An international team of scientists, including researchers from Loughborough University, has developed a method to ...
New research shows how the organization of electrons can reshape how a material responds to light, opening previously ...
Researchers have conducted a systematic review of advanced artificial intelligence algorithms and hardware acceleration techniques applied to material structure design, highlighting significant ...
In the future, there could be materials that can reconfigure themselves on demand, adapting their structure and properties like living organisms. A team of Japanese scientists have created a ...
(Nanowerk Spotlight) The materials we interact with every day—whether they are steel, glass, or rubber—have properties like strength, flexibility, or brittleness that stem from their chemical ...
Scientists have developed artificial heterostructures made of freestanding 2D and 3D membranes that have an energy density up to 19 times higher than commercially available capacitors. Electrostatic ...
Removing excess iron reveals FeTe as a superconductor, and its properties can be engineered using layered structures and ...