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 Man-Sung Yim's research lab focuses on advanced materials and sustainable energy technologies, with a strong emphasis on nuclear energy safety, environmental remediation, and clean energy systems. Key research directions include the development of novel adsorbents—such as bismuth-based metal-organic frameworks (MOFs) and activated carbon composites—for capturing radioactive iodine and uranium from seawater, particularly under extreme conditions like severe nuclear accidents. The lab also investigates the integration of renewable energy into national grids, addressing challenges related to excess electricity generation and grid stability through innovative modeling and management strategies. Additionally, the lab explores public perception and socio-technical factors influencing nuclear energy adoption, combining materials science with policy-relevant research.
Professor Q-Han Park's research lab specializes in theoretical and mathematical physics with a focus on nonlinear dynamics, optical materials, and quantum field theory. The lab investigates integrable systems such as coupled nonlinear Schrödinger equations and self-dual field theories, exploring their soliton solutions and underlying symmetries. It also conducts cutting-edge research on plasmonic nanostructures, optical antennas, and the optical response of low-dimensional materials like 2D semiconductors, using advanced spectroscopic techniques. The work bridges fundamental theoretical physics with applications in nanophotonics, quantum optics, and materials characterization.
Professor Sunkuk Kim's research lab specializes in sustainable construction technologies and advanced materials, focusing on the integration of digital technologies such as UAVs, BIM, and XR to enhance project efficiency and automation in the AEC (Architecture, Engineering, and Construction) industry. The lab also investigates innovative composite materials—particularly MWCNT-reinforced epoxy/carbon fiber laminates—for improved structural performance and durability. Additionally, the lab addresses critical challenges in construction sustainability, including rebar waste minimization through advanced optimization algorithms and improved formwork systems for free-form concrete structures. A strong emphasis is placed on reducing environmental impact, improving productivity, and enhancing safety through data-driven and technology-integrated solutions.
Professor Juhwan Oh's research lab focuses on population health, with a strong emphasis on social determinants of health across the lifespan. The lab investigates health disparities related to socioeconomic status, family and peer influences, and employment insecurity, particularly in the context of public health crises like the COVID-19 pandemic and long-term developmental outcomes such as adolescent mental health and child growth. Research also extends to reproductive health and health behavior in low- and middle-income countries, especially Vietnam and South Korea, with policy-relevant interventions as a central goal.
Professor Sun Min Lim's research lab focuses on molecular oncology and targeted therapy in non-small cell lung cancer (NSCLC), with a particular emphasis on identifying and validating novel therapeutic targets and resistance mechanisms in driver-positive lung cancers. The lab investigates the efficacy and safety of next-generation tyrosine kinase inhibitors, such as ceritinib in ROS1-rearranged NSCLC, and explores resistance mechanisms in EGFR-mutant and other advanced lung cancers through comprehensive genomic profiling. The lab also extends its research to rare and aggressive malignancies, including anaplastic thyroid cancer and gastric cancer, aiming to identify surrogate biomarkers and improve outcomes through precision oncology approaches. Their work integrates molecular diagnostics, including FISH, IHC, and next-generation sequencing, to enhance patient stratification and treatment personalization.
Professor Daehoon Kim's research lab focuses on cardiovascular and cerebrovascular diseases, with a strong emphasis on atrial fibrillation (AF) and its long-term complications, including dementia and cognitive decline. The lab investigates the impact of rhythm and rate control strategies, anticoagulant adherence, and comorbid conditions such as hypertension on clinical outcomes in AF patients. Using large-scale national databases, the lab explores mechanisms linking AF to neurocognitive impairment and identifies modifiable risk factors, particularly in midlife populations. The research also extends into molecular mechanisms of epigenetic regulators like CARM1, linking cellular signaling to disease pathogenesis.
Professor So Mi Jemma Cho's research lab focuses on cardiovascular disease prevention, with a strong emphasis on dyslipidemia, polygenic risk scores, and individualized risk prediction. The lab investigates how genetic, clinical, sociodemographic, and lifestyle factors interact to influence coronary artery disease (CAD) risk and recurrence, particularly in diverse populations. Using large-scale clinical data and health system-based studies, the lab aims to improve risk stratification and precision prevention strategies. Their work spans from basic genetic associations to real-world implementation of risk models in clinical settings.
Professor Kye-Seong Kim's research lab focuses on the molecular mechanisms underlying cellular regulation, particularly through the ubiquitin-proteasome system and post-translational modifications in stem cell biology and reproductive biology. The lab investigates the roles of ubiquitination and deubiquitination enzymes in maintaining stem cell pluripotency and regulating spermatogenic cell development, with a special emphasis on the acrosomal matrix and protein compartmentalization in sperm. Additionally, the lab explores epigenetic regulation in embryonic stem cells, especially the interplay between signaling pathways, histone demethylases, and DNA methylation in establishing the naive pluripotent state. These studies integrate cell biology, biochemistry, and molecular genetics to uncover fundamental regulatory mechanisms with implications for regenerative medicine and infertility.
金淳煥教授の研究室は、酸化物半導体や低次元ハロイド半導体を用いた次世代エレクトロニクス素子の開発を主眼としています。特に、酸化インジウムガリウム亜鉛酸化物(a-IGZO)や酸化ガリウム系酸化物半導体の電子構造制御により、高 mobility と透明性を両立する材料を創出し、VR/AR向け高解像度ディスプレイや完全透明エレクトロニクスの実現を目指しています。また、 lead-free な高効率発光材料として、銅(I)ハライド系の新規ホスホルを設計・開発し、白色発光デバイスへの応用も進めています。
Ryōsuke Takahashi教授の研究室は、神経変性疾患の発症機構に焦点を当て、特にアルツハイマー病やパーキンソン病、筋萎縮性側索硬化症(ALS)におけるタンパク質の折り畝み異常とタンパク質分解系の機能不全の関与を解明しています。特に、ユビキチン・プロテアソーム系やオートファジーの機能、IAPファミリーのアポトーシス制御機能、ならびにエンドプラズミックリトゥーリス(ER)ストレス応答の分子機構に注目した分子細胞生物学的アプローチを展開しています。神経細胞の生存・死滅のバランスを制御する分子機構の解明を通じて、神経変性疾患の新たな治療標的の同定を目指しています。
Ibrahim Akal教授の研究室は、量子情報と一般相対性理論の接点を追求する理論物理学を専門としています。特に、ホログラフィー双対性を用いたブラックホールの情報パラドックスや、時間発展における量子もつれの変化(例えばペイジ曲線の再現)を研究しています。2次元CFTと移動鏡モデルの関係を詳細に解析し、重力理論との双対性を構築することで、強い結合領域における量子重力の理解を深めています。また、量子真空からの粒子生成や、凝縮系における擬似ブラックホール効果の研究も展開しています。
大阪大学大学院理学研究科の相島貞人教授らの研究室は、陽イオン性重合の分野で世界的に注目される革新的な研究を展開しています。特に、有機アルミニウムハライドを触媒とし、添加塩基によって炭素陽イオン種を安定化させることで、反応速度が1〜3秒という驚異的な速さで進行する「生きた陽イオン重合」の新規系を創出し、分子量分布が非常に狭い高分子の定量的合成を実現しました。この技術を応用して、温度応答性を示すABC三成分ブロックコポリマーの設計や、水溶液中での物理的ゲル化挙動の制御にも成功しています。
Professor Dongwhan Lee's research lab specializes in bioinorganic chemistry, focusing on the synthesis and characterization of synthetic models for non-heme diiron enzymes, particularly ribonucleotide reductase and soluble methane monooxygenase. The lab investigates the electronic and magnetic properties of diiron complexes, with an emphasis on understanding the activation of dioxygen and the formation of high-valent iron-oxo intermediates relevant to enzymatic catalysis. Their work combines molecular synthesis, spectroscopic techniques (such as Mössbauer and EPR), and structural analysis to mimic and probe the reactivity of biological iron centers.
Professor Yoo Yong Kim's research lab specializes in animal nutrition and feed science, focusing on optimizing dietary formulations to enhance growth performance, health, and productivity in livestock and poultry. The lab investigates the effects of nutrient manipulation—such as energy and protein levels, lysophospholipid supplementation, and alternative feed ingredients—on animal metabolism, intestinal health, and carcass traits. A key research direction involves developing sustainable and cost-effective feeding strategies, including the use of alternative protein sources like edible insects and fiber-rich ingredients such as sugar beet pulp, to replace antibiotics like ZnO in weaning pigs. The lab also explores phase feeding systems and feed processing techniques to improve feed efficiency and economic profitability in animal production systems.
Professor Jessie S. Jeon's research lab specializes in developing advanced microfluidic and 3D in vitro models to study complex biological processes, particularly cancer metastasis and vascularization. The lab focuses on mimicking the tumor microenvironment by integrating human cells, extracellular matrices, and dynamic fluidic conditions to investigate organ-specific cancer cell extravasation, endothelial-pericyte interactions, and the role of signaling molecules like Ang-1 and TGF-β1. Their work also extends to antimicrobial screening, where they apply microfluidic platforms to study combinatory antibiotic effects with high-throughput phenotypic analysis. These innovative models enable real-time, in situ monitoring of cellular behaviors, offering new insights into disease mechanisms and therapeutic development.
Professor Woo-Bin Jung's research lab specializes in the design and fabrication of advanced nanomaterials for sustainable energy and environmental applications. The lab focuses on developing low-cost, scalable nanofabrication techniques for high-density, ultra-small nanopatterns and advanced electrocatalysts, particularly for carbon dioxide reduction and rechargeable metal-air batteries. Key research directions include the synthesis of polyelemental alloy nanoparticles, defect-engineered carbon-supported catalysts, and facet-controlled copper nanostructures to enhance catalytic selectivity and activity.
Professor Eun Yeon Joo's research lab specializes in neuropsychiatry and neuroimaging, focusing on the neural mechanisms underlying sleep disorders and epilepsy. The lab investigates structural and functional brain changes—such as cortical thinning, gray matter atrophy, and alterations in cerebral glucose metabolism—associated with conditions like obstructive sleep apnea, narcolepsy, and mesial temporal lobe epilepsy. Using advanced neuroimaging techniques including FDG-PET, SPECT, and statistical parametric mapping, the lab explores how sleep disruption and neurological diseases affect cognition, attention, emotion regulation, and autonomic function. The research also evaluates the neurobiological impact of wake-promoting medications like modafinil on regional cerebral blood flow in healthy individuals.
Professor Jun Moon's research lab specializes in stochastic control, differential games, and reinforcement learning with applications to large-scale multiagent systems, unmanned aerial vehicles, and Markov jump systems. The lab focuses on risk-sensitive and robust control strategies, mean-field type games, and time-inconsistent optimal control problems, integrating advanced mathematical frameworks such as backward stochastic differential equations and Hamilton-Jacobi-Bellman-Isaacs equations. A key emphasis is on developing scalable, decentralized, and robust control algorithms for dynamic, uncertain environments using deep reinforcement learning and stochastic optimization techniques.
Akifumi Sugiyama教授の研究室は、植物の根圏(rhizosphere)における微生物コミュニティの構成と機能に注目し、特に大豆をモデルとして、植物が根から放出する特異的代謝物が微生物とどのように相互作用するかを、分子生物学的・環境微生物学的手法を融合して解明しています。根からのフラボノイドの輸送機構や、ABCトランスポーターの機能解明を通じて、共生的窒素固定のメカニズムを解明しています。また、有機農業と conventional 農業の比較を通じて、土壌微生物多様性と農業の持続可能性の関係についても研究しています。
Sensuke Ogoshi教授の研究室は、ニッケルや銅を用いた新しい金属触媒反応の開発を柱としています。特に、炭素-ハロゲン結合の活性化、酸化的シクロカップリング、炭素-酸素・炭素-炭素結合の新規形成反応に注力しており、基質の多様性と反応の高効率性を実現しています。また、遷移金属の酸化的付加や中間体の精密制御を基盤に、天然物合成や機能性化合物の創出に応用可能な反応系の構築を目指しています。