The performance of a copper catalyst in reducing carbon dioxide is determined not by its initial form but by how its surface is sculpted by a fluorine doping reaction.
By uncovering how conventional metals interact with novel semiconductors, researchers achieve a breakthrough in nanoscale circuitry for ultra-low temperature quantum electronics.
Rachel Sim develops imaging platforms that bring microscopic insights into the operating theatre, helping surgeons make more informed decisions in real time.
Stress-testing artificial intelligence models under real-world conditions can improve their reliability, enabling the maritime industry to embark on safer and greener voyages.
After 15 years of shaping A*STAR’s approach to research, innovation and enterprise in the physical sciences and engineering, Sir John O’Reilly highlights the importance of surfacing promising ideas, fostering dialogue and harnessing collective wisdom for impactful science.
As a new five-year phase of Research, Innovation and Enterprise takes off across the nation, A*STAR leaders present the strategic throughlines and shifts through which the agency will advance national priorities in health, economy, sustainability and future technologies.
A hybrid platform for manipulating deep ultraviolet light in semiconductor materials opens new possibilities for next-generation ultraviolet photonic devices.
Bigger models are not always better, as A*STAR researchers show how a targeted AI model can beat global, general-purpose models in summarising multilingual regional news.