Stanford University researchers have unveiled a material—niobium phosphide—that could revolutionize chip design by dramatically reducing energy loss in ultra-thin interconnects.
Researchers have developed an innovative hydrogel electrolyte that dramatically enhances the performance of sodium-zinc hybrid ion batteries. This breakthrough material offers exceptional ionic ...
Explore how advanced smartphone chips with specialized AI capabilities, like NPUs and efficient memory, are revolutionizing on-device AI for faster, secure experiences.
A team of researchers has developed innovative artificial muscle fibers that can produce and store energy. These fibers mimic real muscles and could transform industries such as advanced textiles, ...
Micro light-emitting diodes (micro-LEDs) are the future of display technology, promising bright, energy-efficient screens for optical communication, augmented and virtual reality, and wearable devices ...
The Haitian government invested more than $3.8 million to more than double the runway at the airport in the coastal city of Jacmel, repair its streets, renovate its town hall and restore electricity ...
If you live in Pittsburgh, you may be surprised to learn that a rodeo bull riding event will be coming to town this weekend. This is an alarming development, as Pittsburgh has had protections since ...
Perovskite solar cells are attracting attention as next-generation solar cells. These cells have high efficiency, are flexible, and can be printed, among other features. However, lead was initially ...
The technology addresses a longstanding challenge in the wearable device industry. From continuous glucose monitors for diabetes management to pacemakers and fitness trackers, these devices rely ...
Researchers have developed a technique for growing piezoelectric biomolecular crystals that could eliminate the use of toxic lead in electronic devices. This new method allows for the eco-friendly ...