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Researchers from NYCU and TSMC show that redefining the atomic boundary between materials can address a major engineering barrier restricting the development of next-generation semiconductor devices. Credit: Springer NatureA sub-nanometer buffer improved atomically thin transistors,…
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Fabrication and characterization of polystyrene microtubes (PS-MTs). Credit: Biomedical Materials (2025). DOI: 10.1088/1748-605x/adebd0 When biomedical researchers need to…
High-speed atomic force microscopy has enabled the visualization of ABCA1 in the process of generating nascent HDL. Credit:…
Dr Uxue Aizarna holds an artery obtained using advanced 3D printers. Credit: CIC biomaGUNE To explore possible treatments…
Credit: ACS Sensors (2025). DOI: 10.1021/acssensors.5c00310 A research team has developed a nanocomposite-modified microelectrode array (MEA) that enables…
The walking mechanism of the “water spider” robot HydroBuckler prototype shown here is driven by “leg” buckling. Credit:…
Illustration of a robust nested molecular cage, featuring an inner octahedron enclosed within an outer truncated tetrahedron. Its…
A solid-state PFSA ionomer (Nafion) decouples MoS2 layers and passivates defects, enabling bright, scalable, stretchable 2D monolayer membranes.…
Researchers at the Department of Energy’s Pacific Northwest National Laboratory have announced a discovery. Despite forming in a…
The proposed carbon nanotube-based nanocomposites facilitate 3D printing of highly stretchable and sensitive piezoresistive sensors that can be…
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