An air stable hybrid organic-inorganic light emitting device is presented. This architecture makes use of metal oxides as charge injecting materials into the light emitting polymer, avoiding the use of air sensitive cathodes commonly employed in organic light emitting diode manufacturing. We report the application of zinc oxide as a cathode in an organic light emitting device. This electroluminescent device shows high brightness levels reaching 6500 cd/m2 at voltages as low as 8 V. Compared to a conventional device using low workfunction metal cathodes, our device shows a lower turn-on voltage and it can operate in air
Lighting is a big business, lighting consumes considerable amount of the electricity. These facts mo...
Aluminum doped zinc oxide (ZAO) is presented in this letter as an alternative transparent electrode:...
Organic light emitting diodes (OLEDs) are currently being considered as the next generation technolo...
Poly(phenylenevinylene)‐based organic light‐emitting diodes (OLEDs) are fabricated using air‐stable ...
Metal oxides as ZnO provide an interesting alternative for conventional low work function metals as ...
Metal oxides as ZnO provide an interesting alternative for conventional low work function metals as ...
Metal oxides as ZnO provide an interesting alternative for conventional low work function metals as ...
Metal oxides as ZnO provide an interesting alternative for conventional low work function metals as ...
A new type of bottom-emission electroluminescent device is described in which a metal oxide is used ...
A new type of bottom-emission electroluminescent device is described in which a metal oxide is used ...
Efficient hybrid organic inorganic light emitting diodes with an electron injection layer of 3.8 nm ...
Hybrid metal-oxide/polymer light-emitting diodes (HyLEDs) are a novel class of electronic devices ba...
Nanostructured oxide arrays have received significant attention as charge injection and collection e...
Hybrid metal-oxide/polymer light-emitting diodes (HyLEDs) are a novel class of electronic devices ba...
We investigate the effect of self-assembled dipole molecules (SADMs) on ZnO surface in hybrid organi...
Lighting is a big business, lighting consumes considerable amount of the electricity. These facts mo...
Aluminum doped zinc oxide (ZAO) is presented in this letter as an alternative transparent electrode:...
Organic light emitting diodes (OLEDs) are currently being considered as the next generation technolo...
Poly(phenylenevinylene)‐based organic light‐emitting diodes (OLEDs) are fabricated using air‐stable ...
Metal oxides as ZnO provide an interesting alternative for conventional low work function metals as ...
Metal oxides as ZnO provide an interesting alternative for conventional low work function metals as ...
Metal oxides as ZnO provide an interesting alternative for conventional low work function metals as ...
Metal oxides as ZnO provide an interesting alternative for conventional low work function metals as ...
A new type of bottom-emission electroluminescent device is described in which a metal oxide is used ...
A new type of bottom-emission electroluminescent device is described in which a metal oxide is used ...
Efficient hybrid organic inorganic light emitting diodes with an electron injection layer of 3.8 nm ...
Hybrid metal-oxide/polymer light-emitting diodes (HyLEDs) are a novel class of electronic devices ba...
Nanostructured oxide arrays have received significant attention as charge injection and collection e...
Hybrid metal-oxide/polymer light-emitting diodes (HyLEDs) are a novel class of electronic devices ba...
We investigate the effect of self-assembled dipole molecules (SADMs) on ZnO surface in hybrid organi...
Lighting is a big business, lighting consumes considerable amount of the electricity. These facts mo...
Aluminum doped zinc oxide (ZAO) is presented in this letter as an alternative transparent electrode:...
Organic light emitting diodes (OLEDs) are currently being considered as the next generation technolo...