IP Library Granted Patent US 7,936,120
Granted Patent B2
US 7,936,120 · App. 11/347,660 · Granted May 3, 2011

Organic light emitting device and method of manufacturing the same

Assignee: Samsung Mobile Display Co., Ltd.
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Quick Facts
Patent No.
US 7,936,120
App. No.
11/347,660
Granted
May 3, 2011
Kind
B2
Abstract

An organic light emitting device (OLED) and a method of manufacturing the OLED. The OLED includes an anode, a cathode, a hole transport layer arranged between the anode and the cathode, a self-buffer layer arranged between the hole transport layer and the cathode, the self-buffer layer being adapted to protect the hole transport layer, the self-buffer layer being made of a first material and a light emitting layer arranged between the self-buffer layer and the cathode, the light emitting layer also being made of the first material.

Claims (39)

1. An organic light emitting device (OLED), comprising:

an anode;

a cathode;

a hole transport layer arranged between the anode and the cathode;

a self-buffer layer arranged between the hole transport layer and the cathode, the self-buffer layer being adapted to protect the hole transport layer, the self-buffer layer being comprised of a first material; and

a light emitting layer arranged between the self-buffer layer and the cathode, the light emitting layer also being comprised of the first material, the first material being a conductive polymer.

2. The OLED of claim 1 , the self-buffer layer being arranged adjacent to the light emitting layer.

3. The OLED of claim 1 , the self-buffer layer being in direct contact with the light emitting layer.

4. The OLED of claim 1 , the self-buffer layer being arranged between the hole transport layer and the light emitting layer.

5. The OLED of claim 1 , the self-buffer layer being between 5 and 30 nm thick and the light emitting layer being between 50 and 100 nm thick.

6. The OLED of claim 1 , produced by a process comprising:

forming the hole transport layer on the anode;

forming the self-buffer layer on the hole transport layer by dissolving material of the self-buffer layer in a first solvent;

forming the light emitting layer on the self-buffer layer by dissolving material of the light-emitting layer in a second and different solvent; and

forming the cathode on the light-emitting layer, the first solvent having a lower solubility of the hole transport layer than the second solvent.

7. The OLED of claim 6 , the first solvent being selected from the group consisting of a xylene group solvent and a toluene group solvent, the second solvent being of a chlorobenzene group.

8. The OLED of claim 1 , the light emitting layer being comprised of the same material as the self-buffer layer.

9. The OLED of claim 1 , the light emitting layer and the self-buffer layer having identical compositions.

10. An organic light emitting device (OLED), comprising:

an anode;

a cathode;

a hole transport layer arranged between the anode and the cathode;

a light emitting layer arranged between the hole transport layer and the cathode;

a self-buffer layer arranged between the light emitting layer and the cathode, the self-buffer layer being adapted to protect the light emitting layer, the self-buffer layer comprising a conductive polymer; and

an electron transport layer arranged between the self-buffer layer and the cathode, the electron transport layer being comprised of the same material as the self-buffer layer.

11. The OLED of claim 10 , the self-buffer layer being in direct contact with the light emitting layer and being arranged between the light emitting layer and the electron transport layer.

12. The OLED of claim 10 , the electron transport layer and the self-buffer layer having identical compositions.

13. An organic light emitting device (OLED), comprising:

an anode;

a cathode;

a hole transport layer arranged between the anode and the cathode;

a first self-buffer layer arranged between the hole transport layer and the cathode, the first self-buffer layer being adapted to protect the hole transport layer, the first self-buffer layer being comprised of a first material;

a light emitting layer arranged between the first self-buffer layer and the cathode, the light emitting layer also being comprised of the first material;

a second self-buffer layer arranged between the light emitting layer and the cathode, the second self-buffer layer being adapted to protect the light emitting layer, the second self-buffer layer comprising a second material; and

an electron transport layer arranged between the second self-buffer layer and the cathode, the electron transport layer comprising the second material, wherein the first and second material is a conductive polymer.

14. The OLED of claim 13 , each of the first self-buffer layer and the second self-buffer layer being in direct contact with the light emitting layer.

15. The OLED of claim 13 , the light emitting layer being comprised of the same material as the first self-buffer layer.

16. The OLED of claim 13 , the electron transport layer being comprised of the same material as the second self-buffer layer.

17. The OLED of claim 13 , the electron transport layer and the second self-buffer layer having identical compositions.

Assignments (3)
MERGER Recorded Sep 21, 2012
From: SAMSUNG MOBILE DISPLAY CO., LTD.
To: SAMSUNG DISPLAY CO., LTD.
Reel/Frame 029241/0599 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2008
From: SAMSUNG SDI CO., LTD.
To: SAMSUNG MOBILE DISPLAY CO., LTD.
Reel/Frame 022034/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 21, 2006
From: KIM, SANG-YEOL; PARK, SANG-HOON; LEE, TAE-WOO; CHOI, BYOUNG-KI; PARK, JONG-JIN; KIM, MU-GYEOM; KANG, IN-NAM
To: SAMSANG SDI CO., LTD., A CORPORATION ORGANIZED UNDER THE LAWS OF THE REPUBLIC OF KOREA
Reel/Frame 017807/0445 →
Priority Claims (1)
KR 10-2005-0010986 · Feb 5, 2005 · national
Continuity (1)
Related Publication 20060175963A1 · Aug 10, 2006