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 Jae Won Kim's research lab specializes in advanced materials and optoelectronic devices, with a strong focus on plasmonics, organic semiconductors, and sustainable energy technologies. The lab develops novel nanomaterials—such as silver nanowire-based transparent electrodes and crosslinkable semiconducting polymers—to enhance the performance and stability of organic solar cells, OLEDs, and photovoltaic devices. Key research directions include plasmon-coupled light management, morphology control in bulk heterojunction systems, and green-processable materials for flexible and efficient optoelectronics. The lab also explores innovative manufacturing techniques, such as multi-pulse resistance spot welding, to advance materials processing in industrial applications.
Professor Young Sun Kim's research lab focuses on aging, mental health, and health technology use among older adults, with a particular emphasis on mental health literacy, digital health information seeking, and technology adoption across diverse older populations. The lab investigates socio-demographic and structural factors influencing access to mental health services and digital health resources, especially among Korean and U.S. older adults. Research directions include health literacy, smartphone use for health information, and the role of frailty and social determinants in technology acceptance among older adults.
Professor Sooman Lim's research lab specializes in advanced functional materials and printed electronics, with a strong focus on developing flexible, wearable, and self-powered electronic systems. The lab pioneers innovative fabrication techniques such as electrohydrodynamic and 3D printing to create high-performance conductive and piezoelectric materials for next-generation devices. Key research directions include conductive polymer composites, nanostructured piezoelectric materials, and low-cost alternatives to noble metal inks for sustainable printed electronics.
Professor Euna Han's research lab focuses on health economics and health disparities, with a particular emphasis on the socioeconomic determinants of health outcomes. The lab investigates how factors such as body mass index, income level, race/ethnicity, and access to healthcare influence health behaviors, mental health service utilization, and mortality—especially among older adults and marginalized populations. Key research directions include the intersection of obesity and labor market outcomes, racial and socioeconomic disparities in prescription drug use, and the impact of food environments on dietary patterns. The lab also examines the role of social determinants in shaping health behaviors and outcomes across the life course.
Professor Phill-Seung Lee's research lab specializes in advanced marine and offshore structural systems, with a focus on the design, analysis, and safety of floating and submerged nuclear power plants. The lab conducts cutting-edge research in hydrodynamic analysis of flexible floating structures, employing advanced numerical methods such as finite element and boundary element formulations to model complex fluid-structure interactions under wave and dynamic loading. Key research directions include the development of innovative offshore nuclear power plant concepts—such as spar-type, gravity-based, and submerged designs—alongside the integration of safety and structural integrity in extreme marine environments. The lab also contributes to the advancement of next-generation nuclear energy systems with a strong emphasis on passive safety and environmental resilience.
Professor Dongtak Jeong's research lab focuses on molecular mechanisms underlying cardiac remodeling, with a central emphasis on signaling pathways, non-coding RNAs, and extracellular modulators in heart failure and fibrosis. The lab investigates key regulators such as PICOT, microRNAs (e.g., miR-25), and matricellular proteins (e.g., CCN5 and Cytl1) to understand their roles in cardiac hypertrophy, fibrosis, and contractile dysfunction. Using integrative approaches including genetic manipulation, EV isolation, and functional genomics, the lab aims to identify novel therapeutic targets for heart disease.
Professor Yongseok Hong's research lab specializes in environmental chemistry and biogeochemistry, focusing on the fate, transformation, and toxicity of mercury and other contaminants in aquatic and terrestrial ecosystems. The lab investigates mercury methylation, speciation, and biomagnification in food webs, particularly in coastal and estuarine environments such as Sarasota Bay and the Mekong Delta. Key research directions include the role of microbial communities in mercury cycling, the impact of geochemical conditions on metal speciation, and the development of advanced monitoring techniques for trace metals and plasticizers in sediments and water. The lab also explores innovative solutions for mercury control in industrial wastewater and air emissions, emphasizing the formation and re-emission of volatile mercury species.
Professor Chae Seung Lim's research lab specializes in the development and evaluation of rapid, sensitive, and point-of-care diagnostic tools for infectious diseases, with a focus on emerging viral pathogens such as SARS-CoV-2, dengue, influenza, and respiratory syncytial virus (RSV). The lab integrates molecular diagnostics, including RT-LAMP and RT-PCR technologies, with innovative digital readout systems to enhance detection accuracy and clinical utility. Their work emphasizes translational research, aiming to bridge laboratory innovations with real-world diagnostic applications in resource-limited and clinical settings.
Professor Hyun Hwi Lee's research lab specializes in the fundamental understanding and engineering of organic semiconductor thin films, with a focus on molecular self-assembly, nanostructure evolution, and interfacial phenomena in organic heterojunction systems. The lab investigates the growth mechanisms and crystallographic transitions in materials such as ZnPc and its blends with C60, aiming to control nanoscale morphology for optoelectronic applications. Key research directions include strain-driven phase transitions, nanograin formation, and the development of high-performance organic photovoltaics and field-effect transistors.
Professor Jin Chul Kim's research lab specializes in the design and development of smart, functional materials with a focus on self-healing polymers, photocatalytic nanomaterials, and energy-efficient devices. The lab explores dynamic polymer networks integrated with photothermal agents for applications in self-healing coatings, transparent conductive films, and sustainable chemical conversion processes. Key research directions include the synthesis of hybrid nanomaterials for enhanced photocatalysis under visible light and the engineering of thermoacoustic loudspeakers with intrinsic self-repairing capabilities. The lab emphasizes practical applications in optics, renewable energy, and advanced electronics.
Professor Ramphal Sharma's research lab specializes in the synthesis, characterization, and application of nanostructured semiconductor thin films, with a focus on doped chalcogenides like CdS. The lab investigates the influence of doping (e.g., Ag) and post-deposition annealing on the structural, optical, and electrical properties of these materials for optoelectronic and photovoltaic applications. Key research directions include the development of low-cost, room-temperature fabrication techniques and the optimization of thin film properties for solar energy conversion and electronic devices.
Professor Seok Hyun Cho's research lab focuses on respiratory and inflammatory diseases, with a strong emphasis on chronic rhinosinusitis (CRS), asthma, and obstructive sleep apnea. The lab investigates the immunological and microbiological mechanisms underlying these conditions, particularly the role of type 1 and type 2 T cell responses, IgE sensitization, and microbial dysbiosis. It also explores innovative diagnostic technologies, such as impulse-radio ultra-wideband radar, for non-invasive detection of sleep-disordered breathing. The lab integrates clinical immunology, microbiome analysis, and biomedical engineering to advance understanding and management of chronic airway diseases.
Professor Seulah Lee's research lab specializes in the isolation, structural elucidation, and biological evaluation of bioactive natural products from medicinal mushrooms, fungi, and aromatic plants. The lab focuses on identifying novel compounds with antitumor, anti-inflammatory, and antiproliferative activities, employing advanced spectroscopic and computational techniques such as NMR, HR-MS, ECD, and DP4+ analysis. Key research directions include the discovery of structurally unique metabolites and the investigation of their molecular mechanisms in cancer and inflammatory diseases.
Professor Young-Suk Lee's research lab focuses on post-transcriptional gene regulation, particularly the dynamic modifications of messenger RNA, including poly(A) tail remodeling and mRNA demethylation. The lab investigates the enzymatic mechanisms and functional implications of RNA modifications such as guanylation and m6A demethylation, with a strong emphasis on their roles in mRNA stability, translation, and signaling pathways like WNT. Using integrative approaches combining biochemistry, molecular biology, and systems-level analyses, the lab explores how these RNA modifications influence cellular physiology and disease, including infertility and metabolic disorders. The work bridges fundamental RNA biology with translational applications in human health and agriculture.
Professor Seong Eon Ryu's research lab specializes in structural biology and enzymology, focusing on the molecular mechanisms of key regulatory proteins involved in cellular signaling and redox homeostasis. The lab investigates enzymes such as HIF- and Eya-family transcriptional regulators, dual-specificity phosphatases, and thioredoxin superfamily proteins, with an emphasis on understanding their structural basis for substrate specificity and catalytic function. By combining X-ray crystallography with biochemical and functional analyses, the lab uncovers how these proteins control critical biological processes in development, cancer, and disease. Their work provides structural insights into therapeutic targets for cancer, metabolic disorders, and autoimmune diseases.
Professor Ji-Yong Moon's research lab focuses on identifying bioactive natural compounds from plants and endogenous metabolites for their therapeutic potential in metabolic and inflammatory diseases. The lab investigates the molecular mechanisms of enzymes such as arginase and nitric oxide synthase in metabolic syndrome, obesity, and chronic lung diseases, with an emphasis on arginine metabolism and its impact on vascular and hepatic function. Proteomics and metabolomics approaches are employed to discover novel biomarkers and therapeutic targets for precision medicine in metabolic and pulmonary disorders.
Professor Jaesik Choi's research lab specializes in intelligent systems and robotics, focusing on advanced perception, planning, and control for autonomous vehicles, quadrotors, and robotic manipulation. The lab develops innovative methods in computer vision, deep reinforcement learning, and probabilistic modeling to address real-world challenges such as video shot matching, multi-robot task allocation, and time-optimal trajectory tracking. Key research directions include spatio-temporal reasoning, relational continuous modeling, and adaptive control for dynamic environments. The lab emphasizes scalable, efficient algorithms that integrate perception with decision-making and motion planning in complex, uncertain settings.
Professor Yang Hyun Cho's research lab specializes in interventional cardiology and cardiovascular critical care, with a focus on advanced structural heart interventions and hemodynamic support in high-risk patients. The lab investigates innovative techniques such as prophylactic left atrial drainage during ECMO and percutaneous closure of atrial septal defects in patients with severe pulmonary hypertension. Their work emphasizes improving outcomes in critical cardiac care through early intervention and personalized management strategies.
Professor Jung Seung Lee's research lab specializes in advanced biomaterials and tissue engineering, focusing on developing bioinspired scaffolds and functional coatings to enhance tissue regeneration. The lab pioneers innovative strategies such as decellularized extracellular matrix platforms, catechin-based surface modifications, and autoxidation-driven hydrogels for applications in liver and bone regeneration, vascular engineering, and injectable cell delivery. A key emphasis is placed on creating biocompatible, long-lasting, and clinically applicable systems that mimic native tissue microenvironments for improved therapeutic outcomes. The lab also explores smart bioelectronic devices, such as pH-sensing sutures, for real-time wound monitoring, bridging tissue engineering with clinical diagnostics.
Professor Jaemin Jung's research lab specializes in technology adoption, digital media behavior, and cybersecurity, with a strong focus on consumer attitudes toward emerging technologies and digital content. The lab investigates factors influencing e-book reader adoption, news overload and avoidance in digital environments, and employee burnout in media organizations, particularly in the context of South Korea’s advanced digital landscape. Additionally, the lab explores technical solutions in mobile security and next-generation storage systems, including machine learning-based malware detection and hybrid file systems for emerging memory technologies. These interdisciplinary efforts bridge social science insights with computer science innovations to address real-world challenges in digital media and information systems.