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CrOCl's layered structure remains stable at high temperatures, making it ideal for next-gen CMOS and spintronic devices with ...
To separate geometry from chemistry, we converted snapshots from the microscope into a computer model using a 3D Voronoi network – a pattern that mimics the walls between bubbles in a foam. Think of ...
Researchers discovered that twisting 2D materials improves toughness while preserving strength, paving the way for durable ...
Silver nanoparticles derived from Magnolia alba leaf extract exhibit superior antioxidant properties and effective dye ...
How are real-time monitoring technologies, including electromagnetic sensors and high-speed X-ray diffraction, transforming heat treatment?
This study reveals nonlinear optical properties of semiconductor-metal nanocavities, enhancing imaging techniques for advanced nanophotonic device development.
The Kennedy College of Science, Department of Chemistry, invites you to attend a Ph.D. Dissertation defense by Saurabh Ankush Karande entitled “High-Throughput Functionalization of Fabrics with Metal ...
Researchers turn waste almond shells into biodegradable graphene sensors, offering a sustainable alternative for environmental and agricultural monitoring.
With a novel approach to X-ray spectroscopy, researchers are now able to capture detailed, ultrafast snapshots of electron ...
A new study shows that replacing natural aggregates in concrete with air-cooled blast furnace slag (ACBFS) can improve ...
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A rare lunar meteorite found in Africa sheds new light on hidden volcanic processes that shaped the Moon long after its surface was thought to have cooled. A 2.35-billion-year-old meteorite with a ...