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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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Design strategy of NICER nanovaccine. Credit: Nature Nanotechnology (2025). DOI: 10.1038/s41565-025-01952-x A research team has developed an approach…
Depiction of the process forming the structure of the new filter for PFAS chemicals. Credit: Science Communication Lab…
Reviewed by Frances BriggsSep 24 2025 A new 3D printed, bioactive glass may support bone growth better than…
a) Schematic of the direct surface modification of the epidermis using an ultrathin PDA and PDA-TOB layer and…
A new approach for cancer treatment involves the use of microalgal-derived nanoparticles. A recent review in Frontiers in…
Credit: ACS Nano (2025). DOI: 10.1021/acsnano.5c06377 You might think that glass has no business acting as a replacement…
Research from University of Warwick and collaborators has developed a new process for growing graphene with controlled imperfection…
In Mohammad Karzarjeddi’s doctoral dissertation small, spherical, and lightweight aerogel beads were developed to effectively absorb oils and…
An Australian research team has achieved an advanced materials breakthrough that opens the door to a new generation…
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