Electroluminescent display device
An electroluminescent display device includes a substrate including an emissive area and a non-emissive area, a plurality of protrusions over the substrate and in the emissive area, each of the plurality of protrusions spaced apart from each other with an air gap therebetween, a high-viscosity material layer on the plurality of protrusions and the air gaps, a first electrode on the high-viscosity material layer, an emitting layer on the first electrode, and a second electrode on the emitting layer.
1. An electroluminescent display device, comprising:
a substrate including an emissive area and a non-emissive area;
a plurality of protrusions over the substrate and in the emissive area, each of the plurality of protrusions spaced apart from each other with an air gap therebetween;
a high-viscosity material layer on the plurality of protrusions and the air gaps;
a first electrode on the high-viscosity material layer;
an emitting layer on the first electrode; and
a second electrode on the emitting layer,
wherein each of the plurality of protrusions includes a first portion inside the high-viscosity material layer and a second portion in contact with the air gaps.
2. The electroluminescent display device of claim 1 , further comprising:
an overcoat layer between the high-viscosity material layer and the first electrode and including a plurality of protruding portions and recessed portions in the emissive area.
3. The electroluminescent display device of claim 2 , wherein the protruding portions overlap the protrusions.
4. The electroluminescent display device of claim 2 , wherein the first electrode, the emitting layer, and the second electrode are disposed along a shape of a top surface of the overcoat layer and include the morphology of the overcoat layer including the plurality of protruding portions and recessed portions.
5. The electroluminescent display device of claim 2 , wherein a central point of each protrusion and a central point of each protruding portion of the overcoat layer correspond to each other.
6. The electroluminescent display device of claim 1 , wherein:
each of the plurality of protrusions further includes a first surface, which is a boundary surface between the first portion and the second portion; and
a distance between neighboring first surfaces is less than a length of the first surface.
7. The electroluminescent display device of claim 6 , wherein a ratio of the length of the first surface to the distance between neighboring first surfaces is in a range of about 1.1 to 2.9.
8. The electroluminescent display device of claim 6 , wherein the second portion includes a second surface disposed between the first surface and the substrate and a third surface connecting the first surface and the second surface, and the third surface and the second surface form an acute angle therebetween.
9. The electroluminescent display device of claim 8 , wherein the acute angle is equal to or greater than 45°.
10. The electroluminescent display device of claim 1 , wherein the high-viscosity material layer has a protruding shape toward the substrate.
11. The electroluminescent display device of claim 1 , wherein refractive indices of the high-viscosity material layer and the plurality of protrusions are smaller than a refractive index of the first electrode.
12. The electroluminescent display device of claim 1 , wherein the high-viscosity material layer has a first thickness in correspondence to the protrusions and a second thickness, which is greater than the first thickness, between adjacent protrusions.
13. The electroluminescent display device of claim 1 , wherein refractive indices of the high-viscosity material layer and the plurality of protrusions is higher than a refractive index of the air gap.
14. The electroluminescent display device of claim 1 , wherein the protrusions are formed in an island shape, and the air gap surrounds the protrusions.
15. An electroluminescent display device, comprising:
a substrate including an emissive area and a non-emissive area;
a plurality of protrusions over the substrate and in the emissive area, each of the plurality of protrusions spaced apart from each other with an air gap therebetween;
a high-viscosity material layer on the plurality of protrusions and the air gaps;
a first electrode on the high-viscosity material layer;
an emitting layer on the first electrode;
a second electrode on the emitting layer; and
an overcoat layer between the high-viscosity material layer and the first electrode and including a plurality of protruding portions and recessed portions in the emissive area.
16. The electroluminescent display device of claim 15 , wherein the protruding portions overlap the protrusions.
17. The electroluminescent display device of claim 15 , wherein the first electrode, the emitting layer, and the second electrode are disposed along a shape of a top surface of the overcoat layer and include the morphology of the overcoat layer including the plurality of protruding portions and recessed portions.
18. The electroluminescent display device of claim 15 , wherein a central point of each protrusion and a central point of each protruding portion of the overcoat layer correspond to each other.
19. The electroluminescent display device of claim 15 , wherein refractive indices of the high-viscosity material layer and the plurality of protrusions are smaller than a refractive index of the first electrode.
20. The electroluminescent display device of claim 15 , wherein the high-viscosity material layer has a first thickness in correspondence to the protrusions and a second thickness, which is greater than the first thickness, between adjacent protrusions.