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 Han-Lim Choi's research lab specializes in decentralized autonomy, swarm robotics, and resilient systems for unmanned aerial and space vehicles. The lab focuses on developing scalable, robust algorithms for task allocation, coordination, and anomaly detection in multi-agent systems under complex constraints. Key research directions include market-based optimization, consensus-based algorithms for conflict-free assignment, and machine learning-driven real-time monitoring for flight safety and system integrity.
Professor Kwangmin Kim's research lab focuses on translational biomedical research with a strong emphasis on colorectal cancer heterogeneity, particularly the biological and clinical distinctions between right and left colon cancers. The lab investigates molecular mechanisms, including epigenetic alterations like CpG island methylator phenotype and chromosomal instability, as well as the role of gut microbiota in tumor progression. Additionally, the lab develops advanced image analysis tools for neuroscience applications, such as the Neuron Image Analyzer (NIA), to improve the quantification of neuronal morphology in low signal-to-noise ratio images. The lab also explores metabolic biomarkers, such as gamma-glutamyltransferase and uric acid, in predicting diabetes risk, reflecting a broad interest in clinical biomarker discovery and precision medicine.
Professor Jung Won Kang's research lab specializes in regenerative medicine and biomedical engineering, with a focus on mesenchymal stem cells—particularly adipose tissue-derived MSCs—for tissue repair and immunomodulation. The lab also investigates natural compounds and their anti-adipogenic effects using in vitro models such as 3T3-L1 cells, aiming to develop therapeutic strategies for metabolic disorders. In parallel, the lab develops intelligent robotic systems, including omni-directional mobile robots for industrial and assistive applications, emphasizing mobility in confined spaces and human-robot interaction. These diverse research directions reflect a strong integration of biological science and robotics to address clinical and industrial challenges.
Professor Sung Ik Yang's research lab specializes in the design and synthesis of functional organic and macrocyclic molecules for optoelectronic and photonic applications. The lab focuses on molecular engineering of porphyrins, phthalocyanines, and diarylethenes to control their electronic structures, excited-state dynamics, and energy/electron transfer processes. Key research directions include the development of photochromic materials, molecular photonic devices, and dyads or arrays with tailored energy transfer and charge transport properties for use in solar energy conversion and molecular electronics.
Professor Gun Jin Yun's research lab specializes in advanced materials and structural mechanics, focusing on the development of intelligent material models, microstructure characterization, and structural health monitoring. The lab explores constitutive modeling of complex material behavior using machine learning techniques such as neural networks, particularly for cyclic and hysteretic responses. It also investigates functional materials like mechanoluminescent phosphors and vitrimers with self-healing capabilities, as well as microstructure reconstruction using deep generative models. Additionally, the lab develops innovative damage detection methods for structural systems using sensitivity-based optimization and sensor data analysis.
Professor Young Hwa Jung's research lab specializes in advanced materials for sustainable energy storage, with a primary focus on sodium-ion batteries and aqueous battery systems. The lab investigates novel cathode materials such as NASICON-type phosphates, layered oxides, iron-based pyrophosphates, and manganese hexacyanomanganates, emphasizing structural stability, high-rate performance, and cost-effectiveness. A key research direction involves understanding and mitigating detrimental phase transitions and Jahn-Teller distortions through advanced characterization techniques like in situ XRD and XANES. The lab also explores two-dimensional transition metal dichalcogenides, particularly superconducting and topological phases in chalcogen-deficient systems, aiming to bridge materials synthesis with quantum electronic phenomena.
Professor Hee Seung Lee's research lab focuses on advancing therapeutic strategies and improving outcomes in pancreatic cancer, with a strong emphasis on overcoming drug resistance and enhancing treatment efficacy. The lab investigates novel agents such as HDAC inhibitors and repurposed drugs like statins to sensitize pancreatic tumors to standard chemotherapy. It also explores biomarkers—such as CEMIP and CA 19-9—for earlier and more accurate diagnosis. Additionally, the lab examines end-of-life care practices, particularly the use of chemotherapy in advanced pancreatic cancer, to balance clinical benefit with patient quality of life.
Professor Wangyun Won's research lab specializes in sustainable chemical processes and biorefining, focusing on the conversion of lignocellulosic biomass into high-value chemicals and biofuels. The lab develops integrated catalytic and bioprocesses for producing eco-friendly alternatives to petroleum-based materials, such as 2,5-furandicarboxylic acid (FDCA), butyric acid, and ethanol, with strong emphasis on techno-economic analysis and life-cycle assessment. Key research directions include process intensification, heat integration, and carbon capture in hydrogen production, particularly through steam methane reforming with CO₂ utilization. The lab aims to advance green chemistry and circular economy principles in the bio-based industry.
Professor Seungjun Chung's research lab specializes in the development of advanced printable and flexible electronic devices, with a strong focus on inkjet-printing technologies for low-cost, high-performance thin-film electronics. The lab explores innovative materials and interface engineering strategies—particularly involving silver electrodes, 2D transition metal dichalcogenides (TMDs), and organic semiconductors—to enhance device performance, stability, and scalability. Key research directions include contact engineering for 2D semiconductors, mechanical robustness of stretchable electrodes, and interfacial passivation for high-efficiency organic and 2D field-effect transistors.
Professor Byung Yang Lee's research lab specializes in the development of advanced nanomaterials and nanodevices for next-generation electronic and energy applications. The lab focuses on carbon nanotube and cellulose nanocrystal-based systems, emphasizing their use in flexible, transparent, and highly sensitive sensors, actuators, and energy storage devices. Key research directions include the rational design of hybrid nanomaterials (e.g., AgNWs/SWCNTs), controlled nanoassembly for precise device fabrication, and integration of nanomaterials into functional systems-on-chip for biomedical and environmental sensing. The lab also pioneers scalable, low-cost fabrication techniques using conventional microfabrication tools to enable practical deployment of nanodevices.
Professor Sunil Kim's research lab specializes in the political economy of state capacity, democratic consolidation, and welfare state development, with a particular focus on East Asian polities such as South Korea and Japan. The lab investigates how state violence, institutionalized repression, and the politicization of welfare policies evolve in response to democratic transitions and socio-political change. It also explores the interplay between civil society, participatory governance, and the rise of populism in regional and global contexts.
Professor Suchithra Padmajan Sasikala's research lab specializes in the sustainable synthesis and advanced processing of graphene-based nanomaterials with a focus on green, scalable, and environmentally friendly methodologies. The lab explores supercritical fluids, hydro-/solvothermal, and interface-confined polymerization techniques to produce high-performance materials such as core-shell fibers, graphene quantum dots, and doped graphene for applications in energy storage, environmental remediation, and biomedical imaging. Key research directions include the development of conductive, flexible, and durable materials for supercapacitors and the design of hierarchical photocatalysts for pollutant degradation.
Professor Won Jun Kang's research lab specializes in molecular imaging and targeted theranostics, focusing on the development of advanced imaging probes and radiolabeled agents for precise cancer detection and therapy. The lab integrates nuclear medicine, nanotechnology, and molecular biology to create innovative tools such as radiolabeled aptamers, quantum dot conjugates, and PET tracers for real-time monitoring of tumor biomarkers like HER2 and integrins. Key research directions include optimizing stem cell tracking, improving early diagnosis of metastatic cancers, and identifying prognostic imaging biomarkers such as metabolic tumor volume and total lesion glycolysis in renal and liver cancers. The lab also explores FRET-based imaging to visualize molecular interactions in live cancer cells, enabling deeper insights into tumor biology and therapeutic targeting.
Professor Woo-Keun Seo's research lab focuses on cerebrovascular diseases, particularly ischemic stroke and moyamoya disease, with an emphasis on identifying pathophysiological mechanisms, biomarkers, and innovative clinical interventions. The lab investigates arterial stiffness, cerebrovascular microbleeds, and metabolic signatures to improve stroke diagnosis and recurrence prediction. It also explores digital health solutions, such as mobile apps and AI-driven facial analysis, to enhance stroke outcome assessment and patient monitoring.
Professor Kunyoo Shin's research lab specializes in stem cell biology and epithelial cell polarity, with a focus on understanding the molecular mechanisms governing cell polarity, tight junction function, and tissue organization. The lab develops advanced 3D organoid models—particularly from human pluripotent stem cells—to study human development, disease pathogenesis, and tumor microenvironments, with applications in cancer biology and neuroscience. By integrating genetic engineering, live imaging, and patient-derived models, the lab aims to create physiologically relevant in vitro systems that recapitulate human tissue architecture and function.
Professor Hye Hyun Yoo's research lab specializes in pharmaceutical and biomedical sciences, with a strong focus on drug metabolism, pharmacokinetics, and the role of gut microbiota in drug response. The lab investigates drug repurposing for infectious diseases such as COVID-19, explores the impact of host-microbe interactions on drug bioavailability, and examines the effects of natural compounds—particularly citrus flavonoids—on drug transporters like P-glycoprotein. Additionally, the lab develops advanced biomaterials, such as GelMA-silica composites, for tissue engineering and 3D bioprinting applications.
Professor Jae Hung Jung's research lab specializes in male reproductive health and urological interventions, with a strong focus on male infertility, particularly idiopathic and infection-related causes. The lab investigates medical and minimally invasive surgical treatments, including empirical medical therapy, antioxidant and hormonal interventions, and advanced procedures like prostatic urethral lift (PUL) and robotic-assisted laparoscopic prostatectomy (RALP). A key research direction involves optimizing treatment strategies for leukocytospermia and improving urological outcomes in benign prostatic hyperplasia (BPH) and prostate cancer. The lab also explores innovative drug delivery methods, such as EMDA-based intravesical therapy, to enhance treatment efficacy and safety in urological conditions.
Professor So Won Youn's research lab specializes in the development of transition-metal-catalyzed C–H activation and functionalization methodologies, with a strong focus on innovative and atom-economical strategies for the synthesis of complex organic molecules. The lab pioneers mild, efficient, and sustainable catalytic systems—particularly using Pd, Ru, and Au complexes—enabling the construction of biologically relevant heterocyclic scaffolds such as carbazoles, tetrahydroisoquinolines, and tetrahydro-β-carbolines. Their work emphasizes mechanistic understanding and the design of tandem and cascade reactions that streamline total synthesis and expand synthetic efficiency.
Professor Kyoseung Sim's research lab specializes in the development of next-generation stretchable and transient electronics, focusing on novel materials and innovative device architectures for wearable and implantable applications. The lab pioneers intrinsically stretchable semiconductors, ultrathin and flexible electronics using sol-gel-on-polymer processes, and physically transient systems triggered by environmental moisture. Key research directions include high-mobility rubbery semiconductors, multifunctional wearable human-machine interfaces, and advanced fabrication techniques such as tape transfer printing for high-fidelity heterogeneous integration.
Professor Kyoungphile Nam's research lab specializes in environmental microbiology and biogeochemistry, focusing on the fate, bioavailability, and bioremediation of environmental pollutants such as polycyclic aromatic hydrocarbons (PAHs) and heavy metals. The lab investigates microbial degradation mechanisms, sorption-desorption dynamics of contaminants in soils and engineered materials, and the role of soil properties—particularly organic matter and cation exchange capacity—in controlling contaminant mobility and ecological risk. Additionally, the lab explores biomineralization processes for sustainable applications, including self-healing concrete and metal toxicity prediction using biotic ligand models.