Narrowband Deep Blue OLEDs Made Simple with Encapsulated Emitters
by Emory Kale
Making high-performance blue OLEDs, especially narrowband deep blue, has been a persistent challenge.
Tags:blue OLED| research| showcase
by Emory Kale
Making high-performance blue OLEDs, especially narrowband deep blue, has been a persistent challenge.
Tags:blue OLED| research| showcase
by Emory Kale
This advancement paves the way for the development of nanoscale lasers and LEDs, potentially achieving the ultra-small active regions required for single-emitter applications.
Tags:MicroLED| NanoLED| Quantum Dots| research| showcase
by Joseph Bryans
By varying the polymer concentration and the humidity, the researchers were able to tailor the morphology of the honeycomb-patterned PS films, achieving an optimal balance of pore diameter and height that significantly enhances light extraction.
Tags:Blue Light| OLED| research| showcase| TADF
by Joseph Bryans
The suggested method offers a scalable solution for assessing and ensuring the quality of MicroLEDs before their integration into display substrates.
Tags:Manufacturing| MicroLED| research| showcase
by Emory Kale
ECL cells are designed to offer advantages in display technology through their simple configuration and manufacturing process.
Tags:research| showcase
by Joseph Bryans
This research highlights the importance of molecular design and the physical thickness of the active layer in developing efficient and color-tunable WOLEDs
Tags:research| showcase| WOLED (White OLED)
by Joseph Bryans
This new LED technology is reportedly capable of emitting light at a brightness level a thousand times greater than current OLEDs.
Tags:PeLED (Perovskite LED)| research
by Joseph Bryans
Despite the inherent challenges, Perovsktie nanosheets hold promise for future application in a broad range of electronics.
Tags:nanotechnology| Perovskite| research| showcase
by Joseph Bryans
The miniaturized probe integrates closely packed MicroLEDs emitting different colors along with microelectrodes for recording brain activity.
Tags:MicroLED| Optogenetics| research| showcase
by Joseph Bryans
Their method involves sandwiching cyan material between two mirrors, tuning the space to allow only deep blue light waves to persist and emit.
Tags:PHOLED| research| UDC
by Joseph Bryans
The researchers leveraged LIE micro-holes and vacuum control modules to develop a novel selective transfer approach dubbed μVAST.
Tags:Mass Transfer| MicroLED| research| showcase
by Joseph Bryans
Researchers aimed to enhance the flip-chip bonding process using a layered gold-indium-gold metal sandwich.
Tags:Manufacturing| MicroLED| research