As antenna alters shape, frequencies can shift too. Modifiable design could replace rigid models, transforming how devices sense, communicate, and adapt.
Researchers at MIT have...
From consumer wearables, clothing to responsive robots, knitted metasurfaces promise fabrics that shift shape and self-adjust.
A team of researchers from Jiangnan University, the Technical...
Using an electrode and gate design, the device achieves record responsivity without doping—paving the way for battery-free sensors in wearables, IoT, and next-gen electronics.
A...
This sensor withstands repeated cuts, restoring electrical and mechanical properties with minimal performance drop.
Researchers in Belgium have developed a stretchable sensor that continues to...
Using smart cut patterns, the ultra-thin film delivers 35× stronger adhesion and 13× more power than conventional designs, enabling self-powered sensors for doors, conveyor...
Durable, low-cost, and easy to fabricate, it could power applications from wearables and AR/VR sensing to smart textiles and next-gen wireless devices.
MIT researchers have...
From powering smartphones to enabling AI, semiconductors drive the modern economy, and India is racing to build a resilient chip ecosystem to join the...
A soft, cloth-like material that generates electricity from motion — no batteries required. With high crystallinity and built-in electroactive properties, this low-cost “electric fabric”...
TFETs utilise quantum tunnelling to reduce power consumption and enhance switching speed, offering potential for IoT, neuromorphic, and wearable electronics.
Tunnel field-effect transistors (TFETs) are...