探索全球顶尖大学的研究室——研究领域与主要论文一览无余。
Professor Yeerin Choi's research lab specializes in the design and synthesis of synthetic receptors and foldamers for selective ion transport and sensing, with a focus on anion recognition and transport across lipid and cellular membranes. The lab develops stimuli-responsive systems, including light- and enzyme-activated carriers, to achieve precise spatiotemporal control over ion flux. A key theme is the creation of functional molecular architectures—such as helical foldamers and macrocycles—that exhibit responsive optical properties (e.g., fluorescence turn-on) upon anion binding, enabling applications in biosensing. The research integrates supramolecular chemistry, physical organic chemistry, and bioorganic chemistry to address challenges in membrane transport and molecular recognition.
Professor Ji Seon Song's research lab focuses on regenerative medicine and biomaterials, with a strong emphasis on mesenchymal stem cells (MSCs) derived from human tonsillar tissue. The lab investigates the biological characteristics, differentiation potential, and clinical applicability of tonsil-derived MSCs, particularly in relation to donor age, long-term culture, and cryopreservation. Additionally, the lab explores tissue engineering strategies using biodegradable scaffolds, such as PLGA/CaP composites, to modulate foreign body giant cell responses and improve implant integration. The research also extends to infectious diseases, including rare fungal and algal infections like protothecosis, and molecular mechanisms in cancer, particularly angiogenesis in renal cell carcinoma.
Professor Yerin Choi's research lab specializes in the design and synthesis of functional synthetic receptors and foldamers for selective ion transport and molecular recognition. The lab focuses on developing stimuli-responsive transporters—such as light-activated chloride carriers and enzyme-activated procarriers—that enable precise control over ion flux across lipid and cellular membranes. A key theme is the creation of dynamic, adaptive systems that respond to specific biological or environmental cues, including light, enzymes, or anions, for applications in sensing and targeted delivery. The lab also investigates helical foldamers and macrocycles that exhibit unique optical responses upon binding, enabling the development of highly selective fluorescent probes.
Professor Dong-hee Seo's research lab focuses on environmental and agricultural economics, with a strong emphasis on sustainable resource management, energy policy, and the economic impacts of international trade and climate change. The lab investigates key issues such as the effects of agricultural imports on domestic markets, the role of renewable energy in reducing air pollution, and consumer preferences for eco-friendly agricultural practices. Research also explores the interplay between energy prices, biofuels, and carbon emissions, particularly in the transportation sector, using advanced econometric modeling and experimental methods.
Professor Yong-Sook Lee’s research lab focuses on the role of the state and institutional frameworks in shaping regional and industrial development within globalized economic systems. The lab investigates strategic state interventions in industrial policy, particularly how developmental states actively shape innovation clusters and global value chains through targeted governance and policy coordination. Key research directions include the dynamics of regional development policy, the international transfer of urban and industrial policies, and the interplay between global networks and local institutional contexts. The lab emphasizes multi-scalar governance and the strategic role of the state in fostering knowledge-based and technology-driven industrialization.
Professor Joo-Hyuk Jung's research lab specializes in sport psychology, physical education, and youth development, with a strong focus on the psychological and motivational factors influencing student-athletes and school-aged youth. The lab investigates key constructs such as perfectionism, self-determination, goal orientation, and intrinsic motivation within educational and athletic contexts, particularly emphasizing how autonomy support, psychological need satisfaction, and self-efficacy shape students' well-being, academic and athletic performance, and career decision-making. The research also extends to public health initiatives, including physical activity promotion strategies in schools and evidence-based guidelines for youth physical activity. The lab employs quantitative methods such as structural equation modeling, regression analysis, and multigroup analysis to explore developmental and gender differences in psychological and behavioral outcomes.
Professor Sin-Woo Lee's research spans environmental science, sustainable manufacturing, and geochemical analysis, with a strong focus on isotopic tracing for pollution source identification and green productivity assessment. His lab investigates environmental contaminants such as MTBE and petroleum hydrocarbons using stable isotope signatures to trace origins and support remediation strategies. Additionally, the lab explores sustainable industrial practices, including green productivity in manufacturing and efficient food processing techniques like salting and dehydration. The integration of analytical chemistry with real-world environmental challenges defines the lab’s interdisciplinary approach.
Professor Young-jin Kim's research focuses on Korean literary and intellectual history, particularly the works of late Joseon dynasty scholars and writers. His lab specializes in the study of personal writings—such as travel diaries, letters, and literary collections—offering deep insights into individual subjectivity, emotional expression, and political resistance under imperial and colonial rule. The lab emphasizes textual analysis of rare manuscripts, including *Wawayu-rok* (a genre of mountain and landscape travelogues), *Nanji-ilro* (exile diaries), and Confucian or Buddhist-influenced literary works, with a strong focus on material culture such as seals and calligraphy. The research also explores the intersection of literature, politics, and identity, especially in the context of Korean Marxism and the intellectual legacy of marginalized scholars.
Professor Han-Sol Do's research lab specializes in the development and application of sustainable, bio-based materials for food science and biomedical technologies. The lab focuses on extracting and utilizing nanocellulose from marine and food by-products to create advanced bionanocomposites with enhanced mechanical, barrier, and functional properties. A key research direction involves the design of luminescent nanoprobes for in-vivo imaging and the evaluation of food quality using innovative sensor systems. The lab also investigates the bioavailability and nutritional value of essential micronutrients in marine organisms, contributing to food safety and sustainability.
Professor Seung Min Han's research lab focuses on the intersection of microbiome science, metabolic health, and neurodegenerative diseases, with a particular emphasis on how gut microbial metabolites influence systemic inflammation and neuroinflammation. The lab investigates the role of polymeric flavonoids and their microbial derivatives—such as 5-(3',4'-dihydroxyphenyl)-γ-valerolactone—in modulating immune responses and endothelial function. Additionally, the lab explores sex-specific and chronotype-related influences on mental health, as well as the pathophysiological mechanisms linking metabolic and adipokine signaling (e.g., leptin) to Alzheimer’s disease pathology. Advanced multi-omics technologies, including NGS-based metagenomics and targeted drug delivery systems using magnetic nanomaterials, further expand the lab’s translational research portfolio.
Professor Jieun Park's research lab specializes in interdisciplinary studies at the intersection of consumer behavior, digital innovation, and health sciences. The lab investigates consumer decision-making in emerging digital commerce environments, such as T-commerce and smart shopping ecosystems, while also exploring the biomedical and pharmacological effects of traditional herbal medicines. Additionally, the lab applies advanced engineering methods, including finite element analysis and AHP modeling, to evaluate medical implants and strategic futures in telecommunications. These diverse research directions reflect a strong focus on real-world applications in healthcare, technology adoption, and strategic foresight.
Professor So Yeon Won's research lab focuses on vascular and neural development, with a central emphasis on the molecular and cellular mechanisms underlying angiogenesis and neurodevelopmental disorders. The lab investigates ciliary mechanosensation and tubulin posttranslational modifications in vascular biology, as well as the role of extracellular matrix factors in Schwann cell development and peripheral nerve repair. Additionally, the lab applies advanced imaging and artificial intelligence to improve diagnostic accuracy in cerebrovascular and neurodegenerative diseases. Their work bridges basic cell biology with translational applications in autism spectrum disorder, aneurysm detection, and neurodegenerative conditions such as Alzheimer’s disease.
Professor In-Sang Yoo's research lab specializes in advanced electromagnetic metasurface technologies for next-generation wireless communication systems. The lab focuses on designing reconfigurable, compact, and energy-efficient metasurface antennas that enable spatial multiplexing, beamforming, and MIMO operation in millimeter-wave and sub-THz bands. Key research directions include dynamic metasurface design, waveguide- and cavity-backed antenna architectures, and analytic modeling for radiation pattern synthesis with minimal reliance on time-consuming full-wave simulations. The lab also explores applications in massive MIMO, OFDM systems, and conformal arrays for 5G/6G and beyond.
Professor Sae-hee Ahn's research lab specializes in medical physics and nanomaterials for radiation oncology, focusing on enhancing radiation therapy through advanced materials and dosimetry techniques. The lab investigates gold and iron oxide-based nanomaterials as radiosensitizers to improve tumor dose enhancement, while also developing innovative solutions for proton therapy beam modulation to optimize dose distribution in small fields. Their work spans from Monte Carlo simulations and in-vivo imaging validation to clinical feasibility studies, with strong emphasis on translational applications in cancer treatment.
Professor In Young Chae's research lab specializes in digital marketing, artificial intelligence in business, and consumer behavior in digital environments. The lab explores innovative marketing strategies such as seeded marketing campaigns, online ad repetition effects, and novel promotional mechanisms like 'wait for free' for digital content. It also investigates the impact of digital access models—such as paywall suspensions—and the role of AI agents in transforming IT management and decision-making across industries. The research integrates behavioral insights with advanced analytics and AI technologies to address real-world challenges in digital commerce and technology adoption.
Professor Myung Seo Kim's research lab specializes in orthopedic regenerative medicine and biomechanics, focusing on rotator cuff repair, fracture healing, and joint pathology such as femoroacetabular impingement and hip dysplasia. The lab investigates biological and biomechanical risk factors affecting tissue repair outcomes, with particular emphasis on diabetes mellitus, patient-specific factors, and stem cell therapy in musculoskeletal regeneration. Advanced imaging and experimental models, including rat fracture models and arthroscopic assessments, are used to evaluate tissue integrity and healing potential.
Professor Chul-In Lee's research lab specializes in labor economics, intergenerational income mobility, and public finance, with a strong focus on empirical macroeconomics and policy evaluation. The lab investigates time-series trends in income mobility using high-quality longitudinal data, corrects for finite-sample biases in econometric estimation—particularly in instrumental variable models—and evaluates the effectiveness of labor market and employment subsidy programs. It also engages in macroeconomic modeling of sovereign debt dynamics and financial crises, especially in the context of monetary unions and peripheral economies.
Professor Nam Guk Kim's research lab focuses on deliberative democracy, multiculturalism, and human rights in the context of global migration and cultural diversity. The lab explores normative theories of citizenship, cultural rights, and political inclusion, emphasizing deliberative models such as 'deliberative multiculturalism' that balance individual rights, social cohesion, and intercultural dialogue. It critically examines the tensions between freedom of expression, religious liberty, and hate speech in multicultural societies, particularly through the lens of political philosophy and comparative policy analysis.
Professor Hyun Ju Jung's research lab specializes in innovation management, corporate sustainability, and the strategic use of knowledge in technology and platform ecosystems. The lab investigates how firms search for and leverage knowledge—particularly original or rare technologies—to drive breakthrough innovations, enhance environmental performance, and improve energy efficiency. It also explores the role of institutional factors, such as bribery and government interactions, in shaping firm growth and innovation strategies. A central theme is understanding the interplay between firm behavior, knowledge sharing, and external pressures in dynamic technological and institutional environments.
Professor Jang Hye-ran's research lab specializes in ophthalmic clinical and translational research, with a focus on anterior segment diseases, corneal wound healing, and ocular complications following refractive and cataract surgeries. The lab investigates the role of stress proteins such as heat shock proteins in ocular tissue responses to thermal preconditioning and laser treatment, aiming to improve surgical outcomes. Additionally, the lab explores genetic associations—particularly HLA-B51—in inflammatory ocular disorders like Behçet’s disease and recurrent aphthous stomatitis, contributing to diagnostic and pathogenic insights. The lab also addresses clinical challenges in ocular surface disease, including contamination risks in preserved and preservative-free artificial tears and rare lacrimal system pathologies such as lacrimal sac diverticulum.