The road is open to ultra-low-power microchips - Innovation Toronto
I can see lab-based prototypes within a few years or less
Stay updated with breaking news from Nature Materials. Get real-time updates on events, politics, business, and more. Visit us for reliable news and exclusive interviews.
I can see lab-based prototypes within a few years or less
A new study finds that a class of electromechanically active materials called antiferroelectrics may hold the key to overcoming performance limitations due to clamping in miniaturized electromechanical systems.
Researchers have discovered that a 'single atomic defect' in a layered 2D material can hold onto quantum information for microseconds at room temperature. This underscores the broader potential of 2D materials in advancing quantum technologies.
In a study published in Nature Materials, scientists from the University of California, Irvine describe a new method to make very thin crystals of the element bismuth—a process that may aid the manufacturing of cheap flexible electronics an everyday reality.
In a study published in Nature Materials, scientists from the University of California, Irvine describe a new method to make very thin crystals of the elem