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...
Research outcome could revolutionise the smartphone and wearable technologies. Traditional conductive polymers were lacking some potential, which this research fixes.
Scientists at La Trobe University...
A new low-resistance MOSFET reduces heat loss and space usage, making it ideal for smartphones and other fast-charging compact electronic devices.
Rohm has introduced a...
Using triplet–triplet annihilation and custom dopants, this could pave the way for ultra-efficient displays and portable lighting systems.
In a major leap for display efficiency,...