[[abstract]]Joule heat generated during device operation has been considered the important factor causing device degradation. We hence fabricated two devices composing indium–tin-oxide (ITO)/N,N′-bis-(1-naphthy)-N,N′diphenyl-1,1′-biphenyl-4-4′-diamine (NPB)/tris-(8-hydroxyquinoline) aluminum (Alq3)/aluminum (Al) and ITO/NPB/Alq3/lithium-fluoride/Al to investigate the effect of heat on device performance by annealing the whole devices at different temperatures or by selectively annealing the desired layer(s) at a certain temperature. The devices annealed at an appropriate temperature, such as 120 °C, showed marked improvement in luminescent efficiency, brightness, and operating stability. Thermal annealing the NPB and Al electrode layers, es...
Degradation of organic light emitting diodes (OLEDs) is the most serious obstacle towards their comm...
We investigated the influence of substrate temperature as well as post-deposition annealing on the p...
Various surface treatments significantly affect the work function and surface roughness of indium ti...
[[abstract]]Joule heat generated during device operation has been considered the important factor ca...
A comparative study on the annealing of the ITO substrates and the organic layers were conducted on ...
The effects of post-fabrication heat treatments on the performance and stability of organic light-em...
Abstract—In this paper, we examined the effect of postpackaging annealing on the performance of orga...
In this paper, we examined the effect of post-packaging annealing on the performance of organic ligh...
This research was financially supported by the EPSRC NSF-CBET lead agency agreement (EP/R010595/1, 1...
The configuration of an organic light emitting diode (OLED) that combines different types of materia...
The current work presents post-fabrication heat treatment and a combined external electric field-hea...
Device stability and growth of dark spots are major concerns for the large-scale applications of org...
Thermal annealing of the emissive layer of an organic light emitting diode (OLED) is a common practi...
Thermal annealing of the emissive layer of an organic light emitting diode (OLED) is a common practi...
We investigated the influence of substrate temperature as well as post-deposition annealing on the p...
Degradation of organic light emitting diodes (OLEDs) is the most serious obstacle towards their comm...
We investigated the influence of substrate temperature as well as post-deposition annealing on the p...
Various surface treatments significantly affect the work function and surface roughness of indium ti...
[[abstract]]Joule heat generated during device operation has been considered the important factor ca...
A comparative study on the annealing of the ITO substrates and the organic layers were conducted on ...
The effects of post-fabrication heat treatments on the performance and stability of organic light-em...
Abstract—In this paper, we examined the effect of postpackaging annealing on the performance of orga...
In this paper, we examined the effect of post-packaging annealing on the performance of organic ligh...
This research was financially supported by the EPSRC NSF-CBET lead agency agreement (EP/R010595/1, 1...
The configuration of an organic light emitting diode (OLED) that combines different types of materia...
The current work presents post-fabrication heat treatment and a combined external electric field-hea...
Device stability and growth of dark spots are major concerns for the large-scale applications of org...
Thermal annealing of the emissive layer of an organic light emitting diode (OLED) is a common practi...
Thermal annealing of the emissive layer of an organic light emitting diode (OLED) is a common practi...
We investigated the influence of substrate temperature as well as post-deposition annealing on the p...
Degradation of organic light emitting diodes (OLEDs) is the most serious obstacle towards their comm...
We investigated the influence of substrate temperature as well as post-deposition annealing on the p...
Various surface treatments significantly affect the work function and surface roughness of indium ti...