首尔大学、KAIST、延世大学等韩国QS前10名大学的研究室信息。
Professor Jong-Hwa Park's research lab specializes in biomedical engineering and translational neuroscience, focusing on intraoperative neurophysiological monitoring to improve surgical outcomes in spinal deformity and trauma. The lab also investigates molecular mechanisms underlying mosquito reproduction, particularly the role of nutrient-sensing pathways like mTOR and transcription factors such as GATA in regulating vitellogenin expression. Additionally, the lab develops advanced organic semiconductors for flexible electronics and explores multispecies biofilm models to understand chronic periodontal infections.
Professor Sun-i Kim's research lab specializes in advanced electrochemical technologies for sustainable resource recovery and environmental remediation. The lab focuses on developing innovative electrochemical systems for the selective recovery of critical metals—particularly lithium—from complex aqueous sources such as seawater and brines, while simultaneously addressing water purification challenges. Key research directions include the design of novel electrode materials (e.g., metal-organic frameworks, MnO₂ polymorphs) and membrane-free capacitive deionization systems to enhance ion selectivity, capacity, and energy efficiency. The lab also explores electrochemical CO₂ capture from ocean water and the simultaneous removal of organic pollutants, demonstrating a strong commitment to clean technology and circular resource management.
Professor Youngmin Yoon's research lab specializes in electrochemical materials science and crisis communication, with a dual focus on advancing sustainable energy technologies and understanding public perception in organizational crises. The lab investigates nanostructured electrocatalysts—particularly mesostructured silver inverse opals—for efficient CO2 conversion to fuels, emphasizing the interplay between surface structure, mass transport, and electrochemical performance. Concurrently, the lab conducts empirical studies on crisis communication strategies, exploring how organizational responses, public perception, and societal attitudes such as anti-corporate sentiment influence public trust and acceptance during crises.
Professor Yoosik Kim's research lab focuses on the role of endogenous nucleic acids—particularly double-stranded RNAs and mitochondrial DNA/RNA—in innate immune activation and disease pathogenesis. The lab investigates how cellular stress, mitotic progression, and epigenetic drugs trigger the release of mitochondrial nucleic acids, leading to activation of pattern recognition receptors like PKR and TLR3, and subsequent inflammatory responses. A central theme is the regulation of dsRNA-sensing pathways by RNA-binding proteins such as TRBP and Stau1, and their impact on immune signaling and cell fate decisions in conditions like osteoarthritis and cancer.
Professor Sung-Wook Lee's research lab focuses on interdisciplinary biomedical and environmental research, spanning functional materials from natural resources, urological surgical innovations, and risk behavior analysis in public health. The lab investigates bioactive compounds in edible wild plants for their antioxidant properties and potential health applications, while also advancing minimally invasive surgical techniques such as single-port urological surgery. Additionally, the lab contributes to radiation safety and nuclear system analysis through uncertainty quantification in severe accident scenarios. These diverse research directions reflect a strong commitment to translational science and health technology development.
Professor Ho Jin's research lab specializes in the design, synthesis, and application of advanced nanomaterials, particularly quantum dots (QDs), for energy conversion and optoelectronic devices. The lab focuses on developing novel ligand engineering strategies to enhance QD stability and electronic coupling, enabling efficient charge transfer in QD-sensitized solar cells and sensing platforms. Key research directions include layer-by-layer assembly of QD multilayers, interface engineering in hybrid nanostructures, and the development of highly sensitive and selective chemical sensors using QD-based fluorescence switching. The lab also investigates epitaxial growth and interfacial phenomena in thin film heterostructures, contributing to fundamental understanding of strain and lattice mismatch in semiconductor heteroepitaxy.
Professor Sang-Jun Shin's research lab specializes in advanced aerospace and mechanical systems, focusing on innovative design and optimization of flapping wing micro-air vehicles (MAVs), active rotor technology for helicopters, and data-driven model order reduction for fluid-structure interaction. The lab integrates computational fluid dynamics (CFD), reduced-order modeling, and intelligent optimization techniques—such as response surface methodology and machine learning—to enhance aerodynamic efficiency and structural performance. Key research directions include non-intrusive parametric model order reduction, active twist rotor systems using smart materials, and bio-inspired flight mechanisms.
Professor You-jin Lee's research lab specializes in cellular and molecular mechanisms underlying renal diseases, fibrosis, and cancer progression, with a strong focus on intercellular communication via extracellular vesicles, metabolic regulation through nuclear receptors like PPARγ and GPR81, and signaling pathways involving cytokines such as IL-6. The lab investigates how these mechanisms influence epithelial-mesenchymal transition, membrane transport dysfunction, and tumor microenvironment modulation, aiming to identify novel therapeutic targets and biomarkers. Their work bridges basic cell biology with translational applications in drug delivery, regenerative medicine, and infectious disease diagnostics.
Professor Seung Yong Song's research lab specializes in regenerative medicine and plastic and reconstructive surgery, with a strong focus on adipose-derived stem cells (ASCs) and their therapeutic potential in tissue repair and regeneration. The lab investigates both the paracrine signaling and differentiation capacity of ASCs, exploring pharmacological modulators like megestrol acetate to enhance their proliferation and regenerative functions. Additionally, the lab conducts clinical and translational research in craniofacial reconstruction, including innovative fixation techniques for frontal sinus fractures using absorbable materials, and contributes to ophthalmic infection research, particularly in rare bacterial endophthalmitis cases.
Professor In-Soo Kim's research lab specializes in sustainable materials and environmental biotechnology, focusing on the development of advanced nanomaterials for food packaging and wastewater treatment. The lab investigates zinc oxide nanoparticles (ZnO NPs) for active food packaging applications, emphasizing antimicrobial performance and biodegradable bionanocomposites. It also pioneers microbial consortium-based solutions for treating recalcitrant industrial wastewater, particularly from tanneries, using eco-friendly, chemical-free approaches. Additionally, the lab explores protein engineering for therapeutic applications, such as long-acting antidiabetic conjugates using human serum albumin and PEGylation.
Professor Min-Jung Oh's research lab focuses on maternal and reproductive health, with a strong emphasis on understanding the biological and clinical factors influencing adverse pregnancy outcomes. Key research directions include the role of viral infections—particularly human papillomavirus (HPV) and its association with preterm birth and placental complications—alongside molecular markers such as epidermal growth factor receptor (EGFR) in gynecological cancers. The lab also investigates metabolic and physiological changes in pregnancy, including postpartum weight retention, metabolic syndrome, and gestational diabetes, with a view to identifying early predictors and risk factors for conditions like preeclampsia. Longitudinal and population-based studies using national health databases are central to their epidemiological approach.
Professor Soon Hyun Ahn's research lab specializes in thyroid cancer biology and translational oncology, with a focus on improving diagnostic accuracy and understanding the molecular mechanisms underlying aggressive thyroid malignancies. The lab investigates cancer stem cells, particularly in papillary thyroid carcinoma, and explores targeted therapies using preclinical models such as orthotopic xenografts. Key research directions include evaluating core needle biopsy as an alternative to fine-needle aspiration for better diagnostic outcomes and studying the efficacy of tyrosine kinase inhibitors like sunitinib in BRAF-mutated and RET/PTC-rearranged thyroid cancers. The lab integrates molecular pathology, flow cytometry, and in vivo models to advance personalized treatment strategies for thyroid cancer patients.
Professor Myung-hwan Choi's research lab specializes in biomedical photonics and bio-integrated optical technologies, focusing on developing biocompatible and biodegradable optical waveguides for long-term in vivo light delivery. The lab pioneers innovative imaging and delivery platforms—such as hydrogel-based optical fibers, intravital microscopy techniques, and laser-induced vascular permeability—for real-time monitoring and targeted intervention in living tissues. Key research directions include optical sensing, drug and gene delivery to the central nervous system, and quantitative vascular imaging in cancer and disease models. The lab bridges materials science, optics, and translational medicine to create minimally invasive tools for diagnostics and therapy.
Professor Hyunsoo Lee's research lab specializes in nanoscale surface science and atomic-level interfacial phenomena, with a focus on friction, adhesion, and chemical reactivity at 2D materials and heterogeneous surfaces. The lab employs advanced characterization techniques such as atomic force microscopy, lateral force microscopy, and spectroscopic methods to investigate van der Waals interactions, energy dissipation mechanisms, and surface reactivity at atomic steps. A key research direction involves developing area-selective atomic layer deposition (ALD) using molecular inhibitors for precise nanofabrication. The lab also explores functional applications of 2D materials and bio-inspired catalytic processes for sustainable synthesis.
Professor HangJin Jo's research lab specializes in thermal-fluid sciences with a focus on advanced heat transfer mechanisms, particularly nucleate boiling and condensation on structured surfaces. The lab investigates the fundamental physics of phase change heat transfer using nano/microstructured and biphilic surfaces to enhance heat transfer performance and critical heat flux. Key research directions include surface wettability engineering, bubble dynamics, and the development of high-efficiency heat exchangers for advanced energy systems such as sodium-cooled fast reactors. The lab also emphasizes practical applications through thermal-hydraulic performance evaluation and economic optimization of compact heat exchangers.
Professor Taejong Song's research lab specializes in gynecological oncology and reproductive health, with a strong focus on improving surgical outcomes and preserving fertility and ovarian function in women with gynecological conditions. The lab investigates minimally invasive surgical techniques, including the use of hemostatic sealants and opportunistic salpingectomy, to minimize damage to ovarian reserve and enhance long-term reproductive and oncological outcomes. Key research directions include the impact of medical therapies—such as ACEIs/ARBs—on cancer recurrence, and the clinical efficacy of devices like the LNG-IUS in managing adenomyosis and menorrhagia.
Professor Kim Hyun Jung's research lab focuses on interdisciplinary health and environmental sciences, with a strong emphasis on metabolic health, infectious diseases, and urban sustainability. The lab investigates the physiological impacts of exercise on metabolic markers like irisin, explores the role of Epstein-Barr virus in lymphoproliferative disorders, and examines how urban design—particularly walkability—affects health behaviors and housing values in metropolitan areas. Additionally, the lab contributes to biomedical materials research, especially in enhancing dental restorative materials through bioactive glass integration. These diverse yet interconnected research directions reflect a commitment to improving public health through biological, environmental, and technological innovation.
Professor Jong Hee Lee's research lab specializes in dermatological and aesthetic medicine, focusing on innovative treatments for skin conditions such as melasma, photorejuvenation, and facial rejuvenation. The lab investigates advanced energy-based therapies, including intense pulsed light (IPL), fractional lasers, and botulinum toxin formulations, with an emphasis on safety and efficacy in Asian patients. Additionally, the lab explores nanomaterial synthesis for biomedical applications, particularly gold nanoparticles with tailored morphologies for potential use in diagnostics and therapeutics.
Professor Jeong Seung-gyu's research lab specializes in rhinology and otolaryngology, focusing on the anatomical and hemodynamic aspects of the paranasal sinuses and upper airway. The lab investigates nasal airflow dynamics, sinus physiology, and endoscopic surgical anatomy using advanced imaging techniques such as CT and particle image velocimetry. Key research directions include the functional anatomy of the ethmoid complex, the pathophysiology of sinusitis and polyps, and the clinical application of CPAP in obstructive sleep apnea. The lab also explores rare vascular and congenital anomalies of the head and neck, particularly in relation to surgical outcomes and diagnostic imaging.
Professor Seung Jae Lim's research lab specializes in hip joint surgery and orthopedic biomechanics, with a primary focus on degenerative and rare joint disorders such as primary synovial osteochondromatosis of the hip. The lab investigates surgical techniques—including open synovectomy, hip dislocation, and implantation of femoral stems—using both conventional and robot-assisted methods to optimize implant alignment, reduce complications, and improve long-term outcomes. A strong emphasis is placed on imaging diagnostics, particularly plain radiography, to enhance accurate diagnosis and treatment planning in hip pathology.