We introduced a spin-assembled nanolayer of hyperbranched poly(ether sulfone) with sulfonic acid terminal on top of an indium-tin oxide anode in organic light-emitting diodes. This results in great improvement in luminous efficiency, better than that of devices using a commercially available conducting polymer composition as a hole-injection layer. The effect of the nanolayer was investigated by impedance spectroscopy, photovoltaic measurement for built-in-potential, and transient electroluminescence. We concluded that the high luminous efficiency resulted from the efficient electron-blocking by the nanolayer and hole-injection assisted by the accumulation of electrons at the interface. This result implies that, for an efficient hole-inject...
The performance of organic electronic devices is often limited by injection. In this paper, improvem...
[[abstract]]Poor electron injection is a great concern for organic light emitting diodes (OLEDs). In...
This contribution describes an organosiloxane cross-linking approach to robust, efficient, adherent ...
It is a great challenge to develop solution-processed, polymeric hole-injection layers (HILs) that p...
The interface between the hole transport layer (HTL) and emissive layer (EML) in polymer light-emitt...
Nanocomposite layers consisting of poly(3,4,-ethylene dioxythiophene): polystyrene sulfonic acid (PE...
ITO capped with a variety of ultra-thin metal layers such as platinum, manganese, nickel, gold, lead...
This project aims at enhancing the OLED efficiency by the introduction of a new hole injection buffe...
In order to improve the performance of organic light emitting diodes (OLED), a water-dispersed polya...
This letter introduces conducting polymer compositions which can be used for hole-injection layer in...
Deposition of hole injection layers including a perfluorinated ionomer has been demonstrated using l...
Here, we report the hole injection role of p-type conjugated polymer layer in phosphorescent organic...
Realization of high-efficiency/high-luminance small-molecule organic ligh-emitting diodes (OLED) was...
A new process for modifying a polymeric material for use as a hole injection transport layer in orga...
ITO capped with a variety of ultra-thin metal layers such as platinum, manganese, nickel, gold, lead...
The performance of organic electronic devices is often limited by injection. In this paper, improvem...
[[abstract]]Poor electron injection is a great concern for organic light emitting diodes (OLEDs). In...
This contribution describes an organosiloxane cross-linking approach to robust, efficient, adherent ...
It is a great challenge to develop solution-processed, polymeric hole-injection layers (HILs) that p...
The interface between the hole transport layer (HTL) and emissive layer (EML) in polymer light-emitt...
Nanocomposite layers consisting of poly(3,4,-ethylene dioxythiophene): polystyrene sulfonic acid (PE...
ITO capped with a variety of ultra-thin metal layers such as platinum, manganese, nickel, gold, lead...
This project aims at enhancing the OLED efficiency by the introduction of a new hole injection buffe...
In order to improve the performance of organic light emitting diodes (OLED), a water-dispersed polya...
This letter introduces conducting polymer compositions which can be used for hole-injection layer in...
Deposition of hole injection layers including a perfluorinated ionomer has been demonstrated using l...
Here, we report the hole injection role of p-type conjugated polymer layer in phosphorescent organic...
Realization of high-efficiency/high-luminance small-molecule organic ligh-emitting diodes (OLED) was...
A new process for modifying a polymeric material for use as a hole injection transport layer in orga...
ITO capped with a variety of ultra-thin metal layers such as platinum, manganese, nickel, gold, lead...
The performance of organic electronic devices is often limited by injection. In this paper, improvem...
[[abstract]]Poor electron injection is a great concern for organic light emitting diodes (OLEDs). In...
This contribution describes an organosiloxane cross-linking approach to robust, efficient, adherent ...