Research team develops ultrathin, transparent oxide thin-film transistors for wearable display
$ 10.50 · 4.8 (505) · In stock
With the advent of the Internet of Things (IoT) era, strong demand has grown for wearable and transparent displays that can be applied to various fields such as augmented reality (AR) and skin-like thin flexible devices. However, previous flexible transparent displays have posed real challenges to overcome, which are, among others, poor transparency and low electrical performance. To improve the transparency and performance, past research efforts have tried to use inorganic-based electronics, but the fundamental thermal instabilities of plastic substrates have hampered the high temperature process, an essential step necessary for the fabrication of high performance electronic devices.
Flexible TVs and high performance wearable smart tech one step closer
New breakthrough in hot embossing technology
Research team develops ultrathin, transparent oxide thin-film transistors for wearable display
Jose Miguel Carreño (@jmcarrenocanas) / X
Active-matrix organic light-emitting diode display on human skin
Transparent loudspeakers and mics that let your skin play music
New manufacturing technique for flexible electronics
Improving silver nanowires for FTCEs with flash light interactions
Research team develops ultrathin, transparent oxide thin-film transistors for wearable display
Researchers propose a simple, inexpensive approach to fabricating carbon nanotube wiring on plastic films
Transparent loudspeakers and mics that let your skin play music
Continuous roll-process technology for transferring and packaging flexible LSI
Super-flexible liquid crystal device for bendable and rollable displays