IP Library Granted Patent US 12666809
Granted Patent B2
US 12666809 · App. 18/383,252 · Granted Jun 23, 2026

Stretchable organic light emitting diode and manufacturing method thereof

Inventors: Seunghyup Yoo (Daejeon, KR); Donggyun Lee (Daejeon, KR); Hanul Moon (Daejeon, KR); Taehyun Kim (Daejeon, KR); Subon Kim (Daejeon, KR)
Assignee: KOREA ADVANCED INSTITUTE OF SCIENCE AND TECHNOLOGY
H10K59/122H10K59/1201H10K59/173H10K2102/311
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Quick Facts
Patent No.
US 12666809
App. No.
18/383,252
Granted
Jun 23, 2026
Kind
B2
Abstract

Disclosed are a stretchable organic light emitting diode (OLED) and a manufacturing method thereof. The stretchable OLED may include a plurality of isolated regions configured to form an arrangement while protruding in a vertical direction; and a hidden light emitting region configured to interconnect the isolated regions and to expand and contract in the vertical direction.

Claims (33)

1 . A stretchable organic light emitting diode (OLED) comprising:

a plurality of isolated regions configured to form an arrangement while protruding in a vertical direction; and

a hidden light emitting region configured to interconnect the isolated regions and to expand and contract in the vertical direction.

2 . The stretchable OLED of claim 1 , wherein the hidden light emitting region is configured to be buckled to be hidden within a space between the isolated regions without being exposed to the surface of the isolated regions when the stretchable OLED contracts in a horizontal direction.

3 . The stretchable OLED of claim 2 , wherein the stretchable OLED is configured to compensate for a light emitting area as the hidden light emitting region is exposed between the isolated regions when extending in the horizontal direction.

4 . The stretchable OLED of claim 3 , wherein the stretchable OLED is configured to be extendable in the horizontal direction by applying a tensile force of four axes or more on a horizontal plane.

5 . The stretchable OLED of claim 1 , further comprising:

a stretchable base layer formed with a plurality of fixed regions that forms the arrangement while protruding in the vertical direction,

wherein the isolated regions are aligned and joined on the fixed regions.

6 . The stretchable OLED of claim 5 , wherein the fixed regions are formed of a material different from that of the base layer to maintain a fixed shape without extending in a horizontal direction when a tensile force is applied to the base layer in the horizontal direction.

7 . The stretchable OLED of claim 6 , wherein the stretchable OLED is configured to expose the hidden light emitting region between the isolated regions in response to a horizontal extension of a region in which the fixed regions are not formed in the base layer when extending in the horizontal direction.

8 . The stretchable OLED of claim 7 , wherein the stretchable OLED is configured to be extendable in the horizontal direction as the region in which the fixed regions are not formed in the base layer extends in the horizontal direction by applying the tensile force of four axes or more on a horizontal plane in the region in which the fixed regions are not formed in the base layer.

9 . The stretchable OLED of claim 1 , wherein the hidden light emitting region has a structure in which a corresponding region between diagonally adjacent isolated regions among the isolated regions is empty.

10 . The stretchable OLED of claim 1 , further comprising:

at least one electrode configured to electrically connect to the isolated regions and the hidden light emitting region.

11 . The stretchable OLED of claim 1 , wherein the isolated regions and the hidden light emitting region are collectively formed using the same material.

12 . A stretchable organic light emitting diode (OLED) comprising:

a plurality of isolated regions configured to form an arrangement while protruding in a vertical direction; and

a hidden light emitting region configured to interconnect the isolated regions, to be bucked within a space between the isolated regions without being exposed to the surface of the isolated regions when the stretchable OLED contracts in a horizontal direction, and to be exposed between the isolated regions when the stretchable OLED extends in the horizontal direction.

13 . A manufacturing method of a stretchable organic light emitting diode (OLED), the method comprising:

forming an OLED layer using a stretchable material, the OLED layer including a plurality of isolated regions configured to form an arrangement while protruding in a vertical direction and a hidden light emitting region configured to interconnect the isolated regions;

preparing a stretchable base layer formed with a plurality of fixed regions configured to form the arrangement while protruding in the vertical direction;

joining the isolated regions on the fixed regions in a state in which the base layer extends in a horizontal direction by applying a tensile force to the base layer; and

buckling the hidden light emitting region in the vertical direction by removing the tensile force applied to the base layer to shrink the base layer.

14 . The method of claim 13 , wherein the buckling of the hidden light emitting region in the vertical direction comprises buckling the hidden light emitting region in the vertical direction such that the hidden light emitting region is hidden within the space between the isolated regions without being exposed to the surface of the isolated regions when the base layer contracts in the horizontal direction.

15 . The method of claim 13 , wherein the fixed regions are formed of a material different from that of the base layer to maintain a fixed shape without extending in the horizontal direction when the tensile force is applied to the base layer.

16 . The method of claim 15 , wherein the preparing of the base layer comprises:

forming the fixed regions using a material robust against the tensile force; and

forming the base layer joined to the fixed regions using the stretchable material.

17 . The method of claim 15 , wherein the joining of the isolated regions comprises aligning and joining the isolated regions on the fixed regions in a state in which a region in which the fixed regions are not formed in the base layer extends in the horizontal direction.

18 . The method of claim 17 , wherein the aligning and the joining of the isolated regions on the fixed regions comprises extending the region in which the fixed regions are not formed in the base layer in the horizontal direction by applying the tensile force of four axes or more on the horizontal plane in the region in which the fixed regions are not formed in the base layer.

19 . The method of claim 13 , wherein the forming of the OLED layer comprises collectively forming the isolated regions and the hidden light emitting region using the same material.

20 . The method of claim 13 , wherein the forming of the OLED layer comprises forming a corresponding region between diagonally adjacent isolated regions among the isolated regions on the hidden light emitting region in an empty structure.