Photolithography offers a scalable solution for large area pixel patterning of organic light-emitting diode (OLED) displays. It has been limited due to the incompatibility of traditional processing steps with the majority of organic materials. In this work, photolithographic structuring of state-of-the-art phosphorescent red p-i-n OLEDs is demonstrated using fluorinated polymers in combination with hydrofluoroether solvents. This is the first report on photolithographically patterned OLEDs with state-of-the-art efficiency and good long-term stability
Substrates for organic light-emitting diodes currently are patterned by means of photolithography. I...
A pixel define layer (PDL) in an organic light emitting diode (OLED) is patterned using a photolitho...
International audienceWe demonstrate herein the fabrication of small molecule-based OLEDs where four...
The authors kindly acknowledge the financial support by the Free State of Saxony, the Sächsische Auf...
We report a family of full-color highly fluorinated light-emitting polymers. The high fluorine conte...
The first full-color polymer organic light-emitting diode (OLED) display is reported, fabricated by ...
Organic electronics is a newly developed field that promises inexpensive, mechanically-flexible, lar...
After deposition, solution-processed organic materials are susceptible to redissolution by similar s...
Recently, bilayer resist processing combined with development in hydro uoroether (HFE) solvents has ...
Patterning organic semiconductors via traditional solution-based microfabrication techniques is prec...
Development of a simple and effective patterning method applicable to solution-processable organic l...
The principle of combining liquid crystals and organic light-emitting diodes (OLED) technology to pr...
This dissertation describes work done to improve the stability and efficiency of conjugated-polymer ...
A light-mediated methodology to grow patterned, emissive polymer brushes with micron feature resolut...
A light-mediated methodology to grow patterned, emissive polymer brushes with micron feature resolut...
Substrates for organic light-emitting diodes currently are patterned by means of photolithography. I...
A pixel define layer (PDL) in an organic light emitting diode (OLED) is patterned using a photolitho...
International audienceWe demonstrate herein the fabrication of small molecule-based OLEDs where four...
The authors kindly acknowledge the financial support by the Free State of Saxony, the Sächsische Auf...
We report a family of full-color highly fluorinated light-emitting polymers. The high fluorine conte...
The first full-color polymer organic light-emitting diode (OLED) display is reported, fabricated by ...
Organic electronics is a newly developed field that promises inexpensive, mechanically-flexible, lar...
After deposition, solution-processed organic materials are susceptible to redissolution by similar s...
Recently, bilayer resist processing combined with development in hydro uoroether (HFE) solvents has ...
Patterning organic semiconductors via traditional solution-based microfabrication techniques is prec...
Development of a simple and effective patterning method applicable to solution-processable organic l...
The principle of combining liquid crystals and organic light-emitting diodes (OLED) technology to pr...
This dissertation describes work done to improve the stability and efficiency of conjugated-polymer ...
A light-mediated methodology to grow patterned, emissive polymer brushes with micron feature resolut...
A light-mediated methodology to grow patterned, emissive polymer brushes with micron feature resolut...
Substrates for organic light-emitting diodes currently are patterned by means of photolithography. I...
A pixel define layer (PDL) in an organic light emitting diode (OLED) is patterned using a photolitho...
International audienceWe demonstrate herein the fabrication of small molecule-based OLEDs where four...