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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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The left image shows a crystal structure of dynamic water molecule cluster like liquid at −20 °C in…
AI has uncovered promising new materials that could make lithium-ion batteries obsolete and revolutionize energy storage. Credit: Shutterstock…
Credit: ACS Nano (2025). DOI: 10.1021/acsnano.5c09066 Biomedical engineers at Duke University have developed a platform that combines automated…
A new study shows how sulfate and other salt ions reduce free water to improve the lifespan and…
Concept of the photo-thermoresponsive SCNPs. a Illustration of the generation of SCNPs via oxidative polymerization of pyrrole sidechains,…
Credit: Pixabay/CC0 Public Domain Recent research has found a new way to make graphene that adds structural defects…
A new titanium alloy from RMIT University could cut costs, boost strength, and transform 3D‑printing technology. Credit: SciTechDaily.com…
Abstract. Credit: ACS Nano (2025). DOI: 10.1021/acsnano.5c03108 Wounds that do not heal are often caused by bacterial infections…
18-porphyrin nanoring exhibits weak but detectable global aromatic and antiaromatic ring currents. Credit: J. Am. Chem. Soc. (2025).…
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