IP Library Granted Patent US 10,014,487
Granted Patent B2
US 10,014,487 · App. 15/022,244 · Granted Jul 3, 2018

Organic electroluminescent device

Inventors: Kenichi Goushi (Fukuoka, JP); Yuta Hirayama (Fukuoka, JP); Chihaya Adachi (Fukuoka, JP)
Assignee: KYULUX, INC.
H01L51/5096H01L51/0071H01L51/0074H01L51/5012H01L51/5016H01L51/5024H01L51/006H01L51/0058H01L51/0059H01L51/0072H01L2251/55
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Quick Facts
Patent No.
US 10,014,487
App. No.
15/022,244
Granted
Jul 3, 2018
Kind
B2
Abstract

An organic electroluminescent device comprising at least two organic layers including a light emitting layer ( 5 ) and a delayed fluorescent exciplex layer ( 7 ) containing a donor compound and an acceptor compound, between a pair of electrodes ( 2, 9 ) is highly efficient in formation of a singlet excited state and enables high light emission efficiency.

Claims (14)

1. An organic electroluminescent device comprising organic layers including a light emitting layer and a delayed fluorescent exciplex layer containing a donor compound and an acceptor compound, between a pair of electrodes, the delayed fluorescent exciplex layer being distinct from the light emitting layer.

2. The organic electroluminescent device according to claim 1 , wherein

the light emitting layer contains a host compound and a guest compound as a light emitting material, and

the host compound, the guest compound, the donor compound, and the acceptor compound satisfy the condition shown by the following expression (1):

ES 1 >ES 1 G and ES 1 H >ES 1 G   (1)

wherein in the expression (1), ES 1 represents a lowest singlet excitation energy level of an exciplex formed with the donor compound and the acceptor compound; ES 1 H represents a lowest singlet excitation energy level of the host compound; and ES 1 G represents a lowest singlet excitation energy level of the guest compound.

3. The organic electroluminescent device according to claim 1 , wherein the organic layers include a triplet exciton blocking layer that suppresses transfer of triplet excitation energy from the delayed fluorescent exciplex layer to the light emitting layer, between the light emitting layer and the delayed fluorescent exciplex layer.

4. The organic electroluminescent device according to claim 2 , wherein the guest compound contained in the light emitting layer is a fluorescent material.

5. The organic electroluminescent device according to claim 3 , wherein the triplet exciton blocking layer contains a blocking compound that satisfies the condition shown by the following expression (2) with respect to the host compound, the guest compound, the donor compound, and the acceptor compound:

ET 1 B >ET 1 >ET 1 H >ET 1 G   (2)

wherein in the expression (2), ET 1 B represents a lowest triplet excitation energy level of the blocking compound; ET 1 represents a lowest triplet excitation energy level of an exciplex formed with the donor compound and the acceptor compound; ET 1 H represents a lowest triplet excitation energy level of the host compound; and ET 1 G represents a lowest triplet excitation energy level of the guest compound.

6. The organic electroluminescent device according to claim 3 , wherein the triplet exciton blocking layer has a thickness of 2 nm or more.

7. An organic electroluminescent device comprising organic layers including a light emitting layer and a delayed fluorescent exciplex layer containing a donor compound and an acceptor compound, between a pair of electrodes, wherein the organic layers include a triplet exciton blocking layer that suppresses transfer of triplet excitation energy from the delayed fluorescent exciplex layer to the light emitting layer, between the light emitting layer and the delayed fluorescent exciplex layer, and wherein the triplet exciton blocking layer has a thickness of from 2 to 8 nm.

8. An organic electroluminescent device comprising organic layers including a light emitting layer and a delayed fluorescent exciplex layer containing a donor compound and an acceptor compound, between a pair of electrodes, wherein the organic layers include a triplet exciton blocking layer that suppresses transfer of triplet excitation energy from the delayed fluorescent exciplex layer to the light emitting layer, between the light emitting layer and the delayed fluorescent exciplex layer, and wherein the triplet exciton blocking layer has a thickness of from 3.5 to 4.5 nm.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 4, 2016
From: KYUSHU UNIVERSITY, NATIONAL UNIVERSITY
To: KYULUX, INC.
Reel/Frame 039930/0751 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 16, 2016
From: GOUSHI, KENICHI; HIRAYAMA, YUTA; ADACHI, CHIHAYA
To: KYUSHU UNIVERSITY, NATIONAL UNIVERSITY CORPORATION
Reel/Frame 037994/0280 →
Priority Claims (1)
JP 2013-192357 · Sep 17, 2013 · national
Continuity (1)
Related Publication 20160248036A1 · Aug 25, 2016