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 Tae Hyun Kim's research lab focuses on translational biomedical research with a strong emphasis on cancer therapeutics and metabolic liver diseases. The lab investigates the biological effects of nanomaterials, particularly silver nanoparticles, in relation to size-dependent cytotoxicity and cellular stress responses. It also explores radiation therapy optimization, including proton beam therapy and 3D conformal radiation, for hepatocellular carcinoma and other thoracic and abdominal cancers. Additionally, the lab examines molecular mechanisms regulating hepatic glucose metabolism, particularly the role of nuclear receptors like LXRα and transcription factors in modulating liver glucokinase expression.
Professor Injae Shin's research lab specializes in the design and development of smart fluorescent and luminescent probes for biomedical and environmental applications. The lab focuses on creating highly selective and sensitive optical sensors for biologically and environmentally relevant species, including reactive oxygen/nitrogen species (ROS/RNS), metal ions (e.g., Zn²⁺), and other analytes. A key research direction involves the rational design of organic fluorophores—particularly near-infrared (NIR) probes—enabling deep-tissue imaging, real-time monitoring in live cells, and in vivo applications with minimal background interference. The lab also emphasizes ratiometric and turn-on probe strategies to enhance detection accuracy and quantitative analysis in complex biological systems.
Professor Jonghwan Kim's research lab specializes in the fundamental physics and optoelectronic properties of two-dimensional transition metal dichalcogenides (TMDs) and related 2D nanomaterials. The lab focuses on manipulating and exploiting the valley pseudospin and spin degrees of freedom for next-generation valleytronics and spintronics, using ultrafast optical techniques to control and image valley-polarized carrier dynamics. Key research directions include ultrafast valley control via circularly polarized light, engineering of long-lived valley-polarized carriers, and the role of structural symmetry and doping in tuning electronic and optical responses in 2D materials.
Professor Do Young Kim's research lab specializes in liver disease research, with a primary focus on noninvasive liver fibrosis assessment, hepatocellular carcinoma (HCC) surveillance, and the role of viral hepatitis in oncogenesis. The lab investigates advanced elastography techniques such as liver stiffness measurement (LSM) and the use of biomarkers like PIVKA-II and AFP to improve early detection and risk stratification of HCC. Current research also explores metabolic influences on liver health, including the neuroprotective and mitochondrial effects of ketones in liver-related pathologies. The lab aims to develop tailored, evidence-based surveillance and prophylactic strategies for patients with chronic liver disease, particularly in high-burden regions like East Asia and sub-Saharan Africa.
Professor Dongeun Yong's research lab specializes in antimicrobial resistance, with a focus on the molecular epidemiology and genetic mechanisms of multidrug-resistant Gram-negative bacteria, particularly carbapenem-resistant Enterobacteriaceae, Pseudomonas aeruginosa, and Acinetobacter baumannii. The lab investigates novel resistance genes, including metallo-β-lactamases (MBLs) such as bla(AIM-1) and bla(CMY-4), as well as mobile genetic elements like ISCR1 and integrons that facilitate resistance gene dissemination. They also explore alternative therapeutic strategies, such as phage therapy using lytic phages like Βϕ-R2096, for treating difficult-to-treat infections caused by carbapenem-resistant pathogens. The lab combines molecular diagnostics, genomics, and in vivo infection models to address the global threat of antibiotic resistance.
Professor Jihan Kim's research lab specializes in computational materials science and artificial intelligence-driven materials discovery, focusing on the design and optimization of advanced porous materials for energy and environmental applications. The lab develops machine learning and deep generative models—such as generative adversarial networks and large language models—to predict, screen, and create novel metal-organic frameworks (MOFs) and zeolites with tailored properties for gas adsorption, separation, and sensing. Their work integrates large-scale molecular simulations, evolutionary algorithms, and high-throughput screening to identify materials with superior performance in methane storage, CO₂ capture, and selective gas sensing. The lab also pioneers AI systems like ChatMOF that bridge natural language understanding with materials informatics for intuitive and accurate materials exploration.
Professor Dohyeong Kim's research lab specializes in sustainable energy conversion and advanced catalysis, with a strong focus on electrochemical CO₂ reduction and artificial photosynthesis. The lab develops multimetallic nanomaterials—particularly ordered intermetallic nanoparticles—for highly selective and efficient electrocatalytic conversion of CO₂ into valuable carbon-based fuels and chemicals. A key research direction involves atomic-level control of elemental configurations to enhance catalytic performance, while also exploring wearable breath sensors for real-time health monitoring. The lab integrates materials science, electrochemistry, and sustainable technology to address global challenges in energy sustainability and environmental protection.
Professor Yong Bum Park's research lab focuses on regenerative medicine and stem cell therapy, particularly in cartilage repair using allogeneic human umbilical cord blood-derived mesenchymal stem cells (hUCB-MSCs). The lab also investigates plant cell wall biology, with a central emphasis on understanding the structural and mechanical roles of xyloglucan and other matrix components in primary cell walls. Using biomechanical assays and molecular genetics, the lab explores how cell wall architecture influences plant growth and development, challenging long-standing models of wall function. Additionally, the lab contributes to translational research in cardiovascular risk assessment, particularly in rheumatoid arthritis patients.
Professor Chang Soo Kim's research lab focuses on interdisciplinary studies at the intersection of finance, corporate governance, and public health, with a strong emphasis on real-world economic and societal impacts. The lab investigates corporate financial decisions, including liquidity management and corporate social responsibility (CSR), and their long-term effects on firm value and stakeholder welfare. It also explores the health implications of environmental exposures—particularly air pollution—on cognitive function and mental health, with a special focus on aging populations and gender disparities. The lab integrates econometric modeling, behavioral experiments, and biomedical research to address pressing challenges in corporate finance and population health.
Professor Hye-Jung Park's research lab focuses on the intersection of technology, learning, and human cognition, with a strong emphasis on how digital search behaviors, instructional design, and mobile technologies influence learning outcomes and knowledge acquisition. The lab explores the role of social capital and emotional intelligence in team-based knowledge work, particularly in IT service environments, and investigates the cognitive and behavioral impacts of neurological disorders such as Parkinson’s disease through preclinical models. A recurring theme is the development of evidence-based frameworks for effective technology integration in education and healthcare.
Professor Sei Kwang Hahn's research lab specializes in advanced biomaterials and drug delivery systems, focusing on the development of smart, biocompatible platforms for targeted therapeutic applications. Key research directions include implantable and wearable devices for real-time disease monitoring and on-demand drug delivery, such as smart contact lenses for diabetes management and nanochannel-based systems for controlled protein release. The lab also pioneers innovative hydrogel architectures and nanocarrier systems—such as hyaluronic acid-conjugated nanomaterials and gold nanoparticle complexes—for cancer therapy and autoimmune disease treatment. These efforts integrate supramolecular chemistry, nanotechnology, and biomedical engineering to create responsive, stimuli-triggered delivery systems with high specificity and biocompatibility.
Professor Yoon Seok Jung's research lab specializes in the development of advanced solid electrolytes and interface engineering for next-generation all-solid-state batteries, with a focus on sulfide, halide, and chalcogenide-based materials. The lab emphasizes scalable synthesis methods, atomic layer deposition for protective coatings, and the enhancement of interfacial stability and ionic conductivity in both lithium- and sodium-ion all-solid-state systems. Key research directions include materials design for high ionic conductivity, air stability, and compatibility with practical electrode fabrication processes such as slurry casting and solution processing.
Professor Kyung Man Jeon's research lab specializes in critical care medicine and intensive care unit (ICU) outcomes, with a strong focus on respiratory failure, mechanical ventilation, and advanced life support therapies. The lab investigates key challenges in critical care, including the management of difficult-to-treat infections like *Mycobacterium abscessus* lung disease, postoperative complications such as acute lung injury after pneumonectomy, and the impact of early interventions like low-dose steroids in septic shock. The lab also explores prognostic factors in weaning from mechanical ventilation and the role of multidisciplinary teams in improving outcomes for patients on extracorporeal membrane oxygenation (ECMO).
Professor Minjung Kim's research lab specializes in diagnostic and translational oncology, with a focus on improving the accuracy of cancer detection and management through advanced imaging and molecular diagnostics. The lab investigates biomarkers such as thyroglobulin in fine-needle aspiration fluid for early detection of thyroid cancer recurrence, evaluates sonographic features for predicting malignancy in thyroid nodules, and explores repurposed drugs like metformin and phenformin to overcome chemoresistance in colorectal cancer. The lab also examines clinical factors influencing outcomes in critically ill patients, particularly in relation to airway management and swallowing function.
Professor Jaehyun Park's research lab specializes in biomedical engineering and human-centered technology, focusing on the intersection of physiological responses, behavioral health, and innovative device development. The lab investigates driving stress through physiological signal analysis, designs microsystems for precise biological microenvironment control in cell culture, and explores user experience (UX) in human-device interaction. Additionally, the lab contributes to synthetic biology applications, particularly in metabolic engineering of microbial systems for industrial biotechnology. These diverse yet interconnected research directions emphasize real-world health impacts, human well-being, and advanced technological solutions.
Professor Seongjun Park's research lab specializes in the development of advanced functional materials and devices for next-generation bioelectronics and nanoelectronics. The lab focuses on creating soft, biocompatible, and highly conductive materials—such as conductive hydrogels and multifunctional nanocomposite fibers—that mimic the mechanical and electrical properties of biological tissues. Key research directions include the design of implantable neural interfaces, stretchable optoelectronic sensors using quantum dots and graphene, and the controlled functionalization of carbon nanotubes and 2D materials for high-performance electronic applications. The lab integrates materials science, nanotechnology, and bioengineering to enable durable, high-performance devices for biomedical and electronic applications.
Professor Jung Min Kim's research lab specializes in diagnostic and translational oncology, with a focus on improving the accuracy of cancer detection and management through advanced imaging and biomarker analysis. The lab investigates thyroid cancer recurrence and metastasis using fine-needle aspiration thyroglobulin (FNA-Tg) levels, sonographic features like eggshell calcifications, and molecular mechanisms of chemoresistance in colorectal cancer. They also explore the repurposing of metabolic drugs such as metformin and phenformin for cancer therapy, particularly in resistant rectal cancer models. Additionally, the lab contributes to critical care medicine by studying predictors of post-extubation complications, such as PEA and dysphagia.
Professor Jee Hyun Kim's research lab focuses on oncology and cancer care, with a strong emphasis on the interplay between viral infections and hematologic malignancies, particularly hepatitis C and B viruses in relation to non-Hodgkin’s lymphoma. The lab also investigates prognostic factors and treatment optimization in gastrointestinal cancers, especially rectal cancer, through biomarkers like CEA and tumor regression grading. Additionally, the lab addresses fertility preservation in cancer patients and geriatric oncology, including polypharmacy and medication safety in older adults with cancer. These multidisciplinary efforts reflect a commitment to improving clinical outcomes through translational and population-based research.
Professor Sung-Chan Jeon's research lab specializes in the design and engineering of advanced functional materials for sustainable energy applications, with a primary focus on next-generation energy storage systems. The lab investigates aqueous zinc-ion and potassium-ion batteries, emphasizing the rational development of high-performance cathode materials through structural modulation, cation doping, and defect engineering. Innovative nanoarchitectures, such as heterostructured nanowires and hybrid oxide systems, are systematically explored to enhance ion diffusion, structural stability, and electrochemical kinetics. Additionally, the lab extends its expertise to gas sensing technologies, leveraging noble metal nanoparticle sensitization and tailored metal oxide morphologies for high-sensitivity detection.
Professor Jinguk Kim's research lab specializes in molecular oncology and translational cancer research, with a focus on identifying epigenetic biomarkers—particularly DNA methylation—associated with non-small-cell lung cancer (NSCLC). The lab investigates tumor-specific methylation patterns in bronchial lavage samples to enable early detection, while also exploring the roles of DNA methyltransferases (DNMTs) and gene-specific methylation in NSCLC pathogenesis. Additional research directions include the identification of novel oncogenic fusion transcripts, such as ALK-PTPN3 in NSCLC, and the biological impact of opioid receptor signaling in lung cancer progression. The lab integrates next-generation sequencing, molecular diagnostics, and clinical pathology to advance precision oncology approaches.