Display device and method of manufacturing the same
A display device includes a substrate, a first electrode extending in a first direction on the substrate, a first partition wall extending in the first direction on a central portion of the first electrode, a second electrode extending in parallel with the first electrode on the substrate, a second partition wall extending in the first direction on a central portion of the second electrode, and a plurality of light-emitting diodes electrically connected between the first electrode and the second electrode.
1 . A display device comprising:
a substrate;
a first electrode on a surface of the substrate;
a first structure on the first electrode;
a second electrode on the surface of the substrate and spaced apart from the first electrode;
a second structure on the second electrode; and
a light-emitting diode on the first electrode and the second electrode,
wherein each of the first structure and the second structure comprises an organic insulating material,
wherein the light-emitting diode is spaced apart from the first structure and the second structure,
wherein a height of an upper surface of the first structure and the second structure from the surface of the substrate is greater than a height of an upper surface of the light-emitting diode from the surface of the substrate,
wherein the light-emitting diode overlaps the first electrode in a direction perpendicular to the surface of the substrate, and
wherein the light-emitting diode overlaps the second electrode in the direction perpendicular to the surface of the substrate.
2 . The display device of claim 1 , wherein an interval between the first electrode and the second electrode is less than a length of the light-emitting diode.
3 . The display device of claim 1 , wherein an interval between the first structure and the second structure is greater than a length of the light-emitting diode.
4 . The display device of claim 1 , wherein a width of a cross-section of the first structure and the second structure is not reduced in a direction that extends away from the substrate.
5 . The display device of claim 1 , wherein a first width of the upper surface of the first structure and the second structure is greater than a second width of a lower surface of the first structure and the second structure.
6 . The display device of claim 1 , wherein scattering particles are dispersed in the organic insulating material.
7 . The display device of claim 1 , further comprising:
a first connection electrode on the first electrode; and
a second connection electrode on the second electrode.
8 . The display device of claim 7 , wherein the first connection electrode contacts the first electrode and a first end of the light-emitting diode, and
the second connection electrode contacts the second electrode and a second end of the light-emitting diode opposite to the first end.
9 . The display device of claim 7 ,
wherein at least a portion of the first connection electrode is on the first structure, and
wherein at least a portion of the second connection electrode is on the second structure.
10 . The display device of claim 1 , further comprising:
a pixel-defining layer over the substrate and in which an opening exposing an emission region is defined,
wherein the light-emitting diode, the first structure, and the second structure are arranged in the emission region.
11 . A display device comprising:
a substrate;
a first electrode on a surface of the substrate;
a first structure on the first electrode;
a second electrode on the surface of the substrate and spaced apart from the first electrode;
a second structure on the second electrode;
a light-emitting diode on the first electrode and the second electrode; and
a pixel-defining layer over the substrate and in which an opening exposing an emission region is defined,
wherein the light-emitting diode, the first structure, and the second structure are arranged in the emission region,
wherein the light-emitting diode is spaced apart from the first structure and the second structure,
wherein a height of an upper surface of the first structure and the second structure from the surface of the substrate is greater than a height of an upper surface of the light-emitting diode from the surface of the substrate,
wherein the light-emitting diode overlaps the first electrode in a direction perpendicular to the surface of the substrate,
wherein the light-emitting diode overlaps the second electrode in the direction perpendicular to the surface of the substrate, and
wherein the first structure and the second structure comprise a same material as that of the pixel-defining layer.
12 . The display device of claim 10 , further comprising:
a capping layer filling the opening of the pixel-defining layer and covering lateral surfaces of the first structure and the second structure.
13 . The display device of claim 12 , wherein a refractive index of a material of the first structure and the second structure is greater than a refractive index of a material of the capping layer.
14 . A display device comprising:
a substrate;
a first electrode on a surface of the substrate;
a first structure on the first electrode;
a second electrode on the surface of the substrate and spaced apart from the first electrode;
a second structure on the second electrode; and
a light-emitting diode on the first electrode and the second electrode,
wherein each of the first structure and the second structure comprises an organic insulating material,
wherein the light-emitting diode is spaced apart from the first structure and the second structure,
wherein a height of an upper surface of the first structure and the second structure from the surface of the substrate is greater than a height of an upper surface of the light-emitting diode from the surface of the substrate, and
wherein the light-emitting diode overlaps a space between the first electrode and the second electrode.
15 . The display device of claim 14 , wherein the light-emitting diode overlaps the first electrode in a direction perpendicular to the surface of the substrate, and
wherein the light-emitting diode overlaps the second electrode in the direction perpendicular to the surface of the substrate.