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 Yong-Su Na's research lab specializes in magnetic fusion energy, focusing on plasma physics and reactor-relevant phenomena in tokamak devices. Key research directions include plasma start-up mechanisms, intrinsic rotation dynamics, high-confinement mode (H-mode) operation, and steady-state plasma scenarios essential for future fusion reactors. The lab employs advanced modeling and simulation tools—such as ASTRA and TECHP0D—alongside experimental data from KSTAR and DIII-D to investigate transport, current drive, and electromagnetic topology effects in strongly magnetized plasmas. Their work aims to resolve long-standing challenges in plasma breakdown, confinement optimization, and reliable operation for next-step fusion devices like ITER.
Professor Jaewook Myung's research lab specializes in microbial biotechnology and sustainable materials science, focusing on the development of biodegradable plastics using methanotrophic bacteria and the application of microbial processes in wastewater treatment and energy recovery. The lab explores novel biosynthetic pathways for polyhydroxyalkanoates (PHAs) from methane, investigates the biodegradability of 3D-printed bioplastics, and advances microbial fuel cells and nitrogen recovery systems. A central theme is the integration of environmental sustainability with industrial applications through microbial engineering and bioprocess optimization.
Professor Sungsoo Lee's research lab focuses on molecular mechanisms underlying cellular signaling, particularly the substrate specificity of protein tyrosine kinases such as C-terminal Src kinase (Csk). The lab investigates how kinases recognize and phosphorylate specific substrates through distinct docking interactions, combining structural biology and mutagenesis to map functional domains. In parallel, the lab explores the impact of lifestyle interventions—especially exercise—on metabolic and neurotrophic factors in pediatric metabolic disorders, including obesity and type 2 diabetes. The research bridges molecular enzymology with translational physiology, aiming to uncover therapeutic targets for metabolic and neurological diseases in youth.
Professor Na Young Kim's research lab specializes in pediatric and robotic surgery, with a focus on improving surgical outcomes through advanced anesthetic techniques and perioperative management. The lab investigates the role of inflammatory biomarkers in predicting survival outcomes following cytoreductive surgery with hyperthermic intraperitoneal chemotherapy (HIPEC), particularly in oncology patients. Additionally, the lab explores the use of novel anesthetic agents—such as remimazolam and dexmedetomidine—to enhance hemodynamic stability and reduce postoperative complications in minimally invasive and robotic procedures. Their work also extends to understanding the oral reservoir of *H. pylori* and optimizing anesthetic protocols in pediatric ambulatory surgery.
Professor Chae Jung Park's research lab specializes in radiomics and medical image analysis, focusing on integrating advanced imaging features with machine learning and clinical data to improve diagnostic accuracy and prognosis prediction in neurological and oncological conditions. The lab investigates brain tumors, including gliomas and meningiomas, as well as neurodegenerative diseases like Parkinson’s disease, aiming to identify early biomarkers for dementia and tumor recurrence. Their work emphasizes methodological rigor, adhering to international standards such as RQS, TRIPOD, and IBSI to ensure clinical translatability.
Professor Juyoen Hur's research lab focuses on the neurobiological underpinnings of anxiety, emotion regulation, and their impact on cognition and behavior. The lab investigates how uncertain threat anticipation, affective states, and individual differences in traits like negative affect shape brain function and cognitive control, with a strong emphasis on translational fMRI methods. Key research directions include the neural circuits of anxiety and fear, the interplay between emotion and cognition—particularly in working memory and perception—and the role of specific brain regions such as the extended amygdala in alcohol-related behaviors. The lab also explores psychological constructs like worry and rumination through advanced psychometric modeling to clarify their distinct and shared mechanisms.
Professor Ji-Won Hur's research lab focuses on the psychological and neurocognitive underpinnings of internalizing disorders, particularly depression, obsessive-compulsive spectrum conditions, and alexithymia. The lab investigates the clinical heterogeneity of these conditions, emphasizing personality traits, cognitive functioning, and emotional processing as key factors influencing prognosis and treatment response. A central research direction involves developing and evaluating digital mental health interventions, especially mobile app-based cognitive behavioral therapy, to enhance accessibility and efficacy in clinical practice. The lab also explores the overlap and distinctions between psychiatric conditions such as OCD, PG (problematic gaming), and UHR (ultra-high risk) states, with a focus on identifying biomarkers and psychological profiles for early intervention.
Professor Se-Hoon Jeong's research lab focuses on media literacy, persuasion, and media multitasking, with an emphasis on how individuals process media messages, especially in complex media environments. The lab investigates the cognitive, attitudinal, and behavioral effects of media use, including the persuasive power of visual metaphors, the impact of multitasking on comprehension and decision-making, and the role of information processing in misinformation exposure. A key focus is on understanding how individual differences—such as sensation seeking and cognitive control—and contextual factors influence media engagement and outcomes. The lab also explores the role of media literacy in fostering critical thinking and resilience to misinformation, particularly in youth and during crises like the COVID-19 pandemic.
Professor Xue Lang Gao's research lab specializes in the design and development of advanced functional polymers for sustainable energy applications. The lab focuses on creating high-performance ion-exchange membranes, self-healing thermoset polymers, and biobased materials with tailored molecular architectures to enhance ionic conductivity, mechanical strength, and environmental sustainability. Key research directions include superionic conduction in polymers, dynamic covalent chemistry for smart materials, and the use of renewable resources in polymer synthesis.
Professor Sun Ig Hong's research lab specializes in advanced materials science, focusing on the synthesis and characterization of functional nanomaterials, particularly biocompatible ZnO nanoparticles via green synthesis methods using natural plant extracts. The lab also conducts in-depth investigations into the deformation mechanisms and creep behaviors of high-entropy alloys, especially CoCrFeMnNi, under extreme conditions such as cryogenic temperatures. Their work combines experimental techniques like XRD, SEM, TEM, and thermal activation analysis to understand atomic-level mechanisms governing mechanical properties and structural stability.
Professor Jin Young Kim's research lab specializes in advancing photoacoustic microscopy for biomedical imaging, with a focus on developing high-speed, high-resolution, and compact imaging systems for real-time in vivo and intraoperative applications. The lab pioneers innovative microelectromechanical systems (MEMS) scanners and ultraviolet photoacoustic microscopy (UV-PAM) to enable label-free, cellular-level histopathological imaging without tissue processing. Their work emphasizes practical clinical translation, particularly in cancer surgery guidance and preclinical disease monitoring.
Professor Seong Chu Lim's research lab specializes in nanoscale electronic and optoelectronic devices, focusing on carbon nanotubes, 2D materials, and their heterostructures. Key research directions include field emission properties of carbon nanotube arrays, contact engineering for CNT interconnects, and the development of novel logic and sensing devices using transition metal dichalcogenides and graphene-based materials. The lab also investigates the influence of surface chemistry, gas adsorption, and infrared radiation on the electrical behavior of 2D and nanocarbon materials.
Professor Bong Kyun Kang's research lab specializes in the design and synthesis of advanced non-precious metal electrocatalysts and nanostructured materials for sustainable energy conversion and storage. The lab focuses on developing transition metal nitrides, oxides, and hybrid nanomaterials—particularly those with tailored 3D architectures, mesoporosity, and heterostructuring—for efficient oxygen evolution reaction (OER) in water electrolysis. Key research directions include the rational design of non-platinum group metal (non-PGM) catalysts, integration of conductive carbon matrices, and the development of high-performance photoanodes and anion exchange membrane (AEM) electrolyzers for green hydrogen production.
Professor Sung-Ah Kim's research lab specializes in sustainable construction and digital innovation in the architecture, engineering, and construction (AEC) industry. The lab focuses on integrating Building Information Modeling (BIM), digital twins, and artificial intelligence to enhance design efficiency, improve life-cycle performance, and support sustainable decision-making. Key research directions include intelligent construction cost estimation, reuse of structural materials like steel beams, and real-time performance simulation for environmental and economic optimization.
Professor Sangwon Lee's research lab specializes in interdisciplinary studies at the intersection of behavioral economics, user experience, and innovation policy. The lab investigates user behavior in technology adoption, focusing on usability, emotional responses, and contextual factors in digital applications. It also explores macro-level drivers of innovation, particularly in biotechnology and telecommunications, with an emphasis on R&D investment, knowledge spillovers, and policy impacts. Additionally, the lab examines media framing and public perception in health crises, highlighting the role of partisan media in shaping societal responses.
Professor Jea-Gun Park's research lab specializes in advanced nanomaterials and optoelectronic devices, focusing on quantum dots, magnetic tunnel junctions, and thin-film solar cells. The lab develops novel materials such as non-toxic CuGaS₂/ZnS quantum dots and Cd-based energy-downshifting QDs to enhance solar energy conversion efficiency. It also investigates nanoscale phenomena in magnetic and dielectric systems, including CoFeB-based perpendicular magnetic tunnel junctions and ceria-based chemical mechanical polishing mechanisms. The overarching research direction centers on designing functional nanomaterials for next-generation energy and electronic applications.
Professor Dong Pyo Jang's research lab specializes in the development of advanced neurochemical and physiological monitoring technologies, with a focus on real-time, wireless, and minimally invasive systems for brain-computer interface applications. The lab integrates bioresorbable materials, 2D transition metal dichalcogenides, and novel electrochemical techniques like FCSWV to enable precise in vivo detection of neurotransmitters such as dopamine. Their work spans from fundamental electrochemistry to clinical applications in mental health, including virtual reality-based therapies for anxiety disorders like acrophobia and agoraphobia. The lab emphasizes the integration of cutting-edge materials and sensing technologies to bridge neuroscience with clinical psychology and biomedical engineering.
Professor Seong-Geun Oh's research lab specializes in soft matter and colloid science, focusing on the self-assembly behavior of surfactants, micellar systems, and stimuli-responsive polymers. The lab investigates the interplay between molecular structure, micellar stability, and macroscopic properties such as foamability and solubilization efficiency. A key research direction involves the design and synthesis of functional hybrid materials, particularly thermoresponsive polymer-silica composites for advanced applications in drug delivery and smart materials. The lab also explores dynamic processes in soft systems using techniques like pressure-jump relaxation and kinetic analysis.
Professor Sanghyo Lee's research lab focuses on advancing sustainable and intelligent construction through digital innovation and data-driven solutions. The lab specializes in building performance analysis, defect detection using deep learning, and the development of smart monitoring systems for building façades and indoor environments. Key research directions include optimizing maintenance cost modeling using financial risk assessment techniques, promoting green building adoption through innovative financing models, and leveraging digital fabrication and sensor technologies for complex construction projects.
Professor Apurba Adhikary's research lab specializes in next-generation wireless communication systems, with a primary focus on 6G networks, holographic MIMO, and integrated sensing and communication (ISAC). The lab develops AI-driven frameworks to optimize energy efficiency, beamforming, and massive connectivity in cell-free and mMIMO networks. Key research directions include intelligent resource allocation, low-power beamforming using holographic grid arrays, and edge-based machine learning for urban safety applications such as crime prediction. The lab emphasizes sustainable, intelligent, and scalable wireless solutions for smart cities and future communication infrastructures.