IP Library › Granted Patent US 10,937,965
Granted Patent B2
US 10,937,965 · App. 16/194,451 · Granted Mar 2, 2021

Light-emitting element, display device, electronic device, and lighting device

Inventors: Satoshi Seo (Kanagawa, JP); Nobuharu Ohsawa (Kanagawa, JP)
Assignee: Semiconductor Energy Laboratory Co., Ltd.
H01L51/0052C09K11/06H01L51/006H01L51/0035H01L51/0043H01L51/0059H01L51/0062H01L51/0067H01L51/0072C09K2211/1416C09K2211/1433C09K2211/1466C09K2211/1475C09K2211/1483H01L27/323H01L27/3211H01L27/3244H01L27/3281H01L51/5012H01L51/5016H01L2251/5361
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Quick Facts
Patent No.
US 10,937,965
App. No.
16/194,451
Granted
Mar 2, 2021
Kind
B2
Abstract

A light-emitting element containing a light-emitting material with high light emission efficiency is provided. The light-emitting element includes a high molecular material and a guest material. The high molecular material includes at least a first high molecular chain and a second high molecular chain. The guest material has a function of exhibiting fluorescence or converting triplet excitation energy into light emission. The first high molecular chain and the second high molecular chain each include a first skeleton, a second skeleton, and a third skeleton, and the first skeleton and the second skeleton are bonded to each other through the third skeleton. The first high molecular chain and the second high molecular chain have a function of forming an excited complex.

Claims (22)

1. A compound comprising:

a first high molecular chain and a second high molecular chain each comprising:

a first skeleton comprising at least one of a π-electron rich heteroaromatic skeleton and an aromatic amine skeleton;

a second skeleton comprising a π-electron deficient heteroaromatic skeleton;

a third skeleton where the first skeleton and the second skeleton are bonded to each other through the third skeleton; and

a fourth skeleton configured to emit light,

wherein the first high molecular chain and the second high molecular chain are configured to form an excited complex.

2. The compound according to claim 1 , wherein the π-electron rich heteroaromatic skeleton comprises at least one of a thiophene skeleton, a furan skeleton, and a pyrrole skeleton.

3. The compound according to claim 1 , wherein the π-electron deficient heteroaromatic skeleton comprises at least one of a pyridine skeleton, a diazine skeleton, and a triazine skeleton.

4. The compound according to claim 1 , wherein the fourth skeleton is configured to exhibit fluorescence.

5. The compound according to claim 1 , wherein the fourth skeleton is configured to convert triplet excitation energy into light emission.

6. The compound according to claim 1 , wherein the fourth skeleton is configured to exhibit phosphorescence.

7. The compound according to claim 1 , wherein the fourth skeleton is configured to emit light with a wavelength greater than or equal to 400 nm and 680 nm.

8. The compound according to claim 1 , wherein the third skeleton comprises at least one of a biphenyl skeleton and a fluorene skeleton.

9. The compound according to claim 1 , wherein the first skeleton in the first high molecular chain and the second skeleton in the second high molecular chain are configured to form an excited complex.

10. The compound according to claim 1 , wherein the excited complex is configured to exhibit thermally activated delayed fluorescence at room temperature.

11. A lighting device comprising the compound according to claim 1 .

12. A light-emitting device comprising the compound according to claim 1 .

13. The light-emitting device according to claim 12 ,

wherein the light-emitting device comprises a light-emitting layer, and

wherein the light-emitting layer comprises the compound.

14. An electronic device comprising the light-emitting device according to claim 12 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 19, 2018
From: SEO, SATOSHI; OHSAWA, NOBUHARU
To: SEMICONDUCTOR ENERGY LABORATORY CO., LTD.
Reel/Frame 047543/0459 →
Continuity (2)
Division 15155283 · May 16, 2016
Related Publication 20190088882A1 · Mar 21, 2019
Cited By (2)
US 12,219,873 US 12,388,086