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 Jun Kim's research lab specializes in the design, synthesis, and application of advanced functional materials, with a strong focus on metal–organic frameworks (MOFs) and related porous materials. The lab develops innovative sonochemical and solvothermal methods to fabricate high-quality MOFs with tunable structures, porosity, and surface areas for applications in gas storage, catalysis, and energy conversion. Additional research directions include the development of efficient phosphorescent materials for white-light-emitting diodes and the fundamental study of anionic water clusters to understand solvation effects at the molecular level. The lab also investigates durable, high-performance catalysts for fuel cell applications, particularly for oxygen reduction reactions in clean energy technologies.
Professor Kilwon Cho's research lab specializes in advanced electronic materials and devices, with a strong focus on organic and 2D semiconductor-based technologies for next-generation flexible and multifunctional electronics. Key research directions include the development of bimodal electronic skins with real-time pressure and temperature discrimination, interface engineering in organic field-effect transistors for enhanced charge transport, and optimization of buffer layer surface energy in polymer solar cells to improve efficiency. The lab also pioneers narrow bandgap semiconductors for near-infrared photodetection and explores molecular doping strategies to open bandgaps in graphene-based transistors.
Professor Se-Jun Park's research lab specializes in spinal deformity surgery and spinal alignment, with a strong focus on understanding and preventing postoperative complications such as proximal junctional kyphosis (PJK) and proximal junctional failure (PJF). The lab investigates patient-specific risk factors, including body mass index, age, osteoporosis, pelvic incidence, and preoperative sagittal vertical axis, to optimize surgical outcomes. They also explore biomechanical principles in instrumented spinal fusion, particularly the role of cage positioning in maintaining sagittal alignment and indirect neural decompression. Their work emphasizes individualized surgical planning based on age-adjusted spinal alignment targets to reduce overcorrection and improve long-term clinical results.
Professor Chul Jeong's research lab focuses on tourism behavior, consumer psychology, and sustainable practices in travel and hospitality. The lab investigates key drivers of tourist motivation, destination image formation, and the psychological mechanisms behind trust, loyalty, and pro-environmental behaviors such as food waste reduction. Central themes include the impact of digital information sources on travel decisions, the role of hedonic and eudaimonic experiences in tourism, and the influence of corporate social responsibility on customer perceptions. The lab employs mixed-methods and experimental designs to explore behavioral intentions and sustainable consumer actions.
Professor Ji Ho Park's research lab specializes in nanomedicine and neuropharmacology, focusing on the cellular and molecular mechanisms of nanoparticle trafficking in biological systems and their therapeutic applications. The lab investigates neuroactive compounds such as curcumin and EGCG for their roles in modulating neural plasticity, cognitive function, and neuroprotection. Additionally, the lab explores natural bioactive compounds—like those from Korean red pine bark and green tea—for their potential in treating neurodegenerative and cardiovascular diseases. The integration of advanced neurophysiological techniques with in vivo and ex vivo models underpins the lab’s translational research approach.
Professor Yong-Keun Jung's research lab focuses on cellular and molecular mechanisms underlying neurodegenerative diseases, with a central emphasis on mitochondrial quality control, autophagy, and apoptosis. The lab investigates key regulators such as Atg5, CHDH, FKBP8, and calsenilin/DREAM in coordinating mitophagy, mitochondrial dynamics, and cell death pathways, particularly in the context of Alzheimer’s disease and Parkinson’s disease. Using cell culture, primary neurons, and animal models, the lab explores how dysregulation of these processes contributes to pathological protein aggregation and neuronal loss. Their work bridges fundamental cell biology with translational neuroscience to identify novel therapeutic targets for tauopathies and synucleinopathies.
Professor Won Seok Chang's research lab specializes in neuromodulation and stereotactic radiosurgery, focusing on advanced image-guided interventions for neurological disorders. The lab investigates the clinical applications and technical optimization of MR-guided focused ultrasound (MRgFUS) for conditions like essential tremor and brain metastases, while also exploring the neurophysiological mechanisms of pain through human sensory neuron studies. A key emphasis is placed on improving patient outcomes by integrating functional, anatomical, and biological factors into personalized treatment strategies.
Professor Eun Seok Kang's research lab specializes in genetic and molecular mechanisms underlying metabolic diseases, particularly type 2 diabetes and post-transplant diabetes mellitus (PTDM). The lab investigates how genetic variations in key metabolic genes—such as PPARgamma2, adiponectin, and SLC30A8—affect therapeutic responses to drugs like rosiglitazone and influence glycemic control and disease progression. Their work bridges genetics, pharmacogenomics, and clinical outcomes to advance personalized medicine in diabetes care. The lab also explores the role of these genetic markers in transplant recipients, aiming to identify protective or risk-associated variants for better patient management.
Professor Jie Wang's research lab specializes in the development of advanced nanomaterials and energy harvesting technologies for next-generation wearable electronics and human-machine interfaces. The lab focuses on triboelectric nanogenerators (TENGs), flexible energy storage devices, and electronic skins that enable self-powered, biocompatible, and intelligent systems. Key research directions include high-sensitivity tactile and auditory sensors, sustainable and biodegradable e-skin, and scalable fabrication of graphene-based films for flexible electronics. The lab integrates materials science, nanotechnology, and device engineering to create smart, sustainable, and human-centric technologies.
Professor Won Suk Choi's research lab focuses on infectious diseases, particularly viral pathogenesis and antimicrobial resistance, with a strong emphasis on clinical virology and bacteriology. The lab investigates the molecular mechanisms of viral replication and host-pathogen interactions, as seen in studies on MERS-CoV, poliovirus chimeras, and HIV-1-poliovirus hybrids. It also explores host cell signaling pathways, such as integrin-mediated thrombosis, using structural biology and biochemical approaches. The lab integrates clinical data with experimental virology and microbiology to address public health challenges like antimicrobial resistance and nosocomial outbreaks.
Professor Periyayya Uthirakumar's research lab specializes in the design and development of advanced nanomaterials, particularly carbon quantum dots (CQDs) and metal oxide semiconductors, for environmental and energy applications. The lab focuses on enhancing photocatalytic degradation of pollutants using doped ZnO and CQD-based heterostructures, while also pioneering sustainable applications such as UV-protective polymer films for food preservation. Another key direction involves the integration of nanomaterials into optoelectronic devices, exemplified by the fabrication of efficient white-light-emitting diodes using ZnO-polymer hybrids. The research emphasizes eco-friendly synthesis methods and practical solutions for industrial and environmental challenges.
Professor Sung Ho Park's research lab focuses on the immunological mechanisms underlying chronic inflammatory diseases, with a central emphasis on macrophage and T cell biology in conditions such as atherosclerosis, allergic asthma, and severe viral infections like COVID-19. The lab investigates how metabolic and redox signals—particularly reactive oxygen species (ROS) and the NRF2 pathway—regulate immune cell function and phenotype plasticity, especially in the context of tissue inflammation and immune cell heterogeneity. A key research direction involves understanding how innate immune responses transition from protective to pathological, contributing to disease progression and severity. The lab integrates preclinical models with human immunology to identify novel therapeutic targets for inflammatory and immune-mediated diseases.
Professor Jeong-Won Han's research lab focuses on interdisciplinary health and engineering innovations, spanning nursing education, clinical nursing practice, and advanced materials fabrication. The lab explores the integration of emerging technologies—such as AI chatbots, virtual reality, and UV roll-to-roll lithography—into healthcare training and patient care to enhance clinical competence, self-efficacy, and learning outcomes. It also investigates psychological and organizational factors influencing nursing professionals’ well-being, including role stress, burnout, and organizational commitment. Additionally, the lab contributes to flexible electronics through scalable fabrication techniques for conductive oxide patterns on large-area substrates.
Professor Sun-Hwa Ha's research lab specializes in plant metabolic engineering, with a primary focus on the biosynthesis and regulation of carotenoids and anthocyanins in crops. The lab employs advanced genetic and molecular tools—including transgene expression systems, genome editing (especially CRISPR), and subcellular targeting strategies—to enhance nutritional quality and pigmentation in staple and horticultural crops. Key research directions include optimizing metabolic pathways in rice, soybean, and pepper through synthetic gene constructs and precise genome editing, as well as investigating subcellular organelle-specific targeting of enzymes to plastoglobules and chloroplasts.
Professor Ik-Hyun Cho's research lab specializes in translational pharmacology and herbal medicine, focusing on the neuroprotective and metabolic regulatory effects of traditional Korean herbal formulations and active ginseng components. The lab investigates the pathogenesis and treatment of neurodegenerative diseases such as Parkinson’s and Alzheimer’s disease, as well as endocrine and reproductive disorders like polycystic ovarian syndrome (PCOS), using preclinical animal models. Key research directions include elucidating the anti-inflammatory, antioxidant, and hormone-modulating mechanisms of compounds such as Panax ginseng, Korean red ginseng, gintonin, and Kyung-Ok-Ko (KOK).
Professor Sung Jae Kim's research lab specializes in fundamental electrokinetic phenomena in nanofluidic systems, with a focus on ion concentration polarization (ICP) at nanoscale interfaces. The lab investigates coupled transport processes involving electric fields, fluid flow, and ion depletion near perm-selective membranes, particularly using microfluidic and nanofluidic devices. Key research directions include the development of novel microfluidic platforms for biomolecule concentration and sensing, as well as direct experimental characterization of complex flow and electric field dynamics in ICP layers. The lab also pioneers innovative integration techniques for polymeric nanomaterials in flexible PDMS-based microchips for reliable and scalable nanofluidic applications.
Professor Ji-Sook Hahn's research lab focuses on systems biology and metabolic engineering in *Saccharomyces cerevisiae*, with a central emphasis on stress response mechanisms and the metabolic engineering of yeast for the sustainable production of high-value chemicals. The lab investigates transcriptional regulation by stress-responsive factors such as Hsf1 and Msn2, as well as signaling pathways like the Slt2 MAPK cascade, to understand cellular adaptation. A key research direction involves engineering yeast strains for efficient biosynthesis of compounds such as 2-phenylethanol and d-lactate through pathway optimization and adaptive evolution.
Professor Jaemin Yoo's research lab specializes in machine learning and data mining with a focus on graph representation learning, time series forecasting, and knowledge distillation. The lab develops efficient and scalable deep learning models for real-world applications such as financial prediction, graph-based inference, and multivariate time series analysis, emphasizing model efficiency, generalization, and privacy-preserving knowledge transfer. Key research directions include self-supervised and weakly supervised representation learning, model-agnostic data augmentation, and end-to-end optimization for structured data. The lab also addresses practical challenges in industrial and medical domains by designing methods that work under data scarcity and confidentiality constraints.
Professor Changsoo Kim's research lab focuses on the intersection of behavioral economics, environmental health, and social inequality, with a particular emphasis on how macro-level environmental factors—such as air pollution—affect cognitive health and mental well-being, especially among aging populations. The lab also investigates the socio-economic implications of corporate marketing practices, particularly the 'customer is king' paradigm, and its impact on power dynamics in high power distance cultures. Research spans empirical macroeconomic modeling of corporate liquidity decisions and epidemiological analysis of environmental exposures. The lab integrates economic theory with public health and behavioral science to address pressing societal challenges.
Professor Chol Shin's research lab specializes in population-based epidemiology with a focus on sleep disorders, metabolic health, and their interrelationships in the Korean adult population. Key research directions include the prevalence and determinants of restless legs syndrome, insomnia, excessive daytime sleepiness, and obstructive sleep apnea, particularly in relation to menopausal status, chronotype, and metabolic profiles. The lab also investigates the impact of lifestyle behaviors—such as snoring, sleep-wake patterns, and dietary habits—on cardiometabolic and quality-of-life outcomes in non-obese and middle-aged populations. Using large-scale community surveys and clinical data, the lab aims to identify modifiable risk factors and inform public health interventions.