IP Library Granted Patent US 10,586,939
Granted Patent B2
US 10,586,939 · App. 16/421,777 · Granted Mar 10, 2020

Organic light emitting display device

Inventors: Sung Hoon Pieh (Seoul, KR); Chang Wook Han (Seoul, KR); Hong Seok Choi (Seoul, KR); Ki-Woog Song (Gyeonggi-do, KR); So Yeon Ahn (Seoul, KR); Seung Hyun Kim (Gwangju, KR)
Assignee: LG Display Co., Ltd.
H01L51/504H01L51/5044H01L51/5218H01L51/5221H01L51/5265H01L2251/558
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,586,939
App. No.
16/421,777
Granted
Mar 10, 2020
Kind
B2
Abstract

An organic light emitting display device comprises two emission portions between first and second electrodes, wherein at least one among the two emission portions includes two emitting layers, whereby efficiency and a color reproduction ratio may be improved.

Claims (60)

1. An organic light emitting display device, comprising:

first and second electrodes facing each other on a substrate;

a first emission portion on the first electrode; and

a second emission portion on the first emission portion,

wherein the first emission portion includes two emitting layers, the second emission portion includes a single emitting layer, and the first emission portion and the second emission portion have emission characteristics that exhibit three electroluminescence (EL) peaks,

wherein the first emission portion includes a first hole transport layer and a first electron transport layer,

wherein the second emission portion includes a second hole transport layer and a second electron transport layer,

wherein the two emitting layers in the first emission portion include a green emitting layer and a red emitting layer, and the single emitting layer in the second emission portion includes a dark blue emitting layer, and

wherein the green emitting layer is disposed in a range of 30 nm to 60 nm from the first electrode, the red emitting layer is disposed in a range of 50 nm to 90 nm from the first electrode, and the dark blue emitting layer is disposed in a range of 120 nm to 160 nm from the first electrode.

2. The organic light emitting display device of claim 1 , wherein a maximum wavelength of a photoluminescence (PL) peak of the green emitting layer includes 532 nm, a maximum wavelength of a photoluminescence (PL) peak of the red emitting layer includes 620 nm, and a maximum wavelength of a photoluminescence (PL) peak of the dark blue emitting layer includes 444 nm.

3. The organic light emitting display device of claim 1 , wherein each of the first electrode and the second electrode includes one among a reflective electrode and a transflective electrode.

4. The organic light emitting display device of claim 1 , wherein the three EL peaks have wavelengths in the ranges of 440 nm to 480 nm, 530 nm to 580 nm, and 600 nm to 650 nm.

5. The organic light emitting display device of claim 1 , further comprising:

a charge generation layer between the first emission portion and the second emission portion.

6. The organic light emitting display device of claim 1 , wherein a color change rate based on a viewing angle of the organic light emitting display device is less than 0.030.

7. An organic light emitting display device, comprising:

first and second electrodes facing each other on a substrate;

a first emission portion on the first electrode; and

a second emission portion on the first emission portion,

wherein the first emission portion includes two emitting layers, the second emission portion includes a single emitting layer, and the first emission portion and the second emission portion have emission characteristics that exhibit three electroluminescence (EL) peaks,

wherein the first emission portion includes a first hole transport layer and a first electron transport layer,

wherein the second emission portion includes a second hole transport layer and a second electron transport layer,

wherein the two emitting layers in the first emission portion include a green emitting layer and a red emitting layer, and the single emitting layer in the second emission portion includes a dark blue emitting layer, and

wherein the red emitting layer is disposed in a range of 20 nm to 50 nm from the first electrode, the green emitting layer is disposed in a range of 25 nm to 60 nm from the first electrode, and the dark blue emitting layer is disposed in a range of 120 nm to 160 nm from the first electrode.

8. The organic light emitting display device of claim 7 , wherein a maximum wavelength of a photoluminescence (PL) peak of the green emitting layer includes 532 nm, a maximum wavelength of a PL peak of the red emitting layer includes 620 nm, and a maximum wavelength of a PL peak of the dark blue emitting layer includes 444 nm.

9. An organic light emitting display device, comprising:

first and second electrodes facing each other on a substrate;

organic layers including a first emission portion on the first electrode and a second emission portion on the first emission portion, the organic layers being between the first electrode and the second electrode,

wherein the first emission portion includes two emitting layers, and the second emission portion includes a single emitting layer,

wherein the first emission portion includes a first hole transport layer and a first electron transport layer,

wherein the second emission portion includes a second hole transport layer and a second electron transport layer, and

wherein the organic layers have a thickness in the range of 200 nm to 230 nm or the 320 nm to 350 nm.

10. An organic light emitting display device, comprising:

first and second electrodes facing each other on a substrate;

a first emission portion on the first electrode; and

a second emission portion on the first emission portion,

wherein the first emission portion includes two emitting layers, the second emission portion includes a single emitting layer, and the first emission portion and the second emission portion have emission characteristics that exhibit three electroluminescence (EL) peaks,

wherein the first emission portion includes a first hole transport layer and a first electron transport layer,

wherein the second emission portion includes a second hole transport layer and a second electron transport layer, and

wherein the two emitting layers in the first emission portion include a yellow-green emitting layer and a red emitting layer, and the single emitting layer in the second emission portion includes a blue emitting layer.

11. The organic light emitting display device of claim 10 , wherein the yellow-green emitting layer is disposed in a range of 30 nm to 60 nm from the first electrode, the red emitting layer is disposed in a range of 50 nm to 90 nm from the first electrode, and the blue emitting layer is disposed in a range of 120 nm to 160 nm from the first electrode.

12. The organic light emitting display device of claim 10 , wherein a maximum wavelength of a photoluminescence (PL) peak of the yellow-green emitting layer includes 556 nm, a maximum wavelength of a PL peak of the red emitting layer includes 620 nm, and a maximum wavelength of a PL peak of the blue emitting layer includes 456 nm.

13. The organic light emitting display device of claim 10 , further comprising organic layers including the first emission portion and the second emission portion between the first electrode and the second electrode, wherein the organic layers have a thickness in the range of 200 nm to 240 nm or 340 nm to 370 nm.

14. An organic light emitting display device, comprising:

first and second electrodes facing each other on a substrate;

a first emission portion on the first electrode; and

a second emission portion on the first emission portion,

wherein the first emission portion includes a single emitting layer, the second emission portion includes two emitting layers, and the first emission portion and the second emission portion have emission characteristics that exhibit three electroluminescence (EL) peaks,

wherein the first emission portion includes a first hole transport layer and a first electron transport layer,

wherein the second emission portion includes a second hole transport layer and a second electron transport layer,

wherein the single emitting layer in the first emission portion includes a dark blue emitting layer, and the two emitting layers in the second emission portion include a green emitting layer and a red emitting layer, and

wherein the dark blue emitting layer is disposed in a range of 120 nm to 160 nm from the first electrode, the green emitting layer is disposed in a range of 170 nm to 200 nm from the first electrode, and the red emitting layer is disposed in a range of 200 nm to 230 nm from the first electrode.

15. The organic light emitting display device of claim 14 , wherein a maximum wavelength of a photoluminescence (PL) peak of the green emitting layer includes 532 nm, a maximum wavelength of a PL peak of the red emitting layer includes 620 nm, and a maximum wavelength of a PL peak of the dark blue emitting layer includes 444 nm.

16. An organic light emitting display device, comprising:

first and second electrodes facing each other on a substrate;

organic layers including a first emission portion on the first electrode and a second emission portion on the first emission portion, the organic layers being between the first electrode and the second electrode,

wherein the first emission portion includes a single emitting layer, the second emission portion includes two emitting layers, and the first emission portion and the second emission portion have emission characteristics that exhibit three electroluminescence (EL) peaks,

wherein the first emission portion includes a first hole transport layer and a first electron transport layer,

wherein the second emission portion includes a second hole transport layer and a second electron transport layer, and

wherein the organic layers have a thickness in the range of 320 nm to 350 nm.

Priority Claims (1)
KR 10-2014-0182517 · Dec 17, 2014 · national
Continuity (3)
Continuation 16205025 · Nov 29, 2018
Division 14873414 · Oct 2, 2015
Related Publication 20190288228A1 · Sep 19, 2019