A detailed look at a tungsten-based semiconductor reveals how the spacing of surface defects can improve the material’s stability in atmospheric conditions.
From innovative medical devices to advanced manufacturing partnerships, the work of A*STAR recipients of the 2024 President’s Science and Technology Awards exemplify the importance of translating research into clinical and commercial outcomes.
Combining the best of both classical and quantum computing, a new mathematical approach promises faster solutions for complex modelling of real-world phenomena.
A new spatial multi-omics tool merges different levels of biological data from the same tissue sample to better differentiate finer details at different health states.
A new lithium niobate nanophotonic device efficiently produces correlated photon pairs on chips, paving the way for compact quantum communication systems.
With an eye on adaptable computer vision technologies, A*STAR scholar Mohamed Mikhail Kennerley aims to boost the capacity of machines to understand the visual world.
A new molecular dynamics study reveals how some stapled peptides shapeshift to slip through cellular barriers and target key disease-related proteins within cells.
By introducing tiny magnetic whirlpools to existing spin-based electronics, researchers pave the way for faster, more compact and more energy-efficient computing.
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