Here, we report multilayer stacking of films of quantum dots (QDs) for the purpose of tailoring the energy band alignment between charge transport layers and light emitting layers of different color in quantum dot light emitting diodes (QD LED) for maximum efficiency in full color operation. The performance of QD LEDs formed by transfer printing compares favorably to that of conventional devices fabricated by spin-casting. Results indicate that zinc oxide (ZnO) and titanium dioxide (TiO2) can serve effectively as electron transport layers (ETLs) for red and green/blue QD LEDs, respectively. Optimized selections for each QD layer can be assembled at high yields by transfer printing with sacrificial fluoropolymer thin films to provide low ene...
Developing the ability to 3D print various classes of materials possessing distinct properties could...
The recent research trends on the advanced display and smart lighting system are focused on the wide...
ZnO nanocrystals are presented as an electron injection layer for red, green, and blue light-emittin...
Here, we report multilayer stacking of films of quantum dots (QDs) for the purpose of tailoring the ...
The next generation of a self‐emitting display requires precise and stable patterning techniques to ...
The next generation of a self‐emitting display requires precise and stable patterning techniques to ...
© 2020 SID. The next generation of a self-emitting display requires precise and stable patterning te...
Here we demonstrate materials and operating conditions that allow for high-resolution printing of la...
Here we demonstrate materials and operating conditions that allow for high-resolution printing of la...
Here we demonstrate materials and operating conditions that allow for high-resolution printing of la...
Over the past few years the performance of colloidal quantum dot-light-emitting diode (QLED) has bee...
In this article, the solution processable graphene oxide (GO) thin film was utilized as the anode in...
Developing the ability to 3D print various classes of materials possessing distinct properties could...
Developing the ability to 3D print various classes of materials possessing distinct properties could...
Developing the ability to 3D print various classes of materials possessing distinct properties could...
Developing the ability to 3D print various classes of materials possessing distinct properties could...
The recent research trends on the advanced display and smart lighting system are focused on the wide...
ZnO nanocrystals are presented as an electron injection layer for red, green, and blue light-emittin...
Here, we report multilayer stacking of films of quantum dots (QDs) for the purpose of tailoring the ...
The next generation of a self‐emitting display requires precise and stable patterning techniques to ...
The next generation of a self‐emitting display requires precise and stable patterning techniques to ...
© 2020 SID. The next generation of a self-emitting display requires precise and stable patterning te...
Here we demonstrate materials and operating conditions that allow for high-resolution printing of la...
Here we demonstrate materials and operating conditions that allow for high-resolution printing of la...
Here we demonstrate materials and operating conditions that allow for high-resolution printing of la...
Over the past few years the performance of colloidal quantum dot-light-emitting diode (QLED) has bee...
In this article, the solution processable graphene oxide (GO) thin film was utilized as the anode in...
Developing the ability to 3D print various classes of materials possessing distinct properties could...
Developing the ability to 3D print various classes of materials possessing distinct properties could...
Developing the ability to 3D print various classes of materials possessing distinct properties could...
Developing the ability to 3D print various classes of materials possessing distinct properties could...
The recent research trends on the advanced display and smart lighting system are focused on the wide...
ZnO nanocrystals are presented as an electron injection layer for red, green, and blue light-emittin...