Prof Ong hopes the AI Foundry can compress discovery cycles for new materials from months or years to weeks. Professor Shyue Ping Ong wants AI to do more than predict whether a material might work. His vision is a discovery system that can propose new materials for a specific purpose, identify the most useful experiments to run, learn from every result and help scientists understand why a material
Fusion EnergyTechnology & Innovation#National University of Singapore#CDE Research News#Cde News#Research Impact#fusion#plasma physics#advanced materials#innovation
Assoc Prof Mario Lanza (left) and Dr Sebastian Pazos (right), whose team integrated 2D materials on gallium nitride microchips to develop high-frequency switches for 5G and 6G telecommunication. Our mobile phones today handle far more wireless signals and services than earlier generations. The same is true of the sophisticated equipment behind mobile networks, such as base stations, and emerging t
Medical ResearchTechnology & Innovation#National University of Singapore#CDE Research News#Cde News#Research Impact#medical research#clinical research#advanced materials#innovation
In the realm of materials science, there is a plethora of datasets and tools at our disposal - the issue is how to effectively make use of these resources in harmony. Researchers at the Advanced Institute for Materials Research (WPI-AIMR), Tohoku University, have identified major bottlenecks holding back artificial-intelligence-driven polymer innovation and created a system that integrates multipl
Artificial intelligence (AI) may have more to offer science than accurate predictions. The patterns it learns could point researchers towards new, testable explanations of how complex systems function. A new Perspective co-authored by Assistant Professor Gianmarco Mengaldo from the Department of Mechanical Engineering under the College of Design and Engineering at the National University of Singap
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Prof Yang's research has driven new approaches to microscopy, produced technologies adopted by industry, and opened new possibilities for imaging and controlling light inside biological tissue. From diagnosing disease to understanding how cells behave, much of biomedical science depends on our ability to see biological structures in ever greater detail. Professor Yang Changhuei ( Department of Ele
Medical Research#National University of Singapore#CDE Research News#Cde News#Research Impact#medical research#clinical research
Technology & InnovationQueen Mary University of London
Scientists could have a new way to explore the hidden behaviour of matter, thanks to research involving Queen Mary University of London that uses a quantum computer to carry out a new form of computational spectroscopy. Spectroscopy is an important scientific technique used to understand the properties of matter. By analysing how materials and molecules respond to energy or light, researchers can
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Technology & InnovationChinese Academy of Sciences
Spin-orbit coupling (SOC), an interaction between an electron ' s spin and its motion, plays a key role in creating topological insulators—unusual materials that are insulating in their interior but can conduct electricity along their surfaces. Now, a new study published in Newton finds that increas ing temperature weakens SOC in the topological insulator Bi 2 Se 3 , driving a transition to a norm
Technology & InnovationQuantum#Chinese Academy of Sciences#Research News#Quantum#advanced materials#innovation
Developing safer solid-state batteries requires replacing flammable organic liquid electrolytes with solid-state electrolytes (SSEs) that can conduct ions well, remain stable, and have suitable mechanical properties. As interest in SSEs has grown, so has the volume of research in the field. However, the reported data remain scattered across the literature and vary widely in format and completeness
Asst Prof Andrew Holle (left) and PhD student Nicole Lee Jia Wen (right) in the laboratory. Cells in our bodies squeeze through dense tissue channels, thread past neighbouring cells and navigate every nook and cranny within the extracellular matrix — the mesh-like network that surrounds and supports cells. How well they do this can shape a wide range of physiological processes, from wound repair t
Medical Research#National University of Singapore#CDE Research News#Cde News#Research Impact#medical research#clinical research
Technology & InnovationChinese Academy of Sciences
In a study published in Nature on August 19, a team led by Profs. ZENG Changgan and CHENG Guanghui from the University of Science and Technology of China of the Chinese Academy of Sciences, along with Prof. JIANG Qingdong from Shanghai Jiao Tong University, Prof. Frank Wilczek from Massachusetts Institute of Technology, and other collaborators, for the first time, have achieved the enhancement of
Technology & InnovationQuantum#Chinese Academy of Sciences#Research News#Quantum#advanced materials#innovation
Technology & InnovationNational Research Council of Science & Technology
- KIMS Develops Highly Durable Platinum–Nickel Catalyst for Water Electrolysis # Atomic-Structure Control Suppresses Nickel Dissolution, Enabling a Highly Durable Water Electrolysis Catalyst to Operate for 3,000 Hours # Extended Catalyst Lifetime Expected to Reduce Green Hydrogen Production Costs and Support the Commercialization of Water Electrolysis Systems CHANGWON, South Korea — Korea Institut
Technology & Innovation#National Research Council of Science & Technology#GRIs News#Korea Institute of Materials Science (KIMS)#KIMS#advanced materials#innovation#Korea Institute of Materials Science
As part of National Engineers Day (NED) 2026, student innovators from CDE put their ideas to the test at the Engineering Innovation Challenge (EIC), a national platform that encourages students to apply engineering knowledge to real-world problems. Held on 14 August, NED brought together engineers, educators, students and industry professionals to celebrate the role of engineering in shaping Singa
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Technology & InnovationLawrence Livermore National Laboratory
At the bottom of the ocean, optical fibers transmit telecommunications and internet data across the world. Waveguides make that feat possible by channeling and amplifying the light — and therefore the data within — over enormous distances. And the technology goes beyond undersea cables. Waveguiding optics are among the most important advances in photonics since the invention of the laser. They are fundamental to the structure of glass fiber lasers, which are used for high-power national security applications like counter-drone laser systems and missile defense. Now, researchers at
Technology & Innovation#Lawrence Livermore National Laboratory#Advanced Materials and Manufacturing#Defense#Engineering#Lasers and Optical S&T#Top Story#advanced materials#innovation
Mr Ngo Minh Quang Phan (left), first author of the study, and Assoc Prof Duong Hai Minh, who led the research, with a carbon fibre epoxy aerogel developed by the research team. Researchers from CDE have developed a method to turn waste from the tough, lightweight composites used in aircraft and other high-performance structures into aerogels that could be used for thermal insulation, sound absorpt
Environment & Climate#National University of Singapore#CDE Research News#Cde News#Research Impact#climate#decarbonization
Researchers led by Assoc Prof Rudi Stouffs from the Department of Architecture, have developed a deep learning framework that completes missing and under-mapped flood hazard zones across the contiguous United States. Official flood maps shape disaster preparedness, insurance decisions and urban planning, but large parts of the United States remain unmapped or under-mapped. This means some communit
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Environment & ClimateNational University of Singapore
Asst Prof Tan Yu Jun, and her team's research on a new electrolyte paired with a redesigned electrode architecture triples the brightness of electrochemiluminescent devices. UBECL solutions are shown under ambient light (upper figure) and under UV irradiation (λ = 365 nm, lower figure). From a skin patch that changes colour to flag abnormal blood sugar, to a diver’s sleeve display that stays reada
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EduGrade AI, an educator-controlled assessment and feedback platform, has been selected for the Innovate UK ICURe Exploit Business and Spinout Readiness programme, following its successful completion of the ICURe Explore programme. The project is now progressing towards spinout formation through Queen Mary Innovation, marking an important step in taking the project beyond the university and toward
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Technology & InnovationUniversity of California, Riverside
Adobe freestock image Published in Nature Photonics , the international study introduces Clavina – a modular, programmable photonic quantum computing architecture capable of combining both linear and nonlinear quantum operations within a single system. The advance provides a practical blueprint for more powerful and adaptable quantum computers that could one day tackle problems beyond the reach of
Technology & Innovation#Queen Mary University of London#QMUL Latest News#Science And Engineering#advanced materials#innovation
Associate Professor Poh Chueh Loo (right) and Linus Tan Yu Han (left) engineered baker’s yeast to sense and respond to different colours of light, enabling new ways to control cellular behaviour with red and blue light. Baker’s yeast is one of biotechnology’s most important microorganisms. It has long been used to leaven bread and ferment beer. More recently, advances in synthetic biology have ena
Life Sciences#National University of Singapore#CDE Research News#Cde News#Research Impact#genomics#biology
Environment & ClimateNational University of Singapore
Prof Heng Chye Kiang (7th from the right), Dr Xue Xuan, first author of the paper (8th from right), and Prof TC Chang, fourth author of the paper (9th from right) at a presentation of their research. Researchers from the National University of Singapore (NUS) College of Design and Engineering (CDE), led by Professor Heng Chye Kiang ( Department of Architecture ), have developed a computational fra
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Technology & InnovationChinese Academy of Sciences
An international research team has developed a new quantum-classical framework for computing quantum many-body structure and dynamics. The findings were published in Physical Review C . Ab initio many-body calculations serve as a fundamental tool for understanding strongly correlated quantum systems, with broad applications in quantum chemistry and nuclear physics. However, the Hilbert space of su
Technology & InnovationQuantum#Chinese Academy of Sciences#Research News#Quantum#advanced materials#innovation#Lawrence Berkeley National Laboratory