness and tourism contexts. The lab emphasizes the development of valid psychometric tools, such as the Nostalgia Scale for Sport Tourism, to advance theoretical and practical understanding in tourism psychology.
Professor Eunkyoung Han's research lab specializes in consumer behavior, digital media influence, and sustainable consumption, with a strong focus on reputation dynamics in online environments. The lab investigates how social media influencers, online reviews, and digital reputation affect consumer decision-making, particularly in the context of e-commerce and sustainability. Key research directions include the psychological and social factors influencing consumer intentions, such as perceived reputation, regulatory focus, and environmental responsibility. The lab also explores the role of digital platforms and message framing in shaping attitudes and behaviors toward nonprofit engagement and zero-waste products.
Professor Sangkyu Lee's research lab specializes in molecular toxicology and systems biology, focusing on the mechanisms of drug-induced and environmental toxicities, particularly in the liver and nervous system. The lab employs multi-omics approaches—integrating transcriptomics, proteomics, and metabolomics—to dissect the pathophysiological mechanisms of diseases such as tuberculosis-related liver injury, perfluorooctanesulfonic acid (PFOS) neurotoxicity, and castration-resistant prostate cancer. A key focus is on post-translational modifications, including novel histone modifications like lysine acetoacetylation, and the role of metabolic enzymes such as SIRT5 in cancer progression. The lab also investigates drug metabolism and pharmacokinetics across species to support translational drug development.
Professor Jinho Chang's research lab specializes in electrochemical science and materials chemistry, with a focus on understanding fundamental electron transfer processes at electrified interfaces. The lab investigates redox mechanisms in energy storage systems such as metal-ion batteries, redox flow batteries, and electrochemical capacitors, emphasizing the role of electrolyte speciation, ion transport, and interfacial reactions. Advanced electroanalytical techniques like fast-scan cyclic voltammetry, scanning electrochemical microscopy (SECM), and ultramicroelectrodes are employed to probe complex reaction pathways, including alloying, ligand-coupled electron transfer, and parasitic side reactions. The lab also explores quantum aspects of entanglement in fermionic systems, demonstrating a unique interdisciplinary reach into quantum information science.
Professor Hae Sun Suh's research lab specializes in pharmacoepidemiology and health services research, focusing on medication safety, cardiovascular disease management, and health policy evaluation using large-scale national claims databases in South Korea. The lab investigates drug-related adverse effects such as osteonecrosis of the jaw, drug-induced parkinsonism, and bleeding risks with anticoagulants, while also examining disparities in healthcare utilization and treatment outcomes across different patient populations. A key strength lies in leveraging real-world evidence to inform clinical practice and health system interventions, particularly for chronic conditions like osteoporosis, atrial fibrillation, and dyslipidemia.