Electroluminescent device with improved light decoupling
View Patent ↗An electroluminescent device includes a substrate and a sandwich consisting of a first electrode, an electroluminescent layer and a second electrode. To improve decoupling of light from the electro-luminescent device, a layer comprising conductive particles adjoins the first or second electrode.
1. An electroluminescent device having an exit surface for exit of light produced by the electroluminescent device, the electroluminescent device comprising:
substrate; and
a sandwich that adjoins the substrate, said sandwich comprising a first electrode, an electroluminescent layer, a second electrode and a layer comprising conductive particles,
wherein the electroluminescent layer is between the first electrode and the second electrode, and
wherein the layer comprising the conductive particles is adjoining to one electrode of the first electrode and the second electrode nearest the exit surface, the layer comprising the conductive particles being between the one electrode and the electroluminescent layer.
2. The electroluminescent device as claimed in claim 1 , wherein the layer comprising conductive particles adjoins the first electrode.
3. The electroluminescent device as claimed in claim wherein the layer comprising conductive particles adjoins the second electrode.
4. The electroluminescent device as claimed in claim 1 , wherein a particle diameter of the conductive particles is at most twice a layer thickness of an adjoining layer located between the layer comprising the conductive particles and the electroluminescent layer.
5. The electroluminescent device as claimed in claim 4 , wherein a particle diameter of the conductive particles is between 10 and 400 nm.
6. The electroluminescent device as claimed in claim 1 , wherein the conductive particles comprise a conductive metal oxide or a conductive polymer.
7. The electroluminescent device as claimed in claim 6 , wherein the conductive particles comprise a material selected from the group consisting of SnO 2 , ZnO, CeO 2 , SnO 2 :In, SnO 2 :Sb, ZnO:F, ZnO:Al and polyethylene dioxythiophene (PDOT).
8. The electroluminescent device of claim 1 , wherein the conductive particles are configured to refract the light for exit from the exit surface.
9. The electroluminescent device of claim 1 , wherein the conductive particles have a diameter between 10 and 400 nm, and the layer comprising the conductive particles further comprises insulating particles having a diameter between 10 and 400 nm.
10. The electroluminescent device of claim 1 , wherein the one electrode is structured into conductive strips and a resistance of the layer comprising the conductive particles is high enough to prevent short-circuiting the conductive strips of the one electrode.