Explore research labs at leading universities worldwide — research fields and key papers at a glance.
Professor Jeonsh's research lab specializes in advanced oxide materials and nanostructured devices for next-generation electronic applications. The lab focuses on hafnia-based ferroelectrics and ferroelectric tunnel junctions (FTJs), exploring their integration into non-volatile memories, neuromorphic computing, and ultra-thin, scalable devices. Key research directions include enhancing ferroelectric stability, improving tunneling electroresistance, and developing CMOS-compatible, flexible, and stretchable electronic systems such as electronic skin. The lab also investigates the interfacial and environmental stability of rare-earth oxides and metal-oxide semiconductors for high-performance, energy-efficient sensors and memory devices.
Professor Jin-soo Lee's research lab specializes in tourism, hospitality, and service management, with a strong focus on consumer behavior, brand equity, and sustainable practices in the hospitality industry. The lab investigates key drivers of customer satisfaction, loyalty, and behavioral intentions, particularly in the context of green hotels, festivals, and shopping tourism. It also explores the asymmetric impacts of service attributes on satisfaction and the role of emotional and functional values in shaping consumer perceptions. The lab integrates advanced analytical methods such as structural equation modeling, impact asymmetry analysis, and graph-based algorithms to address real-world service and marketing challenges.
Professor Koo Chulmo's research lab focuses on the intersection of tourism, emerging technologies, and digital transformation, with a strong emphasis on smart tourism, the metaverse, and social media-driven travel behaviors. The lab explores how advanced technologies such as ICT, AI, and immersive platforms reshape tourist experiences, destination management, and business models in the tourism industry. Key research directions include the development of smart tourism city frameworks, the psychological and behavioral aspects of online travel reviews, and the evolving identity and expectations of digital-age travelers. The lab also investigates the theoretical and practical implications of integrating tourism with smart city ecosystems and the creative economy of virtual tourism.
Professor Eun Chul Cho's research lab specializes in the design, synthesis, and application of functional nanomaterials, with a focus on gold and silver nanostructures for biomedical and responsive materials applications. The lab investigates the cellular uptake mechanisms of nanoparticles, leveraging surface chemistry and stimuli-responsive polymers like PNIPAM to control interactions with biological systems. Key research directions include the development of plasmonic nanostructures for imaging and photothermal therapy, as well as smart hydrogel scaffolds with rapid, tunable swelling behavior for advanced drug delivery and tissue engineering. The lab combines advanced characterization techniques such as photoacoustic imaging and temperature-modulated calorimetry to probe nanomaterial behavior at the molecular and cellular levels.
Professor Eun-Hee Kim's research lab focuses on molecular mechanisms underlying cancer progression, particularly in gliomas and hairy cell leukemia, with an emphasis on identifying novel therapeutic targets through pathways such as NRF2/KEAP1 and BRAFV600E signaling. The lab also investigates fibrotic and inflammatory disorders, including intestinal fibrosis in inflammatory bowel disease and acute kidney injury following pediatric cardiac surgery, highlighting translational research in disease pathogenesis and treatment. A recurring theme is the exploration of natural compounds and small molecules as potential therapeutics, especially in targeting cell death pathways and oxidative stress responses. The lab integrates molecular biology, preclinical disease modeling, and clinical data analysis to advance precision medicine approaches in oncology and chronic inflammatory diseases.
Professor Duksoo Bae's research lab focuses on molecular oncology and cancer immunology, with a primary emphasis on identifying key molecular mechanisms underlying cervical and ovarian carcinomas. The lab investigates tumor suppressor genes such as BRD7 and signaling molecules like TLR9, ICAM-3, and sphingosine kinase 1 (SK1) to understand their roles in cancer progression, therapy resistance, and immune modulation. Using in vitro, in vivo, and clinical tissue-based approaches, the lab aims to discover novel biomarkers and therapeutic targets for gynecological cancers.
Professor Jung-Won Park's research lab focuses on allergic diseases, particularly food allergy and airway hyperresponsiveness, with an emphasis on identifying major allergens and understanding the immunological and molecular mechanisms underlying asthma and airway remodeling. The lab investigates the role of key inflammatory mediators such as TGF-β1 and IL-1β in lung fibrosis and hyperreactivity, especially in the context of metabolic stress and environmental exposures. Additionally, the lab applies advanced analytical techniques to study DNA adducts and oxidative damage, linking molecular changes to disease pathogenesis. Their work bridges clinical immunology, molecular biology, and environmental health.
Professor Soo Jin Jeong's research lab specializes in clinical and translational oncology, with a focus on rare and aggressive urological and renal malignancies, including unusual variants of renal cell carcinoma and plasmacytoid transitional cell carcinoma. The lab also investigates infectious complications in autoimmune diseases such as systemic lupus erythematosus (SLE), emphasizing risk factors and clinical outcomes. Additionally, the lab explores metabolic and renal protective therapies in diabetes, particularly the real-world use and barriers to SGLT2 inhibitor use in patients with type 2 diabetes and chronic kidney disease. The research integrates histopathology, clinical epidemiology, and translational medicine to improve patient outcomes in complex chronic and inflammatory conditions.
Professor Jun Ho Lee's research lab specializes in molecular and genetic mechanisms underlying neurodegenerative diseases, particularly Alzheimer’s disease, with a focus on developing culturally adapted cognitive assessment tools such as CERAD-K. The lab also investigates fundamental cellular signaling pathways, including TGF-β and RAS-MAPK in epithelial-mesenchymal transitions, and explores gene editing technologies like CRISPR-Cas9 in model organisms such as *C. elegans*. Additionally, the lab contributes to cybersecurity in cloud computing environments, emphasizing the balance between intrusion detection and system performance. These diverse research directions reflect a strong integration of biomedical genetics and computational systems biology.
Professor Ji Hoon Jeong's research lab specializes in the development of advanced drug delivery systems, particularly for nucleic acid-based therapeutics such as siRNA, antisense oligonucleotides, and DNA. The lab focuses on designing smart, biocompatible nanocarriers—including bioconjugates, micelles, hydrogels, and microneedles—that enable targeted, sustained, and stimuli-responsive delivery to specific cells or tissues. Key innovations include pH- and temperature-sensitive hydrogels, polymer-oligonucleotide conjugates, and surface-functionalized nanomaterials like graphene quantum dots for enhanced in vivo performance. The overarching goal is to overcome biological barriers to nucleic acid delivery and improve therapeutic efficacy in cancer and immunotherapy applications.
Professor Hong Seong-Hyeon's research lab specializes in the design, synthesis, and application of advanced functional materials, with a strong focus on energy storage and conversion systems. Key research directions include the development of high-capacity, stable cathode and anode materials for lithium-ion batteries—particularly nickel-rich layered oxides, silicon-based nanostructures, and core-shell architectures—alongside functional ceramics and bioceramics for biomedical applications. The lab emphasizes innovative synthesis strategies, such as templated growth, atomic layer deposition, and surface engineering, to enhance material performance and durability. Their work bridges materials chemistry, solid-state physics, and electrochemistry to address critical challenges in energy and healthcare technologies.
Professor Jung Ho Ahn's research lab focuses on computer architecture and system-level optimization for emerging manycore and heterogeneous computing systems. The lab explores high-performance, energy-efficient memory systems, scalable interconnects for large-scale systems, and specialized accelerators for data-intensive workloads. Key research directions include memory hierarchy design, adaptive routing in large-scale networks, and simulation infrastructure for next-generation manycore processors.
Professor Jongho Ahn's research lab focuses on computer architecture and systems, with a strong emphasis on designing energy-efficient, scalable, and high-performance computing systems for emerging manycore and exascale platforms. The lab explores innovative interconnect topologies such as HyperX, adaptive routing algorithms, and novel memory system architectures—including multicore DIMMs and hierarchical register files—to address bandwidth, power, and scalability challenges. Research also extends to stream processing, microarchitecture simulation, and the impact of process technology scaling on reliability and energy efficiency. The lab integrates hardware-software co-design principles to optimize system-level performance and energy efficiency.
Professor Youngseok Park's research lab focuses on gastrointestinal and neuroendocrine tumors, with a strong emphasis on metastatic colorectal cancer, hindgut neuroendocrine tumors (NETs), and advanced gastric and hepatobiliary cancers. The lab investigates molecular markers such as KRAS and ATM mutations to understand their prognostic and predictive roles in disease progression and treatment response. It also explores novel targeted therapies, including anti-angiogenic agents like tanibirumab, and evaluates treatment strategies to optimize survival and quality of life in metastatic settings. The lab integrates clinical oncology with translational research to improve outcomes in patients with rare and aggressive gastrointestinal malignancies.
Professor Dae-Sik Kim's research lab specializes in the development and application of precision genome-editing technologies, with a focus on improving the specificity and safety of CRISPR-based systems such as Cas9 and prime editors. The lab employs innovative in vitro and in-cell approaches—like Digenome-seq and nDigenome-seq—to comprehensively map on-target and off-target cleavage activities, particularly in the context of chromatin structure and transcriptional regulation. Their work also extends to clinical applications, including the molecular characterization of thyroid cancers and the optimization of medical imaging for brain tumor diagnosis.
Professor Giltsu Choi's research lab focuses on plant developmental biology, with a central emphasis on the molecular mechanisms underlying light signaling, hormone regulation, and secondary metabolism in angiosperms. The lab investigates how transcription factors such as PIFs and PIL5 integrate environmental cues—particularly light and gibberellin signaling—to control key developmental transitions like seed germination and photomorphogenesis. A major research direction involves dissecting the roles of phytochromes and jasmonate in regulating gene expression networks during reproductive development and stress responses. The lab also explores the genetic and biochemical basis of flower color diversity, particularly through the substrate specificity of key enzymes like dihydroflavonol 4-reductase (DFR).
Professor Donghyun Kang's research lab focuses on the molecular mechanisms underlying osteoarthritis (OA) pathogenesis, with a particular emphasis on redox homeostasis, chondrocyte senescence, and the role of trace elements such as selenium in cartilage health. The lab investigates selenoproteins and microRNAs as key regulators of extracellular matrix metabolism, aiming to uncover novel therapeutic targets for degenerative joint diseases. Additionally, the lab explores the application of natural compounds and biodegradable materials in food safety and preservation, particularly in the context of pathogen control on fresh produce and in food packaging systems. These interdisciplinary efforts bridge molecular biology, nutritional science, and materials engineering to address chronic diseases and foodborne risks.
Professor Ji Young Kim's research lab focuses on translational biomedical research, integrating metabolomics, molecular biology, and clinical studies to understand metabolic and age-related diseases such as obesity, type 2 diabetes, and sarcopenia. The lab investigates molecular mechanisms underlying metabolic dysregulation and tissue degeneration, with a particular emphasis on microRNA regulation in aging and the development of novel therapeutic interventions, including nutraceuticals like nattokinase. Additionally, the lab explores advanced materials for biomedical applications, such as functionalized zinc-based electrodes for improved electrochemical performance in energy storage systems. These interdisciplinary efforts aim to bridge basic science discoveries with clinical applications for improved patient outcomes.
Professor Yong-Hoon Kim's research lab specializes in next-generation electronic and optoelectronic systems, focusing on neuromorphic computing, flexible and printable electronics, and 2D van der Waals heterostructures. The lab explores novel materials such as amorphous oxide semiconductors, organic semiconductors, and transition metal dichalcogenides to develop low-power, high-performance devices for intelligent computing and sensing. Key research directions include photonic neuromorphic devices, optoelectronic synaptic transistors, and advanced computational modeling of low-dimensional quantum systems.
Professor Byung Moon Kim's research lab specializes in cerebrovascular interventions and neuroimaging, with a focus on intracranial vertebral and basilar artery dissections, endovascular treatment outcomes, and advanced imaging predictors of malignancy in thyroid nodules. The lab investigates long-term clinical outcomes, risk factors for recurrence, and optimal endovascular strategies—including stent-assisted coiling and reconstructive techniques—for complex cerebrovascular pathologies. Additionally, the lab explores real-time control systems for mobile robotics, emphasizing practical challenges such as sensor noise, time delays, and actuator saturation in experimental implementations. Their work bridges clinical interventional neuroradiology with engineering-driven solutions for complex vascular and robotic systems.