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 Yeonsook Heo's research lab specializes in building energy modeling, simulation, and risk-informed decision-making for energy efficiency. The lab focuses on advancing Bayesian calibration techniques to improve the accuracy and reliability of building energy predictions, particularly in the context of retrofitting and energy service contracts. Key research directions include probabilistic modeling, uncertainty quantification, and the development of scalable, data-driven methods for large building portfolios.
Professor Min Ho Seo's research lab specializes in the design and development of advanced nanomaterials for sustainable energy conversion and storage applications. The lab focuses on electrocatalysts for water splitting—particularly oxygen evolution reaction (OER) in seawater electrolysis and anion exchange membrane water electrolysis—using earth-abundant transition metal oxides and spinels. Key research directions include understanding reaction mechanisms through combined experimental and ab initio computational studies, with a strong emphasis on non-precious metal catalysts for replacing noble metals like Pt and Au in electrocatalytic glycerol oxidation and hydrogen production. The lab also explores novel nanostructured anode materials, such as Ge nanowires and CuCo₂O₄, for high-performance lithium-ion and post-lithium-ion batteries.
Professor Ashok Kumar Malik's research lab specializes in the development and application of advanced analytical techniques for the detection and speciation of environmental and pharmaceutical pollutants. The lab focuses on innovative microextraction methods, hyphenated techniques like GC-MS and HPLC-MS, and the analysis of pesticide residues, dithiocarbamates, and antiepileptic drugs in complex matrices such as food, water, and biological samples. A key emphasis is placed on green, solvent-minimized, and high-efficiency analytical methods for environmental monitoring and clinical diagnostics.
Professor Hyunsu Bae's research lab focuses on the immunological and molecular mechanisms underlying chronic inflammatory diseases, neurodegenerative disorders such as Alzheimer’s disease, and stress-related psychiatric conditions. The lab investigates the role of regulatory T cells (Tregs) in immune homeostasis and neuroinflammation, explores natural compounds like bee venom and phytochemicals as potential anti-inflammatory and neuroprotective agents, and examines the interplay between immune regulation and mental health. Key research directions include Treg-mediated immunomodulation, the pathogenesis of amyloid-beta deposition in Alzheimer’s disease, and the therapeutic potential of natural products in treating immune and neuropsychiatric disorders.
Professor Yongju Choi's research lab specializes in environmental remediation and resource recovery, focusing on innovative separation and sorption technologies for persistent organic pollutants and valuable gaseous compounds in water and soil. Key research directions include membrane-based gas recovery (e.g., ammonia and methane) from waste streams, activated carbon applications for sequestering polycyclic aromatic hydrocarbons (PAHs) and polychlorinated biphenyls (PCBs) in contaminated sediments, and the development of robust, hydrophobic membranes to prevent wetting and enhance mass transfer efficiency. The lab integrates experimental studies with predictive mass transfer modeling to optimize in situ remediation and sustainable resource recovery under real-world conditions.
Professor Dong-Mi Shin's research lab focuses on the interplay between diet, gut microbiota, and host health, with a particular emphasis on how nutritional patterns influence the gut-brain axis and metabolic health. The lab investigates the role of bioactive compounds—such as ascorbic acid and cocoa—on cellular differentiation and mood regulation, integrating molecular biology with clinical nutrition studies. Using multi-omics approaches including 16S rRNA sequencing and transcriptome profiling, the lab explores microbial and host responses to dietary interventions, especially in the context of aging and immune cell development. Their work bridges basic science and translational research, aiming to uncover mechanisms underlying diet-induced health outcomes.
Professor Min-Seok Rha's research lab focuses on mucosal immunology and T cell responses in the context of respiratory viral infections, particularly SARS-CoV-2. The lab investigates tissue-resident memory T cells in the nasal mucosa, T cell exhaustion in severe COVID-19, and cross-reactive immunity from prior common-cold coronavirus exposure. They also explore systemic immune markers such as neutrophil-to-lymphocyte ratio and hematocrit in obstructive sleep apnea, linking systemic inflammation and immune dysregulation to respiratory diseases. Their work bridges basic immunology with translational applications in vaccine development and host defense mechanisms.
Professor Insub Jung's research lab specializes in the rational design and synthesis of complex plasmonic nanostructures with precise control over morphology and functionality. The lab focuses on creating advanced nanomaterials such as nanoframes, core-in-frame architectures, and 3D nanostructures that enable strong light-matter interactions through engineered electromagnetic hot spots. Key research directions include the development of high-performance surface-enhanced Raman spectroscopy (SERS) substrates, magnetoplasmonic systems for biodetection, and hybrid plasmonic-organic nanostructures for tunable optical responses. The lab integrates wet-chemical synthesis with advanced optical characterization to pioneer next-generation plasmonic platforms for sensing and nanophotonics.
Professor In Gyu Song's research lab specializes in perinatal and pediatric health, with a primary focus on the neurodevelopmental outcomes of preterm and low birth weight infants. The lab investigates the impacts of gestational age, birth weight, environmental exposures such as air pollution, and neonatal care practices on long-term child development. Key research directions include early risk prediction using growth parameters, the epidemiology of neurodevelopmental disorders like ADHD and autism spectrum disorder, and health disparities in neonatal outcomes. The lab also emphasizes clinical translation, advocating for improved care planning and systemic support in pediatric healthcare.
Professor Su-Jeong Suh's research lab specializes in the design and synthesis of advanced nanomaterials for sustainable energy applications, with a strong focus on electrocatalysts for water splitting and renewable energy conversion. The lab investigates transition metal-based materials such as FeCo, NiFe, MoS2, and trimetallic Fe-Co-Ni systems, emphasizing nanostructure engineering to enhance catalytic activity, stability, and charge transfer kinetics. Key research directions include binder-free electrodeposition, additive-assisted electroplating for void-free TSV filling in 3D electronics, and the optimization of electrochemical performance through controlled synthesis and surface modification.
Professor Yong Taek Lee's research lab specializes in advanced materials and microfluidic systems, focusing on the development of functional porous membranes and miniaturized RF components for biomedical and electronic applications. The lab investigates membrane science through surface modification techniques—such as radical-induced grafting on PVDF hollow fibers—to enhance hydrophilicity and antibacterial properties, while also exploring fluid dynamics in porous media for efficient separation processes. In parallel, the lab designs ultra-wideband (UWB) filters using integrated passive device (IPD) technology for compact, high-performance wireless communication systems. These interdisciplinary efforts bridge materials engineering, fluid mechanics, and microelectronics to address challenges in healthcare and next-generation electronics.
Professor Han-Kwang Yang's research lab specializes in gastrointestinal oncology, with a primary focus on improving surgical outcomes and survival prediction in gastric cancer. The lab investigates minimally invasive surgical techniques such as laparoscopic distal gastrectomy and their impact on recovery, pain, and long-term prognosis. A key direction involves developing and validating clinical nomograms for individualized survival prediction after D2 gastrectomy, integrating data from large institutional cohorts. The lab also explores the cost-effectiveness and clinical benefits of gastric cancer screening programs, particularly in population-based settings.
Professor You-Me Kim's research lab focuses on innate immunity and signal transduction, particularly the molecular mechanisms underlying viral immune evasion, G protein-coupled receptor (GPCR) regulation by arrestins, and T cell receptor signaling. The lab investigates how pathogens like SARS-CoV-2 subvert type I and III interferon responses, how arrestins modulate receptor trafficking and downstream signaling, and how lipid microenvironments regulate key kinases such as Lck in immune cell activation. Their work integrates molecular biology, cell signaling, and structural biochemistry to uncover fundamental mechanisms in immune regulation and inflammation-related diseases such as asthma and viral infections.
Professor Seong Keun Kim's research lab specializes in advanced thin film materials and atomic layer deposition (ALD) technologies for next-generation semiconductor and energy applications. The lab focuses on developing high-k dielectrics—such as TiO₂, Al-doped TiO₂, and perovskite SrTiO₃—for use in dynamic random access memory (DRAM) capacitors, emphasizing high dielectric constants, low leakage current, and thermal stability. A key research direction involves using ALD to engineer nanostructured interfaces and conformal coatings in thermoelectric materials, enhancing performance through defect engineering and interfacial control. The lab also investigates Ru-based electrodes and ALD processes for integration into advanced logic and memory devices.
Professor Yu Seok Youn's research lab specializes in the design and application of advanced nanomaterials for targeted drug delivery and cancer therapy. The lab focuses on bioinspired nanotherapeutics, particularly using viral and protein-based platforms to enhance tumor targeting and blood-brain barrier penetration. Key research directions include stimuli-responsive nanocarriers, ferroptosis-inducing systems, and inhalable or injectable nanoparticle formulations for improved therapeutic efficacy and reduced systemic toxicity. The lab integrates materials science, nanomedicine, and molecular oncology to develop innovative solutions for challenging cancers such as triple-negative breast cancer and brain tumors.
Professor S.S. Shinde's research lab specializes in the design and development of advanced nanomaterials for sustainable energy applications, with a primary focus on electrocatalysts for metal-air batteries and hydrogen evolution reactions. The lab emphasizes scalable synthesis of carbon-based and metal oxide nanostructures—such as doped carbon nitrides, metal-organic frameworks, and hematite-based materials—engineered for high surface area, stability, and bifunctional electrocatalytic activity. Key research directions include optimizing oxygen reduction and evolution reactions (ORR/OER) and enhancing photocatalytic performance under visible light for environmental remediation and solar energy conversion.
Professor Eunice Kim's research lab specializes in digital marketing communication, with a focus on branded content, influencer marketing, and native advertising in digital and gaming environments. The lab investigates how credibility, disclosure practices, cognitive processing, and user engagement shape consumer perceptions and behaviors in social media and interactive platforms. Key research directions include the psychological mechanisms behind persuasion knowledge, the impact of sponsorship transparency, and the effectiveness of branded content across mobile apps, social networks, and video games. The lab bridges theory and practice by addressing emerging challenges in digital advertising regulation and consumer experience.
Professor Hyotcherl Ihee's research lab specializes in ultrafast structural dynamics, focusing on the real-time observation of transient molecular structures in chemical and biological reactions. Using advanced time-resolved X-ray and electron diffraction techniques—such as ultrafast electron diffraction (UED), time-resolved Laue crystallography, and liquid-phase X-ray diffraction—the lab investigates reaction mechanisms in complex systems, including gas-phase reactions, protein photocycles, and solution-phase dynamics. The lab's work bridges fundamental chemistry and structural biology by capturing fleeting intermediates with high temporal and spatial resolution, offering direct insights into reaction pathways and stereochemical control.
Professor Hee-Sun Kim's research lab focuses on neuroinflammation, neurodegenerative diseases, and neuroprotection, with a particular emphasis on identifying and characterizing natural compounds that modulate microglial activation, oxidative stress, and cell death pathways such as necroptosis. The lab investigates the molecular mechanisms of ginsenosides, saponin metabolites, and other phytochemicals in astrocytes and microglial cells to develop potential therapeutic strategies for Parkinson’s disease, brain tumors, and other central nervous system disorders. Key research directions include the regulation of MMP-9, Nrf2-mediated antioxidant responses, and RIPK1 signaling in neuroinflammatory conditions.
Professor Chiyoung Cha's research lab focuses on digital health interventions, mental health support through technology, and culturally informed healthcare practices. The lab investigates the impact of artificial intelligence chatbots on emotional expression and mental well-being, particularly in relation to depression and mood regulation across cultures. It also explores health behaviors and support systems among specific populations, such as nursing professionals, female university students, and migrant women, with an emphasis on social media and mobile-based interventions. Additionally, the lab examines organizational culture and workplace well-being in healthcare settings.